CN217617612U - Combined casting mold convenient to assemble - Google Patents

Combined casting mold convenient to assemble Download PDF

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Publication number
CN217617612U
CN217617612U CN202221835234.4U CN202221835234U CN217617612U CN 217617612 U CN217617612 U CN 217617612U CN 202221835234 U CN202221835234 U CN 202221835234U CN 217617612 U CN217617612 U CN 217617612U
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China
Prior art keywords
mould
screw rod
plate
mounting
guide post
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CN202221835234.4U
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Chinese (zh)
Inventor
梁凌涛
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Baoding Qinjin Casting Co ltd
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Baoding Qinjin Casting Co ltd
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Abstract

The utility model discloses a modular casting mould convenient to equipment, the inside one side of shifting chute is rotated and is connected with the lead screw, the first spout has been seted up to the corresponding shifting chute department symmetry in operation platform top, sliding connection has the link in the first spout, bottom mould is installed on bottom mounting panel top, operation platform top middle part symmetry installs the guide post, four guide post tops are connected respectively in roof bottom four corners department, guide post sliding connection has the guide block, there is a mould top through the mounting screw in top mounting panel bottom, cooperation through guide post and guide block makes top mould and die block mould compound die in-process fixed route and atress evenly can not produce and rock, thereby it can accomplish the equipment compound die to need not the reference post, equipment compound die is fast and accurate, part solidification back and top mould separation in the bottom mould, make another bottom mould casting on top mould and the link, thereby need not to wait for the cooling time of part, accelerate casting speed, and improve production efficiency.

