JPH11108585A - Oil cooler mounting structure for heat exchanger resin tank - Google Patents

Oil cooler mounting structure for heat exchanger resin tank

Info

Publication number
JPH11108585A
JPH11108585A JP28265797A JP28265797A JPH11108585A JP H11108585 A JPH11108585 A JP H11108585A JP 28265797 A JP28265797 A JP 28265797A JP 28265797 A JP28265797 A JP 28265797A JP H11108585 A JPH11108585 A JP H11108585A
Authority
JP
Japan
Prior art keywords
oil cooler
boss
flange
resin tank
nut
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
JP28265797A
Other languages
Japanese (ja)
Other versions
JP3245739B2 (en
Inventor
Takashi Igami
多加司 伊神
Masamichi Itakura
正道 板倉
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Toyo Radiator Co Ltd
Toyota Motor Corp
Original Assignee
Toyo Radiator Co Ltd
Toyota Motor Corp
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Toyo Radiator Co Ltd, Toyota Motor Corp filed Critical Toyo Radiator Co Ltd
Priority to JP28265797A priority Critical patent/JP3245739B2/en
Publication of JPH11108585A publication Critical patent/JPH11108585A/en
Application granted granted Critical
Publication of JP3245739B2 publication Critical patent/JP3245739B2/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F28HEAT EXCHANGE IN GENERAL
    • F28FDETAILS OF HEAT-EXCHANGE AND HEAT-TRANSFER APPARATUS, OF GENERAL APPLICATION
    • F28F9/00Casings; Header boxes; Auxiliary supports for elements; Auxiliary members within casings
    • F28F9/007Auxiliary supports for elements
    • F28F9/0075Supports for plates or plate assemblies
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F28HEAT EXCHANGE IN GENERAL
    • F28FDETAILS OF HEAT-EXCHANGE AND HEAT-TRANSFER APPARATUS, OF GENERAL APPLICATION
    • F28F9/00Casings; Header boxes; Auxiliary supports for elements; Auxiliary members within casings
    • F28F9/02Header boxes; End plates
    • F28F9/0234Header boxes; End plates having a second heat exchanger disposed there within, e.g. oil cooler
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F28HEAT EXCHANGE IN GENERAL
    • F28FDETAILS OF HEAT-EXCHANGE AND HEAT-TRANSFER APPARATUS, OF GENERAL APPLICATION
    • F28F9/00Casings; Header boxes; Auxiliary supports for elements; Auxiliary members within casings
    • F28F9/02Header boxes; End plates
    • F28F9/0246Arrangements for connecting header boxes with flow lines
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F28HEAT EXCHANGE IN GENERAL
    • F28FDETAILS OF HEAT-EXCHANGE AND HEAT-TRANSFER APPARATUS, OF GENERAL APPLICATION
    • F28F9/00Casings; Header boxes; Auxiliary supports for elements; Auxiliary members within casings
    • F28F9/02Header boxes; End plates
    • F28F9/0246Arrangements for connecting header boxes with flow lines
    • F28F9/0248Arrangements for sealing connectors to header boxes

Abstract

PROBLEM TO BE SOLVED: To provide a structure capable of reducing the size of a boss part of an oil cooler protruding on an outer surface of a resin tank to the utmost, and stably easily mounting an oil pipe. SOLUTION: A flange 2 is provided on a base outer periphery of a boss part 7, and a seat part is formed on an inner periphery. An outer screw 5 is formed on an outer periphery of a part of the boss part 7 protruded axially from the base part of the boss part 7, and an inner screw 6 is provided in the inner periphery. An O ring fitting part is provided in the base part inner surface of the boss part 7, in which a sealing O ring 14 is fitted. An outer nut 10 is threaded to the outer screw 5, and the boss part 7 is clamped to a resin tank 12, and further an inner nut 11 is threaded to the inner screw 6 to clamp an oil pipe 9 to the boss part 7.

Description

【発明の詳細な説明】DETAILED DESCRIPTION OF THE INVENTION

【0001】[0001]

【発明の属する技術分野】本発明は、樹脂タンクを有す
る自動車用熱交換器に取付けられるオイルクーラの取付
構造に関する。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a structure for mounting an oil cooler mounted on a heat exchanger for an automobile having a resin tank.

