CN220804478U - Finished product deformability size detection equipment - Google Patents

Finished product deformability size detection equipment Download PDF

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Publication number
CN220804478U
CN220804478U CN202322585237.8U CN202322585237U CN220804478U CN 220804478 U CN220804478 U CN 220804478U CN 202322585237 U CN202322585237 U CN 202322585237U CN 220804478 U CN220804478 U CN 220804478U
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China
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fixed
collecting box
wall
buffer
installation base
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CN202322585237.8U
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Chinese (zh)
Inventor
林士杰
范园园
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Sirui Guantong Technology Jiangsu Co ltd
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Sirui Guantong Technology Jiangsu Co ltd
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Abstract

The utility model relates to the field of detection equipment and discloses finished product deformation degree size detection equipment, which comprises a mounting base, wherein a PLC (programmable logic controller) is fixed on the right side of the outer wall of the mounting base, a conveyor belt is arranged in the mounting base, a laser displacement sensor is fixed on the top surface of the inside of the mounting frame, an electric push rod is fixed on the inner wall of a fixing hole, a pushing frame is fixed at one end of the electric push rod telescopic rod, a discharging hole is formed on the right side of the inner wall of the mounting base, a first collecting box is fixed on the right side of the outer wall of the mounting base, and a second collecting box is fixed on one side of the mounting base. According to the utility model, the automatic detection of the batched workpieces is facilitated by the conveyor belt, the mounting frame, the laser displacement sensor, the electric push rod, the pushing frame, the first collecting box and the second collecting box, and meanwhile, the classification and collection of the qualified and unqualified workpieces are facilitated, so that a large amount of labor cost is reduced, and the batched detection requirement of enterprises is met.

