CN113834641A - Mechanical property testing device for photoelectric product processing - Google Patents

Mechanical property testing device for photoelectric product processing Download PDF

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Publication number
CN113834641A
CN113834641A CN202111436110.9A CN202111436110A CN113834641A CN 113834641 A CN113834641 A CN 113834641A CN 202111436110 A CN202111436110 A CN 202111436110A CN 113834641 A CN113834641 A CN 113834641A
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CN
China
Prior art keywords
sliding
block
box body
mounting seat
screw
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CN202111436110.9A
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Chinese (zh)
Inventor
燕计伟
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Shandong Tongdashun Automation Equipment Co ltd
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Shandong Tongdashun Automation Equipment Co ltd
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Application filed by Shandong Tongdashun Automation Equipment Co ltd filed Critical Shandong Tongdashun Automation Equipment Co ltd
Priority to CN202111436110.9A priority Critical patent/CN113834641A/en
Publication of CN113834641A publication Critical patent/CN113834641A/en
Pending legal-status Critical Current

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    • GPHYSICS
    • G01MEASURING; TESTING
    • G01MTESTING STATIC OR DYNAMIC BALANCE OF MACHINES OR STRUCTURES; TESTING OF STRUCTURES OR APPARATUS, NOT OTHERWISE PROVIDED FOR
    • G01M11/00Testing of optical apparatus; Testing structures by optical methods not otherwise provided for
    • G01M11/08Testing mechanical properties

Abstract

The invention provides a mechanical performance testing device for photoelectric product processing, which relates to the technical field of product detection and comprises a box body and a mounting seat, wherein the mounting seat is of a convex plate structure, a screw hole which is communicated in the left-right direction is formed in the rear side of the mounting seat, and a circular slotted hole which is communicated in the left-right direction is formed in the middle of the mounting seat; a rack is arranged on the front side of the mounting seat; the half gear is rotatably arranged on the left side of the fixed plate through hinged connection, and a sliding groove structure which is communicated from left to right is formed in the front side of the half gear; the invention realizes the effect of carrying out different detection items, and simultaneously can adjust the testing force according to the requirements, so that the test is closer to the situation under the real use state, thereby obtaining more comprehensive test data and more accurate results. The invention solves the problems that the existing detection device is inconvenient to adjust the detection force and the detection result has certain limitation.

Description

Mechanical property testing device for photoelectric product processing
Technical Field
The invention relates to the technical field of product testing, in particular to a mechanical performance testing device for processing a photoelectric product.
Background
In the production process of photoelectric products, mechanical property tests are often required to be carried out on the photoelectric products, the mechanical property generally refers to mechanical property, and the mechanical property of the material refers to mechanical characteristics of the material when the material bears various external loads (such as tension, compression, bending, torsion, impact, alternating stress and the like) under different environments (such as temperature, medium and humidity).
However, in the process of detecting the mechanical properties of the photoelectric product, the existing detection device cannot simulate the stress state of the photoelectric product in the actual use process, the detection force is inconvenient to adjust, the photoelectric product can only be detected through the fixedly arranged force, the detection result has certain limitation, and the detection item of the existing detection device is single.
Disclosure of Invention
In view of this, the present invention provides a mechanical performance testing apparatus for processing a photoelectric product, which has a transmission block, and can adjust the swing amplitude of a half gear by adjusting the positions of a connecting shaft in a transmission block and a half gear sliding groove, so as to adjust the detection force of a testing rod.
The invention provides a mechanical performance testing device for processing photoelectric products, which specifically comprises: the box body adopts a hollow rectangular block structure, a penetrating rectangular slot structure is arranged on the left side of the box body, and the bottom of the box body is of an inverted trapezoidal structure; a scissor lifting mechanism is fixedly arranged at the bottom inside the box body; guide rails are arranged on two sides of the top of the inner side of the box body; the mounting seat is of a convex plate structure, a screw hole which is communicated in the left-right direction is formed in the rear side of the mounting seat, and a circular groove hole which is communicated in the left-right direction is formed in the middle of the mounting seat; a rack is arranged on the front side of the mounting seat; the mount pad is still including: the fixing plate is of a rectangular plate structure and is fixedly arranged on the front side of the mounting seat; a transmission block is arranged on the left side of the fixed plate; the motor is fixedly arranged on the right side of the fixing plate through a bolt; and the half gear is rotatably arranged on the left side of the fixed plate through hinge connection, and a left-right through chute structure is arranged on the front side of the half gear.
