CN214081001U - Enclose frame tool - Google Patents

Enclose frame tool Download PDF

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Publication number
CN214081001U
CN214081001U CN202022245533.XU CN202022245533U CN214081001U CN 214081001 U CN214081001 U CN 214081001U CN 202022245533 U CN202022245533 U CN 202022245533U CN 214081001 U CN214081001 U CN 214081001U
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CN
China
Prior art keywords
reversing
stop block
movable stop
frame
movable
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CN202022245533.XU
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Chinese (zh)
Inventor
胡纯军
黄正烈
张双印
董阳
吴永峰
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Sinotecho Wuhan Intelligent Technology Co Ltd
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Sinotecho Wuhan Intelligent Technology Co Ltd
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Priority to CN202022245533.XU priority Critical patent/CN214081001U/en
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Abstract

The utility model discloses an enclosure frame jig, which comprises a mounting plate, two fixed stop blocks, a first movable stop block, a second movable stop block and a driving mechanism; the mounting panel has the installing zone that is used for the installation to enclose the frame, and the installing zone is the setting of lengthwise shape, and has and be relative two first sides that set up along the left and right direction, and be relative two second sides that set up along the anteroposterior direction, and two fixed dogs are fixed respectively and locate a first side and a second side of installing zone, and first movable dog corresponds another first side setting of installing zone, and second movable dog corresponds another second side setting of installing zone, and actuating mechanism drives respectively and connects first movable dog and second movable dog. The utility model provides an enclose frame tool aims at solving prior art, encloses frame tool and need set up two cylinders on a station at least generally and pat the extrusion respectively to length direction and width direction and just can realize enclosing the frame location for the not ideal problem of result of use that encloses the frame tool.