【0002】[0002]

【従来の技術】自動車用熱交換器の冷却水を利用し、オ
イルを冷却するオイルクーラは従来図4の如く取付けら
れていた。この図4はその取付部におけるオイルクーラ
の一部を表現した縦断面図であり、一例としてプレート
タイプのオイルクーラである。そのプレートタイプのオ
イルクーラ1のエレメント16は、両端部に連通孔を有す
る細長い小判型の一対の皿状プレートを互いに逆向きに
重ね合わせると共に、内部にインナーフィン18を設けた
ものである。そして複数のエレメント16をスペーサ17を
介して夫々の連通孔で液密に連結すると共に、その最上
段にボス部7を接合したものである。
2. Description of the Related Art An oil cooler for cooling oil by using cooling water of a heat exchanger for an automobile has been conventionally mounted as shown in FIG. FIG. 4 is a longitudinal sectional view showing a part of the oil cooler in the mounting portion, and is a plate type oil cooler as an example. The element 16 of the plate-type oil cooler 1 has a pair of elongated, oval-shaped dish-shaped plates having communication holes at both ends, which are overlapped with each other in the opposite direction, and provided with inner fins 18 inside. The plurality of elements 16 are connected in a liquid-tight manner through respective communication holes via spacers 17, and the boss 7 is joined to the uppermost stage.

【0003】このボス部7は、その基部にフランジ2を
有し、そこに環状溝が形成され、その環状溝にOリング
14が嵌着される。ボス部7は全体が短管状に形成され、
外周に外ネジを有し、先端側が凸となる円錐台形面に形
成されている。そして、樹脂タンク12の内面側からボス
部7が取付孔13内に挿入され、その中間部より先端がタ
ンク外面に突出する。そして、ナット20を介してオイル
クーラ1が樹脂タンク12に締結固定され、次いで、ボス
部7の先端のテーパ面に袋ナット19を介してオイルパイ
プ9の先端の拡開部が締結固定されるものである。
The boss 7 has a flange 2 at a base thereof, an annular groove formed therein, and an O-ring formed in the annular groove.
14 is fitted. The boss part 7 is formed as a short tube as a whole,
It has an external thread on the outer circumference and is formed in a truncated conical surface with a convex end. Then, the boss portion 7 is inserted into the mounting hole 13 from the inner surface side of the resin tank 12, and the tip protrudes from the intermediate portion to the outer surface of the tank. Then, the oil cooler 1 is fastened and fixed to the resin tank 12 via the nut 20, and then the enlarged portion at the tip of the oil pipe 9 is fastened and fixed to the tapered surface of the tip of the boss 7 via the cap nut 19. Things.

【0004】[0004]

【発明が解決しようとする課題】従来型のオイルクーラ
の取付構造は、オイルクーラ1自体を樹脂タンク12に取
付けるためのナット20と、オイルパイプ9をボス部7に
取付けるための袋ナット19とが、ボス部7の外ネジに直
列に螺着されていた。そのため、ボス部7の軸方向長さ
が長くなり、タンク外面側に突出する取付部分が長くな
る欠点があった。そのボス部7の軸方向長さが長いた
め、樹脂タンク12の内面側からそれを取付孔13内に挿入
する際、自動車用熱交換器のように比較的幅の狭い樹脂
タンク12の場合には、その挿入が面倒で取付性が悪い欠
点があった。そこで本発明は、樹脂タンク12の外面側に
突出するボス部7の突出量を可能な限り小さくすると共
に、その取付けを容易に行えることを課題とし、その課
題解決のために次の手段をとる。
The conventional oil cooler mounting structure includes a nut 20 for mounting the oil cooler 1 itself to the resin tank 12 and a cap nut 19 for mounting the oil pipe 9 to the boss 7. Was screwed in series with the external thread of the boss 7. For this reason, there is a disadvantage that the axial length of the boss 7 is increased and the mounting portion protruding toward the outer surface of the tank is lengthened. Since the axial length of the boss 7 is long, when it is inserted into the mounting hole 13 from the inner surface side of the resin tank 12, when the resin tank 12 is relatively narrow like a heat exchanger for automobiles. Has a drawback that the insertion is troublesome and the mounting property is poor. In view of the above, the present invention has an object to minimize the amount of protrusion of the boss 7 projecting to the outer surface side of the resin tank 12 and to easily mount the boss 7, and the following means are used to solve the problem. .

【0005】[0005]