Optionally, the box further includes: the water tank is fixedly arranged at the bottom of the rear side of the box body and is communicated with the inner bottom of the box body; the water pump is fixedly arranged on the rear side of the box body through bolts and is communicated with the water tank through a water pipe; the spray head is fixedly arranged on the top of the inner wall of the box body and is communicated with the water pump through a water pipe; the control box is fixedly arranged on the left side of the box body through bolts and is electrically connected with the water pump and the motor; the heating plates are fixedly arranged on two sides of the inner wall of the box body and are electrically connected with the control box; the box door is rotatably arranged on the front side of the box body through hinge connection and is made of transparent glass materials.
Optionally, the scissors lifting mechanism further comprises: the first screw rod is rotatably arranged on the front side of the bottom of the scissor lifting mechanism and is in transmission connection with the scissor lifting mechanism; the detection platform is of a rectangular plate structure and is arranged at the top of the scissor lifting mechanism, and the middle of the top of the detection platform is in a rectangular array shape and is provided with through rectangular slot holes; the top of examining test table is provided with the fixed block.
Optionally, the fixed blocks adopt a U-shaped block structure, four groups of fixed blocks are arranged, the four groups of fixed blocks are arranged around the top of the detection platform in a rectangular array shape in a hinged and rotating manner, and one side of the top of each fixed block is provided with a through screw hole; the fixed block is still including: the second screw rod is rotatably arranged in the screw hole at the top of the fixed block; the clamping block is of a rectangular block structure, the clamping block is rotatably arranged at the inner side end of the second screw rod through hinge connection, and a V-shaped groove structure is formed in one side of the clamping block.
Optionally, two groups of guide rails are arranged, the two groups of guide rails are respectively and fixedly arranged on two sides of the inner wall of the box body, a penetrating rectangular groove structure is arranged on the right side of the right group of guide rails, and the rectangular groove structure of the right group of guide rails is overlapped with the rectangular groove hole on the right side of the box body; the guide rail also comprises: the two groups of first sliding blocks are arranged on the inner sides of the two groups of guide rails in a sliding manner respectively, and a penetrating type groove hole is formed in one group of first sliding blocks on the right side; the first sliding rod is of a cylindrical structure and is fixedly arranged between the two groups of first sliding blocks, and the first sliding rod penetrates through a slotted hole in the middle of the mounting seat; and the third screw rod is rotatably arranged on the right side of the left group of first sliding blocks through hinged connection, penetrates through slotted holes of the right group of first sliding blocks, and penetrates through a screw hole in the rear side of the mounting seat.
Optionally, the transmission block adopts a rectangular block structure with two arc sections, the transmission block is rotatably arranged on the left side of the fixed plate through hinge connection, the left side of the transmission block is provided with a through type chute structure, and the right side of the transmission block is provided with a trapezoidal chute structure; the transmission block also comprises: the fourth screw rod is rotatably arranged on the right side of the transmission block through hinged connection; the second sliding block is arranged in the trapezoidal sliding groove on the right side of the transmission block in a sliding mode, a penetrating screw hole is formed in the rear side of the second sliding block, and the fourth screw penetrates through the screw hole of the second sliding block; the connecting shaft adopts cylindrical structure, and the connecting shaft is connected the rotation through the hinge and is set up in the left side of second slider, and the connecting shaft passes the spout of transmission piece and is connected with the spout block of semi-gear.