Description

Finished product deformability size detection equipment
Technical Field
The utility model relates to the technical field of detection equipment, in particular to finished product deformation degree size detection equipment.
Background
The metal parts are parts which are obtained by applying pressure to metal blanks by forging machinery and plastically deforming the metal blanks, wherein the parts have certain mechanical properties and certain shapes and sizes, and the deformation degree of the forged metal parts are detected by a detection device during production, so that qualified metal parts are produced.
According to publication No.: CN215598328U, a chinese patent, a be convenient for to aluminium product check out test set, the on-line screen storage device comprises a base, the top of base is fixed with the support frame, the inside rotation in top of support frame is connected with the pivot, the bottom mounting of pivot has the mount, the inside of mount is fixed with first cylinder, the bottom of first cylinder is fixed with first laser rangefinder, the bottom inside of first cylinder is fixed with first solenoid valve, the inside cover of first cylinder is equipped with two first pistons.
In the scheme, after the detection piece is placed in the limiting groove, the detection piece is detected through the first laser range finder and the second laser range finder. Causing it to suffer from the following drawbacks: because the work piece is batch production, the staff need once only detect a large amount of work pieces, then need the staff to make a round trip to place the detection, take the work piece after the detection is accomplished again, lead to consuming a large amount of manpowers, can not satisfy the batch detection needs of enterprise, for this we provide a finished product deformability size check out test set.
Disclosure of utility model
The utility model aims to provide a finished product deformation degree size detection device, which aims to solve the problems that a large number of workpieces are required to be detected at one time by workers due to batch production of the workpieces, the workers are required to put the workpieces back and forth for detection, and the workpieces are required to be taken after the detection is finished, so that a large amount of manpower is required to be consumed, and the batch detection requirement of enterprises cannot be met.
In order to achieve the above object, the present utility model adopts the following technical scheme: the utility model provides a finished product deformability size detection equipment, includes the installation base, the outer wall right side of installation base is fixed with the PLC controller, the inside of installation base is equipped with the conveyer belt, the top surface of installation base is fixed with the mounting bracket, the inside top surface of mounting bracket is fixed with laser displacement sensor, the inner wall left side of installation base is fixed with the guide plate, the fixed orifices has been seted up in the inner wall left side of installation base, the inner wall of fixed orifices is fixed with electric putter, electric putter telescopic link's one end is fixed with promotes the frame, the discharge opening has been seted up on the inner wall right side of installation base, the outer wall right side of installation base is fixed with first collecting box, one side of installation base is fixed with the second collecting box.
Preferably, the inside of first collecting box is equipped with first buffer board, the bottom surface of first buffer board is fixed with a plurality of first buffer spring, a plurality of first buffer spring's bottom respectively with the inside bottom surface fixed connection of first collecting box, the inside of second collecting box is equipped with the second buffer board, the bottom surface of second buffer board is fixed with a plurality of second buffer spring, a plurality of second buffer spring's bottom respectively with the inside bottom surface fixed connection of second collecting box.
Preferably, the first spacing groove of a plurality of has been seted up to the inside bottom surface of first collecting box, and a plurality of the inner wall in first spacing groove slides respectively and inserts first spacing post, and a plurality of first buffer spring encircles respectively on a plurality of first spacing post, a plurality of the top of first spacing post respectively with the bottom surface fixed connection of first buffer board, a plurality of second spacing groove has been seted up respectively to the inside bottom surface of second collecting box, and a plurality of the inner wall in second spacing groove slides respectively and inserts second spacing post, a plurality of the top of second spacing post respectively with the bottom surface fixed connection of second buffer board.
Preferably, a blocking plate is inserted in the inner wall of the discharging hole in a sliding manner.
Preferably, the left side, the right side of barrier plate are fixed with the movable plate respectively, two the movable hole has been seted up respectively to one side of movable plate, two the inner wall in movable hole slides respectively and inserts and have been equipped with the support column, two the left end of support column respectively with the outer wall right side fixed connection of installation base.
Preferably, the outer walls of the two support columns are respectively surrounded by a reset spring, the left ends of the two reset springs are respectively fixedly connected with the right side surfaces of the two movable plates, the other ends of the two support columns are respectively fixed with a blocking block, and the left end surfaces of the two blocking blocks are respectively fixedly connected with the right ends of the two reset springs.
Compared with the prior art, the finished product deformation degree size detection equipment adopting the technical scheme has the following beneficial effects:
