Patents by Inventor Yuqiang Zhang
Yuqiang Zhang has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).
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Publication number: 20190100453Abstract: Provided are a high-performance glass fiber composition, and a glass fiber and composite material thereof. The content, given in weight percentage, of each component of the glass fibre composition is as follows: 52-64% of SiO2, 12-24% of Al2O3, 0.05-8% of Y2O3+La2O3+Gd2O3, less than 2.5% of Li2O+Na2O+K2O, more than 1% of K2O, 10-24% of CaO+MgO+SrO, 2-14% of CaO, less than 13% of MgO, less than 2% of TiO2, and less than 1.5% of Fe2O3. The composition significantly increases the mechanical strength and the elastic modulus of glass, significantly reduces the liquidus temperature and the forming temperature of glass, and under equal conditions, significantly reduces the crystallization rate, the surface tension and the bubble rate of glass. The composition is particularly suitable for the tank furnace production of a high-strength high-modulus glass fiber having a low bubble rate.Type: ApplicationFiled: March 21, 2016Publication date: April 4, 2019Applicant: JUSHI GROUP CO., LTD.Inventors: Yuqiang ZHANG, Guorong CAO, Lin ZHANG, Wenzhong XING, Xiucheng HONG
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Patent number: 10239781Abstract: The present invention provides a high-modulus glass fiber composition, a glass fiber and a composite material therefrom. The glass fiber composition comprises the following components expressed as percentage by weight: 55-64% SiO2, 13-24% Al2O3, 0.1-6% Y2O3, 3.4-10.9% CaO, 8-14% MgO, lower than 22% CaO+MgO+SrO, lower than 2% Li2O+Na2O+K2O, lower than 2% TiO2, lower than 1.5% Fe2O3, 0-1.2% La2O3, wherein the range of the weight percentage ratio C1=(Li2O+Na2O+K2O)/(Y2O3+La2O3) is greater than 0.26. Said composition can significantly increase the glass elastic modulus, effectively inhibit the crystallization tendency of glass, decrease the liquidus temperature, secure a desirable temperature range (?T) for fiber formation and enhance the fining of molten glass, thus making it particularly suitable for production of high-modulus glass fiber with refractory-lined furnaces.Type: GrantFiled: March 7, 2016Date of Patent: March 26, 2019Assignee: JUSHI GROUP CO., LTD.Inventors: Yuqiang Zhang, Guorong Cao, Lin Zhang, Wenzhong Xing
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Publication number: 20190077699Abstract: Provided are a high performance glass fiber composition, and a glass fiber and a composite material thereof. The content, given in weight percentage, of each component of the glass fiber composition is as follows: 52-67% of SiO2, 12-24% of Al2O3, 0.05-4.5% of Sm2O3+Gd2O3, less than 2% of Li2O+Na2O+K2O, 10-24% of CaO+MgO+SrO, less than 16% of CaO, less than 13% of MgO, less than 3% of TiO2, and less than 1.5% of Fe2O3. The composition significantly improves the mechanical properties and the thermal stability of glass, significantly reduces the liquidus temperature and forming temperature of glass, and under equal conditions, significantly reduces the crystallisation rate of glass. The composition is particularly suitable for the tank furnace production of a high performance glass fiber having excellent thermal stability.Type: ApplicationFiled: March 21, 2016Publication date: March 14, 2019Applicant: JUSHI SCIENCE & TECHNOLOGY BUILDING, 669 WENHUA ROAD (SOUTH),Inventors: Yuqiang ZHANG, Gourong CAO, LIn ZHANG, Wenzhong XING, Guijiang GU