Description

Combined casting mold convenient to assemble
Technical Field
The utility model relates to a casting mould technical field specifically is a modular casting mould convenient to equipment.
Background
The casting mold is used for obtaining the structural shape of the part, other easily-formed materials are used for forming the structural shape of the part in advance, then the part is placed into the mold, a cavity with the same structural size as the part is formed in the sand mold, then the fluid liquid is poured into the cavity, and the part with the same structural shape as the mold can be formed after the fluid liquid is cooled and solidified.
But the combined casting mould on the market at present is a top mould and corresponds a bottom mould, pours into the molten iron after carrying out the compound die and waits for the part shaping, then part mould waits for the inside part cooling of bottom mould once more and just can take out and cast next time, and the part is cold to lack the time longer to lead to production efficiency lower, when carrying out the compound die between the combined casting mould simultaneously, need carry out guiding orientation through the reference column between top mould and the bottom mould, thereby lead to the compound die speed slower.
SUMMERY OF THE UTILITY MODEL
The utility model provides a modular casting mould convenient to equipment, it corresponds a bottom mould to put forward modular casting mould on the existing market in can effectively solving above-mentioned background art, pour into the molten iron after carrying out the compound die and wait for the part shaping, then separate the mould and wait for the inside part cooling back of bottom mould once more and just can take out and carry out the casting next time, and the part is cold to lack the time longer, thereby it is lower to lead to production efficiency, when carrying out the compound die between the modular casting mould simultaneously, need carry out guiding orientation through the reference column between top mould and the die block utensil, thereby lead to the slower problem of compound die speed.
In order to achieve the above object, the utility model provides a following technical scheme: a combined casting mould convenient to assemble comprises a workbench, wherein an auxiliary casting assembly is arranged in the workbench and comprises a moving groove, a screw rod motor, a first sliding groove, a connecting frame, a bottom mounting plate, a bottom mould, a guide post, a top plate, an electric push rod, a guide block, a top mounting plate and a top mould;
the inside shifting chute of having seted up of operation panel, inside one side of shifting chute is rotated and is connected with the lead screw, there is the lead screw motor operation panel one side corresponds lead screw department through the mounting screw, the operation panel top corresponds shifting chute department symmetry and has seted up first spout, sliding connection has the link in the first spout, link top both sides all have end mounting panel through the mounting screw, end mould is installed on end mounting panel top, operation panel top mid-mounting has the guide post, four the guide post top is connected respectively in roof bottom four corners department, roof top middle part embedding installs electric putter, guide post sliding connection has the guide block, there is a mounting panel guide block bottom middle part through the mounting screw, there is a mould top through the mounting screw in top mounting panel bottom.
Preferably, the electric push rod penetrates through the top plate and is connected to the top end of the guide block, and the screw rod motor and the input end of the electric push rod are respectively electrically connected with the output end of an external power supply.
Preferably, the bottom end of the connecting frame is movably sleeved outside the screw rod, and an output shaft of the screw rod motor penetrates through the first operating platform and is connected to one end of the screw rod.
Preferably, the workbench is provided with a buffer cooling assembly, and the buffer cooling assembly comprises a second sliding chute, a moving plate, a cooling fan, a buffer spring, a pressing block and a rubber base plate;
the novel cooling device is characterized in that a second sliding groove is formed in the top of the back face of the operation table, a moving plate is slidably connected in the second sliding groove, a cooling fan is mounted at the top end of the moving plate through screws, a buffer spring is mounted at the position, corresponding to the guide column, of the bottom end of the guide block, the bottom end of the buffer spring is connected to the top end of the pressing block, and a rubber base plate is bonded to the bottom end of the pressing block.
Preferably, the inner diameter of the pressing block is equal to the diameter of the guide column, and the shape of the inside of the second sliding chute is matched with the shape of one end of the moving plate.
Preferably, the shape and size of the top end of the rubber base plate are consistent with the shape and size of the bottom end of the pressing block, and the input end of the cooling fan is electrically connected with the output end of the external power supply.
Compared with the prior art, the beneficial effects of the utility model are that: the utility model has scientific and reasonable structure and safe and convenient use;
1. be provided with supplementary casting subassembly, cooperation through guide post and guide block makes the top mould move down in-process fixed route and atress evenly can not produce and rock, the end mould keeps in same position throughout under first spout is spacing to the link simultaneously, thereby need not the reference column and can accomplish the equipment compound die, the equipment compound die is fast and accurate, part solidification back and top mould separation in the end mould, it removes to drive the link through the lead screw motor, make middle bottom mould remove one end, another bottom mould moves to middle continuation casting, thereby need not to wait for the cool time of part, accelerate casting speed, and the production efficiency is improved.
2. Be provided with buffering cooling subassembly, can remove the movable plate at will through the second spout to make cooling fan aim at all the time and need carry out refrigerated end mould, thereby reinforcing cooling effect, through buffer spring and the briquetting of guide block bottom installation can be when top mould and end mould compound die, slow down the pressure that end mould received, pressure too big leads to the mould damage when preventing the compound die.
Drawings
The accompanying drawings are included to provide a further understanding of the invention, and are incorporated in and constitute a part of this specification, illustrate embodiments of the invention, and together with the description serve to explain the principles of the invention.
