Housingless type oil cooler and method for producing the same
First Claim
1. A housingless type oil cooler comprising:
- a core portion (1) constituted by a plurality of plates (3,
5) respectively having through-holes (43,
45) formed at their center portions, said plate (3,
5) being alternately laminated on one another so that cooling water passages (65) and oil passages (67) are alternately formed between said plates (3,
5);
one of an oil filter (77) and a sealed flange portion (401) mounted on said core portion (1) through a composite tank (302); and
an oil outflow pipe (47) inserted through said through-holes (3,
5) of said core portion (1) so as to make oil pass through said oil outflow pipe;
characterized in that;
said composite tank (302) is constituted by an upper tank (311) and a partition tank (313) which is disposed inside of said upper tank (311) so that a flat portion (314) of said partition tank (313) is arranged on said core portion (1);
said upper tank (311) is constituted by an annular top portion (315) for supporting said oil filter (77), an inner cylindrical portion (316), and an outer cylindrical portion (317), said portions (315, 316,
317) being continuously formed so that a gate shape of said portions (315, 316,
317) is made annular to thereby form a doughnut space inside said portions (315, 316,
317), said upper tank (311) having a plurality of oil communicating holes (318) formed through said inner cylindrical portion (316) and an opening portion (319) formed through said inner cylindrical portion (316) in a position separated by a predetermined distance from said flat portion (314) of said partition tank (313) in a direction of an axis of said core portion;
said partition tank (313) has a through-hole (318A), an oil passage hole (319A), a first projection-like partition portion (321), and a second projection-like partition portion (323), said through-hole (38A) and said oil passage hole (319A) being formed through said flat portion (314), said first and second projection-like partition portions (321,
323) being formed on said flat portion (314) so as to support at their surfaces parts of said annular top portion (315) of said upper tank (311) and having an inlet tank chamber (320) and an outlet tank chamber (322) formed inside of said first and second projection-like partition portions (321,
323), respectively;
a seat connector (525) connected to said opening portion (319) of said upper tank (311) and to said flat portion (314) of said partition tank (313), said seat connector (325) having an opening hole (326) formed therethrough and being connected to an inlet end of said oil outflow pipe (47);
a cooling water inflow pipe (329) is provided so as to pass through said upper tank (311) and said first projection-like partition portion (321) and so as to open in said inlet tank chamber (320) of said partition tank (313), said cooling water inflow pipe (329) being connected to said upper tank (311) and said first projection-like partition portion (321) anda cooling water outflow pipe (330) is provided so as to pass through said upper tank (311) and said second projection-like partition portion (323) and so as to open in said outlet tank chamber (322) of said partition tank (313), said cooling water outflow pipe (330) being connected to said upper tank (311) and said second projection-like partition portion (323).
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Accused Products
Abstract
The present invention relates to a housingless type oil cooler formed by laminating a plurality of plate members and an object thereof is to prevent deformation of an oil filter seal surface caused by excessive tightening at the time or mounting of an oil filter. An upper tank 111 opened in one side and shaped like a donut is mounted on an upper portion of a core portion 1 so as to cover the latter, a partition plate 113 is disposed in the inside of the upper tank 111, an oil-passing projection portion 115 having a second communicating hole 115A formed in its inner wall is formed on the partition plate 113 so that the inside of the oil-passing projection portion is communicated with an outlet 67B of an oil passage 67 and the second communicating hole 115A overlaps a first communicating hole 111A of the upper tank 111, a projection-like partition portion 117 is formed on the partition plate 113 so that the projection-like partition portion 117 is fixedly attached at its surface onto the inner wall surface of a top portion 111C of the upper tank 111 to thereby partition the inside of the upper tank 111 into an inlet tank chamber 125 and an outlet tank chamber 127, and a cooling water inflow pipe 131 and a cooling water outflow pipe 133 are connected to the upper tank 111.