【課題を解決するための手段】本発明の熱交換器用樹脂
タンクのオイルクーラ取付構造は、オイルクーラ1の内
部に連通するように、一端がそのオイルクーラ1に接続
された内フランジ部7aの開口を有し、そのオイルクー
ラ寄りの一端部の基部外周にフランジ2を有する短管状
に形成され、その基部内周面にOリング嵌着部3が設け
られると共に、その嵌着部3の軸線方向他端部側に環状
の座部4が前記内周面に形成され、外周に外ネジ5が形
成され且つ、内周に内ネジ6が形成されたパイプ取付用
のボス部7と、前記環状の座部4に整合する環状の鍔部
8が先端部に曲折形成され、その鍔部8より先端側に短
い筒部9aが残され、その短い筒部9aの外周が前記内
フランジ部7aの開口の内周に整合するオイルパイプ9
と、前記内ネジ6に螺着され、その筒部内周が前記オイ
ルパイプ9の外周に整合する内ナット11と、前記外ネジ
5に螺着され、その筒部外周10aが熱交換器用樹脂タン
ク12のオイルクーラの取付孔13に整合する外ナット10
と、を具備し、前記ボス部7の前記フランジ2と前記外
ネジ5に螺着された前記外ナット10とにより、樹脂タン
ク12の取付孔13の孔縁部が挟持され、前記Oリング嵌着
部3に挿入されたOリング14が前記オイルパイプ9の先
端部の前記短い筒部9aの外周に圧接され、前記内ナッ
ト11が前記ボス部7の内ネジ6に螺着されて、その内ナ
ット11の端面と前記座部4により前記オイルパイプ9の
前記鍔部8が挟持締結されるように構成されたものであ
る。
An oil cooler mounting structure for a resin tank for a heat exchanger according to the present invention has an inner flange portion 7a having one end connected to the oil cooler 1 so as to communicate with the inside of the oil cooler 1. It has an opening, is formed in a short tube shape having a flange 2 on the outer periphery of the base at one end near the oil cooler, and is provided with an O-ring fitting portion 3 on the inner peripheral surface of the base and the axis of the fitting portion 3. A boss portion 7 for pipe attachment having an annular seat 4 formed on the inner peripheral surface on the other end side in the direction, an outer screw 5 formed on the outer periphery, and an inner screw 6 formed on the inner periphery; An annular flange 8 that matches the annular seat 4 is bent at the distal end, leaving a short tubular portion 9a at the distal end side of the flange 8, and the outer periphery of the short tubular portion 9a is formed by the inner flange portion 7a. Oil pipe 9 aligned with the inner circumference of the opening
And an inner nut 11 screwed to the inner screw 6, the inner circumference of which is aligned with the outer circumference of the oil pipe 9, and the outer circumference 10 a of which is screwed to the outer screw 5, and a resin tank for heat exchanger Outer nut 10 aligned with mounting hole 13 of oil cooler 12
The flange 2 of the boss 7 and the outer nut 10 screwed to the outer screw 5 hold the hole edge of the mounting hole 13 of the resin tank 12 and fit the O-ring. The O-ring 14 inserted into the attachment portion 3 is pressed against the outer periphery of the short cylindrical portion 9 a at the tip of the oil pipe 9, and the inner nut 11 is screwed to the inner screw 6 of the boss portion 7. The flange 8 of the oil pipe 9 is clamped and fastened by the end face of the inner nut 11 and the seat 4.

【0006】このように構成することにより、オイルパ
イプ9はその先端部がボス部7の内フランジ部7aの開
口に支持され、オイルパイプ9の中間部が内ネジ6、ボ
ス部7の中間部、外ネジ5を介して取付孔13に安定的に
支持される。それと共に、ボス部7自体も取付孔13に安
定的に支持される。しかもシール用のOリング14がOリ
ング嵌着溝3に挿入されてオイルパイプ9の先端部の短
い筒部9aの外周に圧接されるので、オイルパイプ9と
ボス部7とのシールを確実に行なえる。そしてボス部7
の内外周に外ナット10と内ナット11とが螺着される構造
を有するため、ボス部7の高さを従来のそれに比べて低
くできると共に、取付部のコンパクト化を図れる。
With this configuration, the oil pipe 9 has its tip end supported by the opening of the inner flange portion 7a of the boss portion 7, and the middle portion of the oil pipe 9 has the inner screw 6 and the middle portion of the boss portion 7. , And is stably supported by the mounting hole 13 via the external screw 5. At the same time, the boss 7 itself is stably supported by the mounting hole 13. Moreover, since the O-ring 14 for sealing is inserted into the O-ring fitting groove 3 and pressed against the outer periphery of the short cylindrical portion 9a at the tip of the oil pipe 9, the sealing between the oil pipe 9 and the boss portion 7 is ensured. I can do it. And boss 7
Has a structure in which the outer nut 10 and the inner nut 11 are screwed onto the inner and outer peripheries, so that the height of the boss 7 can be reduced as compared with the conventional one, and the mounting portion can be made compact.

