CN213002302U - Automatic receiving mechanism of simplex engineering mould - Google Patents

Automatic receiving mechanism of simplex engineering mould Download PDF

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Publication number
CN213002302U
CN213002302U CN202021634705.6U CN202021634705U CN213002302U CN 213002302 U CN213002302 U CN 213002302U CN 202021634705 U CN202021634705 U CN 202021634705U CN 213002302 U CN213002302 U CN 213002302U
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CN
China
Prior art keywords
mould
fixing plate
receiving mechanism
punch
rod
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CN202021634705.6U
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Chinese (zh)
Inventor
徐建滔
彭成焕
阮孙艺
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Shanghai Juxiang Precision Mold Co ltd
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Shanghai Juxiang Precision Mold Co ltd
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Priority to CN202021634705.6U priority Critical patent/CN213002302U/en
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Abstract

The utility model discloses an automatic receiving mechanism of a single engineering mould, which comprises a receiving device, an upper mould fixing plate arranged on an upper mould of a punch press, a lower mould fixing plate arranged on a lower mould of the punch press and a height adjusting device arranged on the lower mould fixing plate, the material receiving device comprises a bearing and a torsion spring which are arranged on the height adjusting device, a bearing seat which is arranged on the outer ring of the bearing, a material receiving box which is arranged on the bearing seat, a plunger which is arranged on the upper die fixing plate and a stress round bar which is arranged on the bearing seat, the top of the torsion spring is arranged on the bearing seat, the bottom surface of the punch rod is an inclined surface, the bottom surface of the punch rod is positioned right above the stressed round bar, the punch rod and the punch press upper die synchronously move up and down, the cross section of the stress round rod is circular, the bottom of the punch rod is tangent to the stress round rod, and the horizontal projections of the stress round rod and the material receiving box are not connected with each other. The effect that can get the single engineering mould of putting automatically, improve single engineering mould production efficiency can be reached.

