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    • 1. 发明授权
    • Swash plate type compressor with internal refrigerant and lubricant
separating system
    • 具有内部制冷剂和润滑剂分离系统的洗板式压缩机
    • US5088897A
    • 1992-02-18
    • US486154
    • 1990-02-28
    • Katsunori KawaiHayato IkedaShinichi IshiharaKazuhiro TanikawaNaoya YokomachiToshihiro Kawai
    • Katsunori KawaiHayato IkedaShinichi IshiharaKazuhiro TanikawaNaoya YokomachiToshihiro Kawai
    • F04B39/04F04B27/08F04B27/10
    • F04B27/109Y10S418/01
    • A swash plate type compressor having a compressor casing accommodating a swash plate operated compressing mechanism compressing a refrigerant gas supplied from a suction side of a refrigerant circulating circuit and discharging a compressed refrigerant gas into a discharge side of the circuit, and an internal lubricating system for lubricating movable elements of the swash plate operated compressing mechanism by using a lubricating oil reserved in a swash plate chamber and an oil sump provided in the bottom of the compressor casing, the compressor casing having a refrigerant and lubricant separating chamber for separating a lubricant component from a lubricant suspended refrigerant gas generated in the swash plate chamber by a high pressure blow-by refrigerant gas and a mist of the lubricant oil when the gas flows from the swash plate chamber toward the suction side of the refrigerant gas circulating circuit, and a refrigerant gas evacuation passageway extended from the refrigerant and lubricant separating chamber to the suction side of the refrigerant circulating circuit to permit an evacuation of the refrigerant gas after the lubricant separation.
    • 一种斜盘式压缩机,其具有容纳旋转斜盘操作压缩机构的压缩机壳体,该压缩机构压缩从制冷剂循环回路的吸入侧供给的制冷剂气体,并且将压缩的制冷剂气体排出到所述回路的排出侧;以及内部润滑系统, 通过使用预留在斜盘室中的润滑油和设置在压缩机壳体的底部的油底壳来润滑可旋转斜盘操作的压缩机构的可动元件,该压缩机壳体具有制冷剂和润滑剂分离室,用于将润滑剂组分从 当气体从斜盘室朝向制冷剂气体循环回路的吸入侧流动时,润滑剂通过高压吹入制冷剂气体和润滑油雾在斜盘室中产生的制冷剂气体,制冷剂 从制冷剂延伸出来的排气通道 润滑剂分离室到制冷剂循环回路的吸入侧,以允许在润滑剂分离之后排出制冷剂气体。
    • 2. 发明授权
    • Swash plate type refrigerant compressor with a separator of refrigerant
gas and lubricant oil
    • 具有制冷剂气体和润滑油分离器的滑板式制冷压缩机
    • US5062773A
    • 1991-11-05
    • US601732
    • 1990-10-25
    • Katsunori KawaiHayato IkedaNaoya YokomachiToshihiro Kawai
    • Katsunori KawaiHayato IkedaNaoya YokomachiToshihiro Kawai
    • F04B39/04F04B27/08F04B27/10F04B39/16
    • F04B39/16F04B27/109
    • The cylinder block assembly (1a) of a swash plate type refrigerant compressor is formed with a suction passageway (17) in which a refrigerant gas containing a mist-like lubricant oil therein is sucked and passed therethrough, and a cylindrical separating chamber (22) is formed by an extension (21) from an inner wall of the suction passageway and has an opening directed toward an entering direction of a flow of the lubricant oil-containing refrigerant gas. The separating chamber (22) is provided with an bottom wall (22a) having a through-hole for an entrance of the oil, communicating between the separating chamber (22) and a swash plate chamber (4). The refrigerant gas containing the lubricant oil therein enters the cylindrical separating chamber (22) arranged in the suction passageway (17) and impringes upon an inner wall (22b) and the bottom wall (22a), whereby the flow direction thereof is changed, and flows out of the chamber through the opening into the suction passageway to thereby separate the lubricant oil from the refrigerant gas. The separated lubricant oil is supplied from the separating chamber (22) into the swash plate chamber (4), without overflowing from the chamber toward the suction passageway.
