CN220407062U - Insert structure of aluminum die casting - Google Patents

Insert structure of aluminum die casting Download PDF

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Publication number
CN220407062U
CN220407062U CN202321427859.1U CN202321427859U CN220407062U CN 220407062 U CN220407062 U CN 220407062U CN 202321427859 U CN202321427859 U CN 202321427859U CN 220407062 U CN220407062 U CN 220407062U
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China
Prior art keywords
bolt
size
groove
plate
adapting
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CN202321427859.1U
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Chinese (zh)
Inventor
杨礼鹏
刘月
赵彦青
刘广生
周冲
吴亚权
王聪
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Jingcheng Engineering Auto Parts Pizhou Co ltd
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Jingcheng Engineering Auto Parts Pizhou Co ltd
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Abstract

The utility model discloses an insert structure of an aluminum die casting, and particularly relates to the technical field of aluminum die castings, which comprises an insert body, wherein an adapter is arranged on the surface of the insert body, the adapter comprises a bolt, the bolt is clamped with the insert body, an adapter plate is clamped on the surface of the bolt, a through hole is formed in the surface of the adapter plate, the size of the through hole on the surface of the adapter plate is matched with the size of the bolt, an adjusting sleeve is fixedly connected with the surface of the adapter plate, a plurality of anti-skid blocks are fixedly connected with the surface of the adjusting sleeve, and a placing groove is formed in the surface of the adapter plate.