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Publication number: 20190010077Abstract: A high modulus glass fiber composition, and a glass fiber and a composite material thereof. The glass fiber composition comprises the following components expressed as percentage by weight: 53-68% of SiO2, 13-24.5% of Al2O3, 0.1-8% of Y2O3+La2O3, less than 1.8% of La2O3, 10-23% of CaO+MgO+SrO, less than 2% of Li2O+Na2O+K2O, and less than 1.5% of Fe2O3, and the range of a weight percentage ratio C1 is more than 0.5, wherein C1=Y2O3/(Y2O3+La2O3). The composition significantly increases the elastic modulus of glass, significantly reduces the liquidus temperature and the forming temperature of glass, and under equal conditions, significantly reduces the crystallization rate and the bubble rate of glass. The composition effectively improves the material properties of glass, and is particularly suitable for the tank furnace production of a high modulus glass fiber having a low bubble rate.Type: ApplicationFiled: March 7, 2016Publication date: January 10, 2019Applicant: JUSHI GROUP CO., LTD.Inventors: Yuqiang ZHANG, Guorong CAO, Lin ZHANG, Wenzhong XING, Guijiang GU
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Publication number: 20180186688Abstract: A high-modulus glass fiber composition, and a glass fiber and a composite material therefrom. The glass fiber composition comprises the following components in weight percentage: SiO2 55.7 to 58.9%, Al2O3 15 to 19.9%, Y2O3 0.1 to 4.3%, La2O3 less than or equal to 1.5%, CeO2 less than or equal to 1.2%, CaO 6 to 10%, MgO 9.05 to 9.95%, SrO less than or equal to 2%, Li2O+Na2O+K2O less than or equal to 0.99%, Li2O less than or equal to 0.65%, Fe2O3 less than 1%, TiO2 0.1 to 1.5%; wherein, the range of the weight percentage ratio C1=Y2O3/(Y2O3+La2O3+CeO2) is greater than 0.6. The composition can greatly improve the elastic modulus of glass, significantly reduce liquidus temperature and forming temperature of the glass, greatly reduce the crystallization rate of molten glass and bubble amount under the same conditions, and therefore is more suitable for large-scale tank furnace production of high-modulus fiberglass with low bubble amount.Type: ApplicationFiled: June 16, 2016Publication date: July 5, 2018Applicant: JUSHI GROUP CO., LTD.Inventors: Yuqiang ZHANG, Guorong CAO, Lin ZHANG, Wenzhong XING, Guijiang GU
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Publication number: 20180179103Abstract: The present invention provides a high-modulus glass fiber composition, a glass fiber and a composite material therefrom. The glass fiber composition comprises the following components expressed as percentage by weight: 55-64% SiO2, 13-24% Al2O3, 0.1-6% Y2O3, 3.4-10.9% CaO, 8-14% MgO, lower than 22% CaO+MgO+SrO, lower than 2% Li2O+Na2O+K2O, lower than 2% TiO2, lower than 1.5% Fe2O3, 0-1.2% La2O3, wherein the range of the weight percentage ratio C1=(Li2O+Na2O+K2O)/(Y2O3+La2O3) is greater than 0.26. Said composition can significantly increase the glass elastic modulus, effectively inhibit the crystallization tendency of glass, decrease the liquidus temperature, secure a desirable temperature range (?T) for fiber formation and enhance the fining of molten glass, thus making it particularly suitable for production of high-modulus glass fiber with refractory-lined furnaces.Type: ApplicationFiled: March 7, 2016Publication date: June 28, 2018Applicant: JUSHI GROUP CO., LTD.Inventors: Yuqiang ZHANG, Guorong CAO, Lin ZHANG, Wenzhong XING
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Publication number: 20180179104Abstract: The present invention provides a glass fibre composition, a glass fibre and a composite material therefrom. The glass fibre composition comprises the following components expressed as percentage by weight: 53-64% SiO2, greater than 19% and lower than 25% Al2O3, 0.05-7% Y2O3+La2O3+Gd2O3, not greater than 1% Li2O+Na2O+K2O, 10-24% CaO+MgO+SrO, 1.5-12% CaO, lower than 2% TiO2, lower than 1.5% Fe2O3.Type: ApplicationFiled: March 21, 2016Publication date: June 28, 2018Applicant: JUSHI GROUP CO., LTD.Inventors: Yuqiang ZHANG, Guorong CAO, Lin ZHANG, Wenzhong XING, Guijiang GU
