Tempered glass quality detection device
Through the combined design of the support seat, limit mechanism and return mechanism, the problems of low loading efficiency and safety hazards in the existing tempered glass detection device are solved, the automatic limiting of the glass specimen and the rapid return of the impact body are realized, and the detection efficiency and safety are improved.
Patent Information
- Application Number
- CN202511202998.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-27
- Publication Date
- 2025-09-23
- Estimated Expiration
- 2045-08-27
AI Technical Summary
Existing tempered glass testing devices are inefficient and pose safety risks during the loading and fixing processes. Manual resetting of the impact body during inertial swing is unsafe, and the damage of the glass specimen cannot be accurately observed.
The combined design of support base, limit mechanism, adjustment mechanism and return mechanism is adopted to realize the automatic loading and unloading of glass specimens, limit and rapid return of impact body. The moving efficiency is improved by rollers and limit components, and the return mechanism is used to avoid the safety hazards of manual reset.
The movement and limiting efficiency of the glass specimen is improved, the potential safety hazards are reduced, and the rapid return of the impact body and the accurate observation of the damage of the glass specimen are ensured.
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Figure CN120685470A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of tempered glass production, and in particular to a tempered glass quality detection device. Background Art
[0002] As a high-strength, high-safety glass material, tempered glass is widely used in architecture, automobiles, home appliances, and other fields. To ensure its quality and performance meet standard requirements, it requires the use of specific testing devices and methods. Common tempered glass testing devices include surface stress gauges, bending strength testers, and impact testing devices. Impact testing devices use pendulums or falling balls to test tempered glass's resistance to external impact.
[0003] Current impact testing devices often use a shot bag impact method. The shot bag impact tester usually includes a height-adjustable frame and a shot bag (impact body). During testing, the glass specimen to be tested is fixed to the impact tester with a clamp. The impact body falls freely from a specific height and vertically impacts the specimen in a pendulum manner to observe the degree of damage to the specimen. However, the current loading and fixing of the glass specimens require the handling and movement of at least two operators, and the clamps that fix the glass specimens need to be manually locked one by one, which is inefficient and poses a safety hazard. Secondly, after the test, the impact body continues to swing due to inertia. Manually retracting and resetting it at this time poses a large safety hazard. In addition, the repeated impact of the impact body on the glass specimen is not conducive to accurately observing the surface damage of the glass specimen.
[0004] Therefore, in order to improve the efficiency of movement and limiting and reduce safety hazards, the present invention provides a tempered glass quality detection device. Summary of the Invention
[0005] The purpose of the present invention is to solve the problems existing in the prior art and to propose a tempered glass quality detection device.
[0006] In order to achieve the above-mentioned purpose, the present invention adopts the following technical scheme: a tempered glass quality detection device, including a support seat and a limiting mechanism, the front and rear side walls of the support seat are symmetrically provided with loading and unloading mechanisms, and the support seat and the two loading and unloading mechanisms are jointly provided with a limiting mechanism, the support seat and the limiting mechanism are jointly provided with a support frame, and the support frame is provided with an adjustment mechanism, the adjustment mechanism is provided with an impact body and a return mechanism, and the limiting mechanism is provided with a slag stop plate.
[0007] The limiting mechanism includes a supporting component for supporting the glass specimen, a limiting component 1 for limiting the glass specimen in the thickness direction, and a limiting component 2 for limiting the glass specimen from the upper and lower sides; the returning mechanism includes a releasing component for releasing the impact body, and a returning component for assisting in retracting the released impact body. The slag blocking plate is composed of two folding plates symmetrically distributed front and back, and the lower parts of the two folding plates are bent close to guide the slag of the glass specimen.
[0008] In the above-mentioned tempered glass quality inspection device, the loading and unloading mechanism includes two box-shaped seats symmetrically distributed above and below, and the two box-shaped seats are fixedly connected by an X-shaped frame. The lower box-shaped seat is fixedly connected to the support seat, and the inner wall of the box-shaped seat is evenly rotated and connected with multiple rollers, and the outer wall of the lower box-shaped seat away from the support seat is fixedly connected with an auxiliary seat with an inclined top wall.