Optionally, the rack is slidably arranged on the front side of the mounting seat, and the rack is in meshed connection with the half gear; the rack is still including: the second sliding rods are of cylindrical structures and are arranged in two groups, the two groups of second sliding rods are fixedly arranged on the upper side and the lower side of the rack respectively, and the outer sides of the group of second sliding rods on the lower side are sleeved with elastic pieces; the test bar adopts cylindrical structure, and the cylindrical slotted hole has been seted up at the top of test bar, and the test bar slides and sets up in the bottom of a set of second slide bar of downside, and the bottom of test bar is provided with the block rubber.
Advantageous effects
1. Compared with the traditional testing device, the testing device provided by the embodiments of the invention can perform touch impact fatigue testing, key switch fatigue testing and touch fatigue testing of products under different stress conditions through the testing rod, so that the detection effect of different items is realized, and meanwhile, the testing force can be adjusted according to requirements, so that the testing is closer to the situation under a real use state, and more comprehensive testing data and more accurate results are obtained.
2. Through the setting of shower nozzle and hot plate in the box, can be convenient for set up different humiture test environment fast, increase test data's comprehensiveness.
3. Through box and water tank intercommunication setting, can be convenient for retrieve the water that the shower nozzle sprayed again, the cyclic utilization of the rivers of being convenient for reduces the wasting of resources.
4. The fixed block is arranged at the top of the detection table, and through the cooperation of the four groups of clamping blocks arranged around, products with different shapes and sizes can be fixed, the phenomenon that displacement occurs in the detection process of the products is avoided, and the accuracy of detection data is improved.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings of the embodiments will be briefly described below.
The drawings in the following description relate to some embodiments of the invention only and are not intended to limit the invention.
In the drawings:
FIG. 1 is a schematic view showing a front perspective view of a casing of a test apparatus according to an embodiment of the present invention in a front side sectional state;
FIG. 2 shows a schematic view from above with a front side cross-sectional view of a housing of a testing device according to an embodiment of the invention;
FIG. 3 is a schematic view of the front side cross-sectional view of the housing of the testing device according to an embodiment of the present invention looking down;
FIG. 4 is a schematic diagram showing a lower side perspective view of a right side cross-sectional state of a case of a test apparatus according to an embodiment of the present invention;
FIG. 5 is a right side axial view of a right side cross-sectional view of a housing of a test apparatus according to an embodiment of the present invention;
FIG. 6 shows a schematic view of a scissor lift mechanism and a fixed block of a testing device according to an embodiment of the invention;
fig. 7 shows a schematic axial view of a test apparatus according to an embodiment of the invention in a state in which the guide rail, the mounting seat, the transmission block and the rack are connected.
Fig. 8 shows a schematic view from above of a rail, a mounting seat, a transmission block and a rack of a testing device according to an embodiment of the invention in a connected state.
Fig. 9 shows a partially enlarged schematic view at a in fig. 8.
List of reference numerals
1. A box body; 101. a water tank; 102. a water pump; 103. a spray head; 104. a control box; 105. heating plates; 106. a box door; 2. a scissor fork lifting mechanism; 201. a first screw; 202. a detection table; 3. a fixed block; 301. a second screw; 302. a clamping block; 4. a guide rail; 401. a first slider; 402. a first slide bar; 403. a third screw; 5. a mounting seat; 501. a fixing plate; 502. a motor; 503. a half gear; 6. a transmission block; 601. a fourth screw; 602. a second slider; 603. a connecting shaft; 7. a rack; 701. a second slide bar; 702. and (6) testing the rod.
Detailed Description
In order to make the objects, aspects and advantages of the embodiments of the present invention more apparent, the embodiments of the present invention will be described in detail with reference to the accompanying drawings. Unless otherwise indicated, terms used herein have the ordinary meaning in the art. Like reference symbols in the various drawings indicate like elements.