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Patent number: 9428414Abstract: A composition for preparing high-performance glass fiber by tank furnace production comprising in preferred percentage by weight: 57.5˜62.5% of SiO2,14.5˜17.5% of Al2O3,13.5˜17.5% of CaO,6.5˜8.5% of MgO,0.05˜0.6% of Li2O,0.1˜2% of B2O3,0.1˜2% of TiO2,0.1˜2% of Na2O,0.1˜1% of K2O and 0.1˜1% of Fe2O3 and (CaO+MgO)/MgO>3, with the content of at least one of the three components, Li2O, B2O3 and TiO2higher than 0.5%, with the composition yielding glass fiber having improved mechanical property, causing the melting and clarification of glass and forming performance of fiber close to those of boron-free E glass, and facilitating industrial mass production by tank furnace processes with manufacturing costs close to those of conventional E glass.Type: GrantFiled: November 17, 2014Date of Patent: August 30, 2016Assignee: Jushi Group Co., Ltd.Inventors: Yuqiang Zhang, Guorong Cao, Bing Zhang, Lin Zhang, Wenzhong Xing, Guijiang Gu
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Publication number: 20160032166Abstract: The present invention provides a hot melt adhesive composition and a preparation method therefor, and a hot melt adhesive heat-conducting sheet and a preparation method therefor on a basis of the hot melt adhesive composition. The hot melt adhesive composition at least comprises: 6 to 9 parts of thermoplastic resin, 0.40 to 0.60 parts of tackifier, and 73 to 110 parts of heat-conducting particles by weight, the softening point of the thermoplastic resin ranging from 85 to 120 degrees centigrade.Type: ApplicationFiled: January 22, 2014Publication date: February 4, 2016Inventors: Yuqiang ZHANG, Billy TIAN
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Patent number: 9143297Abstract: The present disclosure discloses a method and a device for transmitting data. The method includes: a UE determining, according to a preset rule, whether to transmit PUCCH and/or PUSCH and/or an SRS or not on a last symbol of a current subframe; the UE determining the PUCCH and/or the PUSCH to be transmitted on the current subframe according to availability of the last symbol of the current subframe for transmitting the PUCCH and/or the PUSCH; and the UE transmitting the PUCCH and/or the PUSCH on the current subframe and/or transmitting the SRS on the last symbol of the current subframe. In virtue of the present disclosure, it can be realized that a plurality of types of physical uplink signals/channels are simultaneously transmitted.Type: GrantFiled: July 21, 2011Date of Patent: September 22, 2015Assignee: ZTE CorporationInventors: Chunli Liang, Bo Dai, Bin Yu, Weiwei Yang, Yuqiang Zhang
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Publication number: 20150259240Abstract: A composition for preparing high-performance glass fiber by tank furnace production comprising in preferred percentage by weight: 57.5˜62.5% of SiO2, 14.5˜17.5% of Al2O3, 13.5˜17.5% of CaO, 6.5˜8.5% of MgO, 0.05˜0.6% of Li2O, 0.1˜2% of B2O3, 0.1˜2% of TiO2, 0.1˜2% of Na2O, 0.1˜1% of K2O and 0.1˜1% of Fe2O3 and (CaO+MgO)/MgO>3, with the content of at least one of the three components, A2O, B2O3 and TIO2 higher than 0.5%, with the composition yielding glass fiber having improved mechanical property, causing the melting and clarification of glass and forming performance of fiber close to those of boron-free E glass, and facilitating industrial mass production by tank furnace processes with manufacturing costs close to those of conventional E glass.Type: ApplicationFiled: November 17, 2014Publication date: September 17, 2015Inventors: Yuqiang Zhang, Guorong Cao, Bing Zhang, Lin Zhang, Wenzhong Xing, Guijiang Gu
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Patent number: 8912107Abstract: A composition for preparing high-performance glass fiber by tank furnace production comprising in preferred percentage by weight: 57.5˜62.5% of SiO2, 14.5˜17.5% of Al2O3, 13.5˜17.5% of CaO, 6.5˜8.5% of MgO, 0.05˜0.6% of Li2O, 0.1˜2% of B2O3, 0.1˜2% of TiO2, 0.1˜2% of Na2O, 0.1˜1% of K2O and 0.1˜1% of Fe2O3 and (CaO+MgO)/MgO>3, with the content of at least one of the three components, A2O, B2O3 and TlO2 higher than 0.5%, with the composition yielding glass fiber having improved mechanical property, causing the melting and clarification of glass and forming performance of fiber close to those of boron-free E glass, and facilitating industrial mass production by tank furnace processes with manufacturing costs close to those of conventional E glass.Type: GrantFiled: May 18, 2011Date of Patent: December 16, 2014Assignee: Jushi Group Co., Ltd.Inventors: Yuqiang Zhang, Guorong Cao, Bing Zhang, Lin Zhang, Wenzhong Xing, Guijiang Gu