【0007】請求項2記載の本発明は、上記発明の実施
の形態であり、前記パイプ取付用ボス部7の前記座部4
が前記オイルクーラ1側に先細りの傾斜面をなす熱交換
器用樹脂タンクのオイルクーラ取付構造である。このよ
うに、パイプ取付用ボス部7の前記座部4が傾斜面をな
すことにより、オイルパイプ9をより強固に締結挟持す
ることができると共に、そのオイルパイプを安定的に保
持することが可能となる。請求項3記載の本発明は、前
記請求項2記載の発明の実施の形態であり、前記座部4
と前記Oリング嵌着部3とで2段の環状の階段面をな
し、前記Oリング14が前記座部4に着座される前記オイ
ルパイプ9の前記鍔部8と前記階段面との間に収納され
るように構成された熱交換器用樹脂タンクのオイルクー
ラ取付構造である。このように構成することにより、O
リング嵌着部3の高さを可及的に小とし、取付部全体の
高さを低くしてコンパクト化に寄与できる。
The present invention according to claim 2 is an embodiment of the present invention, wherein the seat portion 4 of the pipe mounting boss portion 7 is provided.
Is an oil cooler mounting structure for a heat exchanger resin tank having a tapered inclined surface on the oil cooler 1 side. Since the seat 4 of the pipe mounting boss 7 forms an inclined surface, the oil pipe 9 can be more securely fastened and clamped, and the oil pipe 9 can be stably held. Becomes The present invention described in claim 3 is an embodiment of the invention described in claim 2, wherein the seat portion 4 is provided.
And the O-ring fitting portion 3 form a two-step annular step surface, and the O-ring 14 is seated on the seat portion 4 between the flange portion 8 of the oil pipe 9 and the step surface. 3 is an oil cooler mounting structure of a heat exchanger resin tank configured to be housed. With this configuration, O
The height of the ring fitting portion 3 can be made as small as possible, and the height of the entire mounting portion can be reduced to contribute to compactness.

【0008】[0008]

【発明の実施の形態】次に、図面に基づいて本発明の実
施の形態を説明する。図1は本オイルクーラ取付構造の
要部縦断面図であって、図3における I− I矢視断面図
である。また、図2は同取付構造におけるボス部7とオ
イルパイプ9との関係を説明する部分斜視図であり、図
3は本オイルクーラが取付けられた熱交換器の要部正面
図である。なお、従来技術と同一の部品には同一番号を
付し、その共通部分の説明は従来技術の説明に譲る。こ
の取付構造のオイルクーラ1はプレートタイプの例であ
るが、対象となるオイルクーラはこのタイプに限らず二
重管型の公知のものにも適用できる。このオイルクーラ
取付構造は、ボス部7がオイルクーラ1の連通孔に連通
するように液密にそれに接合され、そのボス部7のフラ
ンジ2の平面に環状溝が設けられ、そこにOリング14が
嵌着される。フランジ2の表面から突出したボス部7の
軸方向長さは、樹脂タンク12の外面よりも少し突出する
程度に形成されている。
Next, an embodiment of the present invention will be described with reference to the drawings. FIG. 1 is a longitudinal sectional view of a main part of the present oil cooler mounting structure, and is a sectional view taken along the line II in FIG. FIG. 2 is a partial perspective view illustrating the relationship between the boss 7 and the oil pipe 9 in the mounting structure, and FIG. 3 is a front view of a main part of a heat exchanger to which the present oil cooler is mounted. The same parts as those of the prior art are denoted by the same reference numerals, and the description of the common parts is omitted from the description of the conventional art. The oil cooler 1 having this mounting structure is an example of a plate type, but the target oil cooler is not limited to this type, but can be applied to a known double-tube type. In this oil cooler mounting structure, the boss portion 7 is joined to the oil cooler 1 in a liquid-tight manner so as to communicate with the communication hole, and an annular groove is provided in the plane of the flange 2 of the boss portion 7, and an O-ring 14 is provided therein. Is fitted. The axial length of the boss 7 protruding from the surface of the flange 2 is formed so as to slightly protrude from the outer surface of the resin tank 12.

