Patents by Inventor Zhaijun WEN
Zhaijun WEN 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: 20250010515Abstract: A method and an apparatus for high-throughput preparation of a cement-based material are released and belong to the technical field of cement production. According to the technical solution of the present application, a single-mine, a single-phase or a unit components maintaining specific hydration hardening characteristics are used as structural units, and the method comprises the following steps that (1) the structural units are placed in storage tubes X1, X2, X3 . . . Xn respectively; (2) the materials in the storage pipes are put according to the composition design proportion of the cement-based material, and Y1, Y2, Y3 . . . Ym of mixed materials are prepared; (3) fully and uniformly mixing the Y1, Y2, Y3 . . . Ym of mixed materials through a uniform mixing device; and 4) respectively filling the Y1, Y2, Y3 . . . Ym of uniformly mixed materials into storage tanks Z1, Z2, Z3 . . . Zm to prepare m groups of cement-based material samples.Type: ApplicationFiled: March 1, 2023Publication date: January 9, 2025Inventors: Xuehong REN, Jiayuan YE, Xiao ZHI, Hongtao ZHANG, Di SHI, Wensheng ZHANG, Zhaijun WEN
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Patent number: 12065378Abstract: A method for preparing low-background cement includes: uniformly mixing a seed crystal of cement, C4AF whiskers, and high-magnesium raw material to yield a first mixture, calcining the first mixture at 1400-1500° C., to yield a low-background clinker, the first mixture including 1.0-5.0 wt. % of the seed crystal of cement, 1.0-5.0 wt. % of the C4AF whiskers, and the balance is the high-magnesium raw material; and grinding a second mixture of the low-background clinker and gypsum, to yield low-background cement. The seed crystal of cement is a high-magnesium and low hydration heat clinker, has a specific activity of Ra-226 radioactive nuclides within 50 Bq/kg, and the MgO content of the clinker is between 4.0 wt. % and 5.0 wt. %, with 50 wt. %?C3S?55.0 wt. %; and the high-magnesium raw material has a MgO content between 2.5 wt. % and 3.0 wt. %.Type: GrantFiled: May 12, 2023Date of Patent: August 20, 2024Assignee: CHINA BUILDING MATERIALS ACADEMY CO., LTD.Inventors: Wen Huang, Yang Yu, Min Wang, Zhaijun Wen, Tingting Bao, Guang Yao, Xin Shen, Yun Liu, Jing Wang, Xianbin Wang, Zhongcheng Ma, Xianshu Gao, Kunyue Zhang, Guanbao Tang, Suihua Guo, Mingming Sun, Ao Liu
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Patent number: 12030814Abstract: A method for preparing Portland cement includes: respectively weighing iron slag, copper slag, vanadium slag, and nickel slag and grinding, to yield prefabricated iron slag, prefabricated copper slag, prefabricated vanadium slag, and prefabricated nickel slag; weighing mica and kaolinite, mixing, and grinding to obtain aluminous raw materials; evenly mixing the prefabricated iron slag and the aluminous raw materials, and calcining, to yield an iron-aluminum eutectic mineral; weighing the marble, fluorite, dolomite, and quartz, evenly mixing the marble, fluorite, dolomite, and quartz with the prefabricated copper slag, prefabricated vanadium slag, and prefabricated nickel slag to yield a first mixture; grinding the iron-aluminum eutectic mineral to yield powders, and calcining a second mixture of the first mixture and the powders, to yield the cement clinker; and cooling the cement clinker, and grinding a third mixture of the cooled cement clinker and the gypsum, to yield the Portland cement.Type: GrantFiled: May 11, 2023Date of Patent: July 9, 2024Assignees: 1st Assignee: CHINA BUILDING MATERIALS ACADEMY CO., LTD., 2nd Assignee: CHINA NATIONAL BUILDING MATERIAL GROUP CO., LTD.Inventors: Kunyue Zhang, Xiao Zhi, Min Wang, Zhaijun Wen, Xiaopeng An, Wen Huang, Guang Yao, Yang Yu, Xin Shen