Description

Automatic receiving mechanism of simplex engineering mould
Technical Field
The utility model relates to a simplex engineering mould production facility especially relates to an automatic receiving mechanism of simplex engineering mould.
Background
The single-process die refers to a die which can only complete one stamping process in one stamping stroke. After the process is finished, the product needs to be manually or mechanically taken out of the mold and then put into the mold of the next station for continuous production, and the whole product is not finished until the last process of the mold is finished.
At present, products of the single-engineering composite die are taken and placed through manual operation, the products cannot be taken and placed automatically, time and labor are wasted, the production efficiency of the single-engineering die is affected, and improvement is needed.
SUMMERY OF THE UTILITY MODEL
In view of the above-mentioned not enough of present single engineering mould production facility existence, the utility model provides an automatic receiving mechanism of single engineering mould can reach and can get the effect of putting single engineering mould, improvement single engineering mould production efficiency automatically.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
an automatic material receiving mechanism of a single engineering mould comprises a material receiving device, an upper mould fixing plate arranged on an upper mould of a punch press, a lower mould fixing plate arranged on a lower mould of the punch press and a height adjusting device arranged on the lower mould fixing plate, the material receiving device comprises a bearing and a torsion spring which are arranged on the height adjusting device, a bearing seat which is arranged on the outer ring of the bearing, a material receiving box which is arranged on the bearing seat, a plunger which is arranged on the upper die fixing plate and a stress round bar which is arranged on the bearing seat, the top of the torsion spring is arranged on the bearing seat, the bottom surface of the punch rod is an inclined surface, the bottom surface of the punch rod is positioned right above the stressed round bar, the punch rod and the punch press upper die synchronously move up and down, the cross section of the stress round rod is circular, the bottom of the punch rod is tangent to the stress round rod, and the horizontal projections of the stress round rod and the material receiving box are not connected with each other.
According to the utility model discloses an aspect, height adjusting device establishes epaxial limit for height fixed block and sets up the spiral plunger on the limit for height fixed block through threaded connection including setting up regulation axis, the cover on the lower mould fixed plate.
According to an aspect of the utility model, the bottom of lower mould fixed plate and the top of upper die fixed plate all are provided with T shape back nut, the lower mould fixed plate passes through T shape back nut setting at the T of punch press lower mould and inslot, upper die fixed plate passes through T shape back nut setting and goes up the T of mould and inslot on the punch press.
According to the utility model discloses an aspect, the bottom of punch retainer plate is provided with the support fixed block, the both sides of supporting the fixed block set up respectively on punch retainer plate and jumper bar.
According to an aspect of the utility model, be provided with the gag lever post on the bottom surface of bearing frame, the bottom surface height of gag lever post is less than the height of spiral plunger bottom surface.
According to an aspect of the utility model, the bearing inner race is fixed on adjusting the axis, adjust centraxonial top and be provided with spacing bolt.
According to the utility model discloses an aspect, the torsional spring cover is established in adjusting epaxially, the bottom setting of torsional spring is on the limit for height fixed block.
The utility model discloses the advantage of implementing:
the utility model discloses an automatic receiving mechanism of a single engineering mould, which comprises a receiving device, an upper mould fixing plate arranged on an upper mould of a punch press, a lower mould fixing plate arranged on a lower mould of the punch press and a height adjusting device arranged on the lower mould fixing plate, the material receiving device comprises a bearing and a torsion spring which are arranged on the height adjusting device, a bearing seat which is arranged on the outer ring of the bearing, a material receiving box which is arranged on the bearing seat, a plunger which is arranged on the upper die fixing plate and a stress round bar which is arranged on the bearing seat, the top of the torsion spring is arranged on the bearing seat, the bottom surface of the punch rod is an inclined surface, the bottom surface of the punch rod is positioned right above the stressed round bar, the punch rod and the punch press upper die synchronously move up and down, the cross section of the stress round rod is circular, the bottom of the punch rod is tangent to the stress round rod, and the horizontal projections of the stress round rod and the material receiving box are not connected with each other. The effect that can get the single engineering mould of putting automatically, improve single engineering mould production efficiency can be reached.
Drawings
In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the drawings needed to be used in the embodiments will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the present invention, and it is obvious for those skilled in the art that other drawings can be obtained according to these drawings without creative efforts.
Fig. 1 is a schematic front view of an automatic material receiving mechanism for a single engineering mold according to the present invention;
fig. 2 is a schematic side view of the automatic material receiving mechanism of a single engineering mold according to the present invention;
fig. 3 is a schematic top view of the automatic material receiving mechanism for a single engineering mold according to the present invention;
fig. 4 is a schematic view of a bearing seat structure of an automatic material receiving mechanism of a single engineering mold according to the present invention;
fig. 5 is a schematic structural view of a height adjusting device of an automatic material receiving mechanism of a single engineering mold according to the present invention;
fig. 6 is a schematic structural view of the automatic receiving mechanism of the single-engineering mold installed on the punch press.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
