CASTING DIE
20180056379 ยท 2018-03-01
Inventors
- Toshihiro Takahashi (Tochigi, JP)
- Kenichi Shuto (Tochigi, JP)
- Masayuki Hattori (Tochigi, JP)
- Hiroshi Takahashi (Tochigi, JP)
Cpc classification
B22C9/06
PERFORMING OPERATIONS; TRANSPORTING
B22D18/04
PERFORMING OPERATIONS; TRANSPORTING
B22D17/22
PERFORMING OPERATIONS; TRANSPORTING
International classification
B22D17/00
PERFORMING OPERATIONS; TRANSPORTING
B22D18/04
PERFORMING OPERATIONS; TRANSPORTING
Abstract
Provided is a casting die 1 including a base 3, a lower mold 4, a horizontal sliding mold 5, and an upper mold 6. The lower mold 4 is configured by a lower mold body 10 and a lower mold stage 11. A guide member 17 is mounted on the lower mold stage 11 so as to freely move in the up and down direction with respect to the lower mold stage 11. The horizontal sliding mold 5 is configured to slide on the guide member 17 and the lower mold body 10. The guide member 17 is provided with a locking part 17a which locks with a lateral edge part of the lower mold body 10 when the lower mold body 10 is separated upward from the lower mold stage 11, so that the lower mold body 10 and the guide member 17 separate upward together.
Claims
1. A casting die comprising: a base; a lower mold arranged on the base; a horizontal sliding mold which is provided so as to be capable of moving on the lower mold and which has a surface shape corresponding to at least a part of a side face shape of a product to be casted; and an upper mold which is provided so as to be capable of moving up and down with respect to the lower mold and which has a surface shape corresponding to an upper face shape of the product; wherein, the lower mold is configured by a lower mold body and a lower mold stage which supports the lower mold body from below, the lower mold body has a positioning part which abuts the horizontal sliding mold at a mold-closing position of the horizontal sliding mold, and has a surface shape corresponding to a lower face shape of the product, a guide member is mounted on the lower mold stage so as to freely move in an up and down direction with respect to the lower mold stage, the horizontal sliding mold is configured to slide on the guide member and the lower mold body, and the guide member is provided with a locking part configured to lock with a lateral edge part of the lower mold body when the lower mold body is separated upward with respect to the lower mold stage, so that the lower mold body and the guide member are separated upward together.
2. The casting die according to claim 1, wherein the lower mold body is fixed to the lower mold stage via a plurality of spacers which are arranged with an interval between each other.
3. The casting die according to claim 2, wherein, the lower mold body includes a support plate provided on an upper face of the lower mold body, the horizontal sliding mold is configured to slide on the support plate of the lower mold body and the guide member, and an upper face of the support plate and an upper face of the guide member are set as a flush surface.
4. The casting die according to claim 1, wherein, the lower mold body includes a support plate provided on an upper face of the lower mold body, the horizontal sliding mold is configured to slide on the support plate of the lower mold body and the guide member, and an upper face of the support plate and an upper face of the guide member are set as a flush surface.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0016]
[0017]
[0018]
[0019]
[0020]
[0021]
[0022]
DESCRIPTION OF EMBODIMENTS
[0023] An embodiment of a casting die of the present invention is explained with reference to
[0024] Referring to
[0025] The casting machine 2 includes a base 3, and the casting die 1 is arranged on the base 3. The casting die 1 includes a lower mold 4 fixed on the base 3, four horizontal sliding molds 5 which are each arranged so as to surround the center portion of the lower mold 4 from four side faces on the lower mold 4, and an upper mold 6 arranged so as to cover the space defined by the lower mold 4 and the four horizontal sliding molds 5 from the upper side.
[0026] The four horizontal sliding molds 5 are able to freely slide along a rail (not illustrated) radially provided at the peripheral portion of the lower mold 4. The lower mold 4 is provided with a positioning part 4a in order to set the mold-closing position of the horizontal sliding molds 5. The four horizontal sliding molds 5 slide from the mold-opening position, and stop at the mold-closing position by abutting the corresponding positioning part 4a.
[0027] The lower mold 4 is provided with a sprue which is not illustrated. The base 3 is provided with a molten metal furnace which is not illustrated. Molten metal is stored in the molten metal furnace, and by pressurizing the molten metal, the molten metal is supplied to the inside of the casting die 1 via a stoke (supply conduit) through the sprue of the lower mold 4.
[0028] The lower mold 4 is formed in a rectangular shape in a plane view. An upper face of the lower mold 4 has a surface shape corresponding to a shape of a lower face of the product (cylinder head) to be casted. Inner faces of the four horizontal sliding molds 5 have a surface shape respectively corresponding to a shape of a side face of the product (cylinder head) to be casted. A lower face of the upper mold 6 has a surface shape corresponding to a shape of an upper face of the product (cylinder head) to be casted.
