CN213915996U - Oil distribution disc shell manufacturing mold - Google Patents

Oil distribution disc shell manufacturing mold Download PDF

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Publication number
CN213915996U
CN213915996U CN202022443297.2U CN202022443297U CN213915996U CN 213915996 U CN213915996 U CN 213915996U CN 202022443297 U CN202022443297 U CN 202022443297U CN 213915996 U CN213915996 U CN 213915996U
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Prior art keywords
oil distribution
manufacturing mold
plate
lower die
mold according
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CN202022443297.2U
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Chinese (zh)
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袁秀萍
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Kunshan Xinsanxin Machinery Mould Co ltd
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Kunshan Xinsanxin Machinery Mould Co ltd
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Abstract

The utility model discloses a join in marriage food tray casing manufacturing mould, including bearing frame, be provided with bearing bracket in the bearing frame, install lower mould device on the bearing bracket, the activity is provided with mould device on the lower mould device, be provided with pan feeding guiding device on the last mould device, install the top cap on the pan feeding guiding device, lower mould device is including the lower bolster, it is protruding to be provided with a plurality of shaping on the lower bolster, be provided with spacer between the shaping arch, go up mould device including the cope match-plate pattern, be provided with the shaping cavity that corresponds with the shaping arch on the cope match-plate pattern, a plurality of pan feeding holes have been seted up on the cope match-plate pattern, one side of lower bolster is provided with main separating mechanism, the cope match-plate pattern corresponds position department and is provided with vice separating mechanism. Therefore, the manufacturing of at least two oil distribution disc shells can be synchronously realized by adopting the same die, and the processing efficiency is improved. Through the limiting protection of the bearing frame and the bearing bracket, the phenomenon that the combination deviation of the die occurs due to improper external force during processing can be avoided.

