Patents by Inventor Daming Zhang
Daming 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).
-
Patent number: 12600892Abstract: An abrasive article can include a body including agglomerated first abrasive particles and unagglomerated second abrasive particles contained in a bond material. The first abrasive particles can include chromium oxide. The second abrasive particles can include elongated abrasive particles. The bond material can include an inorganic material including a vitreous phase.Type: GrantFiled: June 30, 2022Date of Patent: April 14, 2026Assignees: SAINT-GOBAIN ABRASIVES, INC., SAINT-GOBAIN SURFACE SOLUTIONS FRANCEInventors: Daming Zhang, Yumeng Chen, Nilanjan Sarangi, Amandine Martin, Marcin P. Blicharski, Renaud Fix, Lu Lu, Zhongya Zhang
-
Publication number: 20250282676Abstract: An abrasive article can include a body including abrasive particles contained in the body and ceramic particles contained within a bond material. The ceramic particles can have an average particle size D50c of at least 2 microns and at most 75 microns. The abrasive particles can include an average particle size D50a greater than the average particle size D50c.Type: ApplicationFiled: May 22, 2025Publication date: September 11, 2025Inventors: Daming ZHANG, Nilanjian Sarangi, Zhongya Zhang
-
Patent number: 12338165Abstract: An abrasive article can include a body including abrasive particles contained in the body and ceramic particles contained within a bond material. The ceramic particles can have an average particle size D50c of at least 2 microns and at most 75 microns. The abrasive particles can include an average particle size D50a greater than the average particle size D50c.Type: GrantFiled: November 13, 2020Date of Patent: June 24, 2025Assignees: SAINT-GOBAIN ABRASIVES, INC., SAINT-GOBAIN ABRASIFSInventors: Daming Zhang, Nilanjan Sarangi, Zhongya Zhang, Lu Lu
-
Publication number: 20230402316Abstract: The present disclosure relates to a semiconductor structure and a method for forming the semiconductor structure. The semiconductor structure includes: a first wafer, including a first substrate and a first dielectric layer on the first substrate, a pad groove and a pad structure in the pad groove are formed in the first substrate and the first dielectric layer, and the pad groove extends through the first substrate along a direction from the first substrate to the first dielectric layer and extends into a partial thickness of the first dielectric layer; and an isolation ring structure, arranged in the first substrate around the pad groove and extending through the first substrate along the direction from the first substrate to the first dielectric layer.Type: ApplicationFiled: May 26, 2023Publication date: December 14, 2023Applicants: Semiconductor Manufacturing International (Beijing) Corporation, Semiconductor Manufacturing International (Shanghai) CorporationInventors: Bingquan WANG, Siriguleng Zhang, Dayong Yan, Zhigao Wang, Daming Zhang
-
Publication number: 20230384334Abstract: A method for calculating drinking time includes: drawing a plurality of blood samples within 0 to 120 h upon start of drinking, testing concentrations of alcohol, EtG and EtS in the blood samples, and obtaining an average concentration ratio CEtG/CEtS; obtaining a quadratic regression equation by fitting using the average concentration ratio CEtG/CEtS as an abscissa and sampling time as an ordinate; and measuring CEtG/CEtS of blood samples under test, obtaining a relationship between the drinking time and the CEtG/CEtS based on the quadratic regression equation, and calculating the drinking time.Type: ApplicationFiled: August 14, 2023Publication date: November 30, 2023Inventors: Keming Yun, Lele Wang, Wei Zhang, Ruilong Wang, Yongli Guang, Daming Zhang, Chao Zhang, Meng Hu, Zhiwen Wei, Wenfang Zhang, Zhongyuan Guo
-
Patent number: 11691247Abstract: An abrasive article includes a body having a bond material extending throughout the body and abrasive particles contained in the bond material. The bond material can include aluminum oxide (Al2O3) and lithium oxide (Li2O). In an embodiment, the bond material can include a ratio (Al2O3/Li2O) of a content of aluminum oxide (Al2O3) relative to a content of lithium oxide (Li2O), based on weight percent, of greater than 11.5 and at most 20. In another embodiment, the abrasive article can have a versatility factor of greater than 1.90.Type: GrantFiled: December 28, 2018Date of Patent: July 4, 2023Assignees: SAINT-GOBAIN ABRASIVES, INC., SAINT-GOBAIN ABRASIFSInventors: Nilanjan Sarangi, Guangyong Lin, Sandhya Jayaraman Rukmani, Stephen E. Fox, Daming Zhang
-
Publication number: 20230018635Abstract: An abrasive article can include a body including agglomerated first abrasive particles and unagglomerated second abrasive particles contained in a bond material. The first abrasive particles can include chromium oxide. The second abrasive particles can be elongated. The bond material can include an inorganic material including a vitreous phase.Type: ApplicationFiled: June 30, 2022Publication date: January 19, 2023Inventors: Daming Zhang, Yumeng Chen, Nilanjan Sarangi, Amandine Martin, Marcin P. Blicharski, Renaud Fix, Lu Lu, Zhongya Zhang
-
Publication number: 20210147284Abstract: An abrasive article can include a body including abrasive particles contained in the body and ceramic particles contained within a bond material. The ceramic particles can have an average particle size D50c of at least 2 microns and at most 75 microns. The abrasive particles can include an average particle size D50a greater than the average particle size D50c.Type: ApplicationFiled: November 13, 2020Publication date: May 20, 2021Inventors: Daming ZHANG, Nilanjan SARANGI, Zhongya ZHANG, Lu LU
-
Patent number: 11011967Abstract: This invention discloses a significantly improved linear machine system used for massive energy storage with vertical movement of heavy mass placed in containers. It adopts distributed rotor or mover structure to minimize the fringing effect and thereby enhancing effective lifting force. It further adopts the pulse transitional current to those non-transitional rows of rotor or mover conductors when the transitional rotor or mover coils cross the boundary between the magnetic and non-magnetic layers of the stator.Type: GrantFiled: April 10, 2019Date of Patent: May 18, 2021Inventor: Daming Zhang