    • PCT No.PCT / JP90 / 00274 Sec。 371 1990年10月25日第 102(e)日期1990年10月25日PCT 1990年3月2日PCT公布。 出版物WO90 / 10156 日本1990年9月7日。斜盘式制冷剂压缩机的气缸体组件(1a)形成有吸入通道(17),其中含有雾状润滑油的制冷剂气体被吸入并通过其中, 圆柱形分离室(22)由吸入通道的内壁的延伸部(21)形成,并且具有朝向含润滑油的制冷剂气体的流动进入方向的开口。 分离室(22)设置有底壁(22a),底壁(22a)具有用于油入口的通孔,在分离室(22)和斜盘室(4)之间连通。 其中含有润滑油的制冷剂气体进入设置在吸入通路17中的圆筒形分离室22,并且压在内壁22b和底壁22a上,从而改变其流动方向, 通过开口从腔室流出到吸入通道中,从而将润滑油与制冷剂气体分离。 分离的润滑油从分离室(22)供应到斜盘室(4)中,而不从室朝向吸入通道溢出。
    • 3. 发明授权
    • Sealing arrangement for a piston in a compressor
    • 压缩机活塞密封装置
    • US5016524A
    • 1991-05-21
    • US491351
    • 1990-03-09
    • Katsunori KawaiHayato IkedaShinichi IshiharaToshihiro Kawai
    • Katsunori KawaiHayato IkedaShinichi IshiharaToshihiro Kawai
    • F16J9/10F04B39/00F16J9/28F16J15/16F16J15/32F16J15/56
    • F16J15/166F04B39/0005F16J15/3228F16J15/56Y10T29/49274Y10T29/49279
    • A continuous seal ring member fitted in a ring groove of a piston of a compressor. The seal ring member has a washer-like initial shape with an internal diameter smaller than an outer diameter of the piston, whereby the inner peripheral portion of the seal ring member is expanded when the seal ring member is fitted in the ring groove. The outer peripheral portion of the ring seal member is then axially and inwardly collapsed relative to the inner peripheral portion thereof so that one of the side surfaces of the initial seal ring member constitutes an outer sealing surface for engagement with the cylinder bore and the outer peripheral portion in the original shape is arranged on the side of said compression chamber. A backup ring member fitted in the ring groove on the side of the continuous seal ring member remote from the compression chamber has a surface area abutting against the side surface of the ring groove on the side remote from the compression chamber and sufficient to retain the continuous seal ring member in the ring groove.
    • 安装在压缩机的活塞的环槽中的连续的密封环构件。 密封环构件具有内径小于活塞外径的垫圈状初始形状,由此当密封环构件嵌入环形槽中时,密封环构件的内周部分膨胀。 然后,环形密封构件的外周部分相对于其内周部分被轴向和向内折叠,使得初始密封环构件的一个侧表面构成用于与缸孔和外周边接合的外密封表面 原始形状的部分布置在所述压缩室的侧面。 安装在远离压缩室的连续密封环构件侧的环形槽中的支承环构件具有与远离压缩室的一侧的环形槽的侧表面邻接的表面区域,并且足以保持连续的 密封环构件在环槽中。
    • 5. 发明授权
    • Swash plate type compressor
    • 斜盘式压缩机
    • US5228379A
    • 1993-07-20
    • US782059
    • 1991-10-24
    • Katsunori KawaiMasaki NomuraToshihiro Kawai
    • Katsunori KawaiMasaki NomuraToshihiro Kawai
    • F04B27/08F04B27/12
    • F04B27/0882F04B27/12Y10T74/18336
    • A swash plate type compressor is disclosed which is intended to prevent a hemispherical shoe, provided between the piston and the swash plate, from being spun on slat surface of the swash plate during operation of the compressor. In the preferred embodiment of the invention, the swash plate is formed with a step and the shoe with a cut portion engageable with the step so that the shoe is prevented from being spun on the slant surface of the swash plate which provides a turning moment to the shoe. The step is formed by an annular projection having an annular wall portion defining the inner limit of the slant surface area of the swash plate with which the flat face of the hemispherical shoe is kept in sliding contact, and the cut portion of the shoe has a curved surface conforming to the curvature of the annular wall portion. The shoe is located with its cut portion slidably contactable with the annular wall portion.