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Publication number: 20240067566Abstract: A method for preparing Portland cement includes: respectively weighing iron slag, copper slag, vanadium slag, and nickel slag and grinding, to yield prefabricated iron slag, prefabricated copper slag, prefabricated vanadium slag, and prefabricated nickel slag; weighing mica and kaolinite, mixing, and grinding to obtain aluminous raw materials; evenly mixing the prefabricated iron slag and the aluminous raw materials, and calcining, to yield an iron-aluminum eutectic mineral; weighing the marble, fluorite, dolomite, and quartz, evenly mixing the marble, fluorite, dolomite, and quartz with the prefabricated copper slag, prefabricated vanadium slag, and prefabricated nickel slag to yield a first mixture; grinding the iron-aluminum eutectic mineral to yield powders, and calcining a second mixture of the first mixture and the powders, to yield the cement clinker; and cooling the cement clinker, and grinding a third mixture of the cooled cement clinker and the gypsum, to yield the Portland cement.Type: ApplicationFiled: May 11, 2023Publication date: February 29, 2024Inventors: Kunyue ZHANG, Xiao ZHI, Min WANG, Zhaijun WEN, Xiaopeng AN, Wen HUANG, Guang YAO, Yang YU, Xin SHEN
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Publication number: 20240018048Abstract: A method for preparing low-background cement includes: uniformly mixing a seed crystal of cement, C4AF whiskers, and high-magnesium raw material to yield a first mixture, calcining the first mixture at 1400-1500° C., to yield a low-background clinker, the first mixture including 1.0-5.0 wt. % of the seed crystal of cement, 1.0-5.0 wt. % of the C4AF whiskers, and the balance is the high-magnesium raw material; and grinding a second mixture of the low-background clinker and gypsum, to yield low-background cement. The seed crystal of cement is a high-magnesium and low hydration heat clinker, has a specific activity of Ra-226 radioactive nuclides within 50 Bq/kg, and the MgO content of the clinker is between 4.0 wt. % and 5.0 wt. %, with 50 wt. % <C3S <55.0 wt. %; and the high-magnesium raw material has a MgO content between 2.5 wt. % and 3.0 wt. %.Type: ApplicationFiled: May 12, 2023Publication date: January 18, 2024Inventors: Wen HUANG, Yang YU, Min WANG, Zhaijun WEN, Tingting BAO, Guang YAO, Xin SHEN, Yun LIU, Jing WANG, Xianbin WANG, Zhongcheng MA, Xianshu GAO, Kunyue ZHANG, Guanbao TANG, Suihua GUO, Mingming SUN, Ao LIU
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Patent number: 10975284Abstract: A well cementation working solution prepared from red mud, slag and waste drilling fluids. The working solution is prepared from the following components in parts by weight: 100 parts of waste drilling fluids, 50-100 parts of slag, 5-50 parts of red mud, 4-7 parts of a suspension stabilizer, 1-7 parts of an activating aid, 0.5-5 parts of an anti-pollution agent and 0.4-3.5 parts of a diluent. The waste drilling fluids are waste waterborne drilling fluids. The slag is blast furnace slag or vanadium-titanium slag. The suspension stabilizer is sodium bentonite, carboxymethyl cellulose or a mixture of sodium bentonite and carboxymethyl cellulose. The activating aid is sodium metasilicate nonahydrate, sodium carbonate or a mixture of sodium metasilicate nonahydrate and sodium carbonate. The anti-pollution agent is sodium salicylate, potassium citrate or a mixture of sodium salicylate and potassium citrate. The diluent is sodium lignin sulfonate.Type: GrantFiled: July 13, 2018Date of Patent: April 13, 2021Assignees: SouthWest Petroleum University, China Academy of Building Research, CNPC Engineering Technology R&D Company LimitedInventors: Xiaowei Cheng, Dan Long, Kaiyuan Mei, Kaiqiang Liu, Gaoyin Zhang, Dan Qin, Xianshu Gao, Jianzhou Jin, Zhaijun Wen, Yongjin Yu, Chunmei Zhang, Zaoyuan Li, Xingguo Zhang, Xiaoyang Guo