Description

Enclose frame tool
Technical Field
The utility model relates to a barrel processing technology field, in particular to enclose frame tool.
Background
The positioning of the strip box enclosing frame is involved in the strip box processing process, so that the strip box enclosing frame can be further processed conveniently. In the conventional technology, a plurality of stations are generally distributed on a turntable for production and processing, and a frame enclosing jig is arranged in each station to bear incoming materials. Enclose frame tool and adopt cylinder ejector pad structure and fixed limit cooperation to promote the supplied materials to fix a position usually. Usually, at least two cylinders are required to be arranged on one station to beat and extrude the length direction and the width direction respectively so as to realize the positioning of the enclosure frame, so that the use effect of the enclosure frame jig is not ideal.
SUMMERY OF THE UTILITY MODEL
The utility model discloses an enclose frame tool aims at solving prior art, encloses frame tool and adopts cylinder ejector pad structure and fixed limit cooperation to promote the supplied materials to fix a position usually, nevertheless need set up two cylinders on a station at least and pat the extrusion respectively to length direction and width direction and just can realize enclosing the frame location for the not ideal problem of result of use of enclosing the frame tool.
In order to achieve the above object, the utility model provides an enclose frame tool, include:
the mounting plate is provided with a mounting area for mounting the enclosure frame, the mounting area is arranged in a longitudinal shape and is provided with two first sides which are oppositely arranged along the left-right direction and two second sides which are oppositely arranged along the front-back direction;
the two fixed stop blocks are respectively and fixedly arranged on the first side and the second side of the mounting area;
the first movable stop block is arranged corresponding to the other first side of the mounting area and movably arranged on the left side of the mounting area along the left-right direction;
the second movable stop block is arranged corresponding to the other second side of the mounting area and movably arranged behind the mounting area along the front-back direction; and the number of the first and second groups,
and the driving mechanism is respectively connected with the first movable stop block and the second movable stop block in a driving manner.
Optionally, the drive mechanism comprises:
the driver is provided with a driving rod which is arranged in a telescopic manner along the front-back direction;
the first reversing assembly is respectively connected with the driving rod and the first movable stop block and is used for correspondingly converting the forward and backward movement of the driving rod into the leftward and rightward movement of the first movable stop block; and the number of the first and second groups,
and the second reversing assembly is respectively connected with the driving rod and the second movable stop block and is used for respectively and correspondingly converting the forward and backward movements of the driving rod into the downward and upward movements of the second movable stop block.
Optionally, the first reversing assembly comprises a first reversing seat, a first reversing spring and a reversing diagonal rod;
first switching-over seat is fixed to be located on the mounting panel, first switching-over spring clamp is established first switching-over seat with between the first activity dog, the switching-over down tube is located the left side of first activity dog, and have with actuating lever butt complex direction inclined plane, the direction inclined plane is from the back to preceding and is towards right slope setting gradually.
Optionally, the first reversing assembly further comprises a sliding block and a reversing roller;
the slider along the fore-and-aft sliding installation in the mounting panel, the one end of slider with the actuating lever is connected, and the other end supplies the switching-over gyro wheel rotates the installation, the switching-over gyro wheel with the direction inclined plane roll cooperation of switching-over down tube.
Optionally, the reversing diagonal rod comprises a straight section and an inclined section which are connected in sequence;
the right end of the straight section is fixedly connected with the first movable stop block, and the inclined section is formed by extending the rear end of the straight section towards the left rear direction.
Optionally, the second reversing assembly comprises a second reversing seat, a second reversing spring and a reversing lever;
the second reversing seat is fixedly arranged on the mounting plate, the second reversing spring is clamped between the second reversing seat and the second movable stop block, the middle part of the reversing lever is hinged to the mounting plate, the right end part of the reversing lever is hinged to the second movable stop block, and the left end part of the reversing lever is in butt fit with the driving rod.
Optionally, the driving mechanism further includes a first push plate disposed between the first reversing seat and the first movable stopper, the first reversing spring is clamped and limited between the first push plate and the first reversing seat, and the first push plate is configured to form surface contact with the first movable stopper; and/or the presence of a gas in the gas,
the driving mechanism further comprises a second push plate arranged between the second reversing seat and the second movable stop block, the second push plate and the second reversing seat are clamped and limited by the second reversing spring, and the second push plate is used for being in surface contact with the second movable stop block.
Optionally, a first limiting groove is formed in the first reversing seat, and the first reversing spring is inserted into the first limiting groove; and/or the presence of a gas in the gas,
