Calcium Oxide Containing Patents (Class 501/70)
  • Publication number: 20140150867
    Abstract: Sodium containing aluminosilicate and boroaluminosilicate glasses are described herein. The glasses can be used as substrates or superstrates for photovoltaic devices, for example, thin film photovoltaic devices such as CIGS photovoltaic devices. These glasses can be characterized as having strain points ?535° C., for example, ?570° C., thermal expansion coefficients of from 8 to 9 ppm/° C., as well as liquidus viscosities in excess of 50,000 poise. As such they are ideally suited for being formed into sheet by the fusion process.
    Type: Application
    Filed: February 10, 2014
    Publication date: June 5, 2014
    Applicant: Corsam Technologies LLC
    Inventors: Bruce Gardiner AITKEN, James Edward Dickinson, JR., Timothy J. Kiczenski
  • Patent number: 8741178
    Abstract: Blue light emitting glass and the preparation method thereof are provided. The blue light emitting glass has the following composition: aCaO.bAl2O3.cSiO2.xCeO2, wherein a, b, c and x are, by mol part, 15-55, 15-35, 20-60 and 0.01-5 respectively. The preparation method comprises: weighing the raw materials according to the composition of the blue light emitting glass; mixing the raw materials uniformly and melting the raw materials to obtain glass melt; molding the glass melt to obtain transparent glass; thermally treating the transparent glass under reducing atmosphere, and thereafter obtaining the finished product. The blue light emitting glass obtained has intense broadband excitation spectrum in ultraviolet region and emits intense blue light under the excitation of ultraviolet light. It is suitable for using as luminescent medium material.
    Type: Grant
    Filed: June 25, 2009
    Date of Patent: June 3, 2014
    Assignee: Ocean's King Lighting & Technology Co., Ltd.
    Inventors: Mingjie Zhou, Wenbo Ma, Zhaopu Shi
  • Publication number: 20140144498
    Abstract: The present invention relates to a glass composition that includes: 57 to 75 percent by weight of SiO2; 3 to 11 percent by weight of Al2O3; 6 to 11 percent by weight of Na2O; 16 to 21 percent by weight of CaO; 0.01 to 0.1 percent by weight of Li2O; and less than 0.05 percent by weight of K2O. Each percent by weight is based on total weight of the glass composition. Glass products are also provided that have a bulk glass composition as described above. The glass products, such as flat glass products and glass substrates, have a strain point of at least 590° C. and a thermal expansion of at least 7.4 ppm/° C. The present invention also relates to magnetic recording articles and photovoltaic cells that include a glass substrate that has a bulk glass composition as described above.
    Type: Application
    Filed: November 28, 2012
    Publication date: May 29, 2014
    Applicant: PPG INDUSTRIES OHIO, INC.
    Inventors: Larry J. Shelestak, James W. McCamy, Paul R. Ohodnicki, JR., Hong Li, Adam D. Polcyn
  • Publication number: 20140141285
    Abstract: It is an object of the present invention to provide a crystallized glass which has various properties required for employing the substrate for information recording medium of the next generation, and also has significantly low specific gravity; and a crystallized glass substrate for information recording medium. A crystallized glass containing, as a crystal phase, one or more selected from RAl2O4 and R2TiO4 (wherein R is one or more selected from Mg and Fe), the crystallized glass comprising the components of SiO2 of 50% to 70%, Al2O3 of 10% to 26%, TiO2 of 1 to 15%, MgO of 2.5% to 25%, FeO of 0% to 8%, and ZnO of 0% to less than 2%, expressed in terms of mass percentage on an oxide basis, wherein the value of (Al2O3+MgO)/SiO2 is 0.30 or more and 0.65 or less, and a specific gravity is less than 2.63.
    Type: Application
    Filed: November 15, 2013
    Publication date: May 22, 2014
    Applicant: OHARA INC.
    Inventors: Kiyoyuki Momono, Katsuhiko Yamaguchi, Toshitaka Yagi, Naoyuki Goto
  • Patent number: 8715625
    Abstract: A natural anhydrous oral care composition with a limited number of naturally-derived, naturally processed, generally regarded as safe (GRAS) ingredients including an effective amount of a bioactive glass is described. The topical application of the composition to human teeth cleanses, remineralizes and reduces plaque build-up on teeth.
    Type: Grant
    Filed: May 9, 2011
    Date of Patent: May 6, 2014
    Assignee: The Clorox Company
    Inventors: Karen Lee Rokitowski, Amy Tracy Hart, Celeste Anne Lutrario
  • Patent number: 8715829
    Abstract: To provide a glass plate for display devices wherein without carrying out a post treatment, the depth of a compression stress layer is increased, while the surface compression stress is prevented from being excess only by chemical tempering. A glass plate for display devices, which is obtained by chemically tempering a glass plate comprising, as represented by mol % based on the following oxides, from 50 to 74% of SiO2, from 1 to 10% of Al2O3, from 6 to 14% of Na2O, from 3 to 15% of K2O, from 2 to 15% of MgO, from 0 to 10% of CaO and from 0 to 5% of ZrO2, wherein the total content of SiO2 and Al2O3 is at most 75%, the total content of Na2O and K2O, i.e. Na2O+K2O, is from 12 to 25%, and the total content of MgO and CaO, i.e. MgO+CaO, is from 7 to 15%.