[0009] In the above-mentioned tempered glass quality inspection device, the support assembly includes a support frame 2 and a support frame 1 that are relatively distributed on the left and right, and the top wall of the support seat and the side wall of the box-shaped seat are fixedly connected with a support frame 1 and a support frame 2 that are both in a circular shape. The support frame 1 and the support frame 2 are fixedly connected, and a plurality of rollers 2 are connected between the upper and lower parts of the support frame 1 and the support frame 2 so as to rotate evenly from front to back. The top wall height of the roller 2 is consistent with that of the roller 1, and the slag stop plate is fixedly connected to the right side wall of the support frame 1.
[0010] In the above-mentioned tempered glass quality inspection device, the limiting component 1 includes a positioning frame, and the inner wall of the supporting frame 2 is fixedly connected with an X-shaped positioning frame, the side wall of the supporting frame 2 is slidably connected with a circular limiting frame through a spring 1, and the left side wall of the limiting frame is fixedly connected with a force-bearing frame, and the right side wall of the force-bearing frame is fixedly connected with multiple positioning blocks, and the positioning frame is provided with multiple holes that are compatible with the positioning blocks.
[0011] In the above-mentioned tempered glass quality inspection device, the limiting component also includes a push plate, and the top wall of the support seat and the corresponding bottom wall of the support frame are connected with a push plate through an electric slider for sliding left and right. The push plate is arranged on the left side of the force frame and the limit frame.
[0012] In the above-mentioned tempered glass quality inspection device, the limiting component 2 includes a push block, and the right side wall of the push plate is symmetrically fixedly connected with the push block, the inner top wall and the inner bottom wall of the support frame 1 are symmetrically slidably connected with the limit members arranged staggered with the roller 2 through the spring 2, and the outer wall on the side away from the two limit members is fixedly connected with the wedge block 1, the outer walls of the push block and the wedge block 1 close to each other are in an adaptive inclined shape, and a groove for the push block to pass through is opened on the support frame 2.
[0013] In the above-mentioned tempered glass quality inspection device, the adjustment mechanism includes a support rod, and the bottom wall of the horizontal section of the support frame is rotatably connected to the support rod, the top wall of the horizontal section of the support frame is installed with a motor, and the front side of the output end of the motor is fixedly connected to a winding roller, the winding roller rotates relative to the support frame, and the right end of the support rod is connected to the winding roller through rope 1, and the impact body is fixedly connected to the bottom wall of the left end of the support rod through rope 2.
[0014] In the above-mentioned tempered glass quality inspection device, the release assembly includes a fixed plate, and the front side wall of the right end of the support rod is fixedly connected to the fixed plate, and the support rod behind the fixed plate is connected to an L-shaped movable plate for sliding back and forth through spring three, and the front side wall of the vertical section of the movable plate is fixedly connected with a fixing part and a releasing part correspondingly above and below, a groove for sliding the fixing part is provided on the support rod, and a hole is provided on the fixed plate that is adapted to the front end of the releasing part, and the top wall of the releasing part gradually tilts downward from back to front.
[0015] In the above-mentioned tempered glass quality inspection device, the return assembly includes a pulley member, and the bottom wall of the support rod is connected to the pulley member for sliding left and right through an electric slider, and the rear side wall of the pulley member is fixedly connected to a protrusion. An adjustment member that is connected to the rear side wall of the support rod for sliding left and right is provided on the right side of the movable plate, and the adjustment member consists of an F-shaped member that is slidably connected to the support rod and a wedge block fixed to the rear side wall of the F-shaped member.