Description

Insert structure of aluminum die casting
Technical Field
The utility model relates to the technical field of aluminum die castings, in particular to an insert structure of an aluminum die casting.
Background
Inserts are specifically referred to in the mold as irregular mold fittings for embedding in the mold, the shape of which can be changed by adding and removing inserts.
The inventor finds that when the insert of the aluminum die casting die is used, an ap coating is added on the surface of the insert, and the vulnerable part of the die can be made into the insert, so that the die can be replaced conveniently and the service life of the die can be prolonged. When the insert is installed and replaced, friction can be generated between the insert and the die mounting hole, then abrasion is generated at the die mounting hole, the die mounting hole becomes larger after the insert is replaced for many times, and the problem that the insert cannot be well matched with the die mounting hole is caused.
In order to solve the problem that when the insert is installed and replaced, friction is generated between the insert and the die mounting hole, abrasion is generated at the die mounting hole, the die mounting hole is enlarged after the insert is replaced for many times, and the problem that the insert cannot be well matched with the die mounting hole is caused. The present application provides another solution.
Disclosure of Invention
The utility model provides an insert structure of an aluminum die casting, which aims to solve the problems that friction is generated between an insert and a die mounting hole when the insert is mounted and replaced, abrasion is generated at the die mounting hole, the die mounting hole is enlarged after the insert is replaced for many times, and the insert cannot be well matched with the die mounting hole.
In order to achieve the above purpose, the present utility model adopts the following technical scheme: the utility model provides an mold insert structure of aluminium die casting, includes the mold insert body, the surface of mold insert body is equipped with adapter, adapter includes the bolt, bolt and mold insert body joint, the surface joint of bolt has the adaptation board, the through-hole has been seted up on the surface of adaptation board, the size looks adaptation of adaptation board surface through-hole size and bolt, the fixed surface of adaptation board connects the adjustment cover, the fixed surface of adjustment cover is connected with a plurality of non slipping spur.
The effects achieved by the components are as follows: when the insert body is installed and replaced, the size of the joint of the insert body and the size of the die surface mounting hole can be compared, then after the size of the insert body is smaller than the size of the die surface mounting hole, the joint of the insert body and the die can be sleeved with the adapting plate, then the size of the adapting plate can be changed by fixing the adjusting sleeve on the surface of the adapting plate, then the using effect of the adapting plate is improved, the anti-slip block on the surface of the adjusting sleeve is improved, the friction force of an operator hand and the adjusting sleeve is improved, then a bolt is used, the bolt penetrates through a through hole on the surface of the adapting plate to reach the inside of the insert body, so that the adapting plate is fixed to the surface of the insert body, then the size of the joint of the insert body is matched with the size of the die surface mounting hole, and the situation that the die mounting hole is enlarged after the insert body is replaced for many times, and the situation that the die mounting hole cannot be well adapted to the die mounting hole is caused is avoided as much as possible is avoided, and therefore the using suitability of the insert body is improved.
Preferably, the surface of the adapting plate is provided with a placing groove, and the size of the placing groove on the surface of the adapting plate is matched with the size of the bolt.
The effects achieved by the components are as follows: when the bolt is used, the bolt can be hidden at one end close to the adapting plate through the placing groove on the surface of the adapting plate, so that the condition that the bolt affects the use of the insert is avoided as much as possible.
Preferably, an auxiliary groove is formed in one side of the accommodating groove on the surface of the adapting plate, and the size of the auxiliary groove is smaller than that of the accommodating groove.
The effects achieved by the components are as follows: when the bolt is required to be taken out, the finger or the tool of an operator can reach the inside of the placing groove to be in contact with the side surface of the bolt through the auxiliary groove, so that the bolt on the surface of the bolt adapting plate can be conveniently taken out by the operator.
Preferably, one end of the adapting plate, which is far away from the bolt, is fixedly connected with a protruding block, and the size of one end of the protruding block, which is far away from the adapting plate, is smaller than that of the other end.
The effects achieved by the components are as follows: when the insert body is inserted into the surface mounting hole of the mold, one end with a smaller size of the protruding block can firstly enter the inside of the mounting hole of the mold, then the protruding block guides the moving track of the insert body, and then the insert body is more easily mounted inside the mold.
Preferably, the surface of the adapting plate is provided with an auxiliary device, the auxiliary device comprises a sliding groove formed in the surface of the adapting plate, a sliding block is connected inside the sliding groove on the surface of the adapting plate in a sliding manner, a clamping groove is formed in one end, close to the sliding block, of the bolt, and the size of the clamping groove on the surface of the bolt is matched with the size of the sliding block.
The effects achieved by the components are as follows: after the plug pin is used for fixing the adapting plate, the sliding block can be moved, so that the sliding block moves in the sliding groove on the surface of the adapting plate, then the sliding block reaches the clamping groove on the surface of the plug pin, then the sliding block fixes the position of the plug pin, the situation that the plug pin is separated from the insert body is avoided as much as possible, and the using effect of the adapting device is improved.
Preferably, the surface of the sliding block is provided with a plurality of grooves, and the grooves on the surface of the sliding block are equidistantly arranged.
The effects achieved by the components are as follows: when the sliding block is used, the grooves on the surface of the sliding block can be used for enabling the fingers of an operator to be sunk into the grooves when the sliding block is moved, and then the operator can slide the sliding block better.
Preferably, a reinforcing rod is fixedly connected inside the sliding groove on the surface of the adapting plate, and the reinforcing rod is in sliding connection with the sliding block.
The effects achieved by the components are as follows: when the sliding block is used, the connection strength of the sliding block and the adapting plate can be improved through the reinforcing rod, and the situation that the sliding block is separated from the sliding groove on the surface of the adapting plate is avoided as much as possible.
In summary, the beneficial effects of the utility model are as follows:
the size of the connecting part of the insert body can be changed, so that the situation that the insert body cannot be well matched with the die mounting hole due to the fact that the die mounting hole is enlarged after being worn after the insert body is replaced for many times is avoided as much as possible, and the use suitability of the insert body is improved.
Drawings
Fig. 1 is a schematic perspective view of the present utility model.
Fig. 2 is a schematic perspective view of an adapter device according to the present utility model.
Fig. 3 is a schematic view of a partial perspective structure of an adapter device according to the present utility model.