1. When the workpiece is conveyed by the conveyor belt, the laser displacement sensor is started to detect the deformation degree of the workpiece, when the deformation degree of the workpiece is detected to be unqualified, information is transmitted to the PLC, the unqualified workpiece is conveyed to the pushing frame by the conveyor belt, the electric push rod is started to enable the pushing frame to move rightwards, the unqualified workpiece is pushed to the discharging hole, the unqualified workpiece falls from the discharging hole and falls into the first collecting box, the unqualified workpiece is conveniently collected, the electric push rod is started to enable the pushing frame to move leftwards to reset, when the qualified workpiece is detected, the qualified workpiece can be conveyed into the second collecting box by the conveyor belt, the qualified workpiece is conveniently collected by a worker, the guide plate is beneficial to guiding the workpiece on the conveyor belt, the guide effect is achieved, and meanwhile, the qualified workpiece is conveniently detected and classified by the conveyor belt, the mounting frame, the laser displacement sensor, the electric push rod, the pushing frame, the first collecting box and the second collecting box, and the qualified workpiece are convenient to automatically detect the workpiece, and the qualified workpiece are greatly required to be classified by enterprises;
2. In use, when unqualified workpieces fall into the first collecting box, the unqualified workpieces fall onto the first buffer plate, at the moment, when external force acts on the first buffer spring, the spring deforms, so that the influence of the external force is counteracted by the elastic force in the opposite direction, the first buffer plate and the workpieces can be effectively slowed down through the first buffer spring, the effect of buffering is achieved, the damage of the workpieces is favorably reduced, when the qualified workpieces fall into the second collecting box, the workpieces fall onto the second buffer plate, at the moment, when the external force acts on the second buffer spring, the spring deforms, so that the influence of the external force is counteracted by the elastic force in the opposite direction, the second buffer plate and the workpieces can be effectively slowed down through the second buffer spring, the effect of buffering is achieved, the damage of the workpieces is favorably reduced, when the unqualified workpieces fall onto the second buffer plate, the first buffer plate can be limited through the first limiting groove and the first limiting column, the first buffer plate is favorably prevented from being deviated, the first buffer plate is favorably increased, and the second buffer plate can be favorably limited through the second limiting column and the second limiting column is favorably prevented from being increased;
3. In use, when the work piece is carried through the conveyer belt, can do benefit to the work piece through the barrier plate and block, prevent that the work piece from dropping, when starting electric putter makes the pushing frame push the disqualified work piece to the discharge opening, at this moment, the barrier plate receives the thrust of pushing the frame, move away from the discharge opening to the right, the disqualified work piece of being convenient for can fall down from the discharge opening, fall into in the first collecting box, when the barrier plate moves, do benefit to the spacing support to the barrier plate through movable plate, the support column, prevent the barrier plate skew, stability when the barrier plate moves is improved, when starting electric putter makes the pushing frame move to the right, the pushing frame promotes the barrier plate and moves to the right, at this moment, return spring is in the extrusion state, at this moment, do benefit to the automatic re-setting with the barrier plate through return spring, do benefit to blockking the work piece again.
Drawings
Fig. 1 is a perspective view of an embodiment.
Fig. 2 is an exploded perspective view of an embodiment.
Fig. 3 is an internal cutaway perspective view of the first collection tank of the embodiment.
Fig. 4 is an internal cutaway perspective view of the second collection tank of the embodiment.
Fig. 5 is a system block diagram of an embodiment.
In the figure: 1. a mounting base; 2. a conveyor belt; 3. a mounting frame; 4. a laser displacement sensor; 5. a deflector; 6. a fixing hole; 7. an electric push rod; 8. pushing the frame; 9. a discharge hole; 10. a first collection box; 11. a second collection box; 12. a first buffer plate; 13. a first buffer spring; 14. a second buffer plate; 15. a second buffer spring; 16. a first limit groove; 17. a first limit post; 18. the second limit groove; 19. the second limit column; 20. a blocking plate; 21. a moving plate; 22. a movable hole; 23. a support column; 24. a return spring; 25. and a blocking piece.
Detailed Description
The preferred embodiments of the present utility model will be described in detail with reference to the accompanying drawings.
As shown in fig. 1-5, a finished product deformation degree size detection device comprises a mounting base 1, a PLC controller is fixed on the right side of the outer wall of the mounting base 1, the PLC controller is electrically connected with a conveyor belt 2, a laser displacement sensor 4 and an electric push rod 7, the PLC controller is electrically connected with the conveyor belt 2, the laser displacement sensor 4 and the electric push rod 7, the conveyor belt 2 is arranged in the mounting base 1, a mounting frame 3 is fixed on the top surface of the mounting base 1, the laser displacement sensor 4 is fixed on the top surface of the mounting frame 3, a guide plate 5 is fixed on the left side of the inner wall of the mounting base 1, a fixing hole 6 is formed on the left side of the inner wall of the mounting base 1, an electric push rod 7 is fixed on the inner wall of the fixing hole 6, a pushing frame 8 is fixed on one end of a telescopic rod of the electric push rod 7, a discharging hole 9 is formed on the right side of the inner wall of the mounting base 1, a first collecting box 10 is fixed on the right side of the outer wall of the mounting base 1, and a second collecting box 11 is fixed on one side of the mounting base 1.
In use, when the work piece is carried through conveyer belt 2, when the work piece moves to the below of laser displacement sensor 4, start laser displacement sensor 4, detect the work piece deformation degree size, when detecting that the work piece deformation degree size is unqualified, convey information to the PLC controller, when unqualified work piece carries to pushing frame 8 through conveyer belt 2, start electric putter 7, make pushing frame 8 remove right, promote unqualified work piece to discharge port 9, make unqualified work piece fall from discharge port 9, fall into the inside of first collecting box 10, be convenient for collect unqualified work piece, then start electric putter 7, make pushing frame 8 remove left and reset, when detecting to be qualified work piece, qualified work piece can carry through conveyer belt 2 and fall into the inside of second collecting box 11, be convenient for collect qualified work piece, do benefit to the staff and take, be favorable to carrying out the guide to the work piece on the conveyer belt 2 through guide plate 5, have guiding effect, through conveyer belt 2, mounting bracket 3, laser displacement sensor 4, automatic push frame 8, first, the second collecting box 10, the work piece is carried out the lot size is good for the quality of work piece is detected, and the batch is satisfied, the batch is carried out to the quality is good for the second collecting box is satisfied, and the batch is satisfied, the batch is convenient for the quality is detected, and is large-scale to be convenient for the quality is good for the quality to be detected, and has reduced.