[0016] In the above-mentioned tempered glass quality inspection device, the front side wall of the F-shaped part of the adjustment part is connected to the positioning key through spring four, and the rear side wall of the support rod is provided with two holes distributed on the left and right sides that are compatible with the positioning key. The left side wall of the wedge block 2 of the adjustment part and the right side wall of the fixing part are in a compatible inclined shape, and the rear side wall of the right end of the support rod is installed with an electric push rod, and the output end of the electric push rod faces to the left.
[0017] Compared with the existing technology, the advantages of the present invention are: 1. By cooperating with the loading and unloading mechanism and the limiting mechanism, the moving range of the glass specimen is limited, and the glass specimen is assisted in the loading and unloading movement with less effort; when the glass specimen moves between the two corresponding X-shaped frames on the left and right and between the support frame 1 and the support frame 2, the roller 1 and the roller 2 rotate to adapt to the movement of the glass specimen, helping the glass specimen to move to the detection position on the limiting mechanism with less effort and accuracy.
[0018] 2. Through the cooperation of the support component, the limit component 1 and the limit component 2, the limit frame and the support frame 1 clamp the glass specimen, and the limit components limit the glass specimen from the upper and lower sides, thereby improving the efficiency and effect of limiting the glass specimen and avoiding the need for the operator to continuously support the glass specimen when fixing it.
[0019] 3. The adjustment mechanism, impact body and return mechanism cooperate to realize the rapid retraction and return of the impact body; the release member restricts the rope 2 connecting the impact body so that the impact body remains in the release position at the right end of the support rod; after the impact, the impact body continues to swing due to inertia, avoiding the safety hazards caused by manual resetting of the impact body and reducing the number of times the impact body repeatedly hits the glass specimen after the test. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] The specific embodiments of the present invention will be further described in detail below with reference to the accompanying drawings, wherein: Figure 1 A schematic diagram of the overall structure.
[0021] Figure 2 for Figure 1 Schematic diagram of the structure from another perspective.
[0022] Figure 3 It is a structural diagram of the loading and unloading mechanism.
[0023] Figure 4 It is a schematic diagram of the structural decomposition of the limiting mechanism.
[0024] Figure 5 This is a schematic diagram of the change of the limiting piece from being far away from the glass specimen to being close to the glass specimen.
[0025] Figure 6 Schematic diagram of the structure of the adjustment mechanism.
[0026] Figure 7 It is a schematic diagram of the structure of the impact body changing from a released state to a retracted state.
[0027] Figure 8 for Figure 7 Schematic diagram of the structure at A in .
[0028] Figure 9 It is a partial structural diagram of the homing mechanism.
[0029] Figure 10 It is a partial structural diagram of the limiting component 1 and the limiting component 2.
[0030] Figure 11 It is a partial structural diagram of the support rod, electric push rod and release assembly.
[0031] Figure 12 It is a schematic diagram of the partial structure of the support rod, electric push rod and adjustment part from a top view.
[0032] In the figure: 1. Support seat; 2. Loading and unloading mechanism; 21. Box seat; 22. X-shaped frame; 23. Roller 1; 24. Auxiliary seat; 3. Limiting mechanism; 31. Support assembly; 311. Support frame 1; 312. Support frame 2; 313. Roller 2; 32. Limiting assembly 1; 321. Push plate; 322. Force frame; 323. Limiting frame; 324. Positioning block; 325. Positioning frame; 33. Limiting assembly 2; 331. Push block; 3 32. Limiting member; 333. Wedge block 1; 4. Support frame; 5. Adjusting mechanism; 51. Support rod; 52. Winding roller; 53. Motor; 6. Impact body; 7. Returning mechanism; 71. Release assembly; 711. Fixed plate; 712. Moving plate; 713. Fixed member; 714. Release member; 72. Returning assembly; 721. Pulley member; 722. Bump; 723. Adjusting member; 724. Positioning key; 73. Electric push rod; 8. Slag stop plate. DETAILED DESCRIPTION
[0033] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0034] Reference Figures 1 to 2 A tempered glass quality inspection device includes a support base 1 and a limiting mechanism 3. The front and rear side walls of the support base 1 are symmetrically provided with loading and unloading mechanisms 2. The support base 1 and the two loading and unloading mechanisms 2 are jointly provided with a limiting mechanism 3. The support base 1 and the limiting mechanism 3 are jointly provided with a support frame 4. The support frame 4 is provided with an adjusting mechanism 5. The adjusting mechanism 5 is provided with an impact body 6 and a returning mechanism 7. The limiting mechanism 3 is provided with a slag stop plate 8.