Description

Oil distribution disc shell manufacturing mold
Technical Field
The utility model relates to a make the mould, especially relate to a join in marriage food tray casing and make mould belongs to mould processing field.
Background
Sand casting refers to a casting process that produces a casting in a sand mold. Steel, iron and most nonferrous metal castings can be obtained by sand casting. The molding material used for sand casting is cheap and easy to obtain, the casting mould is simple and convenient to manufacture, and the casting mould can adapt to single-piece production, batch production and mass production of castings, and is a basic process in casting production for a long time.
However, in the conventional sand mold, during the manufacturing of the oil distribution disc shell, due to the special appearance of the sand mold, the sand mold needs to be molded in a cavity mode, so that the sand mold is stuck during the mold opening. Meanwhile, hollow or special-shaped burrs easily appear at the edge joint, and subsequent processing is affected.
Moreover, for some shell manufacturing, a plurality of dies are often required to be used for processing through a plurality of processes, which is time-consuming. Meanwhile, for some shells with more bent shapes, the adhesion of mold opening and demolding is easier to occur.
SUMMERY OF THE UTILITY MODEL
The utility model aims at solving the defects of the prior art and providing a manufacturing mold for an oil distribution disc shell.
Join in marriage food tray casing in order to reach above-mentioned purpose and make the mould, the utility model discloses the technical scheme who adopts is:
join in marriage oil pan casing manufacturing mould, including bearing frame, wherein: the bearing frame is internally provided with a bearing bracket, the bearing bracket is provided with a lower die device, the lower die device is movably provided with an upper die device, the upper die device is provided with a feeding guide device, the feeding guide device is provided with a top cover, the lower die device comprises a lower die plate, a plurality of forming bulges are arranged on the lower die plate, a spacing device is arranged between the forming bulges, the upper die device comprises an upper die plate, the upper die plate is provided with a forming cavity corresponding to the forming bulges, the upper die plate is provided with a plurality of feeding holes, one side of the lower die plate is provided with a main separating mechanism, and the corresponding position of the upper die plate is provided with an auxiliary separating mechanism.
Further, in the manufacturing mold of the oil distribution disc shell, the bearing frame comprises a bottom frame, a plurality of supporting plates are vertically arranged on the bottom frame, a top frame is arranged at the top of each supporting plate, reinforcing ribs are arranged on the outer sides of the supporting plates, and a plurality of limiting grooves are formed in the bottom frame.
Furthermore, in the manufacturing mold of the oil distribution disc shell, the bearing bracket is wrapped by the bearing plate, the bottom of the bearing plate is provided with a plurality of bottom supporting legs, the top surface of the bearing plate is provided with a plurality of top supporting legs, and the top supporting legs are in contact with the bottom of the lower die device.
Further, in the above oil distribution disc housing manufacturing mold, the lower mold device is provided with a plurality of guide posts, the corresponding positions of the lower mold device are provided with guide holes, and the guide posts are embedded in the guide holes during mold closing.
Furthermore, in the manufacturing mold of the oil distribution disc shell, the spacer is a partition, reinforcing columns are arranged at two ends of the partition, and the upper mold device is provided with an accommodating groove corresponding to the reinforcing columns.
Furthermore, in the manufacturing mold of the oil distribution disc shell, the main separating mechanism and the auxiliary separating mechanism are both rectangular grooves.
Furthermore, the oil distribution disc shell manufacturing mold is characterized in that the feeding guide device comprises a feeding guide plate, a plurality of feeding guide pipes are arranged below the feeding guide plate in a communicated manner, and the positions of the feeding guide pipes correspond to the feeding holes.
Furthermore, the oil distribution disc shell manufacturing mold is characterized in that the top cover comprises a cover body, and a plurality of small end covers are distributed on the cover body.
Furthermore, in the manufacturing mold of the oil distribution disc shell, a plurality of main locking holes are formed in the upper mold device, auxiliary locking holes are formed in positions corresponding to the lower mold device, and locking bolts penetrate through the main locking holes and the auxiliary locking holes during mold closing.
Still further, in the manufacturing mold of the oil distribution disc shell, the main locking hole comprises a round hole, a rectangular accommodating groove is formed in one side of the round hole, and the tail end of the locking bolt is embedded into the rectangular accommodating groove.
The beneficial effects of the utility model are mainly embodied in that:
1. the manufacturing of at least two oil distribution disc shells can be synchronously realized by adopting the same die, and the processing efficiency is improved.
2. Through the limiting protection of the bearing frame and the bearing bracket, the phenomenon that the combination deviation of the mold is caused due to improper external force during processing to influence final molding can be avoided.
3. The feeding guide device and the top cover are independent, smooth sequential inflow of media can be guaranteed, gaps cannot be filled, and final forming integrity of products is guaranteed.
4. The integral structure is simple, and the device can be matched with various auxiliary die processing devices for use.
Drawings
Fig. 1 is a schematic view of a load-bearing frame structure.
Fig. 2 is a schematic view of a load carrier structure.
Fig. 3 is a front view of the lower mold device.
Fig. 4 is a schematic reverse structure of the upper die device.
Fig. 5 is a schematic front view of the upper die device.
Fig. 6 is a schematic view of the structure of the feeding guide device.
Fig. 7 is a schematic view of the top cover structure.
