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1.
公开(公告)号:US11155419B1
公开(公告)日:2021-10-26
申请号:US17042952
申请日:2019-07-26
Applicant: China University of Mining and Technology
Inventor: Hao Lu , Zhencai Zhu , Fan Jiang , Wei Li , Yuxing Peng , Gongbo Zhou , Gang Shen , Dagang Wang , Yu Tang , Xiang Li
Abstract: The present invention discloses a dynamic reliability evaluation method for coupling faults of a middle trough of a scraper conveyor. Approximation precision of a moment-based saddlepoint approximation method and a function attribute of dynamic t-copula are fully utilized, and the dynamic reliability evaluation method for the coupling faults of the middle trough of the scraper conveyor is provided, so that dynamic correlation between failure modes of the middle trough of the scraper conveyor under a small sample condition is more accurately described, and accuracy of dynamic reliability evaluation of the coupling faults of the middle trough of the scraper conveyor is improved.
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2.
公开(公告)号:US11919748B2
公开(公告)日:2024-03-05
申请号:US18022846
申请日:2022-05-23
Applicant: CHINA UNIVERSITY OF MINING AND TECHNOLOGY , Changzhou Development & Manufacture Centre Co., Ltd. , XUZHOU COAL MINE SAFETY EQUIPMENT MANUFACTURE CO., LTD.
Inventor: Chi Ma , Yuxing Peng , Zhencai Zhu , Meilin Wang , Changhua Hu , Fahui Shi , Xingming Xiao , Jun Qian , Fan Jiang , Yunwang Li , Dagang Wang , Qihang Yu
Abstract: A hoist for transferred materials in an underground auxiliary transportation system and a method thereof. The hoist includes a hoist body, guiding plates mounted at two ends of the hoist body through bolts, twist locks mounted at four ends of the hoist body, a driving unit configured to drive twist locks to rotate, transmission assemblies configured to connect the twist locks with the driving unit, ejector pins configured to prevent the twist locks from rotating mistakenly, and a sensor configured to control the hoist to operate and provide protection safety.
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3.
公开(公告)号:US10824781B2
公开(公告)日:2020-11-03
申请号:US16333218
申请日:2017-12-07
Applicant: CHINA UNIVERSITY OF MINING AND TECHNOLOGY
Inventor: Hao Lu , Zhencai Zhu , Gongbo Zhou , Yuxing Peng , Guohua Cao , Wei Li , Gang Shen , Dagang Wang , Fan Jiang
IPC: G06F30/23 , E21F13/00 , G06F30/17 , G06F111/04 , G06F111/08 , G06F111/10
Abstract: A reliability robust design method for multiple failure modes of an ultra-deep well hoisting container, including: defining randomness of a structural parameter, a material property, and a dynamic load of a hoisting container, and solving a random response of a structural failure for a random parameter using a design of experiment method; establishing reliability performance functions of each failure modes in accordance with failure criterion of the hoisting container; establishing a joint probability model of correlated failures using a copula theory in consideration of probability correlation between the failure modes; establishing, a system reliability model with failure correlation of the hoister container; establishing a sensitivity model concerning each random parameter for system reliability of the hoisting container; and establishing, in conjunction with an optimization design model, a reliability robust optimization design model for the hoisting container using a joint failure probability and parameter sensitivity as constraints.
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公开(公告)号:US11440740B2
公开(公告)日:2022-09-13
申请号:US17418853
申请日:2019-11-26
Applicant: China University of Mining and Technology
Inventor: Dagang Wang , Ruixin Wang , Zhencai Zhu , Huilong Zhu , Gang Shen , Xiang Li , Yu Tang
Abstract: A frictional force monitoring system for middle troughs of a scraper conveyor, comprising a scraper conveyor system and a sensing detection system. The scraper conveyor system consists of a machine body, middle troughs, thrust lugs, scrapers, a double chain, a sprocket, a speed reducer, an electric motor and a frequency converter. The sensing monitoring system consists of force receiving modules, a three-dimensional force sensor, and a pre-embedded temperature sensor. The frictional force monitoring system is able to monitor impact loads, frictional forces, friction coefficients, temperature, etc. between an annular chain, coal bulk, and middle troughs of the scraper conveyor under complex and severe operating conditions, and to provide the technical means for the design, safety early-warning and health evaluation of the scraper conveyor, and can provide a data basis for studying friction wear and fatigue breaking mechanism of middle troughs of a scraper machine.