    Type: Grant
    Filed: May 29, 2009
    Date of Patent: May 6, 2014
    Assignee: Asahi Glass Company, Limited
    Inventors: Shusaku Akiba, Kazutaka Hayashi, Kei Maeda
  • Publication number: 20140120335
    Abstract: A float glass, which is produced by a float process, has a bottom surface to contact a molten metal during forming and a top surface facing the bottom surface, and is capable of having, after chemical strengthening, a surface compressive stress of 600 MPa or more and a depth of a compressive stress layer of 15 ?m or more from a surface thereof. Before chemical strengthening, a difference obtained by subtracting a surface compressive stress value ?CB in the bottom surface from a surface compressive stress value ?CT in the top surface is ?0.6 MPa or more and 0.25 MPa or less.
    Type: Application
    Filed: January 2, 2014
    Publication date: May 1, 2014
    Applicant: ASAHI GLASS COMPANY, LIMITED
    Inventors: Kazuhiko YAMANAKA, Hitoshi ONODA, Aya YAMAMOTO, Yusuke FUJIWARA, Tetsushi TAKIGUCHI
  • Publication number: 20140120278
    Abstract: Latent colorant material compositions, soda-lime-silica glass compositions, and related methods of manufacturing color-strikable glass containers. The latent colorant material compositions may be introduced into a plurality of base glass compositions having redox numbers in the range of ?40 to +20 to produce color-strikable glass compositions and color-strikable glass containers. The latent colorant material compositions introduced into the base glass compositions include a mixture of cuprous oxide (Cu2O), stannous oxide (SnO), bismuth oxide (Bi2O3), and carbon (C). After formation, the color-strikable glass containers may be heat-treated to strike red or black therein.
    Type: Application
    Filed: November 1, 2012
    Publication date: May 1, 2014
    Applicant: Owens-Brockway Glass Container Inc.
    Inventor: Owens-Brockway Glass Container Inc.
  • Patent number: 8703633
    Abstract: A high-intensity and high-modulus glass fiber is provided. Said fiber is produced by improving the processes, components and proportion of conventional E-glass production process and apparatus. The fiber contains 13% CaO at most, no boron and fluorine, meanwhile ZrO2 and Li2O is first added, B2O3 is first removed, and SO3 is added. The intensity and the modulus of the fiber are slightly lower than those of S-glass or T-glass, but obviously higher than those of E-glass and ECR-glass which are highly produced and widely used or other boron-free glass such as Advantex glass. Besides the intensity, modulus and fatigue resistance, said fiber has obvious advantages over E-glass in heat, acid and alkali resistance. The glass fiber roving made from said fiber has 22% higher tensile strength and 11˜15.7% higher modulus than those of E-glass, and has 16% higher tensile strength and 5˜6% higher modulus than those of ECR-glass.
    Type: Grant
    Filed: July 2, 2010
    Date of Patent: April 22, 2014
    Assignee: Chongqing Polycomp Int'l Corporation
    Inventor: Zhiyao Tang
  • Publication number: 20140107389
    Abstract: A method for sequestrating arsenic oxides, comprising forming an insoluble and stable glass incorporating a fully oxidized form of arsenic generated by oxidation of an initial lower oxide of arsenic and stabilization by calcium salt formation. The glass composition for sequestration of arsenic comprises from 50 to 75% silica; from 0.5 to 3% Al2O3; from 1 to 15% MnO; from 5 to 15% CaO; from 1 to 20% As2O5 and from 8 to 14% Na2O, less than four percent of iron oxides, magnesium oxide and other oxides.
    Type: Application
    Filed: September 4, 2013
    Publication date: April 17, 2014
    Applicant: Nichromet Extraction Inc.
    Inventors: Jean-Marc Lalancette, Bertrand Dubreuil, David Lemieux
  • Patent number: 8697588
    Abstract: Provided is a mineral wool that includes recycled material. The mineral wool is characterized by an acid to base ratio within a specified range. Also provided is a method of manufacturing the mineral wool that includes selection of post-consumer or post-industrial recyclable materials. Application of the mineral wool to products such as an acoustical ceiling panel is also provided.
    Type: Grant
    Filed: April 11, 2011
    Date of Patent: April 15, 2014
    Assignee: USG Interiors, Inc.
    Inventor: Martin W. Brown
  • Patent number: 8697592
    Abstract: Disclosed are a glass substrate for an information recording medium, having excellent scratch resistance and a light weight and having high fracture toughness, the glass substrate having a fragility index value, measured in water, of 12 ?m?1/2 or less or having a fragility index value, measured in an atmosphere having a dew point of ?5° C. or lower, of 7 ?m?1/2 or less, or the glass substrate comprising, by mol %, 40 to 75% of SiO2, 2 to 45% of B2O3 and/or Al2O3 and 0 to 40% of R?2O in which R? is at least one member selected from the group consisting of Li, Na and K), wherein the total content of SiO2, B2O3, Al2O3 and R?2O is at least 90 mol %, and a magnetic information recording medium comprising a magnetic recording layer formed on the glass substrate.