[0035] Before the experiment, the support base 1 is stably installed on the ground, the loading and unloading mechanism 2 assists the loading and unloading movement of the glass specimen, the limiting mechanism 3 limits the glass specimen, and the release height of the impact body 6 is adjusted by the adjusting mechanism 5; when the glass specimen moves to a suitable experimental position and is tightly clamped, the impact body 6 is released by the returning mechanism 7, and the impact body 6 falls freely to impact the sample glass specimen, and the damage of the sample is analyzed and recorded; then the impact body 6 is retracted and returned to its original position by the returning mechanism 7.
[0036] Reference Figure 1 and Figure 3The loading and unloading mechanism 2 includes two box-shaped seats 21 symmetrically distributed in the upper and lower parts. The two box-shaped seats 21 are fixedly connected by two X-shaped frames 22 symmetrically distributed in the left and right parts. The lower box-shaped seat 21 is fixedly connected to the support seat 1. The inner wall of the box-shaped seat 21 rotates evenly from front to back and is connected to a plurality of rollers 23. The outer wall of the lower box-shaped seat 21 away from the support seat 1 is fixedly connected to an auxiliary seat 24 with an inclined top wall.
[0037] The glass specimen is pushed along the auxiliary seat 24 toward the box-shaped seat 21 and the X-shaped frame 22. When the glass specimen moves between the two corresponding X-shaped frames 22 on the left and right, the top and bottom walls of the glass specimen contact the outer wall of the roller 1 23. The roller 1 23 rotates on the box-shaped seat 21 to adapt to the movement of the glass specimen, helping the glass specimen to move to the detection position on the limit mechanism 3 with ease and accuracy.
[0038] Reference Figure 1 、 Figure 3 and Figure 4 The limiting mechanism 3 includes a supporting component 31 for supporting the glass specimen, a limiting component 1 32 for limiting the glass specimen from the left side, and a limiting component 2 33 for limiting the glass specimen from the upper and lower sides; the supporting component 31 includes a supporting frame 2 312 and a supporting frame 1 311 which are relatively distributed on the left and right sides, and the top wall of the supporting seat 1 and the side wall of the box-shaped seat 21 are fixedly connected with a supporting frame 1 311 and a supporting frame 2 312 which are both in a circular shape, and the supporting frame 1 311 and the supporting frame 2 312 are fixedly connected, and a plurality of rollers 2 313 are connected between the upper and lower parts of the supporting frame 1 311 and the supporting frame 2 312 so as to rotate evenly from front to back, and the top wall height of the roller 2 313 is consistent with that of the roller 1 23, and the slag stop plate 8 is fixedly connected to the right side wall of the supporting frame 1 311.
[0039] Reference Figures 3 to 5 and Figure 10 The locking cam 323 is secured on the left side of the lock cam 324 and is designed to lock the locking cam 324 with the left side of the lock cam 324. The cam 323 is secured on the left side of the lock cam 324 and is designed to lock the locking cam 324 with the left side of the lock cam 324.
[0040] Reference Figures 3 to 5The second limiting component 33 includes a push block 331, and the right side wall of the push plate 321 is symmetrically fixedly connected with the push block 331 up and down. The inner top wall and the inner bottom wall of the support frame 1 311 are symmetrically slidably connected with the limit members 332 arranged alternately with the roller 2 313 through the spring 2. The outer wall on the side away from the two limit members 332 is fixedly connected with the wedge block 1 333. The outer walls of the push block 331 and the wedge block 1 333 that are close to each other are in an adaptive inclined shape, and a slot for the push block 331 to pass through is opened on the support frame 2 312.
