Photovoltaic product processing equipment

By incorporating a shock-absorbing structure into the receiving device of photovoltaic product processing equipment, the impact force of photovoltaic products falling is buffered, thus solving the problem of easy damage to photovoltaic products during movement and achieving the effects of reducing the probability of damage and improving stability.

CN223829798UActive Publication Date: 2026-01-23TRINA SOLAR CO LTD
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Patent Information

Application Number
CN202520104727.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-16
Publication Date
2026-01-23
Estimated Expiration
2035-01-16

AI Technical Summary

Technical Problem

Existing photovoltaic products are easily damaged during the process of moving them to the processing location.

Method used

A photovoltaic product processing equipment was designed, comprising a feeding device, a receiving device, and a processing device. The receiving device is equipped with a shock-absorbing structure to buffer the impact force when the photovoltaic product falls, and the impact force is reduced to reduce the damage to the product through flexible support structures and springs and other components.

Benefits of technology

This effectively reduces the probability of damage to photovoltaic products when they are moved to the processing location, and improves the stability of the products and the applicability of the processing equipment.

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Abstract

The utility model relates to the technical field of photovoltaic product processing, particularly provides photovoltaic product processing equipment, and aims to solve the problem that in the prior art, a photovoltaic product is easy to damage in the process of moving to a processing position. In order to achieve the purpose, the photovoltaic product processing equipment comprises a feeding device which comprises a feeding table, and the feeding table is used for conveying photovoltaic products; the material receiving device comprises a material receiving table and a damping structure, the material receiving table is arranged below the feeding table and used for receiving the photovoltaic products conveyed by the feeding table, and the damping structure is arranged to be capable of damping the material receiving table; and the processing device is used for processing the photovoltaic product on the material receiving table. According to the utility model, the damping structure is arranged for damping the material receiving table so as to buffer the impact force generated when the photovoltaic product falls from the feeding table to the material receiving table, so that the probability of damage to the photovoltaic product is reduced, and the purpose of reducing the probability of damage to the photovoltaic product when the photovoltaic product moves to a processing position, namely the material receiving table, is achieved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to photovoltaic product processing technical field, provide a photovoltaic product processing equipment specifically. BACKGROUND

[0002] With the sustained growth of global demand for clean energy, photovoltaic technology has become a key force to drive energy transformation, and laser technology is leading the technological innovation in the photovoltaic field with its high precision and high efficiency. Laser technology has great potential in the photovoltaic manufacturing process with its high energy density and precise controllability, such as laser cutting technology can achieve precise thinning, cutting and shaping of photovoltaic products, improving material utilization and production efficiency.

[0003] The existing photovoltaic products need to be moved to the processing position during laser processing, and the photovoltaic products will inevitably be bumped during the movement, which will easily cause damage to the photovoltaic products and affect the quality of the photovoltaic products.

[0004] Correspondingly, there is a need for a new photovoltaic product processing equipment to solve the above problems. INVENTION CONTENTS

[0005] The utility model aims at solving the above technical problem, i.e. solving the problem that the existing photovoltaic products are easily damaged during movement to the processing position.

[0006] The utility model provides a photovoltaic product processing equipment, the photovoltaic product processing equipment includes: a feeding device, the feeding device includes a feeding table, the feeding table is used for conveying photovoltaic products, a receiving device, the receiving device includes a receiving table and a damping structure, the receiving table is arranged below the feeding table and is used for receiving the photovoltaic products conveyed by the feeding table, and the damping structure is arranged to damp the receiving table, a processing device, the processing device is used for processing the photovoltaic products on the receiving table.

[0007] In the above technical solution, when the photovoltaic products fall from the feeding table to the receiving table below, an impact force will be generated, which will easily damage the photovoltaic products. The damping structure is arranged to damp the receiving table to buffer the impact force generated when the photovoltaic products fall from the feeding table to the receiving table, thereby reducing the probability of damage to the photovoltaic products, achieving the purpose of reducing the probability of damage to the photovoltaic products when they are moved to the processing position, i.e. the receiving table.