As shown in fig. 1-6, the single-engineering-die automatic material receiving mechanism comprises a material receiving device, an upper die fixing plate 2 arranged on an upper die of a punch press, a lower die fixing plate 8 arranged on a lower die of the punch press and a height adjusting device arranged on the lower die fixing plate 8, wherein the material receiving device comprises a bearing 5-5 and a torsion spring 5-4 arranged on the height adjusting device, a bearing seat 5-2 arranged on the outer ring of the bearing 5-5, a material receiving box 5-3 arranged on the bearing seat 5-2, a punch 4 arranged on the upper die fixing plate 2 and a stressed round bar 5-1 arranged on the bearing seat 5-2, the top of the torsion spring 5-4 is arranged on the bearing seat 5-2, the bottom surface of the punch 4 is an inclined surface, the bottom surface of the punch 4 is positioned right above the stressed round bar 5-1, the punch 4 and the upper die of the punch synchronously move up and down, the cross section of the stress round rod 5-1 is circular, the bottom of the punch 4 is tangent to the stress round rod 5-1, and the horizontal projections of the stress round rod 5-1 and the material receiving box 5-3 are not connected with each other.
In the embodiment, the height adjusting device comprises an adjusting middle shaft 7 arranged on a lower die fixing plate 8, a height limiting fixing block 6-1 sleeved on the adjusting middle shaft 7, and a spiral plunger 6-2 arranged on the height limiting fixing block 6-1 through threaded connection.
In this embodiment, the bottom of the lower die fixing plate 8 and the top of the upper die fixing plate 2 are both provided with T-shaped back nuts 3, the lower die fixing plate 8 is disposed in a T-shaped groove of a lower die of a punch press through the T-shaped back nuts 3, and the upper die fixing plate 2 is disposed in a T-shaped groove of an upper die of the punch press through the T-shaped back nuts 3.
In this embodiment, the bottom of the upper die fixing plate 2 is provided with a supporting fixing block 1, and two sides of the supporting fixing block 1 are respectively arranged on the upper die fixing plate 2 and the punch 4.
In the embodiment, a limiting rod 9 is arranged on the bottom surface of the bearing seat 5-2, and the height of the bottom surface of the limiting rod 9 is lower than that of the bottom surface of the spiral plunger 6-2.
In the embodiment, the bearings 5-5 are sleeved on the adjusting middle shaft 7, and the top of the adjusting middle shaft 7 is provided with a limit bolt.
In the embodiment, the torsion spring 5-4 is sleeved on the adjusting center shaft 7, and the bottom of the torsion spring 5-4 is arranged on the height limiting fixing block 6-1.
In the in-service use, can make this equipment be applicable to different punch press models through high adjusting device, also can be through the characteristic of design part for this structure is adjustable, with different board and product of adaptation.
In actual use, the left-right distance of the upper die plunger can be adjusted according to actual requirements and adjusted leftwards, and the faster the rotating speed is, the shorter the required stroke is; turning to the right, the slower the rotation speed, the longer the required stroke.
In actual use, the left-right distance of the punch rod needs to be adjusted correspondingly according to the stroke of the punch press, the height of the die and the size of a product for the following reasons, the short stroke is adjusted leftwards, the upper die is higher and adjusted leftwards, and the product cannot be thrown out through the centrifugal force of the receiving disc when the product is too small.
The utility model discloses a work flow:
initial mold opening state
The impact bar and the stressed round bar are separated from the receiving disc and return to the limit position by the force of the torsion spring.
In the process of closing the mould
The punch rod and the stressed round bar start to contact the receiving disc, and the receiving disc starts to rotate by pushing the stressed round bar to rotate to the maximum angle through the punch rod.
Closed mould state
The inclined plane of the punch rod is separated from the stressed round rod, and the receiving disc blocks the stressed round rod by the vertical plane of the punch rod so that the stressed round rod cannot rebound through the force of the torsion spring, and the maximum angle is still ensured.
In the process of opening the die
The punch rod begins to rise, the downward acting force disappears, and the receiving disc begins to rebound through the force of the torsion spring.
Ending the mold opening state
The plunger rod begins to rise, the downward acting force disappears, and the receiving disc rebounds to a fixed position through the force of the torsion spring.
The utility model discloses the advantage of implementing:
the utility model discloses an automatic receiving mechanism of a single engineering mould, which comprises a receiving device, an upper mould fixing plate arranged on an upper mould of a punch press, a lower mould fixing plate arranged on a lower mould of the punch press and a height adjusting device arranged on the lower mould fixing plate, the material receiving device comprises a bearing and a torsion spring which are arranged on the height adjusting device, a bearing seat which is arranged on the outer ring of the bearing, a material receiving box which is arranged on the bearing seat, a plunger which is arranged on the upper die fixing plate and a stress round bar which is arranged on the bearing seat, the top of the torsion spring is arranged on the bearing seat, the bottom surface of the punch rod is an inclined surface, the bottom surface of the punch rod is positioned right above the stressed round bar, the punch rod and the punch press upper die synchronously move up and down, the cross section of the stress round rod is circular, the bottom of the punch rod is tangent to the stress round rod, and the horizontal projections of the stress round rod and the material receiving box are not connected with each other. The effect that can get the single engineering mould of putting automatically, improve single engineering mould production efficiency can be reached.
The above description is only for the specific embodiments of the present invention, but the protection scope of the present invention is not limited thereto, and any changes or substitutions that can be easily conceived by those skilled in the art within the technical scope of the present invention are all covered by the protection scope of the present invention. Therefore, the protection scope of the present invention shall be subject to the protection scope of the claims.

