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    • 1. 发明授权
    • Variable capacity vane compressor
    • 可变容量叶片式压缩机
    • US4776770A
    • 1988-10-11
    • US131990
    • 1987-12-11
    • Nobuyuki NakajimaKenichi InomataShigeru OkadaKazuo EitaiMasaya MorutaToshio Yamaguchi
    • Nobuyuki NakajimaKenichi InomataShigeru OkadaKazuo EitaiMasaya MorutaToshio Yamaguchi
    • F04B49/00F04B49/02F04C18/344F04C28/14F04C29/08
    • F04C28/14
    • A variable capacity vane compressor in which one of front and rear side blocks has at least one inlet port divided into first and second portions, and a control element has at least one pressure-receiving protuberance dividing a space formed in the one side block into first and second pressure chambers, wherein the control element angularly moves in response to a differential pressure between the first and second pressure chambers, to vary the opening angle of the second portion of the at least one inlet port. A torsion coiled spring is fitted around a hub of the one side block for biasing the control element in a circumferential direction of increasing the opening angle of the second portion of the inlet port. The torsion coiled spring has an end thereof provided with a first engaging portion engaging a first retaining device provided in the control element, and another end thereof provided with a second engaging portion engaging a second retaining device provided in the hub, through a holding device. The second engaging portion of the spring comprises a first portion and a second portion extending at a predetermined angle with respect to the first portion and forming a tip, thus presenting a bent portion together with the first portion. The second retaining device of the hub comprises a first retaining portion engaging the first portion of the second engaging portion of the spring, and a second retaining portion extending at a predetermined angle with respect to the first retaining portion and engaging the second portion of the second engaging portion of the spring.
    • 一种可变容量叶片式压缩机,其中前侧块和后侧块中的一个具有分成第一和第二部分的至少一个入口端口,并且控制元件具有至少一个受压突起,其将形成在所述一个侧块中的空间分成第一 和第二压力室,其中所述控制元件响应于所述第一和第二压力室之间的压差而角度地移动,以改变所述至少一个入口端口的第二部分的打开角度。 扭转螺旋弹簧围绕一侧块的轮毂安装,用于在增加入口端部的第二部分的开启角度的周向上偏压控制元件。 扭转螺旋弹簧的端部具有接合设置在控制元件中的第一保持装置的第一接合部分,并且其另一端通过保持装置设置有与设置在轮毂中的第二保持装置接合的第二接合部分。 弹簧的第二接合部分包括相对于第一部分以预定角度延伸的第一部分和第二部分,并形成尖端,从而与第一部分一起呈现弯曲部分。 轮毂的第二保持装置包括接合弹簧的第二接合部分的第一部分的第一保持部分和相对于第一保持部分以预定角度延伸并与第二保持部分的第二部分接合的第二保持部分 弹簧的接合部分。
    • 2. 发明授权
    • Variable capacity vane compressor
    • 可变容量叶片式压缩机
    • US4744731A
    • 1988-05-17
    • US68554
    • 1987-07-01
    • Nobuyuki NakajimaKenichi InomataShigeru OkadaKazuo Eitai
    • Nobuyuki NakajimaKenichi InomataShigeru OkadaKazuo Eitai
    • F04B49/02F04C18/344F04C28/14F04C29/08
    • F04C28/14
    • A variable capacity vane compressor comprising a control element having at least one pressure-receiving protuberance dividing a space into a first and a second pressure chamber, wherein the control element angularly moves in response to a differential pressure between the first and second pressure chambers, to vary an opening angle of a second portion of at least one inlet port. The control element has mounted thereon a sealing member for sealing between the first and second pressure chambers and between a low pressure chamber and a vane back pressure zone. The sealing member comprises a first sealing portion for sealing between a peripheral wall surface of a central bore in the control element and an inner peripheral side wall surface of an annular recess in a side block, a second sealing portion for sealing between an outer peripheral surface of the control element and an outer peripheral side wall surface of the annular recess, a third sealing portion for sealing between an outer peripheral edge of the pressure-receiving protuberance and the wall surface of the space, and a fourth sealing portion for sealing between an axial end face of the control element and a bottom wall surface of the annular recess.
    • 一种可变容量叶片式压缩机,包括控制元件,所述控制元件具有至少一个将空间分成第一和第二压力室的压力接收突起,其中所述控制元件响应于所述第一和第二压力室之间的压差而成角度地移动, 改变至少一个入口的第二部分的打开角度。 控制元件上安装有用于密封第一和第二压力室之间以及在低压室和叶片背压区之间的密封构件。 密封构件包括用于密封控制元件中的中心孔的周壁表面和侧块中的环形凹部的内周侧壁表面的第一密封部分,用于密封外周表面 所述第一密封部和所述第二密封部,所述第二密封部用于密封所述受压突起的外周边缘与所述空间的壁面之间, 控制元件的轴向端面和环形凹部的底壁表面。
    • 4. 发明授权
    • Variable capacity vane compressor
    • 可变容量叶片式压缩机
    • US4867651A
    • 1989-09-19
    • US120152
    • 1987-11-12
    • Nobuyuki NakajimaKenichi InomataShigeru OkadaKazuo Eitai
    • Nobuyuki NakajimaKenichi InomataShigeru OkadaKazuo Eitai
    • F04C28/10F04B49/00F04B49/02F04C18/344F04C28/14F04C28/26
    • F04C28/14
    • A variable capacity vane compressor has an annular control element angluarly displaceably received within an annular recess formed in one of side blocks defining a cylinder. The control element is angularly displaced in response to a difference in pressure between first and second pressure chambers formed in the one side block and communicating with a zone under lower pressure and a zone under higher pressure, respectively, and to the biasing force of a biasing member, thereby varying the opening angle of at least one second inlet port formed in the one side block and hence controlling the capacity of the compressor. A positioning device is provided at a radially inner portion of the control element to radially position the control element in place within the annular recess of the one side block with reference to the radially inner portion of the control element, thus relieving the hysteresis between angular displacement of the control element in one circumferential directions and that in the opposite direction.