[0008] In the specific embodiment of the photovoltaic product processing device, the damping structure comprises: a flexible support structure vertically connected below the receiving table; at least two inclined rods hingedly connected to the receiving table in pairs; a slide rod arranged in a horizontal direction; a slide block movably connected with the slide rod, the slide block being hingedly connected with the inclined rod, and the slide block and the inclined rod being arranged in one-to-one correspondence; and a plurality of first springs respectively arranged between two adjacent slide blocks and between the slide block and the end of the slide rod.

[0009] In the specific embodiment of the photovoltaic product processing device, the damping structure comprises: a flexible support structure vertically connected below the receiving table; at least two inclined rods hingedly connected to the receiving table in pairs; a slide rod arranged in a horizontal direction; a slide block movably connected with the slide rod, the slide block being hingedly connected with the inclined rod, and the slide block and the inclined rod being arranged in one-to-one correspondence; and a plurality of first springs respectively arranged between two adjacent slide blocks and between the slide block and the end of the slide rod.

[0010] In the specific embodiment of the photovoltaic product processing device, the receiving table comprises a guide portion, a placement portion and a stop portion connected in sequence, the top height of the guide portion gradually decreases from one side of the receiving table to one side of the placement portion, the placement portion is used for placing the photovoltaic product, and the top height of the stop portion gradually increases from one side of the placement portion to the side away from the placement portion.

[0011] In the specific embodiment of the photovoltaic product processing device, the damping structure comprises: a flexible support structure vertically connected below the receiving table; at least two inclined rods hingedly connected to the receiving table in pairs; a slide rod arranged in a horizontal direction; a slide block movably connected with the slide rod, the slide block being hingedly connected with the inclined rod, and the slide block and the inclined rod being arranged in one-to-one correspondence; and a plurality of first springs respectively arranged between two adjacent slide blocks and between the slide block and the end of the slide rod.

[0012] In the specific embodiment of the photovoltaic product processing equipment, the feeding table is provided with a deviation rectifying structure, the deviation rectifying structure comprises a guide plate, the guide plate is arranged on both sides of the feeding table along the conveying direction of the photovoltaic product, at least two limiting blocks are arranged on the guide plate, the feeding table is provided with a limiting groove corresponding to each limiting block, the limiting block and the limiting groove are movably connected along a direction perpendicular to the conveying direction of the photovoltaic product, a second spring is arranged between the limiting block and the inner wall of the limiting groove, and the second spring is used to provide a force for the limiting block to the center line of the feeding table parallel to the conveying direction of the photovoltaic product; and / or the feeding table is further provided with a plurality of first rollers parallel to each other, and the rotation shafts of the first rollers are perpendicular to the conveying direction of the photovoltaic product.

[0013] In the specific embodiment of the photovoltaic product processing equipment, the feeding table is provided with a deviation rectifying structure, the deviation rectifying structure comprises a guide plate, the guide plate is arranged on both sides of the feeding table along the conveying direction of the photovoltaic product, at least two limiting blocks are arranged on the guide plate, the feeding table is provided with a limiting groove corresponding to each limiting block, the limiting block and the limiting groove are movably connected along a direction perpendicular to the conveying direction of the photovoltaic product, a second spring is arranged between the limiting block and the inner wall of the limiting groove, and the second spring is used to provide a force for the limiting block to the center line of the feeding table parallel to the conveying direction of the photovoltaic product; and / or the feeding table is further provided with a plurality of first rollers parallel to each other, and the rotation shafts of the first rollers are perpendicular to the conveying direction of the photovoltaic product.

[0014] In the specific embodiment of the photovoltaic product processing equipment, the feeding device further comprises an angle adjusting mechanism, the angle adjusting mechanism comprises a connecting rod, a movable block and a guide rod, the first end of the feeding table is arranged directly above the receiving table, the connecting rod is hingedly connected with the second end of the feeding table and the movable block respectively, and the movable block is movably connected with the guide rod, so that the second end of the feeding table can rotate around the first end of the feeding table.