Example (b): please refer to fig. 1 to fig. 9:
the invention provides a mechanical performance testing device for processing photoelectric products, which comprises: the box body 1 is of a hollow rectangular block structure, the left side of the box body 1 is provided with a penetrating type rectangular groove hole structure, and the bottom of the box body 1 is of an inverted trapezoidal structure; a scissor lifting mechanism 2 is fixedly arranged at the bottom inside the box body 1; two sides of the top of the inner side of the box body 1 are provided with guide rails 4; the mounting seat 5 is of a convex plate structure, a screw hole which is communicated in the left-right direction is formed in the rear side of the mounting seat 5, and a circular groove hole which is communicated in the left-right direction is formed in the middle of the mounting seat 5; a rack 7 is arranged on the front side of the mounting seat 5; the mounting base 5 further comprises: a fixing plate 501, wherein the fixing plate 501 is of a rectangular plate structure, and the fixing plate 501 is fixedly arranged on the front side of the mounting base 5; the left side of the fixing plate 501 is provided with a transmission block 6; the motor 502 is fixedly arranged on the right side of the fixing plate 501 through bolts; a half gear 503, the half gear 503 is rotatably arranged on the left side of the fixed plate 501 through a hinge, and a sliding groove structure which is through from left to right is arranged on the front side of the half gear 503; in addition, according to the embodiment of the present invention, as shown in fig. 1 to 5, the case 1 further includes: the water tank 101 is fixedly arranged at the bottom of the rear side of the box body 1, and the water tank 101 is communicated with the bottom inside the box body 1; the water pump 102 is fixedly arranged on the rear side of the box body 1 through bolts, and the water pump 102 is communicated with the water tank 101 through a water pipe; the spray head 103 is fixedly arranged on the top of the inner wall of the box body 1, and the spray head 103 is communicated with the water pump 102 through a water pipe; the control box 104 is fixedly arranged on the left side of the box body 1 through bolts, and the control box 104 is electrically connected with the water pump 102 and the motor 502; the heating plate 105 is fixedly arranged on two sides of the inner wall of the box body 1, and the heating plate 105 is electrically connected with the control box 104; the door 106 is rotatably disposed at the front side of the box body 1 through a hinge, and the door 106 is made of a transparent glass material.
Through adopting above-mentioned technical scheme, through the switch of control box 104 control water pump 102 and hot plate 105, rivers in with water tank 101 through water pump 102 extract shower nozzle 103 department to spray in the inside of box 1 through shower nozzle 103, the rivers that spray reach the bottom of box 1 through the slotted hole that detects platform 202 top, thereby retrieve the water tank 101 in the bottom of box 1, be convenient for cyclic utilization, reduce the energy consumption, make the inside temperature of box 1 and humidity reach the required state of detection.
Furthermore, according to the embodiment of the present invention, as shown in fig. 6, the scissors lifting mechanism 2 further includes: the first screw 201 is rotationally arranged on the front side of the bottom of the scissors lifting mechanism 2, and the first screw 201 is in transmission connection with the scissors lifting mechanism 2; the detection table 202 is of a rectangular plate structure, the detection table 202 is arranged at the top of the scissor lifting mechanism 2, and the middle of the top of the detection table 202 is provided with through rectangular slotted holes in a rectangular array shape; a fixed block 3 is arranged at the top of the detection table 202; in addition, according to the embodiment of the present invention, as shown in fig. 6, the fixing block 3 adopts a U-shaped block structure, four groups of fixing blocks 3 are provided, and the four groups of fixing blocks 3 are rotatably provided around the top of the detection table 202 in a rectangular array shape by hinge connection, and one side of the top of the fixing block 3 is provided with a through screw hole; the fixed block 3 further comprises: the second screw 301 is rotationally arranged in a screw hole at the top of the fixed block 3; the clamping block 302 is of a rectangular block structure, the clamping block 302 is rotatably arranged at the inner side end of the second screw 301 through hinge connection, and a V-shaped groove structure is formed in one side of the clamping block 302.
By adopting the technical scheme, a product to be detected is placed at the top of the detection table 202, then the angle of the fixing block 3 is rotated, the clamping blocks 302 are driven to move inwards by rotating the second screw 301, the angle of the clamping blocks 302 is adjusted in a rotating manner, the detection product is clamped and fixed by matching the four groups of clamping blocks 302, the detection product is fixed at the top of the detection table 202, then the shearing fork lifting mechanism 2 is driven to move by rotating the first screw 201, the height of the detection table 202 is adjusted, and the detection table 202 reaches a proper height.