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Patent number: 10876945Abstract: A method for evaluating the breakage strength of first and second cemented surfaces of well cementation under a dynamic load, includes: producing a rock-set cement-casing composite structure sample; clamping the sample between an incident rod and an output rod of a Hopkinson rod, hitting the incident rod with a conical punch to generate incident waves, enabling the incident waves to pass through the sample to generate reflected waves and projected waves, recording dynamic strain signals of incident waves, reflected waves and projected waves, and converting the dynamic strain signals into electrical signals and transmitting the electrical signals to a computer; recording the process and the corresponding time point from breakage starting to a complete breakage of the first and second cemented surfaces by a photographic instrument; obtaining a strain rate time travel curve and a stress-strain curve, and obtaining the corresponding breakage strength by analyzing the curve peak points.Type: GrantFiled: July 13, 2018Date of Patent: December 29, 2020Assignees: SOUTHWEST PETROLEUM UNIVERSITY, CHINA ACADEMY OF BUILDING RESEARCH, CNPC ENGINEERING TECHNOLOGY R&D COMPANY LIMITEDInventors: Xiaowei Cheng, Dan Qin, Kaiyuan Mei, Kaiqiang Liu, Gaoyin Zhang, Xianshu Gao, Jianzhou Jin, Zhaijun Wen, Yongjin Yu, Chunmei Zhang, Zaoyuan Li, Xingguo Zhang, Xiaoyang Guo
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Publication number: 20200071594Abstract: A well cementation working solution prepared from red mud, slag and waste drilling fluids. The working solution is prepared from the following components in parts by weight: 100 parts of waste drilling fluids, 50-100 parts of slag, 5-50 parts of red mud, 4-7 parts of a suspension stabilizer, 1-7 parts of an activating aid, 0.5-5 parts of an anti-pollution agent and 0.4-3.5 parts of a diluent. The waste drilling fluids are waste waterborne drilling fluids. The slag is blast furnace slag or vanadium-titanium slag. The suspension stabilizer is sodium bentonite, carboxymethyl cellulose or a mixture of sodium bentonite and carboxymethyl cellulose. The activating aid is sodium metasilicate nonahydrate, sodium carbonate or a mixture of sodium metasilicate nonahydrate and sodium carbonate. The anti-pollution agent is sodium salicylate, potassium citrate or a mixture of sodium salicylate and potassium citrate. The diluent is sodium lignin sulfonate.Type: ApplicationFiled: July 13, 2018Publication date: March 5, 2020Applicants: SouthWest Petroleum University, China Academy of Building Research, CNPC Engineering Technology R&D Company LimitedInventors: Xiaowei CHENG, Dan LONG, Kaiyuan MEI, Kaiqiang LIU, Gaoyin ZHANG, Dan QIN, Xianshu GAO, Jianzhou JIN, Zhaijun WEN, Yongjin YU, Chunmei ZHANG, Zaoyuan LI, Xingguo ZHANG, Xiaoyang GUO
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Publication number: 20200011777Abstract: A method for evaluating the breakage strength of first and second cemented surfaces of well cementation under a dynamic load, includes: producing a rock-set cement-casing composite structure sample; clamping the sample between an incident rod and an output rod of a Hopkinson rod, hitting the incident rod with a conical punch to generate incident waves, enabling the incident waves to pass through the sample to generate reflected waves and projected waves, recording dynamic strain signals of incident waves, reflected waves and projected waves, and converting the dynamic strain signals into electrical signals and transmitting the electrical signals to a computer; recording the process and the corresponding time point from breakage starting to a complete breakage of the first and second cemented surfaces by a photographic instrument; obtaining a strain rate time travel curve and a stress-strain curve, and obtaining the corresponding breakage strength by analyzing the curve peak points.Type: ApplicationFiled: July 13, 2018Publication date: January 9, 2020Applicants: SouthWest Petroleum University, China Academy of Building Research, CNPC Engineering Technology R&D Company LimitedInventors: Xiaowei CHENG, Dan QIN, Kaiyuan MEI, Kaiqiang LIU, Gaoyin ZHANG, Xianshu GAO, Jianzhou JIN, Zhaijun WEN, Yongjin YU, Chunmei ZHANG, Zaoyuan LI, Xingguo ZHANG, Xiaoyang GUO