    Type: Grant
    Filed: June 7, 2012
    Date of Patent: April 15, 2014
    Assignee: Hoya Corporation
    Inventors: Mikio Ikenishi, Atsuko Morita, Xuelu Zou
  • Publication number: 20140099501
    Abstract: There is provided a glass for chemical strengthening having a black color tone and excelling in characteristics preferred for the purposes of housing or decoration of an electronic device, that is, bubble quality, strength, and light transmittance characteristics. A glass for chemical strengthening contains, in mole percentage based on following oxides, 55% to 80% of SiO2, 3% to 16% of Al2O3, 0% to 12% of B2O3, 5% to 16% of Na2O, 0% to 4% of K2O, 0% to 15% of MgO, 0% to 3% of CaO, 0% to 18% of ?RO (where R represents Mg, Ca, Sr, Ba or Zn), 0% to 1% of ZrO2, and 0.1% to 7% of a coloring component having at least one metal oxide selected from the group consisting of oxides of Co, Mn, Fe, Ni, Cu, Cr, V and Bi.
    Type: Application
    Filed: September 17, 2013
    Publication date: April 10, 2014
    Applicant: ASAHI GLASS COMPANY, LIMITED
    Inventors: Hiroyuki YAMAMOTO, Kazuhide KUNO
  • Publication number: 20140087935
    Abstract: A glass sheet for a thin-film solar cell of the present invention is characterized by including, as a glass composition in terms of mass %, 45 to 60% of SiO2, more than 8.0 to 18% of Al2O3, 0 to 15% (excluding 15%) of B2O3, 1 to 40% of MgO+CaO+SrO+BaO, and 1 to 30% of Na2O+K2O, and having a strain point of more than 580° C.
    Type: Application
    Filed: April 25, 2012
    Publication date: March 27, 2014
    Inventor: Masato Muguruma
  • Patent number: 8669197
    Abstract: A grey glass composition employing in its colorant portion at least iron (Fe2O3/FeO), cobalt and selenium is provided. The glass allows high visible transmission, and good IR absorption, while at the same time achieving desired grey color. In certain example embodiments, the colorant portion includes, or may consist essentially of: total iron (expressed as Fe2O3) 0.20 to 0.35% selenium 0.0002 to 0.0020% cobalt oxide 0.0025 to 0.0060% titanium oxide 0 to 1.0% glass redox: <=.27; or 0.10 to 0.25.
    Type: Grant
    Filed: December 7, 2010
    Date of Patent: March 11, 2014
    Assignee: Guardian Industries Corp.
    Inventors: Anna Broughton, Richard Hulme, Scott V. Thomsen
  • Patent number: 8664132
    Abstract: A high transmittance glass includes: SiO2 in the range of 65 to 75 weight percent; Na2O in the range of 10 to 20 weight percent; CaO in the range of 5 to 15 weight percent; MgO in the range of 0 to 5 weight percent; Al2O3 in the range of 0 to 5 weight percent; K2O in the range of 0 to 5 weight percent; MnO2 in the range of 0.035 to 0.6 weight percent; FeO in the range of 0.0010 to 0.0030 weight percent; and Fe2O3 (total iron) in the range of 0.001 to 0.03 weight percent. The glass has a redox ratio in the range of 0.1 to 0.4.
    Type: Grant
    Filed: August 31, 2011
    Date of Patent: March 4, 2014
    Assignee: PPG Industries Ohio, Inc.
    Inventor: Larry J. Shelestak
  • Patent number: 8652978
    Abstract: A silicate glass that is tough and scratch resistant. The toughness is increased by minimizing the number of non-bridging oxygen atoms in the glass. In one embodiment, the silicate glass is an aluminoborosilicate glass in which ?15 mol %?(R2O+R?O—Al2O3—ZrO2)—B2O3?4 mol %, where R is one of Li, Na, K, Rb, and Cs, and R? is one of Mg, Ca, Sr, and Ba.
    Type: Grant
    Filed: August 17, 2012
    Date of Patent: February 18, 2014
    Assignee: Corning Incorporated
    Inventors: Matthew John Dejneka, Adam James Ellison, Sinue Gomez, Robert Michael Morena
  • Patent number: 8652660
    Abstract: An aspect of the present invention relates to a glass substrate for a magnetic recording medium, which is comprised of glass with a glass transition temperature of equal to or greater than 600° C., an average coefficient of linear expansion at 100 to 300° C. of equal to or greater than 70×10?7/° C., a Young's modulus of equal to or greater than 81 GPa, a specific modulus of elasticity of equal to or greater than 30 MNm/kg, and a fracture toughness value of equal to or greater than 0.9 MPa·m1/2.
    Type: Grant
    Filed: December 20, 2011
    Date of Patent: February 18, 2014
    Assignee: Hoya Corporation
    Inventors: Hideki Isono, Kinobu Osakabe, Katsuyuki Iwata, Mikio Ikenishi, Naomi Matsumoto
  • Patent number: 8647995
    Abstract: Sodium containing aluminosilicate and boroaluminosilicate glasses are described herein. The glasses can be used as substrates or superstrates for photovoltaic devices, for example, thin film photovoltaic devices such as CIGS photovoltaic devices. These glasses can be characterized as having strain points ?535° C., for example, ?570° C., thermal expansion coefficients of from 8 to 9 ppm/° C., as well as liquidus viscosities in excess of 50,000 poise. As such they are ideally suited for being formed into sheet by the fusion process.