and a second limiting groove is formed in the second reversing seat, and the second reversing spring is inserted in the second limiting groove.
Optionally, the driver comprises two push rods and a linkage;
the two push rods are arranged in parallel at intervals in the front-back direction and are used for correspondingly pushing the first movable stop block and the second movable stop block to move, and the driving rod of the driving cylinder is connected with the two push rods through the linkage piece, so that the two push rods synchronously move when the driving rod moves in the front-back direction.
Optionally, the one end of two fixed stop blocks is connected, and the other end extends in the direction of place side in order to be formed with fixed hornblock, fixed hornblock is used for the card to hold a bight of spacing enclosure frame.
In the technical scheme provided by the utility model, the enclosing frame jig comprises a mounting plate, two fixed stop blocks, a first movable stop block, a second movable stop block and a driving mechanism; enclose the frame tool and be used for the location to enclose the frame, enclose the frame and be the rectangle. In order to position the enclosure frame, in the technical scheme, two fixed stop blocks are arranged for positioning two adjacent sides of the enclosure frame, and a first movable stop block and a second movable stop block are arranged for positioning the other two adjacent sides of the enclosure frame. For avoiding setting up two actuating mechanism and improving manufacturing cost the utility model provides an among the technical scheme, actuating mechanism drives respectively and connects first movable dog and the movable dog of second for enclose the result of use of frame tool more ideal, and save manufacturing cost effectively.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings needed to be used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to the structures shown in the drawings without creative efforts.
Fig. 1 is a schematic diagram of a three-dimensional structure of a frame jig according to an embodiment of the present invention;
fig. 2 is a schematic diagram of a three-dimensional structure of the enclosure frame jig (with parts omitted) in fig. 1 at another angle.
Description of the reference numerals
Reference numerals Name (R) Reference numerals Name (R)
1000 Enclose frame tool 521 First reversing seat
100 Mounting plate 522 First reversing spring
110 Mounting area 523 Reversing diagonal rod
111 First side 523a Straight section
112 Second side 523b Inclined section
200 Fixed stop block 524 Sliding block
300 First movable stop block 525 Reversing rollerWheel
400 Second movable stop block 526 First limit groove
500 Driving mechanism 530 Second reversing component
510 Driver 531 Second reversing seat
511 Driving rod 532 Second reversing spring
512 Push rod 533 Reversing lever
513 Linkage piece 534 Second limit groove
520 First reversing component 540 First push plate
550 Second push plate
The objects, features and advantages of the present invention will be further described with reference to the accompanying drawings.
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 efforts belong to the protection scope of the present invention.
It should be noted that, if directional indications (such as upper, lower, left, right, front and rear … …) are involved in the embodiment of the present invention, the directional indications are only used to explain the relative position relationship between the components, the motion situation, etc. in a specific posture (as shown in the drawings), and if the specific posture is changed, the directional indications are changed accordingly.
In addition, if there is a description relating to "first", "second", etc. in the embodiments of the present invention, the description of "first", "second", etc. is for descriptive purposes only and is not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one such feature. In addition, the meaning of "and/or" appearing throughout includes three juxtapositions, exemplified by "A and/or B" including either A or B or both A and B. In addition, the technical solutions in the embodiments may be combined with each other, but it must be based on the realization of those skilled in the art, and when the technical solutions are contradictory or cannot be realized, the combination of the technical solutions should not be considered to exist, and is not within the protection scope of the present invention.
The positioning of the strip box enclosing frame is involved in the strip box processing process, so that the strip box enclosing frame can be further processed conveniently. In the conventional technology, a plurality of stations are generally distributed on a turntable for production and processing, and a frame enclosing jig is arranged in each station to bear incoming materials. Enclose frame tool and adopt cylinder ejector pad structure and fixed limit cooperation to promote the supplied materials to fix a position usually. Usually, at least two cylinders are required to be arranged on one station to beat and extrude the length direction and the width direction respectively so as to realize the positioning of the enclosure frame, so that the use effect of the enclosure frame jig is not ideal.
In view of this, the utility model provides an enclose frame tool 1000. In the drawings of the present specification, fig. 1 is a schematic three-dimensional structure of an enclosure frame jig 1000 according to an embodiment of the present invention, and fig. 2 is a schematic three-dimensional structure of the enclosure frame jig 1000 (with some components omitted) at another angle in fig. 1.