In addition, according to the embodiment of the present invention, as shown in fig. 7 to 9, two sets of guide rails 4 are provided, and the two sets of guide rails 4 are respectively and fixedly provided on two sides of the inner wall of the box body 1, the right side of the right set of guide rails 4 is provided with a through type rectangular groove structure, and the rectangular groove structure of the right set of guide rails 4 is overlapped with the rectangular groove hole on the right side of the box body 1; the guide rail 4 further comprises: the two groups of first sliding blocks 401 are arranged on the first sliding blocks 401, the two groups of first sliding blocks 401 are respectively arranged on the inner sides of the two groups of guide rails 4 in a sliding manner, and a penetrating type slot hole is formed in one group of first sliding blocks 401 on the right side; the first sliding rod 402 is of a cylindrical structure, the first sliding rod 402 is fixedly arranged between the two groups of first sliding blocks 401, and the first sliding rod 402 penetrates through a slotted hole in the middle of the mounting seat 5; the third screw 403 is rotatably arranged on the right side of the left group of first sliding blocks 401 through hinged connection, the third screw 403 penetrates through the slotted holes of the right group of first sliding blocks 401, and the third screw 403 penetrates through the screw hole on the rear side of the mounting seat 5; in addition, according to the embodiment of the present invention, as shown in fig. 7 to 8, the transmission block 6 adopts a rectangular block structure with two arc-shaped sections, the transmission block 6 is rotatably disposed on the left side of the fixing plate 501 through hinge connection, the left side of the transmission block 6 is provided with a through-type sliding groove structure, and the right side of the transmission block 6 is provided with a trapezoidal sliding groove structure; the transmission block 6 further comprises: the fourth screw 601 is rotatably arranged on the right side of the transmission block 6 through hinged connection; the second sliding block 602 is arranged in the trapezoidal sliding groove on the right side of the transmission block 6 in a sliding manner, a penetrating screw hole is formed in the rear side of the second sliding block 602, and the fourth screw 601 penetrates through the screw hole of the second sliding block 602; the connecting shaft 603 is of a cylindrical structure, the connecting shaft 603 is rotatably arranged on the left side of the second sliding block 602 through hinge connection, and the connecting shaft 603 penetrates through a sliding groove of the transmission block 6 to be clamped and connected with a sliding groove of the half gear 503; furthermore, according to the embodiment of the present invention, as shown in fig. 7 to 8, the rack 7 is slidably disposed on the front side of the mounting seat 5, and the rack 7 is engaged with the half gear 503; the rack 7 further comprises: the second sliding rods 701 and 701 adopt cylindrical structures, two groups of the second sliding rods 701 are arranged, the two groups of the second sliding rods 701 are fixedly arranged on the upper side and the lower side of the rack 7 respectively, and elastic parts are sleeved on the outer sides of the group of the second sliding rods 701 on the lower side and are springs; the test bar 702, the test bar 702 adopt cylindrical structure, and the cylindrical slotted hole has been seted up at the top of test bar 702, and the test bar 702 slides and sets up in the bottom of a set of second slide bar 701 of downside, and the bottom of test bar 702 is provided with the block rubber.
