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Vane pump

Corporation, KYB
2024
Online Patent

Titel:
Vane pump
Autor/in / Beteiligte Person: Corporation, KYB
Link:
Veröffentlichung: 2024
Medientyp: Patent
Sonstiges:
  • Nachgewiesen in: USPTO Patent Grants
  • Sprachen: English
  • Patent Number: 11959,482
  • Publication Date: April 16, 2024
  • Appl. No: 17/600566
  • Application Filed: March 16, 2020
  • Assignees: KYB CORPORATION (Tokyo, JP)
  • Claim: 1. A vane pump comprising: a rotor configured to be rotationally driven; a plurality of vanes provided so as to be capable of freely reciprocating in a radial direction with respect to the rotor; a cam ring having an inner circumference cam face on which tip end portions of the plurality of vanes slide with rotation of the rotor; a body having an accommodating portion for accommodating the rotor and the cam ring; a cover attached to the body to close the accommodating portion; pump chambers formed by the rotor, the cam ring, and the adjacent vanes; a first suction port configured to guide working fluid to the pump chambers, the working fluid being guided by a suction passage provided in the body; a second suction port configured to guide the working fluid to the pump chambers, the working fluid being guided from the suction passage through a communication passage provided in the cover or the body; and a return passage to which excessive fluid is guided, the excessive fluid being derived from the working fluid discharged from the pump chambers, wherein the return passage has: an axial direction passage through which only the excessive fluid flows along a rotation-axis direction of the rotor at an outer side of the cam ring in a radial direction; and a turning passage configured to reverse the excessive fluid towards the second suction port, only the excessive fluid being guided to the turning passage through the axial direction passage, and the axial direction passage and the turning passage are provided separately from the suction passage and the communication passage.
  • Claim: 2. The vane pump according to claim 1 , further comprising a plate member arranged between the communication passage and the pump chambers, wherein the plate member is provided with a cut-out portion, the cut-out portion opening at an outer circumferential surface of the plate member, and the cut-out portion penetrating through between both end surfaces of the plate member, and the second suction port has a side port formed by the cut-out portion of the plate member, and the turning passage is configured to reverse the working fluid towards the side port, the working fluid being guided by the axial direction passage.
  • Claim: 3. The vane pump according to claim 1 , wherein a partition portion is provided between the turning passage and the communication passage, the partition portion being configured to partition the turning passage and the communication passage in the rotation-axis direction.
  • Claim: 4. A vane pump, comprising: a rotor configured to be rotationally driven; a plurality of vanes provided so as to be capable of freely reciprocating in a radial direction with respect to the rotor; a cam ring having an inner circumference cam face on which tip end portions of the plurality of vanes slide with rotation of the rotor; a body having an accommodating portion for accommodating the rotor and the cam ring; a cover attached to the body to close the accommodating portion; pump chambers formed by the rotor, the cam ring, and the adjacent vanes; a first suction port configured to guide working fluid to the pump chambers, the working fluid being guided by a suction passage provided in the body; a second suction port configured to guide the working fluid to the pump chambers, the working fluid being guided from the suction passage through a communication passage provided in the cover or the body; a return passage to which excessive fluid is guided, the excessive fluid being derived from the working fluid discharged from the pump chambers; and a plate member arranged between the communication passage and the pump chambers, wherein the return passage has: an axial direction passage through which the excessive fluid flows along a rotation-axis direction of the rotor at an outer side of the cam ring in a radial direction; and a turning passage configured to reverse the excessive fluid towards the second suction port, the excessive fluid being guided through the axial direction passage, the plate member is provided with a cut-out portion, the cut-out portion opening at an outer circumferential surface of the plate member, and the cut-out portion penetrating through between both end surfaces of the plate member, the second suction port has a side port formed by the cut-out portion of the plate member, and the turning passage is configured to reverse the working fluid towards the side port, the working fluid being guided by the axial direction passage.
  • Claim: 5. A vane pump, comprising: a rotor configured to be rotationally driven; a plurality of vanes provided so as to be capable of freely reciprocating in a radial direction with respect to the rotor; a cam ring having an inner circumference cam face on which tip end portions of the plurality of vanes slide with rotation of the rotor; a body having an accommodating portion for accommodating the rotor and the cam ring; a cover attached to the body to close the accommodating portion; pump chambers formed by the rotor, the cam ring, and the adjacent vanes; a first suction port configured to guide working fluid to the pump chambers, the working fluid being guided by a suction passage provided in the body; a second suction port configured to guide the working fluid to the pump chambers, the working fluid being guided from the suction passage through a communication passage provided in the cover or the body; and a return passage to which excessive fluid is guided, the excessive fluid being derived from the working fluid discharged from the pump chambers, wherein the return passage has: an axial direction passage through which the excessive fluid flows along a rotation-axis direction of the rotor at an outer side of the cam ring in a radial direction; and a turning passage configured to reverse the excessive fluid towards the second suction port, the excessive fluid being guided through the axial direction passage, and a partition portion is provided between the turning passage and the communication passage, the partition portion being configured to partition the turning passage and the communication passage in the rotation-axis direction.
  • Patent References Cited: 20070243094 October 2007 Fujita ; 101054973 October 2007 ; 2007278258 October 2007 ; 2014-126043 July 2014 ; 2017145699 August 2017
  • Other References: English copy of JP2017145699 by PE2E Jan. 7, 2023. cited by examiner
  • Primary Examiner: Wan, Deming
  • Attorney, Agent or Firm: Rabin & Berdo, P.C.

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