[0015] In the specific embodiment of the photovoltaic product processing equipment, the feeding device further comprises an angle adjusting mechanism, the angle adjusting mechanism comprises a connecting rod, a movable block and a guide rod, the first end of the feeding table is arranged directly above the receiving table, the connecting rod is hingedly connected with the second end of the feeding table and the movable block respectively, and the movable block is movably connected with the guide rod, so that the second end of the feeding table can rotate around the first end of the feeding table.

[0016] In the specific embodiment of the photovoltaic product processing equipment, the photovoltaic product processing equipment further comprises a discharging device, the discharging device comprises a discharging box and a pushing mechanism, the discharging box is arranged on one side of the receiving table, and the pushing mechanism is used to push the photovoltaic product on the receiving table into the discharging box.

[0017] In the technical scheme, the finished photovoltaic product is pushed into the discharging box by the pushing mechanism, and the discharging of the photovoltaic product is realized.

[0018] In the embodiment of the photovoltaic product processing equipment, the flexible support structure is a spring damper.

[0019] In the technical scheme, the spring damper not only flexibly supports the receiving table, but also absorbs the vibration, thereby further reducing the probability of damaging the photovoltaic product.

[0020] In the embodiment of the photovoltaic product processing equipment, the placing part is provided with a pressure sensor.

[0021] In the technical scheme, the pressure value measured by the pressure sensor is used to determine whether the photovoltaic product is placed on the placing part, and whether the photovoltaic product needs to be processed or fed is determined according to the determination result.

[0022] In the embodiment of the photovoltaic product processing equipment, the guide rod is a lead screw, the angle adjusting mechanism further comprises a motor, the motor is in transmission connection with the lead screw, the movable block is sleeved outside the lead screw and is in threaded connection with the lead screw, the movable block is provided with a guide block, the lead screw is provided with a guide sliding groove, and the guide block is movably connected with the guide sliding groove.

[0023] In the technical scheme, the motor drives the lead screw to rotate, and the guide sliding groove guides the guide block, so that the movable block moves along the lead screw under the rotation of the lead screw.

[0024] In the embodiment of the photovoltaic product processing equipment, the pushing mechanism comprises a pushing plate and a cylinder, and the pushing plate is connected with the telescopic rod of the cylinder.

[0025] In the technical scheme, the cylinder drives the pushing plate to move, so that the pushing plate can push the photovoltaic product on the receiving table into the discharging box.

[0026] Compared with the prior art, the photovoltaic product processing equipment has the following advantages: when the photovoltaic product falls from the feeding table to the receiving table below, an impact force is generated, which is easy to damage the photovoltaic product. The shock-absorbing structure is arranged to absorb the shock of the receiving table, thereby buffering the impact force and reducing the probability of damaging the photovoltaic product. When the photovoltaic product moves to the processing position, i.e. the receiving table, the probability of damaging the photovoltaic product is reduced. BRIEF DESCRIPTION OF DRAWINGS

[0027] The preferred embodiments of the present application will be described below with reference to the accompanying drawings, in which:

[0028] Figure 1 is the overall structure schematic view of the photovoltaic product processing equipment of the utility model;

[0029] Figure 2 is the structure schematic view of the feeding device of the utility model;

[0030] Figure 3 is the structure schematic view of the receiving device of the utility model;

[0031] Figure 4 is the top view of the feeding device of the utility model;

[0032] Figure 5 is the structure schematic view of the discharging device of the utility model.

[0033] Explanation of reference signs:

[0034] 1-equipment base, 2-feeding device, 3-receiving device, 4-processing device, 5-discharging device, 6-photovoltaic product, 7-stand plate, 8-conveying table, 9-conveying frame, 21-feeding table, 22-correcting structure, 23-angle adjusting mechanism, 24-box, 25-first roller, 31-receiving table, 32-damping structure, 51-discharging box, 52-pushing mechanism, 221-guide plate, 222-limiting block, 223-limiting groove, 224-second spring, 225-telescopic rod, 231-connecting rod, 232-moving block, 233-guide rod, 234-motor, 311-guiding part, 312-placing part, 313-stop part, 314-second roller, 315-pressure sensor, 321-flexible support structure, 322-inclined rod, 323-sliding rod, 324-sliding block, 325-first spring, 521-pushing plate, 522-cylinder. DETAILED DESCRIPTION

[0035] Some embodiments of the utility model will be described below with reference to the drawings. Those skilled in the art should understand that these embodiments are only used for explaining the technical principles of the utility model, and are not used for limiting the protection scope of the utility model. Those skilled in the art can make adjustments according to the needs in order to adapt to specific application occasions.

