Casting product with tubular flow passages, method of casting the same product, and cast-in pipe insert unit
11241732 · 2022-02-08
Assignee
Inventors
- Yoon-Ki Lee (Suwon-si, KR)
- Hyung-Sop Yoon (Yongin-si, KR)
- Cheol-Ung Lee (Hwaseong-si, KR)
- Jae-Gi Sim (Seoul, KR)
- Jun Bak (Daegu, KR)
- Sang-Muk Park (Daegu, KR)
- Sung-Chun Jang (Daegu, KR)
- Jin-Hee Lee (Daegu, KR)
- Young-Han No (Daegu, KR)
- Young-Jae Do (Daegu, KR)
Cpc classification
B22D17/2236
PERFORMING OPERATIONS; TRANSPORTING
B22D17/24
PERFORMING OPERATIONS; TRANSPORTING
International classification
B22D17/24
PERFORMING OPERATIONS; TRANSPORTING
B22D17/00
PERFORMING OPERATIONS; TRANSPORTING
B22D17/22
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A method of casting a casting product having tubular flow passages includes: attaching a cast-in pipe insert, having outer and inner fixing members to which both ends of pipes are coupled, respectively, to a fixed mold; assembling a movable mold with the fixed mold; injecting a molten metal into a cavity defined inside the fixed and movable molds; ejecting a casting product from the assembled molds after injecting the molten metal; and removing the outer and inner fixing members from the casting product.
Claims
1. A method of casting a casting product having tubular flow passages, comprising: attaching a cast-in pipe insert, having outer and inner fixing members to which both ends of pipes are coupled, respectively, to a fixed mold; assembling a movable mold with the fixed mold; injecting a molten metal into a cavity defined inside the fixed and movable molds; ejecting a casting product after injecting the molten metal; and removing the outer and inner fixing members from the casting product, wherein the fixed mold or the movable mold has a cone portion at a front end thereof, wherein the cone portion is inserted through and coupled with an inner side of the inner fixing member, wherein each of the outer fixing member and the inner fixing member has a ring shape having a circular cross section, wherein a diameter of the inner fixing member is smaller than a diameter of the outer fixing member, wherein the inner fixing member is disposed inside the outer fixing member.
2. The method according to claim 1, wherein the cast-in pipe insert includes two or more pipes.
3. The method according to claim 1, wherein the injecting a molten metal is carried out by a high-pressure casting.
4. The method according to claim 1, wherein the pipes are arranged in the cavity.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The above and other objects, features and other advantages of the present disclosure will be more clearly understood from the following detailed description taken in conjunction with the accompanying drawings, in which:
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DESCRIPTION OF SPECIFIC EMBODIMENTS
(15) In order to fully understand the present disclosure, operational advantages of the present disclosure and objects achieved by implementing the present disclosure, the accompanying drawings exemplifying embodiments of the present disclosure and contents described in the accompanying drawings need to be referred to.
(16) In describing the exemplary embodiments of the present disclosure, detailed description of technology known in the art or iterative description may be made shortly or omitted to avoid obscuring the subject matter of the present disclosure.
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(18) Hereinafter, a casting product having tubular flow passages, a method of casting a casting product, and a cast-in pipe insert unit according to an embodiment of the present disclosure will be described with reference to
(19) An embodiment of the present disclosure relates to a casting product 10 having a hollow 11 formed therein and a casting method in which the casting product having the hollow 11 formed therein is casted while forming flow passages passing through a surface of the hollow and an outer surface of the casting product 10 in the casting product 10.
(20) A cast-in pipe insert unit 100 is provided for this purpose.
(21) In other words, this embodiment of the present disclosure is intended to form flow passages in the casting product in the state where pipes for forming the flow passages are inserted under high-pressure casting rather than by post-machining the flow passages, wherein the cast-in pipe insert unit 100 is a member for fixing to a mold the pipes to be inserted.
(22) The cast-in pipe insert unit 100 prepared is fixed to a fixed mold 20. The cast-in pipe insert unit 100 is to fix the pipes in the mold and includes pipes, an outer fixing member and an inner fixing member wherein the outer fixing member is fixed to the fixed mold 20.
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(24) In addition, this embodiment illustrates the number of pipes as six, but the number of pipes may vary depending on casting products. The pipe may be one, but two or more pipes are more preferable in terms of fixing.
(25) However, the outer fixing member and the inner fixing member do not necessarily have to be circular rings and their shapes may vary depending on flow passages to be formed.
(26) Then, a movable mold 30 is moved and assembled with the fixed mold 20.
(27) A shape of a cavity formed by the assembled movable and fixed molds 30 and 20 are defined by opposing surfaces of the movable mold 30 and the fixed mold 20, which are formed to match with a shape of the casting product to cast. A cone portion 31 is formed at the front end of the movable mold 30. The cone portion 31 is inserted through and closely coupled with the inside of the inner fixing member.