In the drawings:
fig. 1 is a schematic perspective view of the present invention;
FIG. 2 is a schematic structural view of an auxiliary casting assembly of the present invention;
FIG. 3 is a schematic structural view of the buffering cooling assembly of the present invention;
fig. 4 is a schematic structural view of the connection frame of the present invention;
the reference numbers in the figures: 1. an operation table;
2. an auxiliary casting assembly; 201. a moving groove; 202. a screw rod; 203. a screw motor; 204. a first chute; 205. a connecting frame; 206. a bottom mounting plate; 207. a bottom mold; 208. a guide post; 209. a top plate; 210. an electric push rod; 211. a guide block; 212. a top mounting plate; 213. ejecting the mold;
3. a buffer cooling component; 301. a second chute; 302. moving the plate; 303. a cooling fan; 304. a buffer spring; 305. briquetting; 306. a rubber pad is provided.
Detailed Description
The preferred embodiments of the present invention will be described hereinafter with reference to the accompanying drawings, and it should be understood that the preferred embodiments described herein are merely for purposes of illustration and explanation, and are not intended to limit the present invention.
Example (b): as shown in fig. 1-4, the utility model provides a technical scheme, a combined casting mould convenient to equipment, including operation panel 1, operation panel 1 internally mounted has supplementary casting subassembly 2, and supplementary casting subassembly 2 includes shifting chute 201, lead screw 202, lead screw motor 203, first spout 204, link 205, end mounting panel 206, die block utensil 207, guide post 208, roof 209, electric putter 210, guide block 211, top mounting panel 212 and top mould 213;
the utility model discloses a lead screw 202, including operation panel 1, the inside movable groove 201 of having seted up of operation panel 1, the inside one side of movable groove 201 rotates and is connected with lead screw 202, there is lead screw motor 203 at the position that corresponds lead screw 202 in operation panel 1 one side through the screw installation, lead screw motor 203 output shaft runs through operation panel 1 one side and connects in lead screw 202 one end, it rotates to drive lead screw 202 through lead screw motor 203, first spout 204 has been seted up to the symmetry that corresponds movable groove 201 in operation panel 1 top, sliding connection has link 205 in first spout 204, link 205 bottom activity cup joints in the lead screw 202 outside, be convenient for drive link 205 and remove through lead screw 202 rotation, link 205 top both sides all install end mounting plate 206 through the screw, end mould 207 is installed on end mounting plate 206 top, operation panel 1 top middle part symmetry installs guide post 208, four guide post 208 tops are connected respectively in roof 209 bottom four corners department, roof 209 top middle part embedding installs electric putter 210, guide post 208 sliding connection has guide block 211, electric putter 210 runs through roof mounting plate 210 and top electric putter 213 and electric putter and top mounting plate 212, the electric putter 213 and electric putter start the electric putter output end of electric putter are installed respectively to make electric putter 213 and electric putter.
The workbench 1 is provided with a buffer cooling component 3, and the buffer cooling component 3 comprises a second chute 301, a moving plate 302, a cooling fan 303, a buffer spring 304, a pressing block 305 and a rubber base plate 306;
second spout 301 has been seted up at operation panel 1 back top, sliding connection has movable plate 302 in second spout 301, the inside shape of second spout 301 agrees with movable plate 302 one end shape mutually, be convenient for movable plate 302 sliding connection in second spout 301, there is cooling fan 303 at the movable plate 302 top through the mounting screw, buffer spring 304 is installed to the guide post 208 department that corresponds in guide block 211 bottom, buffer spring 304 bottom is connected in briquetting 305 top, the internal diameter of briquetting 305 equals the diameter of guide post 208, be convenient for briquetting 305 cup joints the installation, briquetting 305 bottom bonding has rubber backing plate 306, rubber backing plate 306 top shape size is unanimous with the shape size of briquetting 305 bottom, be convenient for the bonding installation, cooling fan 303 input and external power output electric connection, make cooling fan 303 can start.
The utility model discloses a theory of operation and use flow: in the casting process, the screw rod motor 203 is started, so that the screw rod 202 is driven to rotate by the screw rod motor 203, one end of the connecting frame 205 is limited at one end of the first sliding groove 204, at the moment, the bottom die 207 on one side of the top end of the connecting frame 205 is always kept at the bottom end of the top die 213, the electric push rod 210 is started, the guide block 211 is pushed by the electric push rod 210 to move along the guide post 208, so that the top die 213 is fixed in the downward moving process and is uniformly stressed without shaking, the assembly and the closing of the top die 213 and the bottom die 207 can be completed without a positioning post, the assembly and the closing speed are high and accurate, then molten iron is poured to start casting, the top die 213 is separated from the bottom die 207 after parts in the die are solidified, then the screw rod 202 drives the connecting frame 205 to move, the bottom die 207 in the middle is moved to one end, the other bottom die 207 is moved to the middle to continue the assembly and the casting, so that the cooling time of the parts is not needed, the casting speed is accelerated, and the production efficiency is improved.
The movable plate 302 is moved randomly along the second sliding groove 301, so that the cooling fan 303 on the movable plate 302 is always aligned with the bottom die 207 which needs to be cooled, the cooling effect is enhanced, parts can be taken off quickly, meanwhile, when the die is closed, the buffer spring 304 and the pressing block 305 which are installed at the bottom end of the guide block 211 can slow down the pressure of the bottom die 207 when the top die 213 and the bottom die 207 are closed, the die damage caused by overlarge pressure during die closing is prevented, the rubber base plate 306 at the bottom end of the pressing block 305 embraces the bottom end of the pressing block 305, and the service life of the pressing block 305 is prolonged.
Finally, it should be noted that: although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that modifications may be made to the embodiments described in the foregoing embodiments, or equivalents may be substituted for elements thereof. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims (6)