【0009】さらに、ボス部7の基部内面は2段の段付
きに形成され、その最下段に環状の内フランジ7aが設
けられている。段付きの上段側の上面には座部4が形成
され、それがオイルクーラ1側に先細り傾斜面をなして
いる。そして、ボス部7の内フランジ7aの上側にOリ
ング14が嵌着される。またボス部7の前記フランジ2よ
り上方側の外周には、外ネジ5が形成され、内周には内
ネジ6が形成されている。その外ネジ5には内周にネジ
部を有する外ナット10が螺着され、内ネジ6には外周に
ネジ部を有する内ナット11が螺着される。外ナット10
は、軸方向端面に環状突出部10aが形成され、それが樹
脂タンク12の取付孔13とボス部7の外周との間に挿入さ
れる。次にオイルパイプ9は、その外周直径がボス部7
の内フランジ7aの内周にほぼ整合し、先端部外周に環
状の鍔部8が曲折形成されている。この鍔部8の外周直
径は、ボス部7の座部4に整合する大きさとなってい
る。なお、鍔部8の先端側には短い筒部9aが形成され
ている。
Further, the inner surface of the base of the boss 7 is formed with two steps, and an annular inner flange 7a is provided at the lowest step. A seat 4 is formed on the upper surface of the stepped upper step, which forms a tapered inclined surface on the oil cooler 1 side. Then, an O-ring 14 is fitted over the inner flange 7a of the boss portion 7. An outer screw 5 is formed on the outer periphery of the boss 7 above the flange 2, and an inner screw 6 is formed on the inner periphery. An outer nut 10 having a thread portion on the inner periphery is screwed to the outer screw 5, and an inner nut 11 having a thread portion on the outer periphery is screwed to the inner screw 6. Outer nut 10
An annular projection 10 a is formed on the axial end face, and is inserted between the mounting hole 13 of the resin tank 12 and the outer periphery of the boss 7. Next, the oil pipe 9 has an outer diameter of the boss 7.
An annular flange 8 is formed in a bent shape on the outer periphery of the front end portion, substantially aligned with the inner periphery of the inner flange 7a. The outer diameter of the flange 8 is large enough to match the seat 4 of the boss 7. In addition, a short cylindrical portion 9 a is formed on the distal end side of the flange portion 8.

【0010】このようにしてなる熱交換器用樹脂タンク
のオイルクーラ取付構造は、ボス部7の内フランジ7a
とその上面から立ち上げられた内周壁との間に形成され
たOリング嵌着部3にOリング14が嵌着されると共に、
フランジ2の環状溝にもOリング14が嵌着される。そし
て、ボス部7が樹脂タンク12の内面側から取付孔13に挿
入される。次いで、外ナット10がタンクの外面側からボ
ス部7の外ネジ5に螺着締結される。さらに、内ナット
11を挿通したオイルパイプ9の先端部がボス部7の内周
にタンクの外面側から挿入され、その鍔部8が座部4に
着座される。次いで、内ナット11がボス部7の内ネジ6
に螺着締結され、その先端と座部4との間に鍔部8が挟
持締結される。このようなオイルクーラの取付構造は、
図3の如くオイルクーラ1の長手方向両端部に形成され
る。なお、図3の符号21は熱交換器コアであり、22は出
口パイプである。
The oil cooler mounting structure for the resin tank for a heat exchanger thus constructed includes an inner flange 7 a of the boss 7.
The O-ring 14 is fitted to the O-ring fitting portion 3 formed between the O-ring 14 and the inner peripheral wall raised from the upper surface thereof.
An O-ring 14 is also fitted in the annular groove of the flange 2. Then, the boss 7 is inserted into the mounting hole 13 from the inner surface side of the resin tank 12. Next, the outer nut 10 is screwed and fastened to the outer screw 5 of the boss 7 from the outer surface side of the tank. In addition, the inner nut
The tip of the oil pipe 9, through which the oil pipe 11 is inserted, is inserted into the inner periphery of the boss 7 from the outer surface of the tank, and the flange 8 is seated on the seat 4. Next, the inner nut 11 is connected to the inner screw 6 of the boss 7.
And a flange 8 is clamped and fastened between the tip and the seat 4. The mounting structure of such an oil cooler
As shown in FIG. 3, the oil cooler 1 is formed at both ends in the longitudinal direction. In FIG. 3, reference numeral 21 denotes a heat exchanger core, and reference numeral 22 denotes an outlet pipe.

【0011】[0011]