By adopting the technical scheme, the motor 502 is turned on, the driving block 6 is driven to rotate by the motor 502, the driving block 6 drives the connecting shaft 603 to slide in the chute formed in the half gear 503 in the rotating process, the half gear 503 is driven to swing and rotate on the left side of the fixing plate 501 by the cooperation of the chute formed in the half gear 503 and the connecting shaft 603, the rack 7 and the second slide bar 701 are driven to slide up and down on the front side of the mounting seat 5 in the swinging process of the half gear 503, so that the test bars 702 at the bottom of the group of second slide bars 701 are in reciprocating point contact with the test positions of the detected products, the touch impact fatigue times of the detected products can be tested by the test bars 702, the switch fatigue resistance times of the detected products can be tested, when the touch impact force of the test bars 702 needs to be adjusted, the fourth screw 601 is rotated to drive the second slide block 602 to slide along the trapezoidal chute on the right side of the driving block 6, the connecting shaft 603 is driven to slide along the sliding groove of the transmission block 6, so that the position of the connecting shaft 603 in the sliding groove of the half gear 503 can be adjusted, the radius of the transmission block 6 for driving the connecting shaft 603 to rotate can be adjusted, the swing amplitude of the half gear 503 can be adjusted, the swing distance of the rack 7 can be adjusted, when the swing distance of the rack 7 is increased, the collapse of the spring outside the second slide bar 701 is increased, so that the acting force on the test bar 702 is increased, the acting force of the test bar 702 on a detection product is increased, when the swing distance of the rack 7 is reduced, the collapse of the spring outside the second slide bar 701 is reduced, the acting force of the spring on the test bar 702 is reduced, the acting force of the test bar 702 on the detection product is reduced, and the effect of adjusting the touch impact force of the test bar 702 is achieved.
The specific use mode and function of the embodiment are as follows: in the invention, a detected product is placed at the top of a detection platform 202, then the angle of a fixed block 3 is rotated, a second screw 301 is rotated to drive a clamping block 302 to move inwards, the angle of the clamping block 302 is rotated to adjust, the detected product is clamped through the matching of four groups of clamping blocks 302 and is fixed at the top of the detection platform 202, then a first screw 201 is rotated to drive a scissor lifting mechanism 2 to move, the height of the detection platform 202 is adjusted, after the detection platform 202 reaches a proper height, a third screw 403 is rotated to drive a mounting seat 5 to slide along the left and right direction of a first slide bar 402, then a first slide block 401 is slid along a guide rail 4 to adjust the front and back position of the mounting seat 5, a test rod 702 is aligned to a required monitoring position, then a box door 106 is closed, a water pump 102 and a heating plate 105 are controlled by a control box 104, water flow in a water tank 101 is pumped to a spray head 103 by the water pump 102, the water is sprayed inside the box body 1 through the spray head 103, the sprayed water flow reaches the bottom of the box body 1 through a slotted hole at the top of the detection platform 202, so as to be recycled into the water tank 101 from the bottom of the box body 1, the energy consumption is reduced, the temperature and the humidity inside the box body 1 reach the states required by detection, then the motor 502 is turned on, the transmission block 6 is driven to rotate through the motor 502, the transmission block 6 drives the connecting shaft 603 to slide in a sliding groove formed in the half gear 503 in the rotating process, the half gear 503 is driven to swing and rotate on the left side of the fixing plate 501 through the matching of the sliding groove formed in the half gear 503 and the connecting shaft 603, the rack 7 and the second slide bar 701 are driven to slide up and down on the front side of the mounting seat 5 in the swinging process of the half gear 503, and the test bar 702 at the bottom of a group of second slide bars 701 is in reciprocating point contact with the test position of a detection product, therefore, the touch impact fatigue times of a product can be tested through the testing rod 702, the switch of the product can also be extruded to and fro through the testing rod 702, the switch fatigue resistance times of the product can be tested, when the touch impact strength of the testing rod 702 needs to be adjusted, the fourth screw 601 is rotated to drive the second slider 602 to slide along the trapezoidal chute on the right side of the transmission block 6, the connecting shaft 603 is driven to slide along the chute of the transmission block 6, the position of the connecting shaft 603 in the chute of the half gear 503 can be adjusted, the radius of the rotation of the connecting shaft 603 driven by the transmission block 6 can be adjusted, the swing amplitude of the half gear 503 can be adjusted, the swing distance of the rack 7 can be adjusted, when the swing distance of the rack 7 is increased, the collapse of the spring on the outer side of the second sliding rod 701 is increased, the acting force on the testing rod 702 is increased, the acting force of the testing rod 702 on the product is increased, when the swing distance of the rack 7 is decreased, the crumple of the spring outside the second slide bar 701 is reduced, so that the acting force of the spring on the test bar 702 is reduced, the acting force of the test bar 702 on the detection product is reduced, and the effect of adjusting the touch impact strength of the test bar 702 is achieved.