8 Citations
7 Claims
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1. A housingless type oil cooler comprising:
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a core portion (1) constituted by a plurality of plates (3,
5) respectively having through-holes (43,
45) formed at their center portions, said plate (3,
5) being alternately laminated on one another so that cooling water passages (65) and oil passages (67) are alternately formed between said plates (3,
5);one of an oil filter (77) and a sealed flange portion (401) mounted on said core portion (1) through a composite tank (302); and an oil outflow pipe (47) inserted through said through-holes (3,
5) of said core portion (1) so as to make oil pass through said oil outflow pipe;characterized in that; said composite tank (302) is constituted by an upper tank (311) and a partition tank (313) which is disposed inside of said upper tank (311) so that a flat portion (314) of said partition tank (313) is arranged on said core portion (1); said upper tank (311) is constituted by an annular top portion (315) for supporting said oil filter (77), an inner cylindrical portion (316), and an outer cylindrical portion (317), said portions (315, 316,
317) being continuously formed so that a gate shape of said portions (315, 316,
317) is made annular to thereby form a doughnut space inside said portions (315, 316,
317), said upper tank (311) having a plurality of oil communicating holes (318) formed through said inner cylindrical portion (316) and an opening portion (319) formed through said inner cylindrical portion (316) in a position separated by a predetermined distance from said flat portion (314) of said partition tank (313) in a direction of an axis of said core portion;said partition tank (313) has a through-hole (318A), an oil passage hole (319A), a first projection-like partition portion (321), and a second projection-like partition portion (323), said through-hole (38A) and said oil passage hole (319A) being formed through said flat portion (314), said first and second projection-like partition portions (321,
323) being formed on said flat portion (314) so as to support at their surfaces parts of said annular top portion (315) of said upper tank (311) and having an inlet tank chamber (320) and an outlet tank chamber (322) formed inside of said first and second projection-like partition portions (321,
323), respectively;a seat connector (525) connected to said opening portion (319) of said upper tank (311) and to said flat portion (314) of said partition tank (313), said seat connector (325) having an opening hole (326) formed therethrough and being connected to an inlet end of said oil outflow pipe (47); a cooling water inflow pipe (329) is provided so as to pass through said upper tank (311) and said first projection-like partition portion (321) and so as to open in said inlet tank chamber (320) of said partition tank (313), said cooling water inflow pipe (329) being connected to said upper tank (311) and said first projection-like partition portion (321) and a cooling water outflow pipe (330) is provided so as to pass through said upper tank (311) and said second projection-like partition portion (323) and so as to open in said outlet tank chamber (322) of said partition tank (313), said cooling water outflow pipe (330) being connected to said upper tank (311) and said second projection-like partition portion (323). - View Dependent Claims (2, 3, 4, 5)
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6. A method for producing a housingless type oil cooler in which a plurality of plates (3, 5) having through-holes (43, 45) formed at their center portions are alternately laminated on one another so as to alternately form cooling water passages (65) and oil passages (67) between said plates (3, 5) to thereby form a core portion (1) made of aluminum, in which a composite tank (302) of aluminum is mounted on said core portion (1) so as to partition cooling water and oil, and in which an oil outflow pipe (47) made of aluminum for making oil flow therethrough is inserted through through-holes (3, 5) of said core portion (1), said method comprising the steps of:
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constituting a composite tank (302) by an upper tank (311) and an partition tank (313) which is provided in said upper tank (311) and which has a flat portion (314) disposed on said core portion (1); continuously forming an annular top portion (315) for supporting one of an oil filter (77) and a sealed flange (401), an inner cylindrical portion (316), and an outer cylindrical portion (317) to constitute said upper tank (311) so that a gate shape of said portions (315, 316,
317) is made annular to thereby form a doughnut space inside said portions (315, 316,
317), and forming a plurality of oil communicating holes (318) through said inner cylindrical portion (316), and further forming an opening portion (319) through said inner cylindrical portion (316) in position separated by a predetermined distance from said flat portion (314) of said partition tank (313) in a direction of an axis of said core portion;forming a through-hole (318A) and an oil passage hole (319A) through said flat portion (314) of said partition tank (313), and forming a first projection-like partition portion (321) and a second projection-like partition portion (323) on said flat portion (314) so as to support a their surfaces parts of said annular top portion (315) of said upper tank (311) and so as to define an inlet tank chamber (320) and an outlet tank chamber (322) in respective insides thereof; putting said partition tank (313) in said upper tank (311) and mounting the assembly of said partition tank (313) and said upper tank (311) on said core portion (1); inserting a seat connector (325) having an opening portion (326) formed therethrough into said opening portion of said upper tank (311) of said composite tank (302); radially expanding said oil outflow pipe (47) and said seat connector (325) to thereby temporarily fix said core portion (1) and said composite tank (302) with each other; and fixedly brasing said sea connector (325) to said flat portion (314) of said partition tank (313) in the above condition of temporarily fixing to thereby integrate said composite tank (302) and said core portion (1) with each other. - View Dependent Claims (7)
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Specification