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Patent number: 8787224Abstract: The present invention discloses a method and system for feeding back an acknowledgement/negative-acknowledgement response message on a physical uplink control channel. The method includes: sending, by a user equipment, an acknowledgement/negative-acknowledgement response message by adopting a manner based on a channel selection or based on a DFT-s-OFDM in a multiplexing mode according to a feedback manner or a feedback rule in the multiplexing mode configured by a base station. In the present invention, the base station can configure for the user equipment and directly indicate to the user equipment through the higher layer signaling the feedback manner in the multiplexing mode, and can also configure the feedback rule in the multiplexing mode for the user equipment; and the user equipment determines the feedback manner in the multiplexing mode according to the feedback manner or feedback rule configured by the base station.Type: GrantFiled: February 11, 2011Date of Patent: July 22, 2014Assignee: ZTE CorporationInventors: Chunli Liang, Bo Dai, Peng Hao, Yuqiang Zhang
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Patent number: 8767658Abstract: A method for sending uplink scheduling grant signaling and a base station, applied in an Advanced Long Term Evolution (LTE-A) system, the method includes: a base station, according to a number of clusters occupied with non-consecutive resource allocation by a Physical Uplink Shared Channel (PUSCH) of a scheduled user equipment in a component carrier, configuring at least one uplink scheduling grant signaling for the user equipment, wherein each uplink scheduling grant signaling indicates an allocation of resource for one or two clusters occupied by the PUSCH; and the base station allocating a Physical Downlink Control Channel (PDCCH) for each uplink scheduling grant signaling, and sending the uplink scheduling grant signaling to the user equipment. The flexibility of the resource allocation in the case of multiple clusters is enhanced, meanwhile the reliability of transmission of the scheduling grant signaling is ensured.Type: GrantFiled: June 30, 2010Date of Patent: July 1, 2014Assignee: ZTE CorporationInventors: Peng Zhu, Peng Hao, Bin Yu, Yuqiang Zhang, Yuxin Wang, Bo Jin
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Patent number: 8537752Abstract: The present invention discloses an information multiplexing method, comprising: coding multiple feedback information according to number of the feedback information and a linear block code sequence, and truncating corresponding coded information according to a target length of the feedback information coded (S302); dividing the truncated coded information into multiple feedback information logic units sequentially, and multiplexing together the multiple feedback information logic units, multiple rank indication information logic units, multiple control information logic units and data information logic units are; wherein the control information logic units, the multiple rank indication information logic units, the data information logic units, and the feedback information logic units contain the same bit number (S304). Transmission of more than two ACK/NACKs is achieved by the present invention and transmission performance of the system is improved.Type: GrantFiled: January 21, 2009Date of Patent: September 17, 2013Assignee: ZTE CorporationInventors: Bo Dai, Peng Hao, Chunli Liang, Guanghui Yu, Yuqiang Zhang