[0036] It should be noted that in the description of the utility model, the terms "center", "upper", "lower", "left", "right", "front", "back", "top", "bottom", "vertical", "horizontal", "internal", "external" and other terms indicating direction or positional relationship are based on the direction or positional relationship shown in the drawings, which is merely for the convenience of description, and does not indicate or imply that the related devices or elements must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the utility model. In addition, in the description of the utility model, unless otherwise specified, the meaning of "a plurality of" is two or more.

[0037] In addition, it should be noted that in the description of the utility model, the ordinal numbers "first", "second" and the like are only for the purpose of description, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. In addition, in the description of the utility model, unless otherwise specified and limited, the terms "mounting", "connection", "connection" should be understood broadly, for example, it can be fixed connection, or detachable connection, or integral connection; it can be mechanical connection, or electrical connection; it can be directly connected, or indirectly connected through intermediate medium, or the communication between two elements. For those skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances.

[0038] Based on the background technology, the problem that the photovoltaic product in the prior art is easily damaged during moving to the processing position, aims to reduce the shock of the receiving table by setting the shock absorbing structure, to buffer the impact force generated when the photovoltaic product falls from the feeding table to the receiving table, so as to reduce the probability of damage to the photovoltaic product, and realizes the purpose of reducing the probability of damage to the photovoltaic product when it moves to the processing position, i.e. the receiving table.

[0039] Firstly refer to Figures 1-3 , Figure 1 The overall structure of the photovoltaic product processing equipment of the utility model is shown, Figure 2 The structure of the feeding device of the utility model is shown, Figure 3 The structure of the receiving device of the utility model is shown. As Figures 1-3As shown, the photovoltaic product processing equipment comprises an equipment base 1, a feeding device 2, a receiving device 3 and a processing device 4, the feeding device 2, the receiving device 3 and the processing device 4 are installed on the equipment base 1; the feeding device 2 comprises a feeding table 21, the feeding table 21 is used for conveying the photovoltaic product 6; the receiving device 3 comprises a receiving table 31 and a damping structure 32, the receiving table 31 is arranged below the feeding table 21 and is used for receiving the photovoltaic product 6 conveyed by the feeding table 21, and the damping structure 32 is arranged to damp the receiving table 31; the processing device 4 is connected with the equipment base 1 through a vertical plate 7 and is used for processing the photovoltaic product 6 on the receiving table 31, and the processing device 4 can be a laser drilling machine, a laser cutting machine or the like. When the photovoltaic product 6 falls from the feeding table 21 to the receiving table 31 below, an impact force is generated, which is easy to damage the photovoltaic product 6. The damping structure 32 is arranged to damp the receiving table 31 to buffer the impact force generated when the photovoltaic product 6 falls from the feeding table 21 to the receiving table 31, thereby reducing the probability of damage to the photovoltaic product 6, and achieving the purpose of reducing the probability of damage to the photovoltaic product 6 when the photovoltaic product 6 moves to the processing position, i.e., the receiving table 31.