As shown in fig. 2-4, a first buffer plate 12 is disposed in the first collecting box 10, a plurality of first buffer springs 13 are fixed on the bottom surface of the first buffer plate 12, the first buffer springs 13 are of an existing structure and are not described in detail herein, the bottom ends of the plurality of first buffer springs 13 are fixedly connected with the inner bottom surface of the first collecting box 10 respectively, a second buffer plate 14 is disposed in the second collecting box 11, a plurality of second buffer springs 15 are fixed on the bottom surface of the second buffer plate 14, the second buffer springs 15 are of an existing structure and are not described in detail herein, and the bottom ends of the plurality of second buffer springs 15 are fixedly connected with the inner bottom surface of the second collecting box 11 respectively.
In use, when unqualified workpieces fall into the first collecting box 10, the unqualified workpieces fall onto the first buffer plate 12, at this time, when an external force acts on the first buffer spring 13, the spring deforms, so that the influence of the external force is counteracted by the elastic force in the opposite direction, the first buffer plate 12 and the workpieces can be effectively slowed down through the first buffer spring 13, the buffer effect is achieved, the damage of the workpieces is reduced, when the qualified workpieces fall into the second collecting box 11, the qualified workpieces fall onto the second buffer plate 14, at this time, when the external force acts on the second buffer spring 15, the spring deforms, so that the influence of the external force is counteracted by the elastic force in the opposite direction, the second buffer plate 14 and the workpieces can be effectively slowed down through the second buffer spring 15, the buffer effect is achieved, and the damage of the workpieces is reduced.
As shown in fig. 2-4, the inner bottom surface of the first collecting box 10 is provided with a plurality of first limit grooves 16, the inner walls of the plurality of first limit grooves 16 are respectively slidably inserted with first limit columns 17, a plurality of first buffer springs 13 respectively encircle on the plurality of first limit columns 17, the top ends of the plurality of first limit columns 17 are respectively fixedly connected with the bottom surface of the first buffer plate 12, the inner bottom surface of the second collecting box 11 is respectively provided with a plurality of second limit grooves 18, the inner walls of the plurality of second limit grooves 18 are respectively slidably inserted with second limit columns 19, the top ends of the plurality of second limit columns 19 are respectively fixedly connected with the bottom surface of the second buffer plate 14, and the inner walls of the discharging holes 9 are slidably inserted with blocking plates 20.
In use, when unqualified workpieces fall on the first buffer plate 12 and qualified workpieces fall on the second buffer plate 14, the first buffer plate 12 can be limited through the first limiting groove 16 and the first limiting column 17, the first buffer plate 12 is prevented from deflecting, the stability of the first buffer plate 12 is increased, the second buffer plate 14 can be limited through the second limiting groove 18 and the second limiting column 19, the second buffer plate 14 is prevented from deflecting, the stability of the second buffer plate 14 is increased, when the workpieces are conveyed through the conveyor belt 2, the blocking plates 20 can be used for blocking the workpieces, the workpieces are prevented from falling, and when the electric push rod 7 is started to push the unqualified workpieces to the discharge hole 9, the blocking plates 20 are pushed by the pushing frame 8, move rightwards to be far away from the discharge hole 9, so that the unqualified workpieces can fall from the discharge hole 9 and fall into the first collecting box 10.
As shown in fig. 1-2, the left side and the right side of the blocking plate 20 are respectively fixed with a moving plate 21, one sides of the two moving plates 21 are respectively provided with a moving hole 22, the inner walls of the two moving holes 22 are respectively inserted with a supporting column 23 in a sliding manner, the left ends of the two supporting columns 23 are respectively fixedly connected with the right side of the outer wall of the mounting base 1, the outer walls of the two supporting columns 23 are respectively surrounded by a reset spring 24, the reset springs 24 are of the existing structure, the left ends of the two reset springs 24 are respectively fixedly connected with the right side surfaces of the two moving plates 21, the other ends of the two supporting columns 23 are respectively fixed with a blocking block 25, and the left end surfaces of the two blocking blocks 25 are respectively fixedly connected with the right ends of the two reset springs 24.
In use, when the blocking plate 20 moves, the blocking plate 20 is limited and supported by the moving plate 21 and the supporting column 23, the blocking plate 20 is prevented from being deflected, the stability of the blocking plate 20 during movement is improved, when the electric push rod 7 is started to enable the pushing frame 8 to move rightwards, the pushing frame 8 pushes the blocking plate 20 to move rightwards, at the moment, the reset spring 24 is in an extrusion state, and when the electric push rod 7 is started to move leftwards, at the moment, the blocking plate 20 is automatically reset by the resilience force of the reset spring 24, and the blocking plate 20 is blocked to a workpiece again.
The foregoing is only a preferred embodiment of the present utility model, but the scope of the present utility model is not limited thereto, and any person skilled in the art, who is within the scope of the present utility model, should make equivalent substitutions or modifications according to the technical scheme of the present utility model and the inventive concept thereof, and should be covered by the scope of the present utility model.

