Photovoltaic panel frame proofing and length measuring workbench

The automatic positioning and adjustment of the photovoltaic panel frame is achieved by using a laser positioning sensor and a servo motor in conjunction with an electric push rod. Combined with an image measuring instrument and a display screen to present data intuitively, this solves the problem of inaccurate measurement in existing technologies and improves the accuracy and efficiency of photovoltaic panel frame measurement.

CN224102899UActive Publication Date: 2026-04-10JIAXING YAMA METAL PROD CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-26
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

The existing photovoltaic panel frame prototyping and length measurement workbench cannot automatically and accurately position and adjust, resulting in inaccurate measurements and an inability to intuitively present the measurement results, which affects product quality and installation efficiency.

Method used

Automatic positioning is achieved by using a laser positioning sensor and a servo motor in conjunction with an electric push rod. The electric telescopic gripper adjusts according to the frame size, and the data is presented intuitively by an image measuring instrument and a display screen to ensure measurement accuracy.

Benefits of technology

It enables precise positioning and automatic adjustment of the photovoltaic panel frame, improving measurement accuracy and work efficiency, reducing human error, and facilitating operators to quickly judge measurement results.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a photovoltaic panel frame proofing and length measuring workbench, which relates to the related technical field of photovoltaic panel frame proofing and length measuring, and comprises a fixed bottom plate, one side of the fixed bottom plate is connected with one side of a fixed baffle plate matched with the fixed bottom plate, the fixed baffle plate is fixedly connected with the fixed bottom plate by arranging a fixed bolt, and the fixed bottom plate is connected with the fixed baffle plate. One side of the fixed baffle is connected with one end of a protection pipe, the protection pipe is fixedly connected with the fixed baffle through a fastening bolt, and the other end of the protection pipe is connected with one side of a semicircular supporting block. According to the photovoltaic panel frame proofing and length measuring workbench, the position and posture of a photovoltaic panel frame can be rapidly recognized through the laser positioning sensor, real-time coordinate information is provided, and a to-be-measured sample can be automatically and accurately positioned to the measuring position through cooperation with the servo motor and the electric push rod; a double-outlet air cylinder in the electric telescopic grabbing clamp drives the clamping jaws to stretch and contract, clamping can be automatically adjusted according to frames of different sizes, and stable grabbing and moving are achieved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to photovoltaic panel frame proofing length measuring related technical field, concretely is a kind of photovoltaic panel frame proofing length measuring workbench. BACKGROUND

[0002] With the development of renewable energy, solar photovoltaic technology has been widely used, and the size precision of photovoltaic panel frame, as an important part of solar cell module, directly affects the installation effect and service life of the whole system. However, in actual production, due to the limitation of traditional measurement method, it is difficult to ensure that the size of each frame is completely consistent, which affects the product quality and installation efficiency. Therefore, a photovoltaic panel frame proofing length measuring workbench is urgently needed.

[0003] At present, the existing photovoltaic panel frame proofing length measuring workbench cannot automatically position the sample to be measured to the measurement position, and cannot automatically adjust according to the frame of different sizes to realize stable grabbing and moving. The length of the photovoltaic panel frame measured by the existing proofing length measuring workbench is not accurate enough, which cannot ensure that it meets the design requirements, thereby reducing the accuracy of measurement. Moreover, the measured graphics and data cannot be intuitively presented to the operator, which is not convenient for the operator to quickly judge the accuracy and deviation of the measurement result. UTILITY MODEL CONTENTS

[0004] The utility model aims at providing a photovoltaic panel frame proofing length measuring workbench to solve the problem that the existing photovoltaic panel frame proofing length measuring workbench cannot automatically position the sample to be measured to the measurement position, and cannot automatically adjust according to the frame of different sizes to realize stable grabbing and moving. The length of the photovoltaic panel frame measured by the existing proofing length measuring workbench is not accurate enough, which cannot ensure that it meets the design requirements, thereby reducing the accuracy of measurement. Moreover, the measured graphics and data cannot be intuitively presented to the operator, which is not convenient for the operator to quickly judge the accuracy and deviation of the measurement result.

