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    • 1. 发明申请
    • Telescopic Crawler Chassis and Engineering Machinery Having the Same
    • 具有相同的伸缩履带式底盘和工程机械
    • US20140224555A1
    • 2014-08-14
    • US13824546
    • 2011-11-30
    • Huanyun QianQinghua HeJianxin Zhu
    • Huanyun QianQinghua HeJianxin Zhu
    • B62D55/084
    • B62D55/084B60B35/10B60B35/1036B62D49/0678B66C23/62E02F3/06E02F9/024
    • The present invention relates to a telescopic crawler chassis and engineering machinery having the telescopic crawler chassis, comprising a left crawler frame, a right crawler frame and a base, further comprising at least one hollow left sliding beam and at least one right sliding beam. One end of the hollow left sliding beam is fixedly connected with the left crawler frame, and one end of the right sliding beam is fixedly connected with the right crawler frame. At least one hollow sliding seat is arranged on the base, one end of the hollow left sliding beam is movably inserted into an hollow sliding seat from the left end of the hollow sliding seat, and one end of the right sliding beam is movably inserted into an hollow sliding seat and also into the hollow part of the hollow left sliding beam from the right end of the hollow sliding seat. The change or conversion of the state of the engineering machinery can be more convenient, and the whole machine walks and operates more stably, safely and reliably.
    • 本发明涉及一种伸缩式履带式底盘和具有伸缩履带式底盘的工程机械,其包括左履带架,右履带架和底座,还包括至少一个中空左滑动梁和至少一个右滑动梁。 空心左滑动梁的一端与左履带架固定连接,右滑动梁的一端与右履带架固定连接。 至少有一个中空的滑动座位设置在底座上,空心的左滑动梁的一端从中空滑动座的左端可移动地插入中空的滑动座中,右滑动梁的一端可移动地插入 一个中空的滑动座,并且还从中空滑动座的右端进入空心的左滑动梁的中空部分。 工程机械状态的变更或转换可以更方便,整机行走更稳定,安全可靠。
    • 4. 发明授权
    • Enhanced state estimation based upon information credibility
    • 基于信息可信度的增强状态估计
    • US08515567B2
    • 2013-08-20
    • US11313594
    • 2005-12-21
    • Jin WangQinghua He
    • Jin WangQinghua He
    • G06F19/00
    • G05B13/024
    • A method, apparatus, and a system for performing an adaptive state estimation process for processing semiconductor wafers. A processing of a first workpiece is controlled using a process controller and a processing tool. Manufacturing data relating to the processing of the first workpiece is acquired. Status data relating to the manufacturing data is acquired. The status data includes data relating to the source of the manufacturing data. A state of a process controller or a processing tool is determined based upon the status data and the manufacturing data.
    • 一种用于执行用于处理半导体晶片的自适应状态估计处理的方法,装置和系统。 使用过程控制器和处理工具来控制第一工件的处理。 获取与第一工件的处理有关的制造数据。 获取与制造数据相关的状态数据。 状态数据包括与制造数据的源相关的数据。 基于状态数据和制造数据确定过程控制器或处理工具的状态。
    • 5. 发明授权
    • Energy-recovery generation system for handling and carrying electric vehicle
    • 用于处理和携带电动车辆的能量回收发电系统
    • US09422949B2
    • 2016-08-23
    • US13977100
    • 2011-11-30
    • Qinghua HeZhongyong TangDaqing ZhangZheng ChenJun Gong
    • Qinghua HeZhongyong TangDaqing ZhangZheng ChenJun Gong
    • F15B15/00B66F9/22F15B21/14
    • F15B15/00B66F9/22F15B21/14F15B2211/20569F15B2211/3116F15B2211/615F15B2211/6313F15B2211/88
    • An energy-recovery generation system for a handling and carrying electric vehicle, comprising a hoisting cylinder (9), wherein an output pipeline of the hoisting cylinder (9) is provided with a pressure sensor unit (1) and a directional valve (2); the directional valve (2) is under the control of the pressure sensor unit (1); a first outlet of the directional valve (2) is connected to a tank (5) through a way of a multi-way valve (4) with an operating handle; the pressure oil, flowing out from a second outlet of the directional valve (2), passes through a pump (7) having an oil suction port capable of bearing pressure or a motor, and then passes through the multi-way valve (4), to finally flow back to the tank (5); the pump (7) having an oil suction port capable of bearing pressure or the motor drives an electric motor (16) to output electric energy; an electric energy output end of the electric motor (16) is connected to an energy storage device (20) through a converter (21).
    • 一种用于处理和运载电动车辆的能量回收发电系统,包括一个起重气缸(9),其中提升气缸(9)的输出管道设置有压力传感器单元(1)和方向阀(2) ; 方向阀(2)处于压力传感器单元(1)的控制下; 方向阀(2)的第一出口通过具有操作手柄的多通阀(4)的方式连接到罐(5); 从方向阀(2)的第二出口流出的压力油通过具有能够承受压力的油吸入口的泵(7)或马达,然后通过多通阀(4) ,最终流回罐(5); 所述泵(7)具有能够承受压力的吸油口或所述电动机驱动电动机(16)输出电能; 电动机(16)的电能输出端通过转换器(21)与能量存储装置(20)连接。
    • 6. 发明申请
    • ENERGY-RECOVERY GENERATION SYSTEM FOR HANDLING AND CARRYING ELECTRIC VEHICLE
    • 用于处理和携带电动汽车的能量恢复系统
    • US20130283776A1
    • 2013-10-31
    • US13977100
    • 2011-11-30
    • Qinghua HeZhongyong TangDaqing ZhangZheng ChenJun Gong
    • Qinghua HeZhongyong TangDaqing ZhangZheng ChenJun Gong
    • F15B15/00
    • F15B15/00B66F9/22F15B21/14F15B2211/20569F15B2211/3116F15B2211/615F15B2211/6313F15B2211/88
    • An energy-recovery generation system for a handling and carrying electric vehicle, comprising a hoisting cylinder (9), wherein an output pipeline of the hoisting cylinder (9) is provided with a pressure sensor unit (1) and a directional valve (2); the directional valve (2) is under the control of the pressure sensor unit (1); a first outlet of the directional valve (2) is connected to a tank (5) through a way of a multi-way valve (4) with an operating handle; the pressure oil, flowing out from a second outlet of the directional valve (2), passes through a pump (7) having an oil suction port capable of bearing pressure or a motor, and then passes through the multi-way valve (4), to finally flow back to the tank (5); the pump (7) having an oil suction port capable of bearing pressure or the motor drives an electric motor (16) to output electric energy; an electric energy output end of the electric motor (16) is connected to an energy storage device (20) through a converter (21).
    • 一种用于处理和运载电动车辆的能量回收发电系统,包括一个起重气缸(9),其中提升气缸(9)的输出管道设置有压力传感器单元(1)和方向阀(2) ; 方向阀(2)处于压力传感器单元(1)的控制下; 方向阀(2)的第一出口通过具有操作手柄的多通阀(4)的方式连接到罐(5); 从方向阀(2)的第二出口流出的压力油通过具有能够承受压力的油吸入口的泵(7)或马达,然后通过多通阀(4) ,最终流回罐(5); 所述泵(7)具有能够承受压力的吸油口或所述电动机驱动电动机(16)输出电能; 电动机(16)的电能输出端通过转换器(21)与能量存储装置(20)连接。