    • 公开了一种斜盘式压缩机,其旨在防止设置在活塞和斜盘之间的半球形鞋在压缩机的操作期间在斜板的板条表面上旋转。 在本发明的优选实施例中,旋转斜盘由台阶形成,并且鞋具有与台阶接合的切割部分,使得鞋防止在斜盘的倾斜表面上旋转,从而提供转弯时刻 鞋。 所述台阶由具有环形壁部分的环形突起形成,所述环形壁部分限定所述斜盘的倾斜表面区域的内部极限,所述半球形鞋的平坦面与所述倾斜表面区域保持滑动接触,并且所述鞋的切割部分具有 符合环形壁部分曲率的曲面。 鞋子的切口部分与环形壁部分可滑动接触。
    • 6. 发明申请
    • APPARATUS FOR STARTING ENGINE AND METHOD OF CONTROLLING ENGINE
    • 起动发动机的装置和控制发动机的方法
    • US20130325304A1
    • 2013-12-05
    • US13702848
    • 2011-09-29
    • Yumi KondoYuuya YoshitomiToshihiro Kawai
    • Yumi KondoYuuya YoshitomiToshihiro Kawai
    • F02D29/02
    • F02D29/02F02N11/0825F02N11/0855F02N2200/063F02N2250/02Y02T10/48
    • A starter includes a pinion gear that can be engaged with a ring gear coupled to a crank shaft of an engine, an actuator that moves the pinion gear to a position where the pinion gear is engaged with a ring gear, and a motor that rotates the pinion gear. An ECU stops the engine when a predetermined stop condition is satisfied, and cranks the engine with a motor when a predetermined start condition is satisfied after the engine is stopped. The motor and the actuator are supplied with electric power from a battery. The ECU includes a mode in which the motor is driven prior to driving of the actuator. The ECU restricts a stop of the engine if, of a decreased voltage of the battery after driving the motor and a decreased voltage of the battery after driving the actuator, the lower voltage falls below a threshold value.
    • 起动器包括:小齿轮,其可与联接到发动机的曲轴的齿圈接合;将小齿轮移动到小齿轮与齿圈啮合的位置的致动器;以及马达, 小齿轮 当满足预定的停止条件时,ECU停止发动机,并且在发动机停止之后满足预定的启动条件时使用马达来曲柄发动机。 电机和执行器由电池供电。 ECU包括在致动器驱动之前马达被驱动的模式。 如果驱动电动机后电池电压降低,驱动致动器后电池电压降低,则下限电压下降到阈值以下,则ECU限制发动机的停止。
    • 9. 发明授权
    • Suction valve in variable displacement compressor
    • 可变排量压缩机中​​的吸入阀
    • US06379121B1
    • 2002-04-30
    • US09694415
    • 2000-10-23
    • Masaki OtaToshihiro KawaiMasahiro KawaguchiTomoji Tarutani
    • Masaki OtaToshihiro KawaiMasahiro KawaguchiTomoji Tarutani
    • F04B126
    • F04B39/0027F04B27/1009F04B39/1073
    • The object of the present invention is to offer a structure of a suction valve enough to prevent a noise or clatter caused by vibrations of a suction valve in a variable displacement compressor having pistons. The suction valve is a bendable flexible valve composed of flexible portions, and of a closing portion placed adjoining to the flexible portions to form a free end to close a suction port. The lengths of the flexible portions of the suction valve are nearly equal, but the widths of the flexible portions of the suction valve are different each other. And the distance between the suction valve and a receiving portion which regulates maximum opening degree, is determined so that the lower bending flexibility side of the flexible portions contacts the receiving portion from the beginning or as soon as the suction valve starts to open, and that the higher bending flexibility side of the flexible portions approaches the receiving portion with the lower bending flexibility side of the flexible portion contacting the receiving portion, while the suction valve is twisted.
    • 本发明的目的是提供一种吸入阀的结构,该结构足以防止在具有活塞的可变排量压缩机中​​由吸入阀的振动引起的噪音或咔嗒声。吸入阀是由柔性部分组成的可弯曲柔性阀, 以及与柔性部分相邻设置的闭合部分,以形成一个自由端来封闭吸入口。 吸入阀的柔性部分的长度几乎相等,但是吸入阀的柔性部分的宽度彼此不同。 并且确定吸入阀和调节最大开度的接收部分之间的距离,使得柔性部分的下弯曲柔性侧从开始接触接收部分或一旦吸入阀开始打开,并且该一个 柔性部分的较高弯曲柔性侧靠近接收部分,同时柔性部分的下弯曲柔性侧接触接收部分,同时吸入阀被扭转。