Claims (7)

1. The utility model provides an automatic receiving mechanism of simplex engineering mould which characterized in that: the automatic receiving mechanism of single engineering mould includes receiving device, the fixed plate of the punch press on the mould, set up the lower mould fixed plate on the punch press lower mould and set up the high adjusting device on the fixed plate of lower mould, receiving device is including setting up bearing and torsional spring on high adjusting device, setting bearing frame on the bearing inner race, the material receiving box of setting on the bearing frame, the jumper bar of setting on fixed plate of upper mould and the atress pole of setting on the bearing frame, the top of torsional spring sets up at the bearing frame, the bottom surface of jumper bar is the inclined plane, the bottom surface of jumper bar is located directly over the atress pole, the jumper bar reciprocates in step with the punch press, the cross section of atress pole is circular, the jumper bar bottom is tangent with the atress pole, the atress pole does not meet with each other with the horizontal projection of material receiving box.
2. The automatic receiving mechanism of the single-process die as claimed in claim 1, wherein the height adjusting device comprises an adjusting middle shaft arranged on the lower die fixing plate, a height-limiting fixing block sleeved on the adjusting middle shaft, and a screw plunger arranged on the height-limiting fixing block through threaded connection.
3. The automatic receiving mechanism for the single-process die as claimed in claim 2, wherein the bottom of the lower die fixing plate and the top of the upper die fixing plate are provided with T-shaped back nuts, the lower die fixing plate is arranged in the T-shaped groove of the lower die of the punch press through the T-shaped back nuts, and the upper die fixing plate is arranged in the T-shaped groove of the upper die of the punch press through the T-shaped back nuts.
4. The automatic receiving mechanism of a single-process die as claimed in claim 3, wherein the bottom of the upper die fixing plate is provided with a supporting fixing block, and two sides of the supporting fixing block are respectively arranged on the upper die fixing plate and the punch rod.
5. The automatic receiving mechanism of the single-process die as claimed in any one of claims 1 to 4, wherein a limiting rod is arranged on the bottom surface of the bearing seat, and the height of the bottom surface of the limiting rod is lower than that of the bottom surface of the spiral plunger.
6. The automatic receiving mechanism of the single-process die as claimed in claim 5, wherein the bearing inner ring is sleeved on the adjusting middle shaft, and a limiting bolt is arranged at the top of the adjusting middle shaft.
7. The automatic receiving mechanism of the single-process die as claimed in claim 6, wherein the torsion spring is sleeved on the adjusting middle shaft, and the bottom of the torsion spring is arranged on the height-limiting fixing block.
CN202021634705.6U 2020-08-08 2020-08-08 Automatic receiving mechanism of simplex engineering mould Active CN213002302U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021634705.6U CN213002302U (en) 2020-08-08 2020-08-08 Automatic receiving mechanism of simplex engineering mould

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021634705.6U CN213002302U (en) 2020-08-08 2020-08-08 Automatic receiving mechanism of simplex engineering mould

Publications (1)

Publication Number Publication Date
CN213002302U true CN213002302U (en) 2021-04-20

Family

ID=75463601

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021634705.6U Active CN213002302U (en) 2020-08-08 2020-08-08 Automatic receiving mechanism of simplex engineering mould

Country Status (1)

Country Link
CN (1) CN213002302U (en)

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