[0041] When the glass specimen moves between the support frame 1 311 and the support frame 2 312, the roller 2 313 rotates on the support frame 1 311 and the support frame 2 312 to adapt to the movement of the glass specimen. When the glass specimen moves to the detection position, the push plate 321 is driven by the electric slider to slide from left to right on the top wall of the support seat 1 and the bottom wall of the support frame 4 close to the support frame 2 312. The push plate 321 gradually approaches and pushes the force frame 322 tightly. The force frame 322 moves and drives the limit frame 323 to slide on the support frame 2 312 toward the support frame 1 311, and the positioning block 324 engages with the corresponding hole position of the positioning frame 325.
[0042] The left side wall of the support frame 311 and the right side wall of the limit frame 323 are both provided with rubber gaskets. The right side wall of the limit frame 323 gradually approaches and presses against and pushes the glass specimen toward the left side wall of the support frame 311 until the limit frame 323 and the support frame 311 clamp the glass specimen. The force frame 322 makes the force on the limit frame 323 more uniform, and the positioning block 324 makes the clamping force of the limit frame 323 on the glass specimen more stable. There is a gap between the positioning frame 325 and the glass specimen, and the two do not contact, so as to prevent the positioning frame 325 from increasing the support strength of the middle part of the glass specimen and affecting the test results of the glass specimen.
[0043] The movement of the push plate 321 drives the push block 331 to slide through the groove on the support frame 2 312, gradually approaching the wedge block 1 333 and pushing the wedge block 1 333 tightly. A rubber gasket is provided on the outer wall of the side of the limit piece 332 close to the glass specimen. The wedge block 1 333 is pushed and slid, driving the limit piece 332 to move close to the top wall and bottom wall of the glass specimen until the rubber gasket of the limit piece 332 fully contacts the top wall and bottom wall of the glass specimen, increasing the friction with the glass specimen, so as to limit the glass specimen from the upper and lower sides, improve the efficiency and effect of limiting the glass specimen, and solve the problem that the operator needs to continuously support the glass specimen when fixing it.
[0044] Reference Figure 1 and Figure 6The adjusting mechanism 5 includes a support rod 51, the bottom wall of the horizontal section of the support frame 4 is rotatably connected to the support rod 51, the top wall of the horizontal section of the support frame 4 is installed with a motor 53, the front side of the output end of the motor 53 is fixedly connected to the winding roller 52, the winding roller 52 rotates relative to the support frame 4, the right end of the support rod 51 is connected to the winding roller 52 through rope 1, and the impact body 6 is fixedly connected to the bottom wall of the left end of the support rod 51 through rope 2.
[0045] Before the test begins, the right end of the rope connected to the impact body 6 is placed on the return mechanism 7 and is in a horizontal state. When the position of the glass specimen is fixed, the output end of the motor 53 rotates to drive the winding roller 52 to rotate. The rotation of the winding roller 52 causes the rope connected to the right end of the support rod 51 to be wound or released, and the left end of the support rod 51 rotates to adapt. When the rope is wound, the right end of the support rod 51 is lifted upward, and when the rope is released, the right end of the support rod 51 drops to adjust the height of the impact body 6 hitting the glass specimen.
[0046] Reference Figure 1 、 Figure 2 and Figure 7 The homing mechanism 7 includes a releasing component 71 for releasing the impact body 6 and a homing component 72 for assisting in retracting the released impact body 6 .
[0047] Reference Figure 1 The slag blocking plate 8 is composed of two folding plates symmetrically distributed front and back, and the lower parts of the two folding plates are bent close to guide the slag of the glass specimen.
