Toughened glass carrying device
By designing a tempered glass handling device with a belt and a fixing seat, the problem of weakening adsorption force of the suction cup during long-term use or low-temperature environments is solved, and the stable fixation and movement of the tempered glass is achieved, and safety and transportation efficiency are improved.
Patent Information
- Application Number
- CN202510546798.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-28
- Publication Date
- 2025-05-30
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
In the long-term use or low-temperature environment, the adsorption force of the existing tempered glass is weakened, resulting in the pouring of tempered glass, posing safety hazards and economic losses.
A tempered glass handling device is designed, including two fixing parts, two adsorption parts and a moving part. Additional fixing and support are provided through the belt and the fixing seat, reducing the risk of suction cup falling off, and achieving stable fixing and movement of the tempered glass through the clamping structure and the drive structure.
It improves the stability and safety of tempered glass, reduces accidental damage during transportation, improves transportation efficiency and cargo safety, is highly adaptable, and can be used in a variety of environments.
Smart Images

Figure CN120057469A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of glass handling, and particularly to a tempered glass handling device. Background Art
[0002] A tempered glass handling device is a piece of equipment in the technical field of tempered glass handling, mainly used for handling and moving tempered glass.
[0003] After retrieval, a Chinese patent with the publication number CN116331845A discloses a tempered glass handling device, including: a fixed support plate assembled with a handling vehicle, and mounting plates are rotatably provided at both ends of the fixed support plate to adjust the adsorption position; a suction cup assembly movably arranged at one end of the mounting plate, and the suction cup assembly is adapted to fit the curved surface of the curved tempered glass by deforming according to the surface of the curved tempered glass. The above solution fits the inner curved surface of the tempered glass through a third sleeve and a first suction pipe, and under negative pressure, the surface of the first rubber balloon contracts towards the position of the third sleeve, and finally the first rubber balloon drives the suction ring to fit the inner curved surface of the curved tempered glass, and under negative pressure, the suction ring cooperates with the first rubber balloon to adsorb the inner curved surface of the curved tempered glass, so that the curved tempered glass can be adsorbed on its inner curved surface through the suction cup assembly, so as to carry out the work of handling the curved tempered glass. However, when the above solution is actually used, there are still the following deficiencies: The above solution adsorbs the tempered glass by means of suction cups. A handle is installed on the suction cup, and the staff controls the position of the tempered glass through the handle. However, this method has defects because the suction force of the suction cup is the only source for fixing the tempered glass. After long-term use or storage of the suction cup, the material of the suction cup may age or harden, resulting in a weakened suction force. In addition, changes in environmental temperature may also affect the suction effect of the suction cup. Especially in a low-temperature environment, the material of the suction cup hardens and the suction force weakens. Based on the above factors, if the suction cup falls off the surface of the tempered glass during the handling process, the tempered glass will directly fall over, which will cause unnecessary economic losses and is also likely to cause harm to the handling personnel.
[0004] Therefore, it is necessary to design a tempered glass handling device to solve the above problems. Summary of the Invention
[0005] The purpose of the present invention is to provide a tempered glass handling device to solve the deficiencies existing in the prior art.
[0006] To achieve the above purpose, the present invention adopts the following technical solutions: A tempered glass handling device includes two fixing parts, two adsorption parts and a moving part; The fixing part includes a fixing structure and a control structure; The moving part includes a bottom support structure, a clamping structure, a driving structure and an adjusting structure; A connecting structure is arranged between the two fixing parts, and the connecting structure is connected to the two adsorption parts.
[0007] As a preferred technical solution of the present invention, the fixing structure includes: A fixing frame, and the fixing frame has an L-shaped structure; A slideway, and the slideway is opened on the side surface of the fixing frame; A slider, and the slider is slidably arranged in the slideway; A pressing plate, and the pressing plate is fixed at one end of the slider; A connecting plate, and the connecting plate is fixed at the other end of the slider.
[0008] As a preferred technical solution of the present invention, the control structure includes: A bracket, and the bracket is fixed on the side surface of the fixing frame; A rotating shaft, and the rotating shaft is rotatably installed on the bracket; A cam, and the cam is fixedly sleeved on the rotating shaft, and the cam is arranged opposite to the connecting plate; A limiting ring, and the limiting ring is slidably sleeved on the rotating shaft; A knob, and the knob is fixed at one end of the rotating shaft; A first spring, one end of the first spring is connected to the bracket, and the other end is connected to the limiting ring; A plurality of teeth, and a plurality of the teeth are respectively opened on the limiting ring and the knob.
[0009] As a preferred technical solution of the present invention, the adsorption part includes: A handle, and a holding space is opened on the handle; Two suction cups, and the two suction cups are respectively fixed at both ends of the handle; A connecting frame, and the connecting frame is fixed in the holding space of the handle, and a through hole is opened on the connecting frame.
[0010] As a preferred technical solution of the present invention, the bottom support structure includes: A bottom plate; Four connecting rods, and the four connecting rods are respectively fixed at the four corner positions on the top surface of the bottom plate; A bracket, and the bracket is fixed at the top ends of the four connecting rods, and the bracket has a U-shaped structure; Universal wheels, and the universal wheels are installed on the bottom surface of the bottom plate; A sliding plate, and the sliding plate is slidably arranged on the bracket; Two second springs, one end of each of the two second springs is connected to the bracket, and the other end of each is connected to the sliding plate.
[0011] As a preferred technical solution of the present invention, the clamping structure includes: Two openings one, both of the two openings one are opened on the bracket, and the two openings one are arranged opposite to each other; Two sliding plates, the two sliding plates are respectively slidably arranged in the two openings one; Two clamping plates, the two clamping plates are respectively fixed at one ends of the two sliding plates close to each other; Two side plates, the two side plates are respectively fixed at one ends of the two sliding plates away from each other; Two springs three, one ends of the two springs three are respectively connected to the bracket, and the other ends are respectively connected to the two side plates.