[0005] To achieve the above purpose, the utility model provides the following technical scheme: a photovoltaic panel frame proofing length measuring workbench, comprising a fixed bottom plate, one side of the fixed bottom plate is connected with one side of a fixed baffle matched therewith, the fixed baffle is connected and fixed with the fixed bottom plate by setting a fixed bolt, one side of the fixed baffle is connected with one end of a protective tube, the protective tube is connected and fixed with the fixed baffle by setting a fastening bolt, the other end of the protective tube is connected with one side of a semicircular supporting block, the protective tube is connected and fixed with the semicircular supporting block by setting a fastening bolt, the inside of the protective tube is provided with a ball screw matched therewith, one end of the ball screw is connected on one side of the fixed baffle, the other side of the semicircular supporting block is provided with a servo motor.

[0006] Preferably, the output shaft of the servo motor is connected and fixed to the other end of the ball screw via a coupling set by a semi-circular support block. The ball screw is slidably connected to a matching ball sleeve. One end of the outer wall of the ball sleeve is connected to one end of a matching right-angle retainer. The other end of the right-angle retainer is connected to one end of the outer wall of a matching electric push rod. The other end of the electric push rod is provided with a T-shaped support block. One side of the T-shaped support block is connected and fixed to the other end of the outer wall of the electric push rod by a fastening retainer.

[0007] Preferably, the other side of the T-shaped support block is connected to one side of the electric telescopic gripper. The electric telescopic gripper is fixed to the T-shaped support block by setting a first bolt. The other side of the electric telescopic gripper is provided with a laser positioning sensor adapted to it. The laser positioning sensor is set inside the electric telescopic gripper. The other side of the fixed base plate is connected to the bottom side of the L-shaped bracket.

[0008] Preferably, the L-shaped bracket is connected and fixed to the base plate by setting hexagonal bolts, and an image measuring instrument is set on the top of the L-shaped bracket. The image measuring instrument is connected and fixed to the L-shaped bracket by setting a trapezoidal locking block and cooperating with a matching second bolt.

[0009] Preferably, a control box is provided on the top of the opposite side of the fixed base plate, and a display screen adapted to it is provided on the top of the control box, the display screen being located inside the control box.

[0010] Preferably, a start switch and a measurement switch are respectively provided below the display screen, the start switch and the measurement switch are respectively located on the top of the control box, and a connection port is provided on one side of the control box.

[0011] Preferably, the top of the fixed base plate is provided with a measuring scale, and the bottom of the fixed base plate is provided with a matching support frame.

[0012] Compared with the prior art, the beneficial effects of this utility model are:

[0013] 1. This photovoltaic panel frame prototyping and length measurement workbench can quickly identify the position and posture of the photovoltaic panel frame through a laser positioning sensor, providing real-time coordinate information. With the help of a servo motor and electric push rod, it can automatically and accurately position the sample to be measured to the measurement position. The electric telescopic gripper model is HEPG. Through the internal double-outlet cylinder, the gripper can be stretched and retracted to automatically adjust the gripping according to different frame sizes, so as to achieve stable gripping and movement.

[0014] 2、The photovoltaic panel frame proofing and length measuring workbench can accurately measure the length of the photovoltaic panel frame through the image measuring instrument, ensure that the photovoltaic panel frame meets the design requirements, thereby improving the measurement accuracy, reducing human errors, can intuitively present the measured graphics and data to the operator through the control box and the display screen, facilitate the operator to quickly judge the accuracy and deviation of the measurement result, improve the work efficiency, can transmit the measurement result through the connecting socket, and facilitate the operator to record and store the measurement result. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 It is a left side view three-dimensional structure schematic diagram of the utility model;

[0016] Figure 2 It is a local three-dimensional structure schematic diagram of the utility model;

[0017] Figure 3 It is a local three-dimensional structure schematic diagram of the utility model;

[0018] Figure 4 It is a rear side view three-dimensional structure schematic diagram of the utility model.

[0019] In the drawing: 1, fixed bottom plate; 2, fixed baffle; 3, fixed bolt; 4, protection pipe; 5, fastening bolt; 6, semicircular support block; 7, ball screw; 8, servo motor; 9, coupling; 10, ball sleeve; 11, right-angle clasp ring; 12, electric push rod; 13, T-shaped support block; 14, fastening clasp ring; 15, electric telescopic grab; 16, first bolt; 17, laser positioning sensor; 18, L-shaped support; 19, hexagonal bolt; 20, image measuring instrument; 21, trapezoidal clamping block; 22, second bolt; 23, control box; 24, display screen; 25, starting switch; 26, measurement switch; 27, connecting socket; 28, measurement scale; 29, supporting base frame. DETAILED DESCRIPTION

[0020] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.