Finally, it should be noted that, when describing the positions of the components and the matching relationship therebetween, the present invention is usually illustrated by one/a pair of components, however, it should be understood by those skilled in the art that such positions, matching relationship, etc. are also applicable to other/other pairs of components.
The above description is intended to be illustrative of the present invention and not to limit the scope of the invention, which is defined by the claims appended hereto.

Claims (9)

1. A mechanical property testing device for processing photoelectric products is characterized by comprising: the box body (1) adopts a rectangular block structure with a hollow interior, the left side of the box body (1) is provided with a through type rectangular slot structure, and the bottom of the box body (1) is of an inverted trapezoidal structure; a scissor lifting mechanism (2) is fixedly arranged at the bottom of the interior of the box body (1); two sides of the top of the inner side of the box body (1) are provided with guide rails (4);
the mounting seat (5) is of a convex plate structure, a screw hole which is through in the left-right direction is formed in the rear side of the mounting seat (5), and a circular groove hole which is through in the left-right direction is formed in the middle of the mounting seat (5); a rack (7) is arranged on the front side of the mounting seat (5); the mounting seat (5) also comprises:
the fixing plate (501) is of a rectangular plate structure, and the fixing plate (501) is fixedly arranged on the front side of the mounting seat (5); a transmission block (6) is arranged on the left side of the fixing plate (501);
the motor (502), the motor (502) is fixedly arranged on the right side of the fixed plate (501) through bolts;
the half gear (503) is rotatably arranged on the left side of the fixed plate (501) through hinge connection, and a sliding groove structure which penetrates left and right is arranged on the front side of the half gear (503).
2. The apparatus for testing mechanical properties of photovoltaic products as claimed in claim 1, wherein: the box body (1) also comprises:
the water tank (101), the water tank (101) is fixedly arranged at the bottom of the rear side of the box body (1), and the water tank (101) is communicated with the bottom inside the box body (1);
the water pump (102), the water pump (102) is fixedly arranged at the rear side of the box body (1) through bolts, and the water pump (102) is communicated with the water tank (101) through a water pipe;
the spray head (103) is fixedly arranged on the top of the inner wall of the box body (1), and the spray head (103) is communicated with the water pump (102) through a water pipe.
3. The device for testing mechanical properties of photoelectric products according to claim 2, wherein: the box body (1) also comprises:
the control box (104) is fixedly arranged on the left side of the box body (1) through bolts, and the control box (104) is electrically connected with the water pump (102) and the motor (502);
the heating plates (105), the heating plates (105) are fixedly arranged on two sides of the inner wall of the box body (1), and the heating plates (105) are electrically connected with the control box (104);
the refrigerator door (106) is rotatably arranged on the front side of the refrigerator body (1) through hinge connection, and the refrigerator door (106) is made of transparent glass materials.
4. The apparatus for testing mechanical properties of photovoltaic products as claimed in claim 1, wherein: cut fork elevating system (2) still including:
the first screw (201) is rotationally arranged on the front side of the bottom of the scissor lifting mechanism (2), and the first screw (201) is in transmission connection with the scissor lifting mechanism (2);
the detection table (202) is of a rectangular plate structure, the detection table (202) is arranged at the top of the scissor lifting mechanism (2), and the middle of the top of the detection table (202) is provided with through rectangular slotted holes in a rectangular array shape; the top of the detection table (202) is provided with a fixed block (3).