[0048] Reference Figures 7 to 9 and Figure 11 The release assembly 71 includes a fixed plate 711, and the front side wall of the right end of the support rod 51 is fixedly connected to the fixed plate 711. The support rod 51 behind the fixed plate 711 is connected to an L-shaped movable plate 712 for sliding back and forth through a spring three (not shown in the figure). The front side wall of the vertical section of the movable plate 712 is fixedly connected to a fixing member 713 and a release member 714 respectively. A groove for sliding the fixing member 713 is opened on the support rod 51, and a hole is opened on the fixed plate 711 to match the front end of the release member 714. The top wall of the release member 714 gradually tilts downward from back to front.
[0049] Reference Figures 7 to 9 and Figure 12The homing assembly 72 includes a pulley member 721, the bottom wall of the support rod 51 is connected to the pulley member 721 for sliding left and right movement through an electric slider, and the rear side wall of the pulley member 721 is fixedly connected to a protrusion 722. The right side of the movable plate 712 is provided with an adjustment member 723 that is slidably connected to the rear side wall of the support rod 51. The adjustment member 723 consists of an F-shaped member slidably connected to the support rod 51 and a wedge block 2 fixed to the rear side wall of the F-shaped member; the front side wall of the F-shaped member of the adjustment member 723 is connected to a positioning key 724 through a spring four, and the rear side wall of the support rod 51 is provided with two holes distributed left and right and adapted to the positioning key 724. The left side wall of the wedge block 2 of the adjustment member 723 is adapted to the right side wall of the fixing member 713 in an inclined shape; the rear side wall of the right end of the support rod 51 is installed with an electric push rod 73, and the output end of the electric push rod 73 faces left.
[0050] When the height of the support rod 51 is adjusted, the rope 2 is initially laid on the top wall of the release member 714. The rope 2 is limited by the fixed plate 711, the movable plate 712 and the release member 714. The output end of the electric push rod 73 moves leftward to push the adjusting member 723 to slide on the support rod 51. The positioning key 724 slides out of the hole on the right side of the support rod 51 and enters the hole on the left side. The spring 4 connected to the positioning key 724 is adaptively extended and retracted; the movement of the adjusting member 723 pushes the fixed member 713, the movable plate 712 and the release member 714 to move backward. The front end of the release member 714 changes from the state of being engaged with the hole on the fixed plate 711 to the state of being separated. The rope 2 connected to the impact body 6 instantly slips off the release member 714, and the impact body 6 falls freely, vertically impacting the glass specimen in a pendulum-like manner to observe the degree of damage.
[0051] When the impact body 6 hits the glass specimen, the pulley 721 quickly slides to the right on the bottom wall of the support rod 51, and the pulley 721 pushes the rope of the impact body 6 to approach the bottom wall of the support rod 51. The roller of the pulley 721 rotates to reduce friction, and the impact body 6 gradually rises and approaches the release position at the right end of the support rod 51. Until the pulley 721 drives the impact body 6 to move to the right of the release assembly 71, the protrusion 722 pushes the adjustment member 723 to reset, and the positioning key 724 slides out of the hole on the left side of the support rod 51 and enters the right side The hole position of the spring 4 connected to the positioning key 724 is adaptively extended and retracted, the adjusting member 723 releases the push on the fixing member 713, the movable plate 712, the fixing member 713 and the releasing member 714 move forward and reset, and the releasing member 714 moves into the corresponding hole position on the fixing plate 711; when the pulley member 721 slides to the left and resets, the releasing member 714 restricts the rope 2 connected to the impact body 6, so that the impact body 6 remains in the released position at the right end of the support rod 51, so as to realize the retraction and return of the impact body 6.
[0052] The impact body 6 continues to swing due to inertia after the impact, avoiding safety hazards when manually resetting the impact body 6. At the same time, the impact body 6 can be quickly reset, reducing the number of times the impact body 6 repeatedly impacts the glass specimen after the test.
[0053] During the test, if the glass specimen is broken, the slag blocking plate 8 can prevent the glass fragments from splashing, and a collection box is placed in the middle space of the support base 1 to collect the broken glass fragments in a unified manner.