[0040] Further, the damping structure 32 comprises a flexible support structure 321, at least two inclined rods 322, a slide rod 323, a slide block 324 and a plurality of first springs 325; the flexible support structure 321 is vertically connected between the equipment base 1 and the receiving table 31, and can be a spring damper, or a gas damper, a liquid damper, etc.; the at least two inclined rods 322 are hingedly connected to the receiving table 31 in pairs; the slide rod 323 is arranged on the equipment base 1; the slide block 324 is movably connected with the slide rod 323, and is hingedly connected with the inclined rod 322, and the slide block 324 and the inclined rod 322 are arranged in one-to-one correspondence; and the plurality of first springs 325 are arranged between two adjacent slide blocks 324 and between the slide block 324 and the end of the slide rod 323, respectively. The flexible support structure 321 is used to flexibly support the receiving table 31, so as to avoid the rigid action of the receiving table 31 on the photovoltaic product 6 and reduce the probability of damage to the photovoltaic product 6. When the photovoltaic product 6 falls from the feeding table 21 to the receiving table 31, an impact force is generated on the receiving table 31, and the receiving table 31 vibrates under the action of the impact force to drive one end of the inclined rod 322 hingedly connected with the receiving table 31 to vibrate, and the other end of the inclined rod 322 drives the slide block 324 to move along the slide rod 323. Under the action of the first spring 325, the impact force is partially absorbed and attenuated, and the probability of damage to the photovoltaic product 6 is further reduced. It should be noted that the slide rod 323 can be provided with one or a plurality of slide rods 323; when the slide rod 323 is provided with a plurality of slide rods 323, the plurality of slide rods 323 can be arranged in parallel with each other in the horizontal plane, so as to provide damping effect for each part of the receiving table 31; or the plurality of slide rods 323 can be arranged perpendicular to each other in the horizontal plane, so as to provide damping in different directions for the receiving table 31. Those skilled in the art can make adjustments as needed to achieve better damping effect and further reduce the probability of damage to the photovoltaic product 6.

[0041] Further, the receiving table 31 comprises a guiding part 311, a placing part 312 and a stopping part 313 connected in sequence, the top height of the guiding part 311 gradually decreases from the side of the feeding table 21 to the side of the placing part 312, the placing part 312 is used for placing the photovoltaic product 6, and the top height of the stopping part 313 gradually increases from the side of the placing part 312 to the side away from the placing part 312. When the photovoltaic product 6 falls from the feeding table 21, it first falls onto the guiding part 311 and is guided onto the placing part 312 along with the decrease of the top height of the guiding part 311, and the photovoltaic product 6 continues to move to the stopping part 313, and because the top height of the stopping part 313 gradually increases from the side of the placing part 312 to the side away from the placing part 312, the photovoltaic product 6 finally returns to the placing part 312 and is not subjected to rigid impact, so that the photovoltaic product 6 can stay in the placing part 312 to wait for processing under the premise of reducing the probability of being damaged. Optionally, a pressure sensor 315 is arranged in the placing part 312, whether the photovoltaic product 6 is placed on the placing part 312 is determined according to the pressure value measured by the pressure sensor 315, and whether the photovoltaic product 6 needs to be fed or processed is determined according to the determination result. In addition, a plurality of second rollers 314 parallel to each other can be arranged on the guiding part 311, the rotation shaft of the second roller 314 is perpendicular to the conveying direction of the photovoltaic product 6, the arrangement of the second roller 314 reduces the friction between the photovoltaic product 6 and the guiding part 311, so that the movement of the photovoltaic product 6 is smoother, and the abrasion of the photovoltaic product 6 is also reduced; a plurality of second rollers 314 parallel to each other can also be arranged on the stopping part 313, and when the photovoltaic product 6 moves to the stopping part 313 and then falls back onto the placing part 312, the abrasion of the photovoltaic product 6 is reduced by the arrangement of the second roller 314.

[0042] Further, the feeding device 2 further comprises an angle adjusting mechanism 23 and a box 24, the box 24 is installed on the equipment base 1; the angle adjusting mechanism 23 comprises a connecting rod 231, a movable block 232, a guide rod 233 and a motor 234, the first end of the feeding table 21 is arranged directly above the receiving table 31 and is hinged to the box 24, the connecting rod 231 is hinged to the second end of the feeding table 21 and the movable block 232 respectively; the guide rod 233 is a lead screw, the lead screw is connected in the box 24 or on the top of the box 24; the motor 234 is drivingly connected with the lead screw, the movable block 232 is sleeved on the lead screw and is threadedly connected with the lead screw, the movable block 232 is provided with a guide block, the lead screw is provided with a guide sliding groove, and the guide block and the guide sliding groove are movably connected, so that the movable block 232 can move along the guide rod 233, thereby enabling the second end of the feeding table 21 to rotate around the first end of the feeding table 21. The height of the second end of the feeding table 21 relative to the first end is adjusted through the angle adjusting mechanism 23, so that the photovoltaic product 6 on the feeding table 21 can fall from the first end of the feeding table 21 to the receiving table 31 under the action of gravity, and the inclination angle of the feeding table 21 can also be adjusted according to different photovoltaic products 6 and different falling speed requirements, thereby improving the stability of feeding and increasing the application range of the photovoltaic product processing equipment.