Specifically, the enclosure frame jig 1000 includes a mounting plate 100, two fixed stoppers 200, a first movable stopper 300, a second movable stopper 400, and a driving mechanism 500; the mounting plate 100 has a mounting area 110 for mounting the enclosure frame, the mounting area 110 is disposed in a longitudinal shape, and has two first sides 111 disposed oppositely along left and right directions and two second sides 112 disposed oppositely along front and back directions, the two fixed stoppers 200 are respectively disposed on one first side 111 and one second side 112 of the mounting area 110, the first movable stopper 300 is disposed corresponding to the other first side 111 of the mounting area 110 and movably disposed on the left side of the mounting area 110 along left and right directions, the second movable stopper 400 is disposed corresponding to the other second side 112 of the mounting area 110 and movably disposed on the back side of the mounting area 110 along front and back directions, and the driving mechanism 500 is respectively connected to the first movable stopper 300 and the second movable stopper 400 in a driving manner.
In the technical solution provided by the present invention, the enclosure frame jig 1000 includes a mounting plate 100, two fixed stoppers 200, a first movable stopper 300, a second movable stopper 400, and a driving mechanism 500; enclose frame tool 1000 is used for the location to enclose the frame, encloses the frame and is the rectangle. In order to position the enclosure frame, in the present technical solution, two fixed stoppers 200 are provided for positioning two adjacent sides of the enclosure frame, and a first movable stopper 300 and a second movable stopper 400 are provided for positioning the other two adjacent sides of the enclosure frame. For avoiding setting up two actuating mechanism 500 improve equipment cost the utility model provides an among the technical scheme, actuating mechanism 500 drives respectively and connects first movable dog 300 and second movable dog 400 for enclose the result of use of frame tool 1000 more ideal, and save manufacturing cost effectively.
Further, because actuating mechanism 500 needs to drive first movable stop 300 and second movable stop 400 simultaneously, for guaranteeing its drive effect the utility model provides an among the technical scheme, actuating mechanism 500 includes: a driver 510, a first commutation component 520, and a second commutation component 530; the driver 510 has a driving rod 511 extending back and forth, the first direction changing assembly 520 is respectively connected to the driving rod 511 and the first movable stop block 300, the first direction changing assembly 520 is used for respectively and correspondingly converting the forward and backward movements of the driving rod 511 into the leftward and rightward movements of the first movable stop block 300, the second direction changing assembly 530 is respectively connected to the driving rod 511 and the second movable stop block 400, and the second direction changing assembly 530 is used for respectively and correspondingly converting the forward and backward movements of the driving rod 511 into the downward and upward movements of the second movable stop block 400. Since the frame surrounding jig 1000 needs to position and mount the surrounding frame, and the first movable stopper 300 and the second movable stopper 400 are used for limiting the two adjacent sides of the surrounding frame, for this reason, in the feeding and mounting process, the driving mechanism 500 needs to open the first movable stopper 300 and the second movable stopper 400 at the same time, so that the surrounding frame is mounted to the mounting area 110. And, after the enclosure frame is mounted to the mounting area 110, the driving mechanism 500 is further required to drive the first movable block 300 and the second movable block 400, so as to position the enclosure frame already located in the mounting area 110 for subsequent processing. To this end, the driving mechanism 500 includes a driver 510, a first reversing assembly 520, and a second reversing assembly 530. By means of the first and second reversing assemblies 520 and 530, the driving direction of the driver 510 can be changed to simultaneously drive the first and second movable stoppers 300 and 400 for restricting the adjacent sides of two sides of the enclosure frame, so as to complete the positioning process of the enclosure frame under the driving of one driver 510.
The first reversing assembly 520 is used for correspondingly converting the forward and backward movements of the driving rod 511 into the left and right movements of the first movable stopper 300, respectively. Without deviating from the material of the present invention, the first reversing component 520 may be disposed in a plurality of ways as long as it can perform its predetermined structural function. Specifically, the utility model discloses an among the technical scheme, first switching-over subassembly 520 includes first switching-over seat 521, first switching-over spring 522 and switching-over down tube 523, and first switching-over seat 521 is fixed to be located on mounting panel 100, and first switching-over spring 522 presss from both sides and establishes between first switching-over seat 521 and first movable stop block 300, and the left side of first movable stop block 300 is located to switching-over down tube 523, and has and the direction inclined plane with actuating lever 511 butt complex, and the direction inclined plane is from the back to preceding to be towards right slope setting gradually. So, first switching-over subassembly 520 can not only realize corresponding the conversion forward, the backward activity of actuating lever 511 to left, right removal of first activity dog 300 respectively to, the setting of first switching-over spring 522 can also effectively cushion the power impact of actuating lever 511 of driver 510, makes to enclose difficult by the crushing in the frame positioning process, promotes production efficiency.
Further, the first reversing assembly 520 further includes a slider 524 and a reversing roller 525; the slide block 524 is slidably installed on the mounting plate 100 in the front-back direction, one end of the slide block 524 is connected to the driving rod 511, the other end of the slide block is provided for the reversing roller 525 to be rotatably installed, and the reversing roller 525 is in rolling fit with the guide inclined surface of the reversing inclined rod 523. Therefore, sliding friction between the driving rod 511 and the reversing oblique rod 523 can be converted into rolling friction between the reversing roller 525 and the reversing oblique rod 523, transmission efficiency is effectively improved, power loss is reduced, and the movement effect of the first movable stopper 300 is better.