    Type: Grant
    Filed: July 21, 2010
    Date of Patent: February 11, 2014
    Assignee: Corsam Technologies LLC
    Inventors: Bruce Gardiner Aitken, James Edward Dickinson, Jr., Timothy J Kiczenski
  • Publication number: 20140023865
    Abstract: According to one embodiment, a glass article may include SiO2, Al2O3, Li2O and Na2O. The glass article may have a softening point less than or equal to about 810° C. The glass article may also have a high temperature CTE less than or equal to about 27×10?6/° C. The glass article may also be ion exchangeable such that the glass has a compressive stress greater than or equal to about 600 MPa and a depth of layer greater than or equal to about 25 ?m after ion exchange in a salt bath comprising KNO3 at a temperature in a range from about 390° C. to about 450° C. for less than or equal to approximately 15 hours.
    Type: Application
    Filed: July 10, 2013
    Publication date: January 23, 2014
    Inventors: Marie Jacqueline Monique Comte, Melinda Ann Drake, Karen Leslie Geisinger, Sinue Gomez, Robert Michael Morena, Charlene Marie Smith, Randall Eugene Youngman
  • Patent number: 8629072
    Abstract: The invention discloses boron-free neutral glasses having the composition (in % by weight, based on oxide) 65-72 SiO2, 11-17 Al2O3, 0.1-8 Na2O, 3-8 MgO, 4-12 CaO and 0-10 ZnO, a ratio CaO/MgO of 1.4 to 1.6, and having a hydrolytic resistance in accordance with DIN ISO 719 in class 1 and an acid resistance in accordance with DIN 12116 and an alkali resistance in accordance with DIN ISO 695 at least in class 2.
    Type: Grant
    Filed: October 25, 2010
    Date of Patent: January 14, 2014
    Assignee: Schott AG
    Inventor: Peter Brix
  • Publication number: 20140011035
    Abstract: Provided is a glass composition suitable for production using large-scale sheet glass mass production facilities by the float process or the like, having high heat resistance, and suitable for chemical strengthening. Specifically, provided is a glass composition containing, in mass %: 60 to 66% SiO2; 10 to 16% Al2O3; 0 to 1% B2O3; 3 to 10% MgO; 0 to 1% CaO; 1 to 9% SrO; O to 4% BaO; 0 to 2% ZnO; 0 to 1% Li2O; 10 to 20% Na2O; 0 to 5% K2O; O to 2% TiO2; 0 to 0.1% ZrO2; and 0 to 2% total iron oxide in terms of Fe2O3. In this glass composition, a total content of MgO, CaO, SrO, and BaO is in a range of 10 to 20%, a total content of Li2O, Na2O, and K2O is in a range of 14 to 20%, and a content of SrO is higher than a content of CaO.
    Type: Application
    Filed: December 2, 2011
    Publication date: January 9, 2014
    Applicant: NIPPON SHEET GLASS COMPANY, LIMITED
    Inventors: Yutaka Senshu, Junji Kurachi
  • Patent number: 8623776
    Abstract: A fusion formable and ion exchangeable silicate glass having a seed concentration of less than about 1 seed/cm3.
    Type: Grant
    Filed: June 19, 2013
    Date of Patent: January 7, 2014
    Assignee: Corning Incorporated
    Inventors: Matthew John Dejneka, Sinue Gomez
  • Publication number: 20140005027
    Abstract: Universal glasses are provided which have the composition, in percent by weight on an oxide basis, 65-75 of SiO2, 11-18 of Al2O3, 5-10 of MgO, 5-10 of CaO, which are free of B2O3, SrO, BaO, CeO2 and PbO and have a hydrolytic resistance in the first class in accordance with DIN ISO 719, an acid resistance at least in the second class in accordance with DIN 12116 and an alkali resistance at least in the second class in accordance with DIN ISO 695.
    Type: Application
    Filed: June 10, 2013
    Publication date: January 2, 2014
    Inventor: Peter BRIX
  • Publication number: 20130343166
    Abstract: An aspect of the present invention relates to glass for a magnetic recording medium substrate, which comprises essential components in the form of SiO2, Li2O, Na2O, and one or more alkaline earth metal oxides selected from the group consisting of MgO, CaO, SrO, and BaO wherein a molar ratio of a content of CaO to a combined content of MgO, CaO, SrO, and BaO (CaO/(MgO+CaO+SrO+BaO)) is equal to or less than 0.20, and which has a glass transition temperature of equal to or higher than 650° C.
    Type: Application
    Filed: March 15, 2013
    Publication date: December 26, 2013
    Applicant: HOYA CORPORATION
    Inventor: HOYA CORPORATION
  • Publication number: 20130324389
    Abstract: The present invention relates to a glass composition including, in terms of mol % on the basis of oxides: from 55 to 70% of SiO2, from 5 to 10% of Al2O3, from 0 to 0.5% of B2O3, from 3 to 15% of MgO, from 3 to 15% of CaO, from 2 to 10% of SrO, from 1 to 10% of BaO, from 0 to 3% of ZrO2, from 0 to 1.8% of Na2O, and from 0 to 1% of K2O, provided that MgO+CaO+SrO+BaO is from 20 to 35%, and Na2O+K2O is from 0 to 2%, in which the glass composition has a glass transition temperature of 680° C. or higher, an average thermal expansion coefficient of from 50×10?7 to 70×10?7/° C., and a temperature at which a viscosity is 102 dPa·s of 1,600° C. or lower.