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Publication number: 20130203583Abstract: A composition for preparing high-performance glass fiber by tank furnace production comprising in preferred percentage by weight: 57.5˜62.5% of SiO2, 14.5˜17.5% of Al2O3, 13.5˜17.5% of CaO, 6.5˜8.5% of MgO, 0.05˜0.6% of Li2O, 0.1˜2% of B2O3, 0.1˜2% of TiO2, 0.1˜2% of Na2O, 0.1˜1% of K2O and 0.1˜1% of Fe2O3 and (CaO+MgO)/MgO>3, with the content of at least one of the three components, A2O, B2O3 and TlO2 higher than 0.5%, with the composition yielding glass fiber having improved mechanical property, causing the melting and clarification of glass and forming performance of fiber close to those of boron-free E glass, and facilitating industrial mass production by tank furnace processes with manufacturing costs close to those of conventional E glass.Type: ApplicationFiled: May 18, 2011Publication date: August 8, 2013Applicant: Jushi Group Co., Ltd.Inventors: Yuqiang Zhang, Guorong Cao, Bing Zhang, Lin Zhang, Wenzhong Xing, Guijiang Gu
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Patent number: 8437270Abstract: The present invention provides a method for transmitting reference signals comprising: during carrier aggregation, a user equipment sending physical uplink shared channel (PUSCH) on one or more component carriers, and sending demodulation reference signals (DM RS) for the PUSCH on each section of bandwidth occupied by the PUSCH on each component carrier, wherein a DM RS sequence on a section of bandwidth is an independent sequence or part of an independent sequence and forms an independent sequence with DM RS sequences on multiple sections of bandwidth other than the section of bandwidth; the section of bandwidth is a section of continuous bandwidth occupied by the PUSCH on any component carrier, or is any of the multiple sections of bandwidth occupied by the PUSCH on any component carrier. The Present invention further provides a corresponding apparatus.Type: GrantFiled: June 29, 2010Date of Patent: May 7, 2013Assignee: ZTE CorporationInventors: Peng Zhu, Peng Hao, Bin Yu, Yuqiang Zhang, Yuxin Wang, Rong Zhang
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Patent number: 8334228Abstract: This invention involves a fiberglass composition containing the following components: SiO2, Al2O3, CaO, MgO, B2O3, F2, TiO2, K2O, Na2O, Fe2O3 and SO3. The weight percentage of each of the components are as follows: SiO2 58˜65%, CaO 20˜26%, Al2O3 9˜17%, MgO 0.5˜1%, B2O3 0˜5%, F2 0˜1%, TiO2 0.1˜1%, K2O+Na2O 0˜0.8%, Fe2O3 0.1˜0.5%, SO3 0˜0.6%. The ternary system, SiO2—Al2O3—CaO, is basis of the fiberglass composition in this invention, which also has low quantities of MgO and B2O3. In addition, the total amount of alkaline earth oxide and the proportional relationship between MgO and CaO are rationally designed, which helps to improve the mechanical strength, heat resistance, and chemical stability of the glass. It also has excellent manufacturing performance. Moreover, the raw materials of the fiberglass composition in this invention are low in cost, and the invention meets environmental protection requirements.Type: GrantFiled: December 14, 2009Date of Patent: December 18, 2012Assignee: Jushi Group Co. Ltd.Inventors: Yuqiang Zhang, Guorong Cao, Bing Zhang, Lin Zhang, Wenzhong Xing, Guijiang Gu
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Patent number: D822543Type: GrantFiled: May 26, 2017Date of Patent: July 10, 2018Assignee: GREAT WALL MOTOR COMPANY LIMITEDInventors: Yanjun Ge, Yuqiang Zhang, Ying Qi, Yanqing Yang, Song Wang, Ze Yuan
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Patent number: D824294Type: GrantFiled: May 23, 2017Date of Patent: July 31, 2018Assignee: GREAT WALL MOTOR COMPANY LIMITEDInventors: Yanjun Ge, Yuqiang Zhang, Hua Dai, Dawei Xie, Shanshan Guo, Dongxing Zhang, Xiangfeng Zeng, Yang Liu, Peng Liao, Zhaoguo Li, Pengkai Liu, Jie Yao, Jingyang Li, Zhengkun Yao, Xuechao Mei, Qing Sun