The reversing diagonal 523 comprises a straight segment 523a and an inclined segment 523b which are connected in sequence; the right end of the straight segment 523a is fixedly connected to the first movable stopper 300, and the inclined segment 523b is formed by extending the rear end of the straight segment 523a in the left-rear direction. In order to make the reversing effect of the reversing diagonal 523 better, a straight section 523a fixedly connected with the first movable stopper 300 and an inclined section 523b specially used for guiding are specially arranged in the technical scheme, and the two sections are respectively divided into work, so that the reversing effect is better.
The second reversing assembly 530 is used for correspondingly converting the forward and backward movements of the driving rod 511 into the downward and upward movements of the second movable stopper 400, respectively. Without deviating from the material of the present invention, the second reversing component 530 can be disposed in a plurality of ways as long as it can perform its predetermined structural function. Specifically, in the technical solution of the present invention, the second reversing assembly 530 includes a second reversing seat 531, a second reversing spring 532 and a reversing lever 533; the second reversing seat 531 is fixedly arranged on the mounting plate 100, the second reversing spring 532 is clamped between the second reversing seat 531 and the second movable stopper 400, the middle part of the reversing lever 533 is hinged to the mounting plate 100, the right end part of the reversing lever 533 is hinged to the second movable stopper 400, and the left end part of the reversing lever 533 is in butt fit with the driving rod 511. In actual operation, the forward extension of the driving lever 511 is converted into the backward movement of the second movable stopper 400 by the reversing lever 533, and the backward retraction of the driving lever 511 is converted into the forward movement of the second movable stopper 400 by the reversing lever 533. In addition, the second reversing spring 532 can also effectively buffer the power impact action of the driving rod 511 of the driver 510, so that the enclosure frame is not easily crushed in the positioning process, and the production efficiency is improved.
It should be further noted that the driving mechanism 500 further includes a first pushing plate 540 disposed between the first direction changing base 521 and the first movable stop 300, the first pushing plate 540 is disposed between the first direction changing base 521 and the first direction changing spring 522, and the first pushing plate 540 is configured to form a surface contact with the first movable stop 300. The connection between the first direction spring 522 and the first movable block 300 is completed through the first push plate 540, so that the connection effect is better, the structure of the first movable block 300 is not damaged, and the effect of the movable telescopic setting is better. Similarly, the driving mechanism 500 further includes a second push plate 550 disposed between the second direction-changing seat 531 and the second movable stop 400, the second direction-changing spring 532 is clamped and limited between the second push plate 550 and the second direction-changing seat 531, and the second push plate 550 is configured to form a surface contact with the second movable stop 400. The effect of the second push plate 550 is similar to that of the first push plate 540, and thus the description thereof is omitted.
In addition, in order to ensure the connection effect of the first reversing spring 522 and the second reversing spring 532, so that the power transmission is smooth and the enclosure frame is not damaged by pressure, a first limiting groove 526 may be formed in the first reversing seat 521, the first reversing spring 522 may be inserted into the first limiting groove 526, a second limiting groove 534 may be formed in the second reversing seat 531, and the second reversing spring 532 may be inserted into the second limiting groove 534.
In order to ensure the simultaneous movement of the first movable block 300 and the second movable block 400, so that the positioning and unlocking effects of the enclosure frame are better, in the technical scheme of the present invention, the driver 510 comprises two push rods 512 and a linkage part 513;
the two push rods 512 are arranged in parallel at intervals in the front-back direction, the two push rods 512 are used for correspondingly pushing the first movable stopper 300 and the second movable stopper 400 to move, and the driving rod 511 of the driving cylinder is connected with the two push rods 512 through a linkage 513, so that when the driving rod 511 moves in the front-back direction, the two push rods 512 move synchronously and push the first movable stopper 300 and the second movable stopper 400 simultaneously.
Previously mentioned, enclose frame tool 1000 includes mounting panel 100, two fixed dog 200, first movable dog 300, second movable dog 400 and actuating mechanism 500, and specifically, the setting form of two fixed dog 200 is more, can the components of a whole that can function independently setting, also can two fixed dog 200 integrative settings, and two fixed dog 200's one end is connected promptly, and the other end extends in the direction of place side in order to be formed with fixed angle piece, and fixed angle piece is used for holding a corner portion that the spacing encloses the frame.
The above only is the preferred embodiment of the present invention, not so limiting the patent scope of the present invention, all under the concept of the present invention, the equivalent structure transformation made by the contents of the specification and the drawings is utilized, or the direct/indirect application is included in other related technical fields in the patent protection scope of the present invention.