    Type: Application
    Filed: August 6, 2013
    Publication date: December 5, 2013
    Applicant: Asahi Glass Company, Limited
    Inventors: Tatsuo NAGASHIMA, Yuki KONDO, Manabu NISHIZAWA, Akio KOIKE
  • Publication number: 20130306145
    Abstract: A glass substrate for a CIGS solar cell containing specific amounts of SiO2, Al2O3, B2O3, MgO, CaO, SrO, BaO, ZrO2, TiO2, Na2O and K2O, respectively. The glass substrate satisfies the specific requirements regarding MgO+CaO+SrO+BaO, Na2O+K2O, MgO/Al2O3, (2Na2O+K2O+SrO+BaO)/(Al2O3+ZrO2), Na2O/K2O, the relation of Al2O3 and MgO, and the relation of CaO and MgO, respectively. The glass substrate has a glass transition temperature of 640° C. or higher, an average coefficient of thermal expansion within a range of 50 to 350° C. of 70×10?7 to 90×10?7/° C., the temperature (T4) of 1,230° C. or lower, the temperature (T2) of 1,650° C. or lower, and a density of 2.7 g/cm3 or less. The glass substrate satisfies the relationship of T4?TL??30° C.
    Type: Application
    Filed: July 29, 2013
    Publication date: November 21, 2013
    Applicant: ASAHI GLASS COMPANY, LIMITED
    Inventors: Yu HANAWA, Yutaka Kuroiwa, Tetsuya Nakashima, Reo Usui, Takeshi Tomizawa, Tomomi Sekine
  • Patent number: 8586491
    Abstract: Glass batch compositions for the formation of high-modulus, and high-strength glass fibers as well as fibers suitable for use as textile and reinforcements are disclosed. Fibers formed of the composition are especially suitable for use in high-strength, low-weight applications such as windmill blades and high strength and modulus applications where strength and stiffness are required in the composite. The glass composition is up to about 70.5 weight % SiO2, about 24.5 weight % Al2O3, about 22 weight % alkaline earth oxides and may include small amounts of alkali metal oxides and ZrO2. Additionally, glass fibers formed from the inventive composition are non-corrosive or substantially non-corrosive in nature. Due to the non-corrosive nature of the glass fibers, glass fibers made with the inventive composition may be used in applications where the glass fibers or a composite formed from the glass fibers are in contact with a corrosive substance.
    Type: Grant
    Filed: January 30, 2007
    Date of Patent: November 19, 2013
    Assignee: OCV Intellectual Capital, LLC
    Inventors: Douglas A. Hofmann, Peter B. McGinnis
  • Publication number: 20130302617
    Abstract: To provide glass to be used for chemically tempered glass which is hardly broken even when flawed. Glass for chemical tempering, which comprises, as represented by mole percentage based on the following oxides, from 65 to 85% of SiO2, from 3 to 15% of Al2O3, from 5 to 15% of Na2O, from 0 and less than 2% of K2O, from 0 to 15% of MgO and from 0 to 1% of ZrO2, and has a total content Si02+Al2O3 of SiO2 and Al2O3 of at most 88%.
    Type: Application
    Filed: July 16, 2013
    Publication date: November 14, 2013
    Applicant: Asahi Glass Company, Limited
    Inventors: Shusaku Akiba, Kazutaka Ono, Jun Endo, Shigeki Sawamura, Tetsuya Nakashima, Yuichi Kuroki
  • Publication number: 20130302618
    Abstract: A high-strength alkali-aluminosilicate glass, characterized by excellent meltability, fineability. and processibility, exhibits the following formula: SiO2 60.5 to 69.0 weight percent Al2O3 7.0 to 11.8 weight percent B2O3 0 to 4.0 weight percent MgO 2.0 to 8.5 weight percent CaO 0 to 4.0 weight percent ZnO 0 to 5.0 weight percent ZrO2 0 to 3.0 weight percent Na2O 15.0 to 17.5 weight percent K2O 0 to 2.7 weight percent Li2O 0 to 2.0 weight percent and from 0 to 1.5 weight percent of a fining agents such as As2O3, Sb2O3 CeO2, SnO2, Cl?, F?, (SO4)2? and combinations thereof. The glass allows for adequate conditions for an alkali ion exchange treatment in a short time period (4 to 8 hours) and can also be produced according to the established, continuous, vertically downward directed drawing process such as the overflow down-draw method or the fusion method, the die slot or the slot down-draw method, or combinations thereof.
    Type: Application
    Filed: January 27, 2012
    Publication date: November 14, 2013
    Applicant: Kornerstone Materials Technology Co., Ltd.
    Inventors: Bernd Kuhnemann, Michael Boettger, Sicco Rathke
  • Publication number: 20130296157
    Abstract: Described herein are alkali-free, boroalumino silicate glasses exhibiting desirable physical and chemical properties for use as substrates in flat panel display devices, such as, active matrix liquid crystal displays (AMLCDs) and active matrix organic light emitting diode displays (AMOLEDs). In accordance with certain of its aspects, the glasses possess good dimensional stability as a function of temperature. The glasses comprise in mol percent on an oxide basis: 70-74.5 SiO2, 10.5-13.5 AL2O3, 0-2.5 B2O3, 3-7 MgO, 3-7 CaO, 0-4 SrO, 1.5-6 BaO, 0-0.3 SnO2, 0-03 CeO2, 0-0.5 As2O3, 0-0.5 Sb2O3, 0.01-0.08 Fe2O3 and F+Cl+BrRO/Al2O31.7 and 0.2MgO/RO0.45, RO being the sum of MgO, BaO, SrO and CaO.