[0043] Possibly, the photovoltaic product processing equipment further comprises a conveying table 8, the conveying table 8 is installed on the equipment base 1 through a conveying frame 9, and the conveying table 8 conveys the photovoltaic product 6 to the feeding table 21 through a conveying belt.

[0044] Hereinafter Figure 4 , the drawing shows the top view of the feeding device of the utility model. As Figure 4As shown, the loading platform 21 is provided with a correction structure 22, which includes a guide plate 221. The guide plate 221 is located on both sides of the loading platform 21 along the conveying direction of the photovoltaic product. The guide plate 221 is provided with at least two limiting blocks 222. The loading platform 21 is provided with limiting grooves 223 that correspond one-to-one with the limiting blocks 222. The limiting blocks 222 and the limiting grooves 223 are movably connected along the conveying direction perpendicular to the photovoltaic product. A second spring 224 is provided between the inner walls of the limiting blocks 222 and the limiting grooves 223. The second spring 224 is used to provide the limiting blocks 222 with a force on the center line of the loading platform 21 that is parallel to the conveying direction of the photovoltaic product. The loading platform 21 is also provided with a plurality of parallel first rollers 25. The rotation axis of the first rollers 25 is perpendicular to the conveying direction of the photovoltaic product. The guide plate 221 is movably connected to the limiting groove 223 along the conveying direction perpendicular to the photovoltaic product via at least two limiting blocks 222. The second spring 224 provides the guide plate 221 with a force to the centerline of the feeding platform 21, enabling the guide plate 221 to exert a squeezing force on the photovoltaic product and adjust the angle of the photovoltaic product on the conveying plane, thereby improving the consistency and stability of photovoltaic product feeding. The first roller 25 reduces the friction between the photovoltaic product and the feeding platform 21, making the movement of the photovoltaic product smoother and reducing wear on the photovoltaic product. It should be noted that the limiting block 222 can be connected to the guide plate 221 via a fixed rod, or the limiting block 222 can be connected to the guide plate 221 via a telescopic rod 225. Connecting the guide plate 221 via the telescopic rod 225 can further increase the movable range of the guide plate 221 in the conveying direction perpendicular to the photovoltaic product, thereby improving the stability of photovoltaic product feeding.

[0045] See below. Figure 5 The figure shows the structure of the feeding device of this utility model. Figure 5 As shown, the photovoltaic product processing equipment also includes a feeding device 5, which includes a feeding box 51 and a pushing mechanism 52. The feeding box 51 is located on the side of the receiving platform 312 away from the upright plate 7. The pushing mechanism 52 includes a pushing plate 521 and a cylinder 522. The pushing plate 521 is connected to the telescopic rod 225 of the cylinder 522. The cylinder 522 is connected to the upright plate 7. The pushing mechanism 52 is used to push the photovoltaic products on the receiving platform 312 into the feeding box 51 to realize the feeding of photovoltaic products.

[0046] Those skilled in the art will understand that, although the above combination Figure 1The photovoltaic product processing equipment is described as including an equipment base 1, a feeding device 2, a receiving device 3, and a processing device 4 mounted on the equipment base 1. However, this is not a limitation. The photovoltaic product processing equipment may also exclude the equipment base 1, and the feeding device 2, the receiving device 3, and the processing device 4 may be directly mounted on the ground or connected to other fixed equipment, as long as the relative positions between the feeding device 2, the receiving device 3, and the processing device 4 are fixed. Those skilled in the art can make adjustments as needed.

[0047] It should be noted that the above embodiments are only used to illustrate the principle of this utility model and are not intended to limit the scope of protection of this utility model. Without departing from the principle of this utility model, those skilled in the art can adjust the above embodiments so that this utility model can be applied to more specific application scenarios.