    • 可变容量叶片式压缩机具有环形控制元件,其可移动地容纳在形成在限定气缸的一个侧块中的环形凹部内。 控制元件响应于形成在一个侧块中的第一和第二压力室之间的压力差异而分别地在较低压力下的区域和较高压力下的区域以及偏压的偏置力 从而改变形成在一个侧块中的至少一个第二入口的开度角,从而控制压缩机的容量。 定位装置设置在控制元件的径向内部,以便相对于控制元件的径向内部将控制元件径向定位在一个侧块的环形凹槽内的适当位置,从而减轻了角位移之间的滞后 的控制元件在一个圆周方向上和在相反方向上。
    • 8. 发明授权
    • Variable capacity vane compressor
    • 可变容量叶片式压缩机
    • US4737081A
    • 1988-04-12
    • US56604
    • 1987-05-29
    • Nobuyuki NakajimaKenichi InomataShigeru Okada
    • Nobuyuki NakajimaKenichi InomataShigeru Okada
    • F04B13/00F04B49/02F04C18/344F04C28/14F04C29/12F04C29/08
    • F04C28/14
    • A variable capacity vane compressor has a pressure chamber formed in one of side blocks of a cylinder and communicating a zone under lower pressure with a zone under higher pressure, and at least one second inlet port the opening angle of which is variable in response to a difference between pressure within a first pressure chamber of the pressure chamber and pressure within a second pressure chamber of same. The second pressure chamber is communicated with the zone under higher pressure via a high-pressure communication passage and with the zone under lower pressure via a low-pressure communication passage. A control valve device extends across the high-pressure communication passage and the low-pressure communication passage, and is disposed to close the low-pressure communication passage and simultaneously open the high-pressure communication passage when pressure within the zone under lower pressure exceeds a predetermined value, and to open the low-pressure communication passage and simultaneously effect one of closing and reduction of the opening area of the high-pressure communication passage when the pressure within the zone under lower pressure is below the predetermined value, whereby the capacity of the compressor can be varied with high responsiveness.
    • 可变容量叶片式压缩机具有形成在气缸的侧块中的一个中的压力室,并在较低压力下与较高压力的区域连通,以及至少一个第二入口,其开度角响应于 压力室的第一压力室内的压力与其相同的第二压力室内的压力之差。 第二压力室通过高压连通通道和较低压力下的区域通过低压连通通道与较高压力的区域连通。 控制阀装置延伸穿过高压连通通道和低压连通通道,并且设置成在低压连通通道内的压力超过a时,关闭低压连通通道并同时打开高压连通通道 并且当低压区内的压力低于预定值时,打开低压连通通道同时实现高压连通通道的开口面积的关闭和减小, 压缩机可以以高响应性变化。
    • 10. 发明授权
    • Variable capacity vane compressor
    • 可变容量叶片式压缩机
    • US4850815A
    • 1989-07-25
    • US182481
    • 1988-04-15
    • Nobiyuki NakajimaKinichi InomataShigeru OkadaKazuo Eitai
    • Nobiyuki NakajimaKinichi InomataShigeru OkadaKazuo Eitai
    • F04C28/28F04B49/02F04C18/344F04C28/14F04C28/26
    • F04C28/14
    • A vane compressor is provided with a control valve device having a deformable member disposed within a zone under low pressure for expansion and contraction in response to pressure therein. A pressure-responsive control device is associated with the control valve device for controlling the capacity of the compressor. The deformable member contracts and causes the control device to bring the compressor into full-capacity operation when the pressure within the zone under low pressure is higher than a predetermined value, whereas the deformable member expands and causes the control device to bring the compressor into partial-capacity operation when the pressure within the zone under low pressure is lower than the predetermined value. A device is provided which is operable in response to excessive expansion of the deformable member for causing the control device to bring the compressor into full-capacity operation.
    • 叶片式压缩机设置有控制阀装置,该控制阀装置具有设置在低压区域内的可变形构件,用于响应于其中的压力而膨胀和收缩。 压力响应控制装置与用于控制压缩机的容量的控制阀装置相关联。 当低压区内的压力高于预定值时,可变形构件收缩并使控制装置使压缩机进入全容量操作,而可变形构件膨胀并使控制装置使压缩机部分 当低压区内的压力低于预定值时,容量操作。 提供一种可响应于可变形构件的过度膨胀而操作以使控制装置使压缩机进入全容量操作的装置。