[0054] Reference Figures 1-12 The specific operating steps of the tempered glass quality inspection device are as follows: after the support base 1 is stably installed on the ground, the glass specimen is pushed along the auxiliary base 24 toward the box-shaped base 21 and the X-shaped frame 22. When the glass specimen moves to the inspection position between the support frame 1 311 and the support frame 2 312, the push plate 321 drives the right side wall of the limit frame 323 to gradually approach and tightly adhere to and push the glass specimen toward the left side wall of the support frame 1 311 until the limit frame 323 and the support frame 1 311 clamp the glass specimen; at the same time, the push block 331 drives the limit member 332 to limit the glass specimen from the upper and lower sides.
[0055] When the position of the glass specimen is fixed, the support rod 51 adjusts the height of the impact body 6 hitting the glass specimen; during the test, the electric push rod 73 drives the front end of the release member 714 to change from a state of engagement with the hole on the fixing plate 711 to a separated state, and the rope connecting the impact body 6 instantly slides off the release member 714, and the impact body 6 falls freely, impacting the glass specimen in a pendulum manner. The performance of the glass specimen is judged by observing the degree of damage to the glass specimen.
[0056] The above description is only a preferred specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any technician familiar with the technical field, within the technical scope disclosed by the present invention, who makes equivalent replacements or changes based on the technical solution and inventive concept of the present invention, should be covered by the scope of protection of the present invention.
Claims
1. A tempered glass quality detection device, comprising a support base (1) and a limiting mechanism (3), characterized in that: The support seat (1) is symmetrically provided with loading and unloading mechanisms (2), and the support seat (1) and the two loading and unloading mechanisms (2) are jointly provided with a limiting mechanism (3), the support seat (1) and the limiting mechanism (3) are jointly provided with a support frame (4), and the support frame (4) is provided with an adjusting mechanism (5), and the adjusting mechanism (5) is provided with an impact body (6) and a return mechanism (7); The limiting mechanism (3) comprises a supporting assembly (31) for supporting the glass specimen, a limiting assembly 1 (32) for limiting the glass specimen in its thickness direction, and a limiting assembly 2 (33) for limiting the glass specimen from both upper and lower sides. The homing mechanism (7) comprises a releasing component (71) for releasing the impact body (6) and a homing component (72) for assisting in retracting the released impact body (6); The loading and unloading mechanism (2) comprises two box-shaped seats (21) symmetrically distributed in an upper and lower direction, and the two box-shaped seats (21) are fixedly connected via an X-shaped frame (22), the lower box-shaped seat (21) is fixedly connected to the support seat (1), the inner wall of the box-shaped seat (21) is evenly connected to a plurality of rollers (23), and the outer wall of the lower box-shaped seat (21) away from the support seat (1) is fixedly connected to an auxiliary seat (24) with an inclined top wall.
2. A tempered glass quality detection device according to claim 1, characterized in that: The support assembly (31) includes a support frame 2 (312) and a support frame 1 (311) that are relatively distributed on the left and right, and the top wall of the support seat (1) and the side wall of the box-shaped seat (21) are fixedly connected with a support frame 1 (311) and a support frame 2 (312) both of which are in a circular shape. The support frame 1 (311) and the support frame 2 (312) are fixedly connected, and a plurality of rollers 2 (313) are connected between the upper part and the lower part of the support frame 1 (311) and the support frame 2 (312) so as to rotate uniformly from front to back. The top wall height of the roller 2 (313) is consistent with that of the roller 1 (23).
3. A tempered glass quality detection device according to claim 2, characterized in that: The limiting component 1 (32) includes a positioning frame (325), and the inner wall of the supporting frame 2 (312) is fixedly connected with an X-shaped positioning frame (325), the side wall of the supporting frame 2 (312) is slidably connected with a circular limiting frame (323) through a spring 1, and the left side wall of the limiting frame (323) is fixedly connected with a force-bearing frame (322), and the right side wall of the force-bearing frame (322) is fixedly connected with a plurality of positioning blocks (324), and the positioning frame (325) is provided with a plurality of holes adapted to the positioning blocks (324).