【発明の作用・効果】本発明の熱交換器用樹脂タンクの
オイルクーラ取付構造は、オイルパイプ9を取付ける内
ナット11とオイルクーラ1を取付ける外ナット10とが、
ボス部7の内周面及び外周面に夫々並列して螺着締結さ
れるから、樹脂タンク12の外面側に突出するボス部7の
軸方向長さを短くしてコンパクトな構造とすることがで
きる。そして、そのボス部7の突出長さを短くできるた
め、それを樹脂タンク12の取付孔13にその内面側から容
易に取付けることが可能となる。さらに、オイルパイプ
9の鍔部8の先端側に短い筒部9aが残され、その部分
がフランジ部7aの開口の内周に整合されるように構成
したから、オイルパイプ9を内ナット11及びボス部7で
挟持締結したときの安定性が良い。また、Oリング嵌着
部3に挿入されたOリング14がオイルパイプ9の先端部
の短い筒部9aの外周に圧接されたときの安定性がよ
い。そしてオイルパイプ9に外力が加わっても、その根
元部を安定的に保持して信頼性の高いオイルクーラ取付
構造となる。オイルパイプ9はその先端部がボス部7の
内フランジ部7aの開口に支持され、オイルパイプの中
間部が内ネジ6、ボス部7の中間部、外ネジ5を介して
取付孔13に安定的に支持される。それと共に、ボス部7
自体も取付孔13に安定的に支持される。
The oil cooler mounting structure of the resin tank for a heat exchanger according to the present invention comprises an inner nut 11 for mounting the oil pipe 9 and an outer nut 10 for mounting the oil cooler 1.
Since the screw is fastened in parallel to the inner peripheral surface and the outer peripheral surface of the boss portion 7 in parallel, the axial length of the boss portion 7 protruding to the outer surface side of the resin tank 12 can be shortened to achieve a compact structure. it can. Since the projecting length of the boss 7 can be shortened, it can be easily mounted in the mounting hole 13 of the resin tank 12 from the inner surface side. Furthermore, a short cylindrical portion 9a is left at the tip end of the flange portion 8 of the oil pipe 9, and the portion is aligned with the inner periphery of the opening of the flange portion 7a. Good stability when clamped and fastened by the boss 7. Further, the stability when the O-ring 14 inserted into the O-ring fitting portion 3 is pressed against the outer periphery of the short cylindrical portion 9a at the tip of the oil pipe 9 is good. Even if an external force is applied to the oil pipe 9, its root portion is stably held, and a highly reliable oil cooler mounting structure is obtained. The tip of the oil pipe 9 is supported by the opening of the inner flange portion 7a of the boss portion 7, and the middle portion of the oil pipe is stabilized in the mounting hole 13 through the inner screw 6, the middle portion of the boss portion 7, and the outer screw 5. Supported. At the same time, the boss 7
The body itself is also stably supported by the mounting hole 13.

【0012】次に請求項2記載の本発明は、ボス部7の
座部4がオイルクーラ1側に先細りの傾斜面をなすた
め、その座部4と内ナット11の先端部とでオイルパイプ
9の鍔部8を挟持したとき、鍔部8の周縁部をより強固
に締結し、そのオイルパイプ9が軸線周りに回転するの
を防止できる。さらに請求項3記載の本発明は、座部4
とOリング嵌着部3とで2段の環状の階段面をなし、そ
の座部4に着座される鍔部8と階段面との間にOリング
14が収納されるように構成したから、Oリング14の装着
が極めて容易となり、組み立て作業性の良いオイルクー
ラ取付構造となる。それと共に、Oリング嵌着部3の高
さを可及的に低くし、取付部のコンパクト化に寄与でき
る。
Next, according to the second aspect of the present invention, since the seat 4 of the boss 7 forms a tapered inclined surface toward the oil cooler 1, the oil pipe is formed by the seat 4 and the tip of the inner nut 11. When the flange 8 is held, the periphery of the flange 8 is more firmly fastened, and the oil pipe 9 can be prevented from rotating around the axis. Further, according to the present invention, the seat portion 4 is provided.
And the O-ring fitting portion 3 form a two-step annular step surface, and an O-ring is provided between the flange portion 8 seated on the seat portion 4 and the step surface.
Since the O-ring 14 is configured to be housed, the mounting of the O-ring 14 becomes extremely easy, and an oil cooler mounting structure with good assembling workability is obtained. At the same time, the height of the O-ring fitting portion 3 is made as low as possible, which can contribute to making the mounting portion compact.

【図面の簡単な説明】[Brief description of the drawings]

【図1】本発明のオイルクーラ取付構造の要部縦断面図
であって、図3における I−I矢視断面図。
FIG. 1 is a longitudinal sectional view of an essential part of an oil cooler mounting structure of the present invention, and is a sectional view taken along the line II in FIG.

【図2】同取付構造のオイルパイプ9とボス部7との関
係を説明する分解斜視図。
FIG. 2 is an exploded perspective view illustrating a relationship between an oil pipe 9 and a boss 7 having the same mounting structure.

【図3】本取付構造によって樹脂タンク12に取付けられ
たオイルクーラ1を有する熱交換器の要部正面図。
FIG. 3 is a front view of a main part of a heat exchanger having an oil cooler 1 mounted on a resin tank 12 by the mounting structure.

【図4】従来のオイルクーラ取付構造の要部縦断面図。FIG. 4 is a longitudinal sectional view of a main part of a conventional oil cooler mounting structure.