5. The device for testing mechanical properties of photoelectric products according to claim 4, wherein: the detection device is characterized in that the fixed blocks (3) are of a U-shaped block structure, four groups of the fixed blocks (3) are arranged, the four groups of the fixed blocks (3) are arranged around the top of the detection platform (202) in a rectangular array shape in a hinged mode, and one side of the top of each fixed block (3) is provided with a through screw hole; the fixed block (3) also comprises:
the second screw (301), the second screw (301) is set in the screw hole of the top of the fixed block (3) rotatably;
the clamping block (302) is of a rectangular block structure, the clamping block (302) is rotatably arranged at the inner side end of the second screw rod (301) through hinged connection, and a V-shaped groove structure is formed in one side of the clamping block (302).
6. The apparatus for testing mechanical properties of photovoltaic products as claimed in claim 1, wherein: the guide rails (4) are arranged in two groups, the two groups of guide rails (4) are fixedly arranged on two sides of the inner wall of the box body (1) respectively, the right side of the right group of guide rails (4) is provided with a penetrating rectangular groove structure, and the rectangular groove structure of the right group of guide rails (4) is superposed with the rectangular groove hole on the right side of the box body (1); the guide rail (4) further comprises:
the two groups of first sliding blocks (401) are arranged on the first sliding blocks (401), the two groups of first sliding blocks (401) are respectively arranged on the inner sides of the two groups of guide rails (4) in a sliding manner, and a penetrating type groove hole is formed in one group of first sliding blocks (401) on the right side;
the first sliding rod (402) is of a cylindrical structure, the first sliding rod (402) is fixedly arranged between the two groups of first sliding blocks (401), and the first sliding rod (402) penetrates through a slotted hole in the middle of the mounting seat (5);
and the third screw (403), the third screw (403) is rotatably arranged on the right side of the left group of first sliding blocks (401) through hinged connection, the third screw (403) penetrates through the slotted holes of the right group of first sliding blocks (401), and the third screw (403) penetrates through the screw hole on the rear side of the mounting seat (5).
7. The apparatus for testing mechanical properties of photovoltaic products as claimed in claim 1, wherein: the transmission block (6) is of an arc-shaped rectangular block structure, the transmission block (6) is rotatably arranged on the left side of the fixing plate (501) through hinged connection, a penetrating type sliding groove structure is formed in the left side of the transmission block (6), and a trapezoidal sliding groove structure is formed in the right side of the transmission block (6); the transmission block (6) also comprises:
the fourth screw rod (601), the fourth screw rod (601) is connected through the hinge and is rotationally arranged on the right side of the transmission block (6).
8. The apparatus for testing mechanical properties of photovoltaic products as claimed in claim 7, wherein: the transmission block (6) further comprises:
the second sliding block (602), the second sliding block (602) is arranged in the trapezoidal sliding groove on the right side of the transmission block (6) in a sliding mode, a penetrating screw hole is formed in the rear side of the second sliding block (602), and the fourth screw rod (601) penetrates through the screw hole of the second sliding block (602);
the connecting shaft (603) adopts a cylindrical structure, the connecting shaft (603) is rotatably arranged on the left side of the second sliding block (602) through hinged connection, and the connecting shaft (603) penetrates through a sliding groove of the transmission block (6) to be clamped and connected with a sliding groove of the half gear (503).
9. The apparatus for testing mechanical properties of photovoltaic products as claimed in claim 1, wherein: the rack (7) is arranged on the front side of the mounting seat (5) in a sliding manner, and the rack (7) is meshed with the half gear (503); the rack (7) also comprises:
the second sliding rods (701) adopt cylindrical structures, two groups of the second sliding rods (701) are arranged, the two groups of the second sliding rods (701) are respectively and fixedly arranged on the upper side and the lower side of the rack (7), and elastic parts are sleeved on the outer sides of the group of the second sliding rods (701) on the lower side;
the testing rod (702), testing rod (702) adopt cylindrical structure, and the cylindrical slotted hole has been seted up at the top of testing rod (702), and testing rod (702) slide and set up in the bottom of a set of second slide bar of downside (701), and the bottom of testing rod (702) is provided with the block rubber.
CN202111436110.9A 2021-11-30 2021-11-30 Mechanical property testing device for photoelectric product processing Pending CN113834641A (en)

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