    Type: Application
    Filed: January 25, 2012
    Publication date: November 7, 2013
    Inventors: Adam J. Ellison, Timothy J. Kiczenski
  • Publication number: 20130295366
    Abstract: Provided is a tempered glass having a compression stress layer in a surface thereof, comprising, as a glass composition in terms of mass %, 50 to 75% of SiO2, 5 to 20% of Al2O3, 0 to 8% of B2O3, 5 to 20% of Na2O, 0.1 to 10% of K2O, 0.1 to 15% of MgO, and 0.001 to 5% of SrO+BaO, and having a mass ratio (MgO+CaO+SrO+BaO)/(MgO+ZrO2) of 0.3 to 1.5.
    Type: Application
    Filed: January 16, 2012
    Publication date: November 7, 2013
    Inventors: Takashi Murata, Takako Tojyo
  • Patent number: 8575415
    Abstract: The present invention provides processes to immobilize high alkaline radioactive and/or hazardous waste in a silicate-based glass, the waste containing one or more of radionuclides, hazardous elements, hazardous compounds, and/or other compounds. The invention also provides silicate-based glass compositions for use in immobilizing radioactive and/or hazardous waste.
    Type: Grant
    Filed: February 13, 2012
    Date of Patent: November 5, 2013
    Assignee: Geomatrix Solutions, Inc.
    Inventors: Anatoly Chekhmir, Arthur Gribetz
  • Publication number: 20130288877
    Abstract: The present invention relates to an alkali-free glass having a strain point of 735° C. or higher, an average thermal expansion coefficient at from 50 to 350° C. of from 30×10?7 to 40×10?7/° C., a temperature T2 at which a glass viscosity is 102 dPa·s of 1,710° C. or lower, a temperature T4 at which a glass viscosity is 104 dPa·s of 1,340° C. or lower, and a devitrification temperature of 1,330° C. or lower, the alkali-free glass including, in terms of mol % on the basis of oxides: SiO2 66 to 69, Al2O3 12 to 15, B2O3 0 to 1.5, MgO 6 to 9.5, CaO 7 to 9, SrO 0.5 to 3, BaO 0 to 1, and ZrO2 0 to 2, in which MgO+CaO+SrO+BaO is from 16 to 18.2, MgO/(MgO+CaO+SrO+BaO) is 0.35 or more, MgO/(MgO+CaO) is 0.40 or more and less than 0.52, and MgO/(MgO+SrO) is 0.45 or more.
    Type: Application
    Filed: June 27, 2013
    Publication date: October 31, 2013
    Inventors: Tomoyuki TSUJIMURA, Manabu Nishizawa, Akio Koike
  • Publication number: 20130288001
    Abstract: Provided is a tempered glass having a compression stress layer in a surface thereof, the tempered glass comprising, as a glass composition in terms of mol %, 45 to 75% of SiO2, 3 to 15% of Al2O3, 0 to 12% of Li2O, 0.3 to 20% of Na2O, 0 to 10% of K2O, and 1 to 15% of MgO+CaO, and having a molar ratio (Al2O3+Na2O+P2O5)/SiO2 of 0.1 to 1, a molar ratio (B2O3+Na2O)/SiO2 of 0.1 to 1, a molar ratio P2O5/SiO2 of 0 to 1, a molar ratio Al2O3/SiO2 of 0.01 to 1, and a molar ratio Na2O/Al2O3 of 0.1 to 5, wherein the surface is etched partially or entirely before tempering treatment.
    Type: Application
    Filed: January 16, 2012
    Publication date: October 31, 2013
    Inventors: Takashi Murata, Takako Tojyo
  • Publication number: 20130281281
    Abstract: A fusion formable and ion exchangeable silicate glass having a seed concentration of less than about 1 seed/cm3.
    Type: Application
    Filed: June 19, 2013
    Publication date: October 24, 2013
    Inventors: Matthew John Dejneka, Sinue Gomez
  • Patent number: 8563450
    Abstract: Glass batch compositions for the formation of high-modulus, and high-strength glass fibers as well as fibers suitable for use as textile and reinforcements are disclosed. Fibers formed of the composition are especially suitable for use in high-strength, low-weight applications such as windmill blades and high strength and modulus applications where strength and stiffness are required in the composite. The glass composition is up to about 70.5 weight % SiO2, about 24.5 weight % Al2O3, about 22 weight % alkaline earth oxides and may include small amounts of alkali metal oxides and ZrO2. Fiberglass-reinforced composite articles such as windmill blades are also disclosed.
    Type: Grant
    Filed: September 16, 2010
    Date of Patent: October 22, 2013
    Assignee: OCV Intellectual Capital, LLC
    Inventors: Douglas A. Hofmann, Peter B. McGinnis
  • Publication number: 20130267402
    Abstract: The present invention provides a glass substrate having high glass transition temperature and small compaction (C) in a heat treatment at a low temperature (150 to 300° C.), the glass substrate including SiO2, Al2O3, B2O3, MgO, CaO, SrO, BaO, ZrO2, Na2O, K2O, and Li2O, wherein each amount of these compounds is specifically limited, Al2O3+K2O is 7 to 27 mass %, Na2O+K2O is 11.5 to 22 mass %, MgO+CaO+SrO+BaO is 0.2 to 14 mass %, MgO+0.357Al2O3?0.239K2O?5.58 is ?3.0 to 1.5, Na2O+0.272Al2O3+0.876K2O?16.77 is ?2.5 to 2.5, a glass transition temperature is 500° C. or higher, and an average thermal expansion coefficient at 50 to 350° C. is 100×10?7/° C. or less.