Fig. 4 is an enlarged view of fig. 3 at a in accordance with the present utility model.
Reference numerals illustrate: 1. an insert body; 2. an adapting device; 21. a plug pin; 22. an adapter plate; 23. a through hole; 24. adjusting the sleeve; 25. an anti-skid block; 26. a placement groove; 27. an auxiliary groove; 28. a protruding block; 3. an auxiliary device; 31. a sliding groove; 32. a sliding block; 33. a clamping groove; 34. a groove; 35. and a reinforcing rod.
Detailed Description
Referring to fig. 1 to 4, the present embodiment discloses an insert structure of an aluminum die casting, including an insert body 1, and an adapter device 2 is provided on a surface of the insert body 1.
Referring to fig. 1 to 4, the embodiment discloses an adapting device 2 comprising a bolt 21, the bolt 21 is clamped with an insert body 1, an adapting plate 22 is clamped on the surface of the bolt 21, a through hole 23 is formed on the surface of the adapting plate 22, the size of the through hole 23 on the surface of the adapting plate 22 is matched with the size of the bolt 21, an adjusting sleeve 24 is fixedly connected with the surface of the adapting plate 22, and a plurality of anti-skid blocks 25 are fixedly connected with the surface of the adjusting sleeve 24. When the insert body 1 is installed and replaced, the size of the joint of the insert body 1 and the size of the die surface mounting hole can be compared, then after the size of the insert body 1 is smaller than the size of the die surface mounting hole, the adapter plate 22 can be sleeved at the joint of the insert body 1 and the die, then the size of the adapter plate 22 can be changed by fixing the adjusting sleeve 24 on the surface of the adapter plate 22, then the using effect of the adapter plate 22 is improved, the anti-skid block 25 on the surface of the adjusting sleeve 24 is used for improving the friction force between the hands of an operator and the adjusting sleeve 24, then the bolt 21 is used for penetrating the through hole 23 on the surface of the adapter plate 22 to the inside of the insert body 1, so that the adapter plate 22 is fixed on the surface of the insert body 1, then the size of the joint of the insert body 1 is matched with the die surface mounting hole, the situation that the size of the insert body 1 cannot be well adapted to the die mounting hole after the insert body 1 is replaced for a plurality of times is avoided, and the using suitability of the insert body 1 is improved.
Referring to fig. 1 to 4, the present embodiment discloses that the surface of the adapting plate 22 is provided with a placement groove 26, and the size of the placement groove 26 on the surface of the adapting plate 22 is adapted to the size of the latch 21. When the bolt 21 is used, the end, close to the adapting plate 22, of the bolt 21 can be hidden through the placing groove 26 on the surface of the adapting plate 22, so that the condition that the bolt 21 affects the use of the insert is avoided as much as possible. An auxiliary groove 27 is formed in one side of the placement groove 26 on the surface of the adapting plate 22, and the size of the auxiliary groove 27 is smaller than that of the placement groove 26. When the plug 21 needs to be taken out, the auxiliary groove 27 can be used for enabling the finger or the tool of the operator to reach the inner part of the placing groove 26 to be in contact with the side face of the plug 21, so that the plug 21 on the surface of the plug 21 adapting plate 22 is convenient for the operator to take out. The end of the adapting plate 22 away from the bolt 21 is fixedly connected with a protruding block 28, and the dimension of the protruding block 28 at the end far away from the adapting plate 22 is smaller than the dimension of the other end. When the insert body 1 is inserted into the mold surface mounting hole, the smaller end of the protruding block 28 may be inserted into the mold mounting hole first, and then the protruding block 28 guides the movement track of the insert body 1, and then the insert body 1 is more easily mounted into the mold.
Referring to fig. 1 to 4, the present embodiment discloses that the surface of the adapting plate 22 is provided with an auxiliary device 3, the auxiliary device 3 includes a sliding groove 31 formed on the surface of the adapting plate 22, a sliding block 32 is slidably connected inside the sliding groove 31 on the surface of the adapting plate 22, a clamping groove 33 is formed at one end of the latch 21 near the sliding block 32, and the size of the clamping groove 33 on the surface of the latch 21 is matched with the size of the sliding block 32. After the plug 21 is used for fixing the adapting plate 22, the sliding block 32 can be moved, so that the sliding block 32 moves in the sliding groove 31 on the surface of the adapting plate 22, then the sliding block 32 reaches the clamping groove 33 on the surface of the plug 21, and then the sliding block 32 fixes the position of the plug 21, so that the situation that the plug 21 is separated from the insert body 1 is avoided as much as possible, and the using effect of the adapting device 2 is improved.
Referring to fig. 1 to 4, the present embodiment discloses that a plurality of grooves 34 are formed on the surface of the sliding block 32, and the plurality of grooves 34 on the surface of the sliding block 32 are equidistantly arranged. When the sliding block 32 is used, the grooves 34 on the surface of the sliding block 32 can enable the operator to make the finger part of the skin sunk into the grooves 34 when the operator moves the sliding block 32, and then enable the operator to slide the sliding block 32 better. The inside fixedly connected with reinforcing rod 35 of adaptation board 22 surface sliding tray 31, reinforcing rod 35 and sliding block 32 sliding connection. When the sliding block 32 is used, the connection strength of the sliding block 32 and the adapting plate 22 can be improved through the reinforcing rods 35, so that the sliding block 32 is prevented from being separated from the sliding groove 31 on the surface of the adapting plate 22 as much as possible.
The working principle is as follows: when the insert body 1 is installed and replaced, the size of the joint of the insert body 1 and the size of the die surface mounting hole can be compared, then after the size of the insert body 1 is smaller than the size of the die surface mounting hole, the adapting plate 22 with the protruding block 28 can be sleeved on the joint of the insert body 1 and the die, then the size of the adapting plate 22 with the auxiliary groove 27 can be changed by fixing the adjusting sleeve 24 on the surface of the adapting plate 22, then the using effect of the adapting plate 22 is improved, the anti-skid block 25 on the surface of the adjusting sleeve 24 is used for improving the friction force between the hand of an operator and the adjusting sleeve 24, then the bolt 21 is used for penetrating through the through hole 23 on the surface of the adapting plate 22 to the inside of the insert body 1, at the moment, one end of the bolt 21 is positioned inside the placing groove 26 to fix the adapting plate 22 on the surface of the insert body 1, and then the size of the joint of the insert body 1 is matched with the size of the die surface mounting hole. Through using adapter device 2, can change the size of mold insert body 1 junction to avoid as far as possible after changing mold insert body 1 many times, mould mounting hole department can become big after wearing and tearing, lead to the condition emergence of mold insert body 1 can not fine adaptation mould mounting hole, and then promote the use suitability of mold insert body 1.
After the adapter plate 22 is fixed by the latch 21, the slide block 32 with the groove 34 is moved, the slide block 32 is moved in the slide groove 31 with the reinforcing rod 35 on the surface of the adapter plate 22, then the slide block 32 reaches the latch 21 surface clamping groove 33, and then the slide block 32 fixes the position of the latch 21. By using the auxiliary device 3, the situation that the plug pin 21 is separated from the insert body 1 is avoided as much as possible, so that the using effect of the adapting device 2 is improved.