4. A tempered glass quality detection device according to claim 3, characterized in that: The limiting component (32) further includes a push plate (321), and the top wall of the support seat (1) and the corresponding bottom wall of the support frame (4) are connected to the push plate (321) by an electric slider for sliding left and right. The push plate (321) is arranged on the left side of the force frame (322) and the limiting frame (323).
5. The tempered glass quality detection device according to claim 4, characterized in that: The second limiting component (33) includes a push block (331), and the right side wall of the push plate (321) is symmetrically fixedly connected with the push block (331) in the upper and lower directions. The inner top wall and the inner bottom wall of the support frame (311) are symmetrically slidably connected with the limit members (332) arranged alternately with the rollers (313) in the upper and lower directions through the second spring, and the outer walls on the side away from the two limit members (332) are fixedly connected with the wedge block (333). The outer walls of the push block (331) and the wedge block (333) close to each other are in an adaptive inclined shape, and a groove for the push block (331) to pass through is opened on the support frame (312).
6. The tempered glass quality detection device according to claim 1, characterized in that: The adjusting mechanism (5) includes a support rod (51), and the support rod (51) is rotatably connected to the bottom wall of the horizontal section of the support frame (4). A motor (53) is installed on the top wall of the horizontal section of the support frame (4), and a winding roller (52) is fixedly connected to the front side of the output end of the motor (53). The winding roller (52) rotates relative to the support frame (4), and the right end of the support rod (51) is connected to the winding roller (52) through a rope 1. The impact body (6) is fixedly connected to the bottom wall of the left end of the support rod (51) through a rope 2.
7. The tempered glass quality detection device according to claim 6, characterized in that: The release assembly (71) includes a fixed plate (711), and the front side wall of the right end of the support rod (51) is fixedly connected to the fixed plate (711), and the support rod (51) behind the fixed plate (711) is connected to an L-shaped movable plate (712) by spring three for sliding forward and backward, and the front side wall of the vertical section of the movable plate (712) is fixedly connected to a fixing member (713) and a release member (714) in upper and lower correspondence, a groove for sliding the fixing member (713) is provided on the support rod (51), and a hole is provided on the fixed plate (711) to match the front end of the release member (714), and the top wall of the release member (714) is gradually inclined downward from back to front.
8. The tempered glass quality detection device according to claim 7, characterized in that: The homing assembly (72) includes a pulley member (721), and the bottom wall of the support rod (51) is connected to the pulley member (721) by sliding left and right through an electric slider, and the rear side wall of the pulley member (721) is fixedly connected to a protrusion (722), and an adjusting member (723) is provided on the right side of the movable plate (712) and is connected to the rear side wall of the support rod (51) by sliding left and right. The adjusting member (723) is composed of an F-shaped member slidably connected to the support rod (51) and a wedge fixed to the rear side wall of the F-shaped member.
9. The tempered glass quality detection device according to claim 8, characterized in that: The front side wall of the F-shaped member of the adjusting member (723) is connected to a positioning key (724) via a spring four, and the rear side wall of the support rod (51) is provided with two holes distributed on the left and right sides and adapted to the positioning key (724). The left side wall of the wedge block 2 of the adjusting member (723) and the right side wall of the fixing member (713) are in an adapted inclined shape. The rear side wall of the right end of the support rod (51) is provided with an electric push rod (73), and the output end of the electric push rod (73) faces left.
10. The tempered glass quality detection device according to claim 2, characterized in that: The limiting mechanism (3) is provided with a slag blocking plate (8), which is composed of two folding plates symmetrically distributed front and back, and the lower parts of the two folding plates are bent close to guide the broken slag of the glass specimen, and the slag blocking plate (8) is fixedly connected to the right side wall of the support frame (311).
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