[0021] Please refer to Figures 1-4The utility model provides a technical scheme: a photovoltaic panel frame proofing length measuring worktable, one side of fixed bottom plate 1 is connected with the one side of fixed baffle 2 which is adapted to it, fixed baffle 2 is connected fixed with fixed bottom plate 1 through setting fixed bolt 3, one side of fixed baffle 2 is connected with one end of protection pipe 4, protection pipe 4 is connected fixed with fixed baffle 2 through setting fastening bolt 5, the other end of protection pipe 4 is connected with one side of semicircle support block 6, protection pipe 4 is connected fixed with semicircle support block 6 through setting fastening bolt 5, the inside of protection pipe 4 is provided with ball screw 7 which is adapted to it, one end of ball screw 7 is connected in one side of fixed baffle 2, the other side of semicircle support block 6 is provided with servo motor 8, the output shaft of servo motor 8 is connected fixed with the other end of ball screw 7 through the coupling 9 of semicircle support block 6 setting, ball screw 7 is connected with ball sleeve 10 which is adapted to it through sliding, one end outer wall of ball sleeve 10 is connected with straight angle snap ring 11 one end which is adapted to it, the other end of straight angle snap ring 11 is connected with the one end outer wall of electric push rod 12 which is adapted to it, the other end of electric push rod 12 is provided with T type support block 13, one side of T type support block 13 is connected fixed with the other end outer wall of electric push rod 12 through setting fastening snap ring 14, the other side of T type support block 13 is connected with one side of electric telescopic grab 15, electric telescopic grab 15 is connected fixed with T type support block 13 through setting first bolt 16, the other side of electric telescopic grab 15 is provided with laser positioning sensor 17 which is adapted to it, laser positioning sensor 17 sets up in the inside of electric telescopic grab 15, can quickly identify the position and attitude of photovoltaic panel frame through laser positioning sensor 17, provides real-time coordinate information, cooperates servo motor 8 with electric push rod 12 and can automatically position the sample to be measured to the measuring position, and the model of the electric telescopic grab 15 is HEPG, and the clamping jaw is stretched and shrunk by the internal double air cylinder, and the electric telescopic grab 15 can automatically adjust the clamping according to the frame of different sizes, realizes stable grabbing and moving.

[0022] The other side of the fixed bottom plate 1 is connected with the bottom side of the L-shaped support 18, the L-shaped support 18 is connected and fixed with the fixed bottom plate 1 by setting the hexagonal bolt 19, the top of the L-shaped support 18 is provided with the image measuring instrument 20, the image measuring instrument 20 is connected and fixed with the L-shaped support 18 by setting the trapezoidal clamping block 21 matched with the second bolt 22, the opposite side of the fixed bottom plate 1 is provided with the control box 23 at the top, the top of the control box 23 is provided with the display screen 24 matched therewith, the display screen 24 is arranged in the inside of the control box 23, the starting switch 25 and the measuring switch 26 are arranged below the display screen 24 respectively, the starting switch 25 and the measuring switch 26 are arranged at the top of the control box 23 respectively, the control box 23 is provided with the connecting socket 27 at one side, the measuring scale 28 is opened at the top of the fixed bottom plate 1, the bottom of the fixed bottom plate 1 is provided with the supporting base 29 matched therewith, the length of the photovoltaic panel frame can be accurately measured through the image measuring instrument 20, the design requirements are ensured to be met, and then the measurement accuracy is improved, the human error is reduced, the measured graphics and data can be directly presented to the operator through the control box 23 and the display screen 24, the operator can quickly judge the accuracy and deviation of the measurement result, the work efficiency is improved, and the measurement result can be transmitted through the connecting socket 27, so that the operator can record and store the measurement result.