    Type: Application
    Filed: December 3, 2012
    Publication date: October 10, 2013
    Applicant: ASAHI GLASS COMPANY, LIMITED
    Inventor: ASAHI GLASS COMPANY, LIMITED
  • Patent number: 8551898
    Abstract: The embodiments described herein relate to chemically and mechanically durable glass compositions and glass articles formed from the same. In another embodiment, a glass composition may include from about 70 mol. % to about 80 mol. % SiO2; from about 3 mol. % to about 13 mol. % alkaline earth oxide; X mol. % Al2O3; and Y mol. % alkali oxide. The alkali oxide may include Na2O in an amount greater than about 8 mol. %. A ratio of Y:X may be greater than 1 and the glass composition may be free of boron and compounds of boron. In some embodiments, the glass composition may also be free of phosphorous and compounds of phosphorous. Glass articles formed from the glass composition may have at least a class S3 acid resistance according to DIN 12116, at least a class A2 base resistance according to ISO 695, and a type HGA1 hydrolytic resistance according to ISO 720.
    Type: Grant
    Filed: October 25, 2012
    Date of Patent: October 8, 2013
    Assignee: Corning Incorporated
    Inventors: Paul Steven Danielson, Steven Edward DeMartino, Melinda Ann Drake, Robert Michael Morena, Santona Pal, Robert Anthony Schaut
  • Publication number: 20130233386
    Abstract: A glass substrate for a Cu—In—Ga—Se solar cell. The glass substrate contains specific oxides with the specific amounts, respectively. The glass substrate has a glass transition temperature of from 650 to 750° C., an average coefficient of thermal expansion within a range of from 50 to 350° C. of from 75×10?7 to 95×10?7/° C., a relationship between a temperature (T4), at which a viscosity reaches 104 dPa·s, and a devitrification temperature (TL) of T4?TL??30° C., a density of 2.6 g/cm3 or less, and a brittleness index of less than 7,000 m?1/2.
    Type: Application
    Filed: April 22, 2013
    Publication date: September 12, 2013
    Applicant: ASAHI GLASS COMPANY, LIMITED
    Inventors: Yu HANAWA, Yutaka KUROIWA, Tetsuya NAKASHIMA, Reo USUI
  • Publication number: 20130237401
    Abstract: Provided is an alkali-free glass, comprising, as a glass composition in terms of mass %, 58 to 70% of SiO2, 15.5 to 20% of Al2O3, 0 to 1% of B2O3, 0 to 5% of MgO, 3.5 to 16% of CaO, 0.5 to 6.5% of SrO, and 5 to 15% of BaO, being substantially free of alkali metal oxides, and having a strain point of more than 725° C.
    Type: Application
    Filed: October 26, 2011
    Publication date: September 12, 2013
    Inventors: Takahiro Kawaguchi, Shinkichi Miwa
  • Publication number: 20130230692
    Abstract: Provided is a high refractive index glass, comprising, as a glass composition in terms of mass %, 0.1 to 60% of SiO2+Al2O3+B2O3, having a mass ratio (BaO+La2O3+Nb2O5+TiO2+ZrO2)/(SiO2+Al2O3+B2O3) of 0.1 to 50, amass ratio (MgO+CaO+SrO+BaO)/(BaO+La2O3+Nb2O5+TiO2+ZrO2) of 0 to 10, and a mass ratio (TiO2+ZrO2)/(BaO+La2O3+Nb2O5) of 0.001 to 40, and having a refractive index nd of 1.55 to 2.3.
    Type: Application
    Filed: December 7, 2011
    Publication date: September 5, 2013
    Inventors: Tomoki Yanase, Takashi Murata
  • Patent number: 8518843
    Abstract: To provide a heat-absorbing glass plate which comprises soda lime silica glass containing coloring components, the coloring components containing, as represented by mass % based on the following oxides, from 0.45 to 0.61% of total iron as calculated as Fe2O3 and from 0.2 to 0.6% of TiO2, which contains substantially no CoO, Cr2O3, V2O5, MnO nor CeO2, which has a mass proportion of bivalent iron as calculated as Fe2O3 in total iron as calculated as Fe2O3 of from 45 to 60%, which has a solar transmittance of at most 42% calculated as 4 mm thickness, which has a visible light transmittance (by illuminant A) of at least 70% calculated as 4 mm thickness, and which provides a transmitted light having a dominant wavelength of from 492 to 500 nm.
    Type: Grant
    Filed: April 12, 2012
    Date of Patent: August 27, 2013
    Assignee: Asahi Glass Company, Limited
    Inventors: Yuya Shimada, Yuki Kondo
  • Publication number: 20130209773
    Abstract: To provide glass to be used for chemically tempered glass, of which the strength is less likely to be reduced even when indentations are formed thereon. Glass for chemical tempering, which comprises, as represented by mole percentage based on oxides, from 62 to 68% of SiO2, from 6 to 12% of Al2O3, from 7 to 13% of MgO, from 9 to 17% of Na2O, and from 0 to 7% of K2O, wherein the difference obtained by subtracting the content of Al2O3 from the total content of Na2O and K2O is less than 10%, and when ZrO2 is contained, its content is at most 0.8%. Chemically tempered glass obtained by chemically tempering such glass for chemical tempering. Such chemically tempered glass has a compressive stress layer formed on the glass surface, which has a thickness of at least 30 ?m and a surface compressive stress of at least 550 MPa.