Fig. 8 is a schematic view of the entire structure of the oil distribution pan casing manufacturing mold.
Detailed Description
The utility model provides a join in marriage food tray casing and make mould. The technical solution of the present invention will be described in detail below with reference to the accompanying drawings so as to be easier to understand and grasp.
The oil distribution pan shell manufacturing mold shown in fig. 1 to 8 includes a carrying frame 1, which is distinguished in that: a bearing bracket 2 is arranged in the bearing frame 1, a lower die device 3 is arranged on the bearing bracket 2, and an upper die device 4 is movably arranged on the lower die device 3. Meanwhile, a feeding guide 5 is provided on the upper die device 4 in consideration of the inflow guide of the manufacturing medium during processing. Moreover, the feeding guide device 5 is provided with a top cover 6 to meet the necessary processing air tightness. Particularly, lower die set 3 is provided with a plurality of shaping archs 7 including the lower bolster on the lower bolster, is provided with the spacer between the shaping arch 7, goes up die set 4 including the cope match-plate pattern, is provided with the shaping cavity 8 that corresponds with shaping arch 7 on the cope match-plate pattern, has seted up a plurality of pan feeding holes 9 on the cope match-plate pattern. Of course, in order to realize smooth mold opening separation after the processing is finished and avoid mold adhesion, a main separating mechanism 10 is arranged on one side of the lower template, and an auxiliary separating mechanism 11 is arranged at a position corresponding to the upper template.
In view of the preferred embodiment of the present invention, the supporting frame 1 includes a bottom frame 12, a plurality of supporting plates 13 are vertically disposed on the bottom frame 12, a top frame 14 is disposed on the top of the supporting plates 13, a reinforcing rib 15 is disposed on the outer side of the supporting plates 13, and a plurality of limiting grooves 16 are disposed on the bottom frame 12. Thus, the lower die device 3, the upper die device 4, and the like can be efficiently stored, and the influence of other external devices on the processing period can be avoided, so that improper impact or collision can be avoided.
Further, in order to realize stable bearing, the bearing bracket 2 is wrapped with a bearing plate 17, the bottom of the bearing plate 17 is provided with a plurality of bottom supporting legs 18, the top surface of the bearing plate 17 is provided with a plurality of top supporting legs 19, and the top supporting legs 19 are in contact with the bottom of the lower die device 3. Therefore, even if the die is subjected to stress from above during processing, the die can be effectively carried, and the die cannot be accidentally deformed due to uneven stress.
In view of practical implementation, the lower die device 3 is provided with a plurality of guide posts 20, the lower die device 3 is provided with guide holes 21 at corresponding positions, and the guide posts 20 are embedded in the guide holes 21 during die assembly. Simultaneously, in order to realize the synchronous processing of a plurality of parts, and the streaming influence of medium does not directly appear each other, can not lead to the local improper of medium to pile up, the spacer device encloses fender 22 for the interval, and the interval is enclosed the both ends that keep off 22 and is provided with reinforcing post 23, and last mould device 4 corresponds reinforcing post 23 position department and is provided with holding tank 24. The main separating mechanism 10 and the sub separating mechanism 11 are both rectangular grooves. Thus, the lower die device 3 and the upper die device 4 can be bonded to each other while avoiding the occurrence of vacuum suction on the contact surface.
Further, the feeding guide device 5 comprises a feeding guide plate, a plurality of feeding guide pipes 25 are arranged below the feeding guide plate in a conduction mode, and the positions of the feeding guide pipes 25 correspond to the feeding holes 9, so that stable introduction of media is facilitated. Simultaneously, to the needs of certain special processing, can restrict the use of pan feeding hole 9, perhaps carry out necessary air completely cut off after the pan feeding finishes, the utility model discloses a top cap 6 including covering the body, cover to distribute on the body and have a plurality of small-size end covers 26.
Meanwhile, in order to meet the requirement of auxiliary locking during processing, even if the gap between the upper die device 4 and the lower die device 3 is not changed improperly during subsequent carrying or other external forces, the upper die device 4 is provided with a plurality of main locking holes 27, the lower die device 3 is provided with auxiliary locking holes 28 at corresponding positions, and during die assembly, locking bolts are inserted between the main locking holes 27 and the auxiliary locking holes 28. During actual implementation, the main locking hole 27 includes a circular hole, one side of the circular hole is provided with a rectangular receiving groove, and the tail end of the locking bolt is embedded into the rectangular receiving groove.
As can be seen from the above description, the utility model has the following advantages:
1. the manufacturing of at least two oil distribution disc shells can be synchronously realized by adopting the same die, and the processing efficiency is improved.
2. Through the limiting protection of the bearing frame and the bearing bracket, the phenomenon that the combination deviation of the mold is caused due to improper external force during processing to influence final molding can be avoided.
3. The feeding guide device and the top cover are independent, smooth sequential inflow of media can be guaranteed, gaps cannot be filled, and final forming integrity of products is guaranteed.
4. The integral structure is simple, and the device can be matched with various auxiliary die processing devices for use.
The above technical solutions of the present invention have been fully described, and it should be noted that the present invention is not limited by the above description, and all technical solutions formed by equivalent transformation or equivalent transformation adopted by the spirit of the present invention in the aspects of structure, method or function by those of ordinary skill in the art all fall within the protection scope of the present invention.