1. The utility model provides a modular casting mould convenient to equipment, includes operation panel (1), its characterized in that: an auxiliary casting assembly (2) is arranged in the operating platform (1), and the auxiliary casting assembly (2) comprises a moving groove (201), a screw rod (202), a screw rod motor (203), a first sliding groove (204), a connecting frame (205), a bottom mounting plate (206), a bottom die (207), a guide column (208), a top plate (209), an electric push rod (210), a guide block (211), a top mounting plate (212) and a top die (213);
a moving groove (201) is formed in the operating platform (1), a screw rod (202) is rotatably connected to one side in the moving groove (201), a screw rod motor (203) is mounted at a position, corresponding to the screw rod (202), of one side of the operating platform (1), first sliding grooves (204) are symmetrically formed in the top end of the operating platform (1) corresponding to the moving groove (201), a connecting frame (205) is connected in the first sliding grooves (204) in a sliding mode, bottom mounting plates (206) are mounted on two sides of the top end of the connecting frame (205) through screws, and bottom molds (207) are mounted on the top ends of the bottom mounting plates (206);
guide post (208), four are installed to operation panel (1) top middle part symmetry guide post (208) top is connected respectively in roof (209) bottom four corners department, electric putter (210) are installed in embedding in roof (209) top middle part, guide post (208) sliding connection has guide block (211), there is top mounting panel (212) guide block (211) bottom middle part through the screw mounting, there is top mould (213) top mounting panel (212) bottom through the screw mounting.
2. The modular casting mold convenient to assemble as claimed in claim 1, wherein the electric push rod (210) penetrates through the top plate (209) and is connected to the top end of the guide block (211), and the input ends of the screw rod motor (203) and the electric push rod (210) are respectively electrically connected with the output end of an external power supply.
3. The modular casting mold convenient to assemble according to claim 1, wherein the bottom end of the connecting frame (205) is movably sleeved outside the screw rod (202), and the output shaft of the screw rod motor (203) penetrates through one side of the workbench (1) and is connected to one end of the screw rod (202).
4. The convenient-to-assemble combined casting mold according to claim 1, wherein the working platform (1) is provided with a buffer cooling assembly (3), and the buffer cooling assembly (3) comprises a second chute (301), a moving plate (302), a cooling fan (303), a buffer spring (304), a pressing block (305) and a rubber cushion plate (306);
second spout (301) have been seted up at operation panel (1) back top, sliding connection has movable plate (302) in second spout (301), there is cooling fan (303) on movable plate (302) top through the mounting screw, guide block (211) bottom corresponds guide post (208) department and installs buffer spring (304), buffer spring (304) bottom is connected in briquetting (305) top, briquetting (305) bottom bonds and has rubber backing plate (306).
5. The modular casting mold for facilitating assembly as claimed in claim 4, wherein the pressing block (305) has an inner diameter equal to the diameter of the guiding post (208), and the second sliding slot (301) has an inner shape matching with the shape of one end of the moving plate (302).
6. The modular casting mold of claim 4, wherein the size of the top end of the rubber pad (306) is the same as the size of the bottom end of the pressing block (305), and the input end of the cooling fan (303) is electrically connected with the output end of an external power supply.
CN202221835234.4U 2022-07-15 2022-07-15 Combined casting mold convenient to assemble Active CN217617612U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221835234.4U CN217617612U (en) 2022-07-15 2022-07-15 Combined casting mold convenient to assemble

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221835234.4U CN217617612U (en) 2022-07-15 2022-07-15 Combined casting mold convenient to assemble

Publications (1)

Publication Number Publication Date
CN217617612U true CN217617612U (en) 2022-10-21

Family

ID=83635184

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221835234.4U Active CN217617612U (en) 2022-07-15 2022-07-15 Combined casting mold convenient to assemble

Country Status (1)

Country Link
CN (1) CN217617612U (en)

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