Claims (6)

1. The utility model provides a finished product deformability size detection equipment, includes installation base (1), its characterized in that, the outer wall right side of installation base (1) is fixed with the PLC controller, the inside of installation base (1) is equipped with conveyer belt (2), the top surface of installation base (1) is fixed with mounting bracket (3), the inside top surface of mounting bracket (3) is fixed with laser displacement sensor (4), the inner wall left side of installation base (1) is fixed with guide plate (5), fixed orifices (6) have been seted up on the inner wall left side of installation base (1), the inner wall of fixed orifices (6) is fixed with electric putter (7), the one end of electric putter (7) telescopic link is fixed with promotes frame (8), discharge opening (9) have been seted up on the inner wall right side of installation base (1), the outer wall right side of installation base (1) is fixed with first collecting box (10), one side of installation base (1) is fixed with second collecting box (11).
2. The finish deformation dimension detection apparatus according to claim 1, wherein: the inside of first collecting box (10) is equipped with first buffer board (12), the bottom surface of first buffer board (12) is fixed with a plurality of first buffer spring (13), a plurality of the bottom of first buffer spring (13) respectively with the inside bottom surface fixed connection of first collecting box (10), the inside of second collecting box (11) is equipped with second buffer board (14), the bottom surface of second buffer board (14) is fixed with a plurality of second buffer spring (15), a plurality of the bottom of second buffer spring (15) respectively with the inside bottom surface fixed connection of second collecting box (11).
3. A finished product deformation degree dimension detection apparatus according to claim 2, wherein: the first limiting grooves (16) of a plurality of are formed in the inner bottom surface of the first collecting box (10), the first limiting columns (17) are respectively inserted into the inner walls of the first limiting grooves (16) in a sliding mode, the first buffer springs (13) are respectively wound on the first limiting columns (17), the top ends of the first limiting columns (17) are respectively fixedly connected with the bottom surface of the first buffer plate (12), the second limiting grooves (18) of a plurality of are respectively formed in the inner bottom surface of the second collecting box (11), the second limiting columns (19) of a plurality of are respectively inserted into the inner walls of the second limiting grooves (18) in a sliding mode, and the top ends of the second limiting columns (19) are respectively fixedly connected with the bottom surface of the second buffer plate (14).
4. The finish deformation dimension detection apparatus according to claim 1, wherein: the inner wall of the discharging hole (9) is inserted with a blocking plate (20) in a sliding way.
5. The finish deformation dimension detection apparatus as claimed in claim 4, wherein: the left side, the right side of barrier plate (20) are fixed with movable plate (21) respectively, and two movable hole (22) have been seted up respectively to one side of movable plate (21), two the inner wall in movable hole (22) is slip respectively inserted and is had support column (23), two the left end of support column (23) respectively with the outer wall right side fixed connection of installation base (1).
6. The finish deformation dimension detection apparatus according to claim 5, wherein: the outer walls of the two support columns (23) are respectively surrounded by reset springs (24), the left ends of the two reset springs (24) are respectively fixedly connected with the right side surfaces of the two movable plates (21), the other ends of the two support columns (23) are respectively fixed with a blocking block (25), and the left end surfaces of the two blocking blocks (25) are respectively fixedly connected with the right ends of the two reset springs (24).
CN202322585237.8U 2023-09-22 2023-09-22 Finished product deformability size detection equipment Active CN220804478U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322585237.8U CN220804478U (en) 2023-09-22 2023-09-22 Finished product deformability size detection equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322585237.8U CN220804478U (en) 2023-09-22 2023-09-22 Finished product deformability size detection equipment

Publications (1)

Publication Number Publication Date
CN220804478U true CN220804478U (en) 2024-04-19

Family

ID=90706537

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322585237.8U Active CN220804478U (en) 2023-09-22 2023-09-22 Finished product deformability size detection equipment

Country Status (1)

Country Link
CN (1) CN220804478U (en)

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