IP Library Granted Patent US 9,810,243
Granted Patent B2
US 9,810,243 · App. 14/407,981 · Granted Nov 7, 2017

Switching valve

Inventors: Takeshi Terao (Kanagawa, JP); Masayuki Nakamura (Kanagawa, JP)
Assignee: KYB Corporation
F15B11/024E02F9/2217F15B13/0403F15B21/14F15B13/021F15B2011/0246
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Quick Facts
Patent No.
US 9,810,243
App. No.
14/407,981
Granted
Nov 7, 2017
Kind
B2
Abstract

A switching valve includes a spool, a first cylinder port that communicates with the piston side chamber, a second cylinder port that communicates with the rod side chamber, a bridge passage having a first opening which is adjacent to the first cylinder port and a second opening which is adjacent to the second cylinder port, a regeneration passage formed in the spool to connect the second cylinder port communicating with the rod side chamber to the first cylinder port in accordance with a switching position of the spool, and a first communication port and a second communication port formed in the spool to communicate with the regeneration passage. The first communication port communicates with the second opening of the bridge passage, which is adjacent to the second cylinder port, and the second communication port communicates with the second cylinder port in accordance with the switching position of the spool.

Claims (32)

1. A switching valve that switches between supply and discharge of a working fluid to and from a cylinder having a piston side chamber and a rod side chamber, comprising:

a valve body;

a spool incorporated into the valve body to be free to slide relative to the valve body, the spool having an incorporation hole formed in the spool to extend along an axial direction of the spool;

a first cylinder port in the valve body that communicates with the piston side chamber;

a second cylinder port in the valve body that communicates with the rod side chamber;

a bridge passage in the valve body, the bridge passage having a pair of openings, a first opening of which is adjacent to the first cylinder port and a second opening of which is adjacent to the second cylinder port;

a first communication port and a second communication port formed in the spool, the second communication port opening into the incorporation hole, such that the incorporation hole comprises a part of a regeneration passage formed in the spool between the first communication port and the second communication port, the regeneration passage connecting the second cylinder port communicating with the rod side chamber to the first cylinder port, based on a switching position of the spool;

a single direction flow valve provided in the incorporation hole of the regeneration passage, the single direction flow valve being configured to only permit a flow from the second cylinder port to the second opening in the bridge passage; and

a choke groove formed in the spool, a communication between a tank passage through which discharged working fluid pass and the second cylinder port is controlled by the choke groove when the spool moves in a regeneration direction for connecting the first communication port to the second opening in the bridge passage,

wherein the spool is slideable relative to the valve body along axis, such that when the spool slides in a first direction, the single direction flow valve is closed, and when the spool slides in a second direction corresponding to the regeneration direction, the single direction flow valve is opened and the flow is permitted from the second cylinder port to the second opening in the bridge passage,

wherein the second communication port is located in the second direction relative to the first communication port,

wherein the incorporation hole opens at an end surface of the spool located in the second direction relative to the second communication port,

wherein the first communication port communicates with the second opening of the bridge passage, which is adjacent to the second cylinder port, and the second communication port communicates with the second cylinder port in accordance with the switching position of the spool.

2. The switching valve as defined in claim 1 , wherein, when the spool is switched, a timing at which the second communication port communicates with the second cylinder port is earlier than a timing at which the first communication port communicates with the second opening in the bridge passage.

3. The switching valve as defined in claim 1 , wherein the first communication port has a tapered opening, such that a depth of a portion of the opening increases gradually in an axial direction of the spool from an outer edge of the opening towards a center of the opening.

4. The switching valve as defined in claim 1 , wherein the first communication port is constituted by a plurality of connecting holes arranged so as to be spaced apart from each other along the axial direction of the spool.

5. The switching valve as defined in claim 1 , wherein the single direction flow valve opens and closes a seat portion formed in the incorporation hole, and

in a condition where the seat portion is closed by the single direction flow valve, a pressure receiving surface area of a surface that receives a pressure on the second communication port side is larger than a pressure receiving surface area of a surface that receives a pressure on the first communication port side.

6. The switching valve as defined in claim 5 , wherein the single direction flow valve includes a projecting portion that projects from the seat portion toward the first communication port side.

7. The switching valve as defined in claim 1 , wherein the single direction flow valve is incorporated into the incorporation hole by being fitted therein, and

an axial direction fitting length of the single direction flow valve relative to the incorporation hole is greater than a diameter of a fitted part of the single direction flow valve.

8. A switching valve that switches between supply and discharge of a working fluid to and from a cylinder having a piston side chamber and a rod side chamber, comprising:

a spool incorporated into a valve body to be free to slide;

a first cylinder port that communicates with the piston side chamber;

a second cylinder port that communicates with the rod side chamber;

a bridge passage having a pair of openings, a first opening of which is adjacent to the first cylinder port and a second opening of which is adjacent to the second cylinder port;

a regeneration passage formed in the spool allowing the second cylinder port communicating with the rod side chamber to communicate with the first cylinder port in accordance with a switching position of the spool; and

a first communication port and a second communication port formed in the spool to communicate with the regeneration passage,

wherein the first communication port communicates with the second opening of the bridge passage, which is adjacent to the second cylinder port,

the second communication port communicates with the second cylinder port in accordance with the switching position of the spool,

a pump port into which pressure fluid from a pump is introduced is formed in the valve body, and

the first communication port does not communicate with the pump port regardless of a stroke direction of the spool.

Assignments (2)
CHANGE OF NAME Recorded Dec 21, 2015
From: KAYABA INDUSTRY CO., LTD.
To: KYB CORPORATION
Reel/Frame 037355/0142 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 15, 2014
From: TERAO, TAKESHI; NAKAMURA, MASAYUKI
To: KAYABA INDUSTRY CO., LTD.
Reel/Frame 034503/0795 →
Priority Claims (1)
JP 2012-180235 · Aug 15, 2012 · national
Continuity (1)
Related Publication 20150167699A1 · Jun 18, 2015