【符号の説明】[Explanation of symbols]

1 オイルクーラ 2 フランジ 3 Oリング嵌着部 4 座部 5 外ネジ 6 内ネジ 7 ボス部 7a 内フランジ部 8 鍔部 9 オイルパイプ 9a 短い筒部 10 外ナット 10a 環状突出部 11 内ナット 12 樹脂タンク 13 取付孔 14 Oリング 15 座金 16 エレメント 17 スペーサ 18 インナーフィン 19 袋ナット 20 ナット 21 熱交換器コア 22 出口パイプ DESCRIPTION OF SYMBOLS 1 Oil cooler 2 Flange 3 O-ring fitting part 4 Seat part 5 Outer screw 6 Inner screw 7 Boss part 7a Inner flange part 8 Flange part 9 Oil pipe 9a Short cylinder part 10 Outer nut 10a Annular protrusion 11 Inner nut 12 Resin tank 13 Mounting hole 14 O-ring 15 Washer 16 Element 17 Spacer 18 Inner fin 19 Cap nut 20 Nut 21 Heat exchanger core 22 Outlet pipe

Claims (3)

【特許請求の範囲】[Claims] 【請求項1】 オイルクーラ1の内部に連通するよう
に、一端がそのオイルクーラ1に接続された内フランジ
部7aの開口を有し、そのオイルクーラ寄りの一端部の
基部外周にフランジ2を有する短管状に形成され、その
基部内周面にOリング嵌着部3が設けられると共に、そ
の嵌着部3の軸線方向他端部側に環状の座部4が前記内
周面に形成され、外周に外ネジ5が形成され且つ、内周
に内ネジ6が形成されたパイプ取付用のボス部7と、 前記環状の座部4に整合する環状の鍔部8が先端部に曲
折形成され、その鍔部8より先端側に短い筒部9aが残
され、その短い筒部9aの外周が前記内フランジ部7a
の開口の内周に整合するオイルパイプ9と、 前記内ネジ6に螺着され、その筒部内周が前記オイルパ
イプ9の外周に整合する内ナット11と、 前記外ネジ5に螺着され、その筒部外周10aが熱交換器
用樹脂タンク12のオイルクーラの取付孔13に整合する外
ナット10と、 を具備し、 前記ボス部7の前記フランジ2と前記外ネジ5に螺着さ
れた前記外ナット10とにより、樹脂タンク12の取付孔13
の孔縁部が挟持され、 前記Oリング嵌着部3に挿入されたOリング14が前記オ
イルパイプ9の先端部の前記短い筒部9aの外周に圧接
され、 前記内ナット11が前記ボス部7の内ネジ6に螺着され
て、その内ナット11の端面と前記座部4により前記オイ
ルパイプ9の前記鍔部8が挟持締結されるように構成さ
れた熱交換器用樹脂タンクのオイルクーラ取付構造。
At least one end has an opening of an inner flange portion connected to the oil cooler so as to communicate with the inside of the oil cooler, and a flange is provided on an outer periphery of a base at one end close to the oil cooler. An O-ring fitting portion 3 is provided on the inner peripheral surface of the base portion, and an annular seat portion 4 is formed on the inner peripheral surface at the other axial end of the fitting portion 3. A pipe mounting boss 7 having an outer thread 5 formed on the outer periphery and an inner thread 6 formed on the inner periphery, and an annular flange 8 aligned with the annular seat 4 are bent at the tip. A short cylindrical portion 9a is left on the distal end side of the flange portion 8, and the outer periphery of the short cylindrical portion 9a is formed by the inner flange portion 7a.
An oil pipe 9 aligned with the inner circumference of the opening, an inner nut 11 screwed to the inner screw 6 and an inner circumference of the cylindrical portion aligned with an outer circumference of the oil pipe 9, and an outer screw 5 An outer nut 10 whose outer periphery 10a is aligned with the mounting hole 13 of the oil cooler of the resin tank 12 for a heat exchanger; and the above-described screw 2 screwed to the flange 2 and the outer screw 5 of the boss 7. With the outer nut 10, the mounting hole 13 of the resin tank 12
The O-ring 14 inserted into the O-ring fitting portion 3 is pressed against the outer periphery of the short tubular portion 9a at the tip of the oil pipe 9, and the inner nut 11 is connected to the boss portion. An oil cooler for a resin tank for a heat exchanger, which is screwed to an inner screw 6 of an oil pipe 7 and is configured such that the flange 8 of the oil pipe 9 is clamped and fastened by an end face of an inner nut 11 and the seat 4. Mounting structure.
【請求項2】 請求項1において、前記パイプ取付用ボ
ス部7の前記座部4が前記オイルクーラ1側に先細りの
傾斜面をなす熱交換器用樹脂タンクのオイルクーラ取付
構造。
2. An oil cooler mounting structure for a resin tank for a heat exchanger according to claim 1, wherein said seat portion 4 of said pipe mounting boss portion 7 is tapered toward said oil cooler 1 side.
【請求項3】 請求項2において、前記座部4と前記O
リング嵌着部3とで2段の環状の階段面をなし、前記O
リング14が前記座部4に着座される前記オイルパイプ9
の前記鍔部8と前記階段面との間に収納されるように構
成された熱交換器用樹脂タンクのオイルクーラ取付構
造。
3. The seat according to claim 2, wherein
The ring fitting portion 3 forms a two-step annular step surface,
The oil pipe 9 in which a ring 14 is seated on the seat 4
An oil cooler mounting structure for a heat exchanger resin tank configured to be housed between the flange portion 8 and the stair surface.
JP28265797A 1997-09-30 1997-09-30 Oil cooler mounting structure for resin tank for heat exchanger Expired - Lifetime JP3245739B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP28265797A JP3245739B2 (en) 1997-09-30 1997-09-30 Oil cooler mounting structure for resin tank for heat exchanger