    Type: Application
    Filed: March 15, 2013
    Publication date: August 15, 2013
    Applicant: ASAHI GLASS COMPANY, LIMITED
    Inventor: ASAHI GLASS COMPANY, LIMITED
  • Patent number: 8507098
    Abstract: The various embodiments of the present invention are directed to wear resistant coatings, tiles having the wear resistant coatings disposed thereon, and to methods of making the coatings and tiles. A wear resistant coating generally includes a strontium aluminosilicate glass-ceramic composition that is formed from a glaze. The glaze can include a crystallizing component, which itself can include strontium, aluminum, and silicon, but also comprises less than about 2 weight percent each of lithium, boron, barium, sodium, iron, titanium, zirconium, and carbon, based on a total weight of the crystallizing component.
    Type: Grant
    Filed: May 13, 2009
    Date of Patent: August 13, 2013
    Assignees: Mohawk Carpet Corporation, Intercolor S.p.A.
    Inventors: Thomas Long, Claudio Ansaloni, Massimo Sernesi, David A. Earl
  • Publication number: 20130203584
    Abstract: A glass plate made of soda lime silica glass containing at least MgO, CaO, Na2O and Al2O3 produced by a float process or a downdraw method, wherein [MgO] is at least 4.5%, [MgO]/[CaO] is larger than 1, and Q=([MgO]/[CaO])×([CaO]+[Na2O]?[Al2O3]) is at least 20, wherein [MgO] is the content of MgO, [CaO] is the content of CaO, [Na2O] is the content of Na2O, and [Al2O3] is the content of Al2O3 (each being as represented by mass percentage based on oxide) and a process for the glass plate.
    Type: Application
    Filed: March 15, 2013
    Publication date: August 8, 2013
    Applicant: ASAHI GLASS COMPANY, LIMITED
    Inventor: ASAHI GLASS COMPANY, LIMITED
  • Publication number: 20130202715
    Abstract: An aluminosilicate glass for touch screens is provided. The glass includes, calculated based on weight percentage: SiO2, 55 to 65%; Na2O, 12 to 17%; Al2O3, 15 to 20%; K2O, 2 to 6%; MgO, 3.9 to 10%; ZrO2, 0 to 5%; ZnO, 0 to 4%; CaO, 0 to 4%; Na2O+K2O+MgO+ZnO+CaO, 15 to 28%; SnO2, 0 to 1%; TiO2+CeO2, ?1%. A chemical strengthening method for glass also provided that includes ion exchange strengthening in a 100% KNO3 salt bath, wherein a preheating temperature ranges from 370° C. to 430° C. and the treatment time is from 0.5 to 16 hours.
    Type: Application
    Filed: December 10, 2010
    Publication date: August 8, 2013
    Applicants: SCHOTT GLASS TECHNOLOGIES (SUZHOU) CO., LTD., SCHOTT AG
    Inventors: Chong Wang, José Zimmer
  • Patent number: 8497219
    Abstract: A highly temperature-resistant and chemically resistant glass and a glass fibre which have an improved UV light transmission, and the use thereof in UV-curable composites are disclosed. The glass/glass fibre according to the invention has a transition temperature >920° C., a light transmission of 80-92%, and consists of 58-62% SiO2, 11.0-15.5% Al2O3, 20-25% CaO, 0.1-0.8% MgO, 0.04-1.2% Na2O, 0.1-1.2 K2O, 0.2-1.8% TiO2, 0.05-0.5% Fe2O3 and 0.002-0.085 Cr2O3.
    Type: Grant
    Filed: December 4, 2008
    Date of Patent: July 30, 2013
    Inventor: Gerhard Bürger
  • Patent number: 8497220
    Abstract: The glass substrate for a solar cell of the present invention is characterized by having a glass composition including, in terms of mass %, 50 to 80% of SiO2, 5 to 20% of Al2O3, 0 to 20% of B2O3, 0 to 20% of MgO, 0 to 20% of CaO, 0 to 20% of SrO, 0 to 20% of BaO, 0.001 to 2% of SnO2, 0 to 1% of As2O3, having a mass ratio SnO2/(Fe2O3+SnO2) of 0.9 or more, and having a difference between transmittances at a wavelength of 400 nm before and after irradiation with ultraviolet ray of 2% or less.
    Type: Grant
    Filed: July 9, 2009
    Date of Patent: July 30, 2013
    Assignee: Nippon Electric Glass Co., Ltd.
    Inventor: Takashi Murata
  • Patent number: RE44869
    Abstract: An alkali aluminosilicate glass that is chemically strengthened and has a down-drawable composition. The glass has a melting temperature less than about 1650° C. and a liquidus viscosity of at least 130 kpoise and, in one embodiment, greater than 250 kpoise. The glass undergoes ion exchange at relatively low temperatures to a depth of at least 30 ?m.
    Type: Grant
    Filed: February 23, 2012
    Date of Patent: April 29, 2014
    Assignee: Corning Incorporated
    Inventors: Adam James Ellison, Sinue Gomez