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公开(公告)号:US10989695B2
公开(公告)日:2021-04-27
申请号:US16760040
申请日:2019-07-01
Applicant: China University of Mining and Technology
Inventor: Zhencai Zhu , Hao Lu , Shuang Cao , Yuxing Peng , Gongbo Zhou , Guohua Cao , Gang Shen , Wei Li , Dagang Wang , Fan Jiang
Abstract: Disclosed are an online monitoring system for a crack on a hoist spindle and an operation method thereof. The system comprises: a rope power part, a crack detection part, a wireless transmission part, and a computer. The rope power part comprises two traction ropes, two guide wheels, two stepper motors, and two stepper motor drivers. The crack detection part comprises a spiral tube guide rail, a sliding body, and an ultrasonic generator. The wireless transmission part comprises three zigbee wireless sensing modules. The zigbee wireless sensing modules receive instructions from the computer and transmit the instructions to the stepper motor drivers to control the motors to rotate. The stepper motors drive the guide wheels to rotate to realize the winding of the ropes, so as to pull the sliding body to slide on the spiral tube guide rail. The ultrasonic generator clamped on the sliding body monitors the rotating spindle along the spiral tube guide rail. The zigbee wireless sensing modules transmit the detected data to the computer in real time. The present invention can effectively monitor a hoist spindle in time before a failure occurs, thereby avoiding safety accidents.
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6.
公开(公告)号:US10882700B1
公开(公告)日:2021-01-05
申请号:US16967735
申请日:2019-09-12
Applicant: China University of Mining and Technology , ANHUI UNIVERSITY OF SCIENCE AND TECHNOLOGY , HUAIHAI INSTITUTE OF TECHOLOGY
Inventor: Yu Tang , Zhencai Zhu , Gang Shen , Yongcun Guo , Xiang Li , Jinsong Chen , Tongqing Li , Dagang Wang , Guohua Cao , Wei Li , Gongbo Zhou , Yuxing Peng , Hao Lu
Abstract: The present invention discloses an embedded scraper rotation angle detection device for a scraper conveyor and a detection method. The detection device includes two extensible detection devices, two signal detection units and a remote processing unit. The two extensible detection devices and the two signal detection units are disposed at two ends of a scraper respectively. The signal detection units detect movement displacements of the extensible detection devices in real time and send out signals through wireless transmission modules, the wireless transmission modules and a wireless receiving module are used for data transmission, and a signal display processing module is used to calculate a rotation angle value of the scraper in real time, output and display the rotation angle value simultaneously, compare the rotation angle value measured in real time with a set safety threshold, and send out an alarm indication when the rotation angle value exceeds the safety threshold.
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公开(公告)号:US10288549B2
公开(公告)日:2019-05-14
申请号:US16079521
申请日:2017-03-02
Applicant: CHINA UNIVERSITY OF MINING AND TECHNOLOGY
Inventor: Yuxing Peng , Zhencai Zhu , Wenxue Xu , Zhiyuan Shi , Xiansheng Gong , Xiangdong Chang , Dagang Wang , Guohua Cao , Songyong Liu
Abstract: Systems and methods for detecting a layer-to-layer transition of a lifting steel wire rope on a reel are described. The system includes a reel assembly for winding a steel wire rope on a reel and a tensioning assembly for tensioning a segment of said steel wire rope. The system further includes a loading assembly and a lead screw sliding assembly. The loading assembly provides a vertical loading to the tensioning assembly so as to generate a loading force between the tensioned steel wire rope and the steel wire rope wound around the reel. The lead screw sliding assembly drives the tensioning assembly so as to move on a horizontal guide rail to generate a relative displacement between the tensioned steel wire rope and the steel wire rope wound around the reel. The tensioning assembly is connected to the loading assembly via a first threaded rod and a static torque sensor.
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