Claims (10)

1. Join in marriage oil pan casing and make mould, including bearing frame, its characterized in that: the bearing frame is internally provided with a bearing bracket, the bearing bracket is provided with a lower die device, the lower die device is movably provided with an upper die device, the upper die device is provided with a feeding guide device, the feeding guide device is provided with a top cover, the lower die device comprises a lower die plate, a plurality of forming bulges are arranged on the lower die plate, a spacing device is arranged between the forming bulges, the upper die device comprises an upper die plate, the upper die plate is provided with a forming cavity corresponding to the forming bulges, the upper die plate is provided with a plurality of feeding holes, one side of the lower die plate is provided with a main separating mechanism, and the corresponding position of the upper die plate is provided with an auxiliary separating mechanism.
2. The oil distribution pan casing manufacturing mold according to claim 1, wherein: the bearing frame comprises a bottom frame, a plurality of supporting plates are vertically arranged on the bottom frame, a top frame is arranged at the top of each supporting plate, reinforcing ribs are arranged on the outer sides of the supporting plates, and a plurality of limiting grooves are formed in the bottom frame.
3. The oil distribution pan casing manufacturing mold according to claim 1, wherein: the bearing bracket is wrapped with a bearing plate, the bottom of the bearing plate is provided with a plurality of bottom supporting legs, the top surface of the bearing plate is provided with a plurality of top supporting legs, and the top supporting legs are in contact with the bottom of the lower die device.
4. The oil distribution pan casing manufacturing mold according to claim 1, wherein: the lower die device is provided with a plurality of guide columns, guide holes are formed in positions corresponding to the lower die device, and the guide columns are embedded into the guide holes during die assembly.
5. The oil distribution pan casing manufacturing mold according to claim 1, wherein: the spacer assembly encloses the fender for the interval, the interval encloses the both ends that keep off and is provided with the reinforcement post, it is provided with the holding tank to go up mould device and correspond reinforcement post position department.
6. The oil distribution pan casing manufacturing mold according to claim 1, wherein: the main separating mechanism and the auxiliary separating mechanism are both rectangular grooves.
7. The oil distribution pan casing manufacturing mold according to claim 1, wherein: the feeding guide device comprises a feeding guide plate, a plurality of feeding guide pipes are arranged below the feeding guide plate in a conduction mode, and the positions of the feeding guide pipes correspond to the feeding holes.
8. The oil distribution pan casing manufacturing mold according to claim 1, wherein: the top cover comprises a cover body, and a plurality of small end covers are distributed on the cover body.
9. The oil distribution pan casing manufacturing mold according to claim 1, wherein: the mould assembling device is characterized in that a plurality of main locking holes are formed in the upper mould device, auxiliary locking holes are formed in positions, corresponding to the lower mould device, of the lower mould device, and locking bolts penetrate through the main locking holes and the auxiliary locking holes during mould assembling.
10. The oil distribution pan casing manufacturing mold according to claim 9, wherein: the main locking hole comprises a round hole, one side of the round hole is provided with a rectangular accommodating groove, and the tail end of the locking bolt is embedded into the rectangular accommodating groove.
CN202022443297.2U 2020-10-28 2020-10-28 Oil distribution disc shell manufacturing mold Active CN213915996U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022443297.2U CN213915996U (en) 2020-10-28 2020-10-28 Oil distribution disc shell manufacturing mold

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022443297.2U CN213915996U (en) 2020-10-28 2020-10-28 Oil distribution disc shell manufacturing mold

Publications (1)

Publication Number Publication Date
CN213915996U true CN213915996U (en) 2021-08-10

Family

ID=77163999

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022443297.2U Active CN213915996U (en) 2020-10-28 2020-10-28 Oil distribution disc shell manufacturing mold

Country Status (1)

Country Link
CN (1) CN213915996U (en)

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