[0048] The technical solution of this utility model has been described in conjunction with the preferred embodiments shown in the accompanying drawings. However, it will be readily understood by those skilled in the art that the protection scope of this utility model is obviously not limited to these specific embodiments. Without departing from the principle of this utility model, those skilled in the art can make equivalent changes or substitutions to the relevant technical features, and the technical solutions after these changes or substitutions will all fall within the protection scope of this utility model.

Claims

1. A photovoltaic product processing equipment, characterized in that, The photovoltaic product processing equipment includes: A feeding device, comprising a feeding platform for conveying photovoltaic products; A receiving device, comprising a receiving platform and a shock-absorbing structure, wherein the receiving platform is located below the loading platform and is used to receive the photovoltaic products conveyed by the loading platform, and the shock-absorbing structure is configured to absorb vibrations from the receiving platform; A processing device for processing the photovoltaic products on the receiving platform.

2. The photovoltaic product processing equipment according to claim 1, characterized in that, The damping structure includes: A flexible support structure is vertically connected to the lower part of the receiving platform; At least two diagonal bars, said at least two diagonal bars being hinged in pairs to the receiving platform; A sliding rod, wherein the sliding rod is arranged horizontally; A slider is movably connected to the slide rod, and the slider is hinged to the inclined rod. The slider and the inclined rod are arranged in a one-to-one correspondence. A plurality of first springs are respectively disposed between two adjacent sliders and between the sliders and the ends of the slide rod.

3. The photovoltaic product processing equipment according to claim 1, characterized in that, The receiving platform includes a guide section, a placement section, and a stop section connected in sequence. The top height of the guide section gradually decreases from one side of the loading platform to the side of the placement section. The placement section is used to place the photovoltaic product. The top height of the stop section gradually increases from one side of the placement section to the side away from the placement section.

4. The photovoltaic product processing equipment according to claim 1, characterized in that, The loading platform is equipped with a correction structure, which includes guide plates. The guide plates are positioned on both sides of the loading platform along the conveying direction of the photovoltaic product. The guide plates have at least two limiting blocks. The loading platform has limiting grooves corresponding to the limiting blocks. The limiting blocks and limiting grooves are movably connected along a direction perpendicular to the conveying direction of the photovoltaic product. A second spring is provided between the inner walls of the limiting blocks and the limiting grooves. The second spring provides a force to the limiting blocks along a centerline of the loading platform parallel to the conveying direction of the photovoltaic product; and / or The loading platform is also equipped with multiple parallel first rollers, the rotation axis of which is perpendicular to the conveying direction of the photovoltaic product.

5. The photovoltaic product processing equipment according to claim 1, characterized in that, The feeding device also includes an angle adjustment mechanism, which includes a connecting rod, a movable block, and a guide rod. The first end of the feeding platform is located directly above the receiving platform. The connecting rod is hinged to the second end of the feeding platform and the movable block, respectively. The movable block is movably connected to the guide rod so that the second end of the feeding platform can rotate around the first end of the feeding platform.

6. The photovoltaic product processing equipment according to claim 1, characterized in that, The photovoltaic product processing equipment also includes a feeding device, which includes a feeding box and a pushing mechanism. The feeding box is located on one side of the receiving platform, and the pushing mechanism is used to push the photovoltaic product on the receiving platform into the feeding box.

7. The photovoltaic product processing equipment according to claim 2, characterized in that, The flexible support structure is a spring damper.

8. The photovoltaic product processing equipment according to claim 3, characterized in that, A pressure sensor is installed inside the placement section.

9. The photovoltaic product processing equipment according to claim 5, characterized in that, The guide rod is a lead screw; The angle adjustment mechanism also includes a motor, which is connected to the lead screw. The movable block is sleeved on the lead screw and threadedly connected to the lead screw. The movable block is provided with a guide block, and the lead screw is provided with a guide groove. The guide block and the guide groove are movably connected.

10. The photovoltaic product processing equipment according to claim 6, characterized in that, The pushing mechanism includes a pushing plate and a cylinder, and the pushing plate is connected to the telescopic rod of the cylinder.