[0029] As illustrated in
[0030] As illustrated in
[0031] Here, as shown by the dashed line in
[0032] In this regard, in the casting die 1 of the present embodiment, the bolts 15 are arranged at the periphery of the hole 12a for the stoke. According to this, the lower mold body 10 is less likely to receive the influence of the deformation (warp) of the lower mold stage 11 caused by the thermal expansion due to the heat of the molten metal furnace, compared to the case of connecting the lower mold body 10 and the lower mold stage 11 by a bolt (the bolt indicated by the dashed line in
[0033] As illustrated in
[0034] Here, at the center of the two support plates 16 provided at each side of the lower mold body 10, a moving-direction restricting member 16 which prevents the horizontal sliding mold 5 from moving to a direction different from the moving direction, is provided. An U-shaped member (not illustrated) provided at the lower face of the horizontal sliding mold 5 engages with the moving-direction restricting member 16 in the lateral direction (a direction orthogonal to the moving direction of the horizontal sliding mold 5 on a plane surface of the lower mold body 10). By this, the horizontal sliding mold 5 is prevented from moving in a direction different from the moving direction.
[0035] Moreover, in the present embodiment, although the case of providing the cutout part 10a has been explained, the cutout part 10a may be abbreviated and the support plate 16 may be directly provided on the upper face of the lower mold body 10. In such case, support plate 16 should be arranged so that the lateral edge part of the lower mold body 10 is exposed.
[0036] Moreover, a plurality of guide members 17 are mounted on the lower mold stage 11 so as to surround the lower mold body 10 from the side face. The horizontal sliding mold 5 slides on the guide member 17. A slide plate 18 is provided at the lower face of the horizontal sliding mold 5.
[0037] The guide member 17 is attached to the lower mold stage 11 (the adapter 12 or the frame 13) via a stripper bolt 19 so as to be movable in the up and down direction to a small extent. A head receiving part 17b, which houses the head part 19a of the stripper bolt 19 so as to be movable in the up and down direction, is provided at the guide member 17 so as to be capable of moving in the up and down direction with respect to the stripper bolt 19. The reference A indicated in
[0038] As above, by forming the support plate 16 smaller than the cutout part 10a, and engaging the locking part 17a with the portion of the cutout part 10a exposing from the support plate 16, it is not necessary to separately provide a dedicated portion for engaging with the locking part at the lower mold body 10, thereby enabling to engage the locking part 17a with the lower mold body 10 only by forming the support plate 16 to be small. Here, in the case of abbreviating the cutout part 10a and providing the support plate 16 directly on the upper face of the lower mold body 10, the locking part 17a may be engaged with the lateral edge part of the upper face of the lower mold body 10.
[0039] According to the casting die 1 of the present embodiment, as described above, by attaching the guide member 17 to the lower mold stage 11 (adapter 12 or the frame 13) by a stripper bolt 19 so as to be freely movable in the up and down direction, and also by engaging the locking part 17a of the guide member 17 to the upper face of the cutout part 10a, even if the lower mold stage 11 deforms by heat expansion, and the lower mold body 10 floats upward and separates from the lower mold stage 11, the guide member 17 also floats upward together with the lower mold body 10 and separates from the lower mold stage 11. Therefore, it is able to prevent the change of relative position of the lower mold body 10 and the guide member 17 by the allowable stroke of the stripper bolt 19. In the present embodiment, the cutout part 10a corresponds to the lateral edge part of the lower mold body of the present invention.
[0040] Accordingly, it is able to prevent a level difference from being formed between the guide member 17 and the lower mold body 10, to prevent the inclination of the posture and the malfunction of the horizontal sliding mold 5 due to formation of the level difference, and to prevent any offset load from being applied to the actuator (not illustrated) of the horizontal sliding mold 5.
[0041] In the present embodiment, the casting die 1 in which the lower mold body 10 includes a support plate 16 at the upper face of the lower mold body 10, and both of the upper faces of the support plate 16 and the guide member 17 are set as a flush surface, has been explained. By arranging the upper faces of the support plate 16 and the guide member 17 as a flush surface, the sliding face provided at the lower face of the horizontal sliding mold 5, which slides on both of the upper faces of the support plate 16 and the guide member 17, can be formed as a smooth surface without having any level difference, thereby making it easy to set the sliding face. However, the casting die 1 of the present invention is not limited to such configuration.
[0042] For example, even if the support plate 16 and the guide member 17 already have a level difference, it may be configured such that the horizontal sliding mold 5 is provided with a corresponding level difference in advance so that the horizontal sliding mold 5 does not incline. As such, even if the support plate 16 and the guide member 17 have a level difference beforehand, it is able to obtain the effect of the present invention to prevent the change of the relative positional relationship between the support plate 16 and the guide member 17 by the deformation of the lower mold stage 11 due to thermal expansion.
[0043] Next, referring to
[0044]
[0045]
[0046] In this regard, although the method of adjusting the height of
[0047]
DESCRIPTION OF REFERENCE NUMERALS
[0048] 1 casting die
[0049] 2 casting machine
[0050] 3 base
[0051] 4 lower mold
[0052] 4a positioning part
[0053] 5 horizontal sliding mold
[0054] 6 upper mold
[0055] 10 lower mold body
[0056] 10a cutout part (lateral edge part)
[0057] 11 lower mold stage
[0058] 12 adapter
[0059] 12a hole
[0060] 12b bearing surface
[0061] 13 frame
[0062] 14 spacer
[0063] 15 bolt
[0064] 16 support plate
[0065] 17 wide member
[0066] 17a locking part
[0067] 17b head receiving part
[0068] 18 slide plate
[0069] 19 stripper bolt
[0070] 19a head part
[0071] A allowable stroke