[0023] Working principle: firstly, the position and posture of the photovoltaic panel frame can be quickly recognized through the laser positioning sensor 17, real-time coordinate information is provided, the servo motor 8 and the electric push rod 12 can be matched to automatically position the sample to be measured to the measurement position, the electric telescopic grab 15 is of HEPG type, the clamping jaw can be stretched and contracted through the internal double air cylinder, and the clamping can be automatically adjusted according to the frame of different sizes, stable grabbing and moving are realized, the length of the photovoltaic panel frame can be accurately measured through the image measuring instrument 20, the design requirements are ensured to be met, and then the measurement accuracy is improved, the human error is reduced, the measured graphics and data can be directly presented to the operator through the control box 23 and the display screen 24, the operator can quickly judge the accuracy and deviation of the measurement result, the work efficiency is improved, the measurement result can be transmitted through the connecting socket 27, so that the operator can record and store the measurement result, and thus the operation process of the photovoltaic panel frame proofing length measuring table is completed.

[0024] Although the embodiments of the present application have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and modifications can be made to the embodiments without departing from the principles and spirits of the present application, and the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. A photovoltaic panel frame proofing and length measuring workstation, characterized in that, The utility model provides a kind of fixed bottom plate (1), one side of the fixed bottom plate (1) is connected with the one side of fixed baffle (2) compatible with it, the fixed baffle (2) is connected with fixed bottom plate (1) by setting fixed bolt (3) and is fixed, one side of the fixed baffle (2) is connected with the one end of protective tube (4), the protective tube (4) is connected with fixed baffle (2) by setting fastening bolt (5) and is fixed, the other end of the protective tube (4) is connected with the one side of semicircle support block (6), the protective tube (4) is connected with semicircle support block (6) by setting fastening bolt (5) and is fixed, the inside of the protective tube (4) is provided with ball screw (7) compatible with it, one end of the ball screw (7) is connected in one side of fixed baffle (2), the other side of the semicircle support block (6) is provided with servo motor (8).

2. The photovoltaic panel frame marking and measuring table according to claim 1, characterized in that: The output shaft of the servo motor (8) is connected with the other end of the ball screw (7) and is fixed by the half circle support block (6) setting the shaft coupling (9), the ball screw (7) is connected with ball sleeve (10) compatible with it by sliding, the one end outer wall of the ball sleeve (10) is connected with the one end of right angle snap ring (11) compatible with it, the other end of the right angle snap ring (11) is connected with the one end outer wall of electric push rod (12) compatible with it, the other end of the electric push rod (12) is provided with T-shaped support block (13), the other side of the T-shaped support block (13) is connected with the one side of electric telescopic grab (15), the electric telescopic grab (15) is connected with the T-shaped support block (13) by setting first bolt (16) and is fixed.

3. A photovoltaic panel frame marking and length measuring table according to claim 2, characterized in that: The other side of the electric telescopic grab (15) is provided with laser positioning sensor (17) compatible with it, the laser positioning sensor (17) is arranged in the inside of the electric telescopic grab (15), the other side of the fixed bottom plate (1) is connected with the bottom one side of L-shaped support (18).

4. The photovoltaic panel frame marking and measuring table of claim 3, wherein: The L-shaped support (18) is connected with the fixed bottom plate (1) and is fixed by setting hexagon bolt (19), the top of the L-shaped support (18) is provided with image measuring instrument (20), the image measuring instrument (20) is connected with the L-shaped support (18) by setting trapezoidal clamping block (21) and is fixed with the second bolt (22) compatible with it.

5. The photovoltaic panel frame marking and measuring table of claim 1, wherein: The opposite side top of the fixed bottom plate (1) is provided with control box (23), the top of the control box (23) is provided with display screen (24) compatible with it, and the display screen (24) is arranged in the inside of the control box (23).

6. A photovoltaic panel frame marking and length measuring table according to claim 5, characterized in that: The lower of the display screen (24) is respectively provided with starting switch (25) and measuring switch (26), and the starting switch (25) and the measuring switch (26) are respectively arranged on the top of the control box (23), and one side of the control box (23) is provided with connecting socket (27).

7. The photovoltaic panel frame marking and measuring table of claim 1, wherein: The top of the fixed bottom plate (1) is provided with measuring scale (28), and the bottom of the fixed bottom plate (1) is provided with support chassis (29) compatible with it.