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP28265797A JP3245739B2 (en) 1997-09-30 1997-09-30 Oil cooler mounting structure for resin tank for heat exchanger

Publications (2)

Publication Number Publication Date
JPH11108585A true JPH11108585A (en) 1999-04-23
JP3245739B2 JP3245739B2 (en) 2002-01-15

Family

ID=17655370

Family Applications (1)

Application Number Title Priority Date Filing Date
JP28265797A Expired - Lifetime JP3245739B2 (en) 1997-09-30 1997-09-30 Oil cooler mounting structure for resin tank for heat exchanger

Country Status (1)

Country Link
JP (1) JP3245739B2 (en)

Cited By (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2003042376A (en) * 2001-07-31 2003-02-13 Toyo Radiator Co Ltd Connection structure for resin pipe and tank
WO2006032169A1 (en) * 2004-09-21 2006-03-30 Kehui Ou A new style heating radiator
KR100662243B1 (en) 2004-09-21 2006-12-28 주식회사 원진 Oil Cooler for Car
KR100676650B1 (en) 2004-09-21 2007-01-31 주식회사 원진 Oil Cooler for Car
KR100899946B1 (en) 2008-08-08 2009-05-27 김진영 Head-pipe for heat exchanger
EP2196759A1 (en) * 2008-12-12 2010-06-16 Pierburg GmbH Assembly for fluid connection of an internal casing with a tube fitting leading outside
KR101409165B1 (en) * 2007-11-30 2014-07-02 한라비스테온공조 주식회사 An Oil Cooler
KR101422074B1 (en) * 2012-10-18 2014-07-23 노한영 Structure for fixing heat exchanger in outlet pipe
KR20200081931A (en) * 2018-12-28 2020-07-08 한온시스템 주식회사 flow-pipe connecting apparatus for heat exchanger
EP3855108A1 (en) * 2020-01-23 2021-07-28 Valeo Autosystemy SP. Z.O.O. A plate and spigot connection system

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP1739380B1 (en) 2005-06-21 2012-03-21 Calsonic Kansei Corporation Oil cooler
KR101354165B1 (en) 2012-10-25 2014-01-23 (주)혜원전기 Pipe fixing structure for water purifier

Cited By (12)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2003042376A (en) * 2001-07-31 2003-02-13 Toyo Radiator Co Ltd Connection structure for resin pipe and tank
JP4713025B2 (en) * 2001-07-31 2011-06-29 株式会社ティラド Connection structure between resin pipe and tank
WO2006032169A1 (en) * 2004-09-21 2006-03-30 Kehui Ou A new style heating radiator
KR100662243B1 (en) 2004-09-21 2006-12-28 주식회사 원진 Oil Cooler for Car
KR100676650B1 (en) 2004-09-21 2007-01-31 주식회사 원진 Oil Cooler for Car
KR101409165B1 (en) * 2007-11-30 2014-07-02 한라비스테온공조 주식회사 An Oil Cooler
KR100899946B1 (en) 2008-08-08 2009-05-27 김진영 Head-pipe for heat exchanger
EP2196759A1 (en) * 2008-12-12 2010-06-16 Pierburg GmbH Assembly for fluid connection of an internal casing with a tube fitting leading outside
KR101422074B1 (en) * 2012-10-18 2014-07-23 노한영 Structure for fixing heat exchanger in outlet pipe
KR20200081931A (en) * 2018-12-28 2020-07-08 한온시스템 주식회사 flow-pipe connecting apparatus for heat exchanger
EP3855108A1 (en) * 2020-01-23 2021-07-28 Valeo Autosystemy SP. Z.O.O. A plate and spigot connection system
WO2021148537A1 (en) * 2020-01-23 2021-07-29 Valeo Autosystemy Sp. Z O.O. A plate and spigot connection system

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