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    • 1. 发明授权
    • Variable displacement compressor
    • 可变排量压缩机
    • US07874813B2
    • 2011-01-25
    • US12160205
    • 2006-12-21
    • Kiyoshi Terauchi
    • Kiyoshi Terauchi
    • F04B1/26
    • F04B27/1804F04B2027/1827F04B2027/1859
    • A variable displacement compressor comprising a first control means for detecting the suction pressure of fluid or the crank chamber pressure and controlling the suction pressure to a target control value, and a second control means including means for detecting high-pressure side pressure to control the displacement of the compressor so as to relax an increase in the high-pressure side pressure when it is equal to or higher than a predetermined threshold and increasing the control value of the suction pressure depending on the increase in the high-pressure side pressure in a region exceeding the threshold. The control system is simple, the control valve is inexpensive and simple and capable of stabilized operation, and the variable displacement compressor has the internal control means suitable for refrigeration cycle operating in a supercritical region.
    • 一种可变排量压缩机,包括用于检测流体的吸入压力或曲柄室压力并将吸入压力控制为目标控制值的第一控制装置,以及包括用于检测高压侧压力以控制排量的装置的第二控制装置 以便当其等于或高于预定阈值时放松高压侧压力的增加,并且根据区域中的高压侧压力的增加来增加吸入压力的控制值 超过阈值。 控制系统简单,控制阀价格便宜,操作简单,变容量压缩机具有适用于超临界区域的制冷循环运行的内部控制装置。
    • 3. 发明申请
    • Electric compressor
    • 电动压缩机
    • US20050175470A1
    • 2005-08-11
    • US10514035
    • 2003-04-25
    • Kiyoshi Terauchi
    • Kiyoshi Terauchi
    • F04B27/08F04B27/10F04B1/12
    • F04B27/1081F04B27/0895
    • The present invention provides an electric compressor that can realize high durability and high efficiency by means of a low-cost construction, and is advantageous in providing a construction for using a carbon dioxide refrigerant. In the electric compressor in accordance with the present invention, the rotational motion of an inclined plate 23 having a predetermined fixed angle of inclination is converted to swinging motion of a swing plate 24 that swings while the rotation thereof is regulated, and pistons 21 are driven by the swinging motion of the swing plate 24. Therefore, a construction having no sliding part due to the rotation of the inclined plate 23 can be provided, so that the durability can be improved.
    • 本发明提供一种能够通过低成本的结构实现高耐久性和高效率的电动压缩机,并且有利于提供使用二氧化碳制冷剂的结构。 在根据本发明的电动压缩机中,具有预定的固定倾斜角度的倾斜板23的旋转运动被转换成摆动板24的摆动运动,摆动板24的旋转被调节,并且驱动活塞21 因此,可以提供由于倾斜板23的旋转而不具有滑动部的构造,能够提高耐久性。
    • 7. 发明授权
    • Fluid displacement apparatus with lubricating mechanism
    • 具有润滑机构的排液装置
    • US5678986A
    • 1997-10-21
    • US548831
    • 1995-10-26
    • Kiyoshi TerauchiIsao HoashiAkiyoshi Higashiyama
    • Kiyoshi TerauchiIsao HoashiAkiyoshi Higashiyama
    • F04C29/02F01C1/04
    • F04C29/021
    • A fluid displacement apparatus includes a housing having a fluid inlet and a fluid outlet. A suction chamber is formed between one end of the displacement mechanism and the housing and communicates with the fluid inlet port. A discharge chamber is formed between other end of the displacement mechanism and the housing and communicates with the fluid outlet port. A first hollow space is created between a peripheral surface of a driving mechanism and the inner block, and communicates with the suction chamber. A second hollow space is created between the inner block and the housing and communicates with the discharge chamber. A pressure differential regulating device is disposed between the first hollow space and the second hollow space. Accordingly, a sealing mechanism of a driving mechanism achieves superior durability while maintaining the lubrication of a bearing under various operating conditions of the apparatus.
    • 流体置换装置包括具有流体入口和流体出口的壳体。 在移动机构的一端和壳体之间形成吸入室,并与流体入口连通。 排出室形成在位移机构的另一端和壳体之间并与流体出口连通。 在驱动机构的外周面和内部块之间形成第一中空空间,并与吸入室连通。 在内部块和壳体之间产生第二中空空间并与排出室连通。 压力调节装置设置在第一中空空间和第二中空空间之间。 因此,驱动机构的密封机构在保持装置的各种操作条件下的轴承的润滑的同时实现优异的耐久性。
    • 9. 发明授权
    • Slant plate type compressor with variable displacement mechanism
    • US5145325A
    • 1992-09-08
    • US544430
    • 1990-06-27
    • Kiyoshi Terauchi
    • Kiyoshi Terauchi
    • F04B27/14F04B27/18
    • F04B27/1804F04B2027/1813F04B2027/1831F04B2027/1854F04B2027/1859F04B2027/1877
    • A slant plate type compressor with a capacity or displacement adjusting mechanism is disclosed. The compressor includes a housing having a cylinder block provided with a plurality of cylinders and a crank chamber. A piston is slidably fitted within each of the cylinders and is reciprocated by a drive mechanism which includes a slant plate having a surface with an adjustable incline angle. The incline angle is controlled according to the pressure in the crank chamber. The pressure in the crank chamber is controlled by a control mechanism which comprises a passageway linking the crank chamber and the suction chamber, and a valve device which controls the closing and opening of the passageway. The valve device includes a valve element which directly controls the closing and opening of the passageway, a first valve control device which controls the position of the valve element in response to pressure in the crank chamber, and a second valve control device which controls the predetermined crank pressure operating point of the first valve control device. The operation of the second valve control device is controlled in response to changes in the thermodynamic characteristics of the refrigerant circuit. The first and second valve control devices are coupled by a bias spring so as to eliminate the frictional and inertial forces which interfere with the control of the operating point of the first valve control device.