Claims (10)

1. The utility model provides an enclose frame tool which characterized in that includes:
the mounting plate is provided with a mounting area for mounting the enclosure frame, the mounting area is arranged in a longitudinal shape and is provided with two first sides which are oppositely arranged along the left-right direction and two second sides which are oppositely arranged along the front-back direction;
the two fixed stop blocks are respectively and fixedly arranged on the first side and the second side of the mounting area;
the first movable stop block is arranged corresponding to the other first side of the mounting area and movably arranged on the left side of the mounting area along the left-right direction;
the second movable stop block is arranged corresponding to the other second side of the mounting area and movably arranged behind the mounting area along the front-back direction; and the number of the first and second groups,
and the driving mechanism is respectively connected with the first movable stop block and the second movable stop block in a driving manner.
2. The frame enclosing jig of claim 1, wherein the driving mechanism comprises:
the driver is provided with a driving rod which is arranged in a telescopic manner along the front-back direction;
the first reversing assembly is respectively connected with the driving rod and the first movable stop block and is used for correspondingly converting the forward and backward movement of the driving rod into the leftward and rightward movement of the first movable stop block; and the number of the first and second groups,
and the second reversing assembly is respectively connected with the driving rod and the second movable stop block and is used for respectively and correspondingly converting the forward and backward movements of the driving rod into the downward and upward movements of the second movable stop block.
3. The frame enclosing jig of claim 2, wherein the first reversing assembly comprises a first reversing seat, a first reversing spring and a reversing diagonal rod;
first switching-over seat is fixed to be located on the mounting panel, first switching-over spring clamp is established first switching-over seat with between the first activity dog, the switching-over down tube is located the left side of first activity dog, and have with actuating lever butt complex direction inclined plane, the direction inclined plane is from the back to preceding and is towards right slope setting gradually.
4. The frame enclosing jig of claim 3, wherein the first reversing assembly further comprises a sliding block and a reversing roller;
the slider along the fore-and-aft sliding installation in the mounting panel, the one end of slider with the actuating lever is connected, and the other end supplies the switching-over gyro wheel rotates the installation, the switching-over gyro wheel with the direction inclined plane roll cooperation of switching-over down tube.
5. The frame enclosing jig of claim 3, wherein the reversing diagonal rod comprises a straight section and an inclined section which are connected in sequence;
the right end of the straight section is fixedly connected with the first movable stop block, and the inclined section is formed by extending the rear end of the straight section towards the left rear direction.
6. The frame enclosing jig of claim 3, wherein the second reversing assembly comprises a second reversing seat, a second reversing spring and a reversing lever;
the second reversing seat is fixedly arranged on the mounting plate, the second reversing spring is clamped between the second reversing seat and the second movable stop block, the middle part of the reversing lever is hinged to the mounting plate, the right end part of the reversing lever is hinged to the second movable stop block, and the left end part of the reversing lever is in butt fit with the driving rod.
7. The frame enclosing jig of claim 6, wherein the driving mechanism further comprises a first push plate disposed between the first direction changing seat and the first movable stopper, the first direction changing spring is clamped and limited between the first push plate and the first direction changing seat, and the first push plate is used for forming surface contact with the first movable stopper; and/or the presence of a gas in the gas,
the driving mechanism further comprises a second push plate arranged between the second reversing seat and the second movable stop block, the second push plate and the second reversing seat are clamped and limited by the second reversing spring, and the second push plate is used for being in surface contact with the second movable stop block.
8. The frame enclosing jig of claim 7, wherein the first reversing seat is provided with a first limiting groove, and the first reversing spring is inserted into the first limiting groove; and/or the presence of a gas in the gas,
and a second limiting groove is formed in the second reversing seat, and the second reversing spring is inserted in the second limiting groove.
9. The frame enclosing jig of claim 2, wherein the driver comprises two push rods and a linkage piece;
the two push rods are arranged in parallel at intervals in the left-right direction and are used for correspondingly pushing the first movable stop block and the second movable stop block to move, and the driving rod of the driver is connected with the two push rods through the linkage piece, so that the two push rods synchronously move when the driving rod moves in the front-back direction.
10. The frame enclosing jig of claim 1, wherein one end of the two fixed stoppers is connected, and the other end extends in the direction of the side to form a fixed corner block, and the fixed corner block is used for clamping and limiting a corner of the enclosing frame.
CN202022245533.XU 2020-10-10 2020-10-10 Enclose frame tool Active CN214081001U (en)

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Application Number Priority Date Filing Date Title
CN202022245533.XU CN214081001U (en) 2020-10-10 2020-10-10 Enclose frame tool

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Application Number Priority Date Filing Date Title
CN202022245533.XU CN214081001U (en) 2020-10-10 2020-10-10 Enclose frame tool

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Publication Number Publication Date
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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113814635A (en) * 2021-09-17 2021-12-21 上海雷孚激光科技发展有限公司 Welding jig for sheet metal parts of conveyor frame
CN115646846A (en) * 2022-09-29 2023-01-31 苏州天准科技股份有限公司 Detection equipment for 3C product

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113814635A (en) * 2021-09-17 2021-12-21 上海雷孚激光科技发展有限公司 Welding jig for sheet metal parts of conveyor frame
CN113814635B (en) * 2021-09-17 2024-05-24 上海雷孚激光科技发展有限公司 Welding jig for sheet metal parts of conveyor frame
CN115646846A (en) * 2022-09-29 2023-01-31 苏州天准科技股份有限公司 Detection equipment for 3C product
CN115646846B (en) * 2022-09-29 2023-08-18 苏州天准科技股份有限公司 Detection equipment for 3C product

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