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公开(公告)号:US20210247740A1
公开(公告)日:2021-08-12
申请号:US17260744
申请日:2019-04-29
Inventor: Shun JIA , Yujie ZHENG , Chao LIU , Qinghe YUAN , Zhiqiang WANG , Xiaoyuan MA , Li ZHANG , Haiyang WANG
IPC: G05B19/4155 , G06K7/10
Abstract: A load-energy efficiency evaluation and monitoring method includes an actual part processing number and a theoretical part processing number of the numerical control machine tool within an evaluation period are obtained to calculate a loading performance of the numerical control machine tool. A waste time value and a standby power value of the numerical control machine tool are obtained to calculate a waste energy value of the numerical control machine tool. A single-part actual processing energy consumption is obtained and used, together with a single-part ideal processing energy consumption, to calculate the load-energy efficiency of the numerical control machine tool. A relationship model between the load-energy efficiency and the loading performance of the numerical control machine tool is built based on the obtained model of the load-energy efficiency of the numerical control machine tool and the obtained model of the loading performance of the numerical control machine tool.
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公开(公告)号:US20200019135A1
公开(公告)日:2020-01-16
申请号:US16483995
申请日:2018-05-29
Inventor: Shun JIA , Qinghe YUAN
IPC: G05B19/19 , G05B19/4063 , G05B23/02
Abstract: Disclosed is a method of accurately predicting energy consumption of an automatic tool change process of a multi-position rotary tool holder of a numerical control machine. In this method, automatic tool change durations at a plurality of groups of rotary tool position numbers are firstly measured and a calculation model of the automatic tool change duration is obtained by fitting. A basic module power of machine is obtained by collection and operation and a basic module energy consumption of machine is obtained by calculation based on the basic module power of machine and the automatic tool change duration. A steady state power of tool changer is obtained by collection and operation and further a steady state energy consumption of tool changer is calculated. A transient state energy consumption of tool changer is obtained by accumulating energy consumptions caused by all power peaks in the automatic tool change process of the numerical control machine. An energy consumption prediction model of the automatic tool change process is obtained according to the obtained basic module energy consumption of machine, the obtained steady state energy consumption of tool changer, the obtained transient state energy consumption of tool changer, thereby accurately predicting the energy consumption of the automatic tool change process of the numerical control machine and providing basic module support to the energy-saving optimization of machine.
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公开(公告)号:US20250036104A1
公开(公告)日:2025-01-30
申请号:US18278152
申请日:2022-10-10
Inventor: Shun JIA , Yang YANG , Na ZHANG , Jingyan ZHANG , Shang WANG , Le MA , Shengshuai SU , Yihao GUAN
IPC: G05B19/4155
Abstract: An assessment and control method, system and device for time-energy efficiency of CNC machine tools. The method comprises: comprehensively analyzing the influence of factors of the startup rate and extra startup frequency of a CNC machine tool on the energy efficiency of the CNC machine tool, and constructing a mathematical model of the time-energy efficiency of the CNC machine tool and the startup rate and extra startup frequency of the CNC machine tool. The time-energy efficiency of the CNC machine tool is monitored to realize the overlimit warning function for the time-energy efficiency of the CNC machine tool to finally control the time-energy efficiency of the CNC machine tool within a target range. The present invention analyzes the influence of the downtime loss of the CNC machine tool on the energy efficiency of the CNC machine tool, and can realize overlimit warning for time-energy efficiency of the CNC machine tool.
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公开(公告)号:US20230009423A1
公开(公告)日:2023-01-12
申请号:US17840313
申请日:2022-06-14
Inventor: Shun JIA , Shang WANG , Na ZHANG , Tianyou HOU , Bo YANG , Yang LIU , Xiaoming JIE , Hong CHEN , Xiangpeng MIN , Le MA , Yang YANG , Shengshuai SU , Jingyan ZHANG
IPC: B64D11/00
Abstract: Disclosed is an unmanned food delivery device in a cabin. The device comprises a first conveying mechanism, a second conveying mechanism and a loading and unloading mechanism. The first conveying mechanism comprises a universal conveyor belt, and the universal conveyor belt is driven by universal wheels to convey lunch boxes, and the universal conveyor belt is used for conveying lunch boxes in a kitchen area and a passenger area in a reciprocating manner; multiple second conveying mechanisms are respectively arranged on a luggage rack bottom plate in the passenger area, the luggage rack bottom plate is provided with multiple feeding openings respectively corresponding to seats at intervals, each second conveying mechanism is respectively positioned at the feeding openings, the second conveying mechanisms are connected with the first conveying mechanism and used for conveying lunch boxes by the first conveying mechanism to the seats.
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