(28) In the exemplary embodiment, although the cone portion 31 is formed at the front end of the movable mold 30, the cone portion 31 may be formed at the front end of the fixed mold 20.
(29) Then, casting is carried out by injecting molten metal into the cavity. The casting may be carried out by a high-pressure casting method.
(30) At this time, pipes 130 for forming flow passages are disposed in the cavity so that the pipes 130 are embedded between the surface of the hollow and the outer surface of the casting product 10.
(31) Then, after being cooled and ejected, a casting product 10 having the pipes 130 embedded and the hollow 11 formed therein as shown in
(32) Referring to
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(35) First, a cap 140 is coupled to one end of the pipe 130.
(36) The pipe 130 may be subjected to a bending process in advance according to design of flow passages.
(37) One end of the pipe 130 is coupled to the inner ring 120 while the other end is coupled to the outer ring 130.
(38) The inner ring 120 is formed with inner coupling grooves 121 into which one end of the pipe 130 is inserted so that one end of the pipe 130 can be press-fitted into the inner coupling groove 121 as shown in
(39) The cap 140 is coupled to the other end of the pipe 130 and the cap 140 is press-fitted into an outer coupling groove 111 formed in the outer ring 110.
(40) Coupling by means of the cap 140 also serves to improve performance of pressure resistance during casting as described later. Although the cap 140 is coupled to one end of the pipe 130 coupled to the outer ring 110 in this embodiment of the present disclosure, the cap 140 may be coupled to one end of the pipe 130 coupled to the inner ring 120, or otherwise both ends of the pipe 130.
(41) In other words, it is preferable that the cap 140 is coupled to either one of both ends of the pipe 130, on which greater casting pressure is imparted. The cap 140 serves to couple the ends of the pipe to the inner ring 120 or the outer ring 110. Coupling the cap to the inner ring 120 or the outer ring 110 may be performed by any other coupling methods rather than by press fitting it into the coupling groove.
(42) In
(43) As shown in
(44) In other words, the cast-in pipe insert unit 100 according to the embodiment of the present disclosure utilizes the cap 140 and arc welding. On the contrary, if an adapter 240 shown as a comparative example in
(45) Although airtightness of the flow passages can be ensured by using insert pipes, there is a possibility that molten metal may flush into the inside of the pipes during high pressure casting.
(46) Typically, brazing is used to seal pipes. Such a brazing method is advantageous in that low melting point metal such as copper is inserted into a joint after joining between the ring and the pipe by means of the cylindrical adapter 240 manufactured separately and then maintains them for a long time at a high temperature and as a result, airtightness can be completely secured by means of the low melting point metal. However, as the pipe is exposed to high temperature for a long time when brazing and hence physical properties of raw material of the pipe is deteriorated, the pipe may be deformed during high-pressure casting as shown in
(47) In other words, if compression strength of the raw material of the pipe is 9.33 kN, it is lowered to 2.95 kN at the time of brazing, which is about ⅓ or less of the initial compression strength, resulting in compression of the pipe.
(48) Therefore, in order to overcome such deterioration of physical properties due to brazing, this embodiment of the present disclosure adopts arc welding to avoid deformation of the pipe during high-pressure casting. The arc welding is advantageous in that it is simpler in terms of process and more inexpensive compared to the brazing and it is simpler in terms of equipment and more inexpensive compared to laser welding.
(49) However, in the case of the arc welding, it may possibly difficult to secure airtightness between the ring and the pipe. Therefore, this embodiment of the present disclosure adopts the cap 140 to be inserted into the pipe 130 in order to secure airtightness.
(50) Further,
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(52) As described above, embodiments of the present disclosure has advantageous effect that casting process can be carried out in the state in which the pipes are stably fixed in the mold by means of the cast-in pipe insert unit, no deformation of the pipes occurs during casting process, and quality of the casting product is also improved by virtue of casting process carried out in the state in which the pipes are inserted in the mold.
(53) Referring to
(54) The examples shown in these figures are a deep carrier case. In the example as shown in
(55) According to embodiments of the present disclosure, cast-in pipe inserts are applied in casting a casting product to form flow passages and thus no separate process for machining flow passages after casting the product is required so that it is possible to fundamentally solve any leakage problem and form intricate flow passages in the casting product.
(56) Although the present disclosure has been described in the foregoing with reference to the drawings illustrated by way of an example, the present disclosure is not limited to the disclosed embodiments and it is apparent to those of ordinary skill in the art that various modifications and variations can be made to the present disclosure without departing from the spirit and scope of the disclosure. Therefore, such modifications or variations fall within the scope of the present disclosure as claimed and the scope of the present disclosure should be interpreted based on the appended claims.