Claims (7)

1. The utility model provides an mold insert structure of aluminium die casting, includes mold insert body (1), its characterized in that: the surface of mold insert body (1) is equipped with adapter device (2), adapter device (2) include bolt (21), bolt (21) and mold insert body (1) joint, the surface joint of bolt (21) has adapter plate (22), through-hole (23) have been seted up on the surface of adapter plate (22), the size of adapter plate (22) surface through-hole (23) and the size looks adaptation of bolt (21), the fixed surface of adapter plate (22) connects adjusting sleeve (24), the fixed surface of adjusting sleeve (24) is connected with a plurality of non slipping spur (25).
2. The insert structure of an aluminum die casting according to claim 1, wherein: the surface of the adapting plate (22) is provided with a placing groove (26), and the size of the placing groove (26) on the surface of the adapting plate (22) is matched with the size of the bolt (21).
3. The insert structure of an aluminum die casting according to claim 1, wherein: an auxiliary groove (27) is formed in one side of the accommodating groove (26) on the surface of the adapting plate (22), and the size of the auxiliary groove (27) is smaller than that of the accommodating groove (26).
4. The insert structure of an aluminum die casting according to claim 1, wherein: one end of the adapting plate (22) far away from the bolt (21) is fixedly connected with a protruding block (28), and the size of one end of the protruding block (28) far away from the adapting plate (22) is smaller than that of the other end.
5. The insert structure of an aluminum die casting according to claim 1, wherein: the device is characterized in that an auxiliary device (3) is arranged on the surface of the adapting plate (22), the auxiliary device (3) comprises a sliding groove (31) formed in the surface of the adapting plate (22), a sliding block (32) is connected inside the sliding groove (31) on the surface of the adapting plate (22) in a sliding mode, a clamping groove (33) is formed in one end, close to the sliding block (32), of the bolt (21), and the size of the clamping groove (33) on the surface of the bolt (21) is matched with the size of the sliding block (32).
6. The insert structure of an aluminum die casting according to claim 5, wherein: the surface of the sliding block (32) is provided with a plurality of grooves (34), and the grooves (34) on the surface of the sliding block (32) are equidistantly arranged.
7. The insert structure of an aluminum die casting according to claim 5, wherein: reinforcing rods (35) are fixedly connected inside the sliding grooves (31) on the surfaces of the adapting plates (22), and the reinforcing rods (35) are in sliding connection with the sliding blocks (32).
CN202321427859.1U 2023-06-06 2023-06-06 Insert structure of aluminum die casting Active CN220407062U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321427859.1U CN220407062U (en) 2023-06-06 2023-06-06 Insert structure of aluminum die casting

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321427859.1U CN220407062U (en) 2023-06-06 2023-06-06 Insert structure of aluminum die casting

Publications (1)

Publication Number Publication Date
CN220407062U true CN220407062U (en) 2024-01-30

Family

ID=89659732

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321427859.1U Active CN220407062U (en) 2023-06-06 2023-06-06 Insert structure of aluminum die casting

Country Status (1)

Country Link
CN (1) CN220407062U (en)

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