IP Library Granted Patent US 9,587,769
Granted Patent B2
US 9,587,769 · App. 14/558,034 · Granted Mar 7, 2017

Connecting structure for refrigerant pipe and inverter including connecting structure

Inventor: Keitaro Ishikawa (Toyota, JP)
Assignee: Toyota Jidosha Kabushiki Kaisha
F16L5/12B60H1/00271B60H1/00571F16L41/086F25B41/003
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Quick Facts
Patent No.
US 9,587,769
App. No.
14/558,034
Granted
Mar 7, 2017
Kind
B2
Abstract

A connecting structure includes a housing, a cooler, an inner refrigerant pipe, an outer refrigerant pipe, and a joint pipe. The joint pipe is attached to a through hole of the housing. The inner refrigerant pipe is fitted to the joint pipe from a housing inner side. The outer refrigerant pipe is fitted to the joint pipe from a housing outer side. A tip of the inner refrigerant pipe and a tip of the outer refrigerant pipe define a gap inside the joint pipe. An end surface of a flange or a rib of the outer refrigerant pipe in a refrigerant-pipe axis direction abuts with an end surface of a flange or a rib of the joint pipe in the refrigerant-pipe axis direction.

Claims (30)

1. A connecting structure for a refrigerant pipe, the connecting structure comprising:

a housing including a housing wall, the housing wall having a first through hole;

a cooler placed inside the housing;

an inner refrigerant pipe extending from the cooler;

an outer refrigerant pipe placed outside the housing, the outer refrigerant pipe including a first flange or a first rib on an outer circumference of the outer refrigerant pipe; and

a joint pipe including a second flange or a second rib on an outer circumference of the joint pipe, the joint pipe being attached to the first through hole, the inner refrigerant pipe being fitted to the joint pipe from a housing inner side, the outer refrigerant pipe being fitted to the joint pipe from a housing outer side, a tip of the inner refrigerant pipe and a tip of the outer refrigerant pipe defining a gap inside the joint pipe, an end surface of the first flange or the first rib in an refrigerant-pipe axis direction abutting with an end surface of the second flange or the second rib in the refrigerant-pipe axis direction.

2. The connecting structure according to claim 1 , wherein

the second flange or the second rib abuts with a surface of the housing wall around the first through hole.

3. The connecting structure according to claim 1 , wherein

the joint pipe has a step inside the joint pipe,

an inside diameter of the joint pipe on the housing outer side relative to the step is larger than an inside diameter of the joint pipe on the housing inner side relative to the step, and

the tip of the inner refrigerant pipe is placed on the housing inner side relative to the step.

4. The connecting structure according to claim 3 , wherein

an inside diameter of the outer refrigerant pipe is larger than an outside diameter of the inner refrigerant pipe.

5. The connecting structure according to claim 1 , wherein

a tubular portion of the joint pipe is fitted to the first through hole,

the tubular portion extends toward the housing inner side from the second flange or the second rib.

6. An inverter for a vehicle, the inverter comprising:

a connecting structure including:

a housing including a housing wall, the housing wall having a first through hole;

a cooler placed inside the housing;

an inner refrigerant pipe extending from the cooler; and

an outer refrigerant pipe placed outside the housing, the outer refrigerant pipe including a first flange or a first rib on an outer circumference of the outer refrigerant pipe; and

a joint pipe including a second flange or a second rib on an outer circumference of the joint pipe, the joint pipe being attached to the first through hole, the inner refrigerant pipe being fitted to the joint pipe from a housing inner side, the outer refrigerant pipe being fitted to the joint pipe from a housing outer side, a tip of the inner refrigerant pipe and a tip of the outer refrigerant pipe defining a gap inside the joint pipe, an end surface of the first flange or the first rib in an refrigerant-pipe axis direction abutting with an end surface of the second flange or the second rib in the refrigerant-pipe axis direction, wherein

the cooler is a laminated cooling unit, the laminated cooling unit is configured such that a plurality of power cards housing a semiconductor element is laminated alternately with a plurality of cooling plates, the plurality of cooling plates is connected to each other via a connecting pipe, the inner refrigerant pipe is fitted to the joint pipe from inside the housing, the inner refrigerant pipe extends from the cooling plates along a laminating direction of the laminated cooling unit.

7. The inverter according to claim 6 , wherein

the housing wall has a second through hole,

the outer refrigerant pipe connects the first through hole to the second through hole, the joint pipe is connected to the first through hole with a first face seal being sandwiched between the joint pipe and a surface of the housing wall,

one end of the outer refrigerant pipe is fitted to the joint pipe with a shaft seal being sandwiched between the outer refrigerant pipe and the joint pipe, and

the other end of the outer refrigerant pipe is connected to the second through hole with a second face seal being sandwiched between the other end of the outer refrigerant pipe and the surface of the housing wall.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 1, 2020
From: TOYOTA JIDOSHA KABUSHIKI KAISHA (AKA TOYOTA MOTOR CORPORATION)
To: DENSO CORPORATION
Reel/Frame 052280/0207 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 19, 2014
From: ISHIKAWA, KEITARO
To: TOYOTA JIDOSHA KABUSHIKI KAISHA
Reel/Frame 034559/0715 →
Priority Claims (1)
JP 2013-250826 · Dec 4, 2013 · national
Continuity (1)
Related Publication 20150152987A1 · Jun 4, 2015