-
Publication number: 20200304006Abstract: This invention discloses a significantly improved linear machine system used for massive energy storage with vertical movement of heavy mass placed in containers. It adopts distributed rotor or mover structure to minimize the fringing effect and thereby enhancing effective lifting force. It further adopts the pulse transitional current to those non-transitional rows of rotor or mover conductors when the transitional rotor or mover coils cross the boundary between the magnetic and non-magnetic layers of the stator.Type: ApplicationFiled: April 10, 2019Publication date: September 24, 2020Inventor: Daming ZHANG
-
Patent number: 10418916Abstract: This invention presents a new circuit topology formed by passive filter LCCL or LCC and voltage source DC/AC converter, which is named as fundamental forming unit. Compared with conventional LCL filter based DC/AC converter, the new converter circuits can handle wider range of power without suffering from disturbance by harmonic voltages and currents. For high voltage and high power application, circuits with multiple stages and multiple parallel branches are developed based on multiple fundamental forming units. Such circuits can be for general purpose application. They can also be for microgrid applications. Furthermore a new series of multistage DC/AC converters with LCL filter have also been developed to handle high power conversion at high voltage and high current levels.Type: GrantFiled: September 30, 2016Date of Patent: September 17, 2019Inventor: Daming Zhang
-
Publication number: 20190210191Abstract: An abrasive article includes a body having a bond material extending throughout the body and abrasive particles contained in the bond material. The bond material can include aluminum oxide (Al2O3) and lithium oxide (Li2O). In an embodiment, the bond material can include a ratio (Al2O3/Li2O) of a content of aluminum oxide (Al2O3) relative to a content of lithium oxide (Li2O), based on weight percent, of greater than 11.5 and at most 20. In another embodiment, the abrasive article can have a versatility factor of greater than 1.90.Type: ApplicationFiled: December 28, 2018Publication date: July 11, 2019Inventors: Nilanjan SARANGI, Guangyong LIN, Sandhya JAYARAMAN RUKMANI, Stephen E. FOX, Daming ZHANG
-
Publication number: 20190123662Abstract: This invention presents a new circuit topology formed by passive filter LCCL or LCC and voltage source DC/AC converter, which is named as fundamental forming unit. Compared with conventional LCL filter based DC/AC converter, the new converter circuits can handle wider range of power without suffering from disturbance by harmonic voltages and currents. For high voltage and high power application, circuits with multiple stages and multiple parallel branches are developed based on multiple fundamental forming units. Such circuits can be for general purpose application. They can also be for microgrid applications. Furthermore a new series of multistage DC/AC converters with LCL filter have also been developed to handle high power conversion at high voltage and high current levels.Type: ApplicationFiled: September 30, 2016Publication date: April 25, 2019Inventor: Daming ZHANG
-
Publication number: 20110039101Abstract: A method of preparing electrospun fiber tubular material comprises: using single metal rod template or two-dimensional or three-dimensional metal rod combined-template which has cross structure and is composed of the said single metal rod templates to prepare tubular electrospun fiber material by controlling electrospinning process parameters. The method could control the macro-structure and micro-structure of the tubular electrospun fiber material by adjusting template parameters. The tubular electrospun fiber material obtained from the method could be used in such fields as biomedical material, tissue engineering scaffold, photo-electric material, filtering material and sensor etc.Type: ApplicationFiled: April 20, 2009Publication date: February 17, 2011Applicant: SHANGHAI INSTITUTE OF CERAMICS, CHINESE ACADEMY OF SCIENCESInventors: Jiang Chang, Daming Zhang
-
Patent number: 6885265Abstract: First and second electrically conductive rods are provided inside a shielded electromagnetic test chamber. These rods are energized to radiate electromagnetic energy inside the chamber. The rods are mounted inside the chamber at right angles to one another, the first rod is movable through the interior volume in a first direction perpendicular to its long axis, and the second rod is movable through the chamber in a second direction perpendicular both to its own long axis and to the first rod's direction of motion. Energy is supplied to the two rods in a way that enhances the uniformity of the electromagnetic field applied to a working volume inside the chamber as the two rods move through the chamber.Type: GrantFiled: August 29, 2002Date of Patent: April 26, 2005Assignee: Institute of High Performance ComputingInventors: Erping Li, Sheng Wang, Daming Zhang
-
Publication number: 20030184417Abstract: First and second electrically conductive rods are provided inside a shielded electromagnetic test chamber. These rods are energized to radiate electromagnetic energy inside the chamber. The rods are mounted inside the chamber at right angles to one another, the first rod is movable through the interior volume in a first direction perpendicular to its long axis, and the second rod is movable through the chamber in a second direction perpendicular both to its own long axis and to the first rod's direction of motion. Energy is supplied to the two rods in a way that enhances the uniformity of the electromagnetic field applied to a working volume inside the chamber as the two rods move through the chamber.Type: ApplicationFiled: August 29, 2002Publication date: October 2, 2003Applicant: INSTITUTE OF HIGH PERFORMANCE COMPUTINGInventors: Erping Li, Sheng Wang, Daming Zhang