[0012] As a preferred technical solution of the present invention, the driving structure includes: A control block, the control block is fixed on the bottom surface of the sliding plate, and the control block is composed of two frustum structures arranged mirror-symmetrically; Two openings two, both of the two openings two are opened on the bracket, and the two openings two are arranged opposite to each other; Two sliding rods, the two sliding rods are respectively slidably arranged in the two openings two; Two guide sleeves, the two guide sleeves are both fixed on the side surface of the bracket; Two vertical rods, the two vertical rods are respectively slidably connected to the two guide sleeves; Two springs four, one ends of the two springs four are respectively connected to the two guide sleeves; Two driving plates one, the two driving plates one are respectively fixed at the bottom ends of the two vertical rods, the two driving plates one are respectively connected to the other ends of the two springs four, and inclined surfaces are arranged on both of the two driving plates one; Two driving plates two, the two driving plates two are respectively fixed at the top ends of the two vertical rods, and inclined surfaces are arranged on both of the two driving plates two.
[0013] As a preferred technical solution of the present invention, the adjusting structure includes: A threaded opening, the threaded opening is opened on the bottom surface of the bracket, and the threaded opening is arranged opposite to the control block; A threaded rod, the threaded rod is threadedly sleeved in the threaded opening, the bottom end of the threaded rod extends to the outside of the threaded opening, and a rotary cap is installed.
[0014] As a preferred technical solution of the present invention, the connecting structure includes: A binding belt, the binding belt is fixed on the side surface of one of the fixing frames; A fixing seat, the fixing seat is fixed on the binding belt; A rotating seat, the rotating seat is rotatably installed on the fixing seat, and a gap is provided between the fixing seat and the rotating seat; A number of teeth, and a number of the teeth are all fixed on the rotating seat; The mounting bracket is fixed on the side surface of another fixed bracket, and the mounting bracket is in a U-shaped structure.
[0015] As a preferred technical solution of the present invention, anti-slip strips are provided on the side surface of the rotating seat.
[0016] The present invention has the following beneficial effects: 1. By using the strap and the fixed seat, the tempered glass is additionally fixed and supported, reducing the risk of the tempered glass tipping over due to the falling off of the suction cup, thereby improving the safety of the operation. The strap connects the handle and the fixed bracket, tightly connecting the tempered glass with the fixed bracket, making it in a more stable state, preventing shaking or tilting during transportation, ensuring the stability of the tempered glass. This design can reduce accidental damage during transportation, reduce the damage rate caused by the falling off or shaking of the tempered glass, thereby improving the transportation efficiency and the safety of the goods; 2. Due to the small volume of the fixing part, the adsorption part, the moving part and the connecting structure, the staff can operate the handling device more flexibly, thereby accurately controlling the position of the tempered glass, which makes the handling process smoother and improves the work efficiency. In narrow spaces such as corridors or hallways, large handling equipment is often difficult to operate, while this small and compact handling device can easily enter these spaces to carry out the handling work of tempered glass. This strong adaptability enables the device to play a role in a variety of environments; 3. The design of the fixing part makes the fixing process relatively simple. The staff only needs to rotate the knob to fix the connecting plate and the pressing plate, without complex steps or tools, improving the convenience and efficiency of the operation; 4. By rotating the cap, the staff can quickly release the clamping of the splint on the tempered glass without complex tools or operation steps, which simplifies the handling process and improves the work efficiency. The quick release of the clamping means that the staff can complete the handling task more quickly, reducing the waiting time and operation steps, thereby improving the overall work efficiency and productivity. In addition, this design avoids the accidental release of the clamping during the handling process, such as accidental release caused by misoperation or external interference, because the release action requires rotating the threaded rod, which requires clear manual operation, reducing the risk of accidental release of the clamping and improving the safety of the operation. Description of the Drawings
[0017] Figure 1 It is a schematic structural diagram of the tempered glass handling device proposed by the present invention; Figure 2 It is a schematic structural diagram of the fixing part; Figure 3Schematic diagram of another perspective of the fixing part; Figure 4 is Figure 1 Enlarged view of the structure at position A of Figure 5 is Figure 2 Enlarged view of the structure at position B of Figure 6 Schematic diagram of the structure of the moving part; Figure 7 Cross-sectional schematic diagram of the moving part; Figure 8 is Figure 7 Enlarged view of the structure at position C of Figure 9 is Figure 7 Enlarged view of the structure at position D of
[0018] In the figure: 1 Fixing part, 2 Adsorption part, 3 Moving part; 101 Fixing frame, 102 Slideway, 103 Slide block, 104 Pressing plate, 105 Connecting plate, 111 Bracket, 112 Rotating shaft, 113 Cam, 114 Limiting ring, 115 Knob, 116 First spring, 117 Locking teeth; 201 Handle, 202 Suction cup, 203 Connecting frame; 301 Bottom plate, 302 Connecting rod, 303 Bracket, 304 Universal wheel, 305 Slide plate, 306 Second spring, 311 First opening, 312 Sliding plate, 313 Clamping plate, 314 Side plate, 315 Third spring, 321 Control block, 322 Second opening, 323 Slide rod, 324 Guide sleeve, 325 Vertical rod, 326 Fourth spring, 327 First driving plate, 328 Second driving plate, 331 Threaded port, 332 Threaded rod; 41 Belt, 42 Fixed seat, 43 Rotating seat, 44 Teeth, 45 Mounting frame. Detailed implementation manners
[0019] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments.
[0020] Referring to Figures 1-9 , the tempered glass handling device includes two fixing parts 1, two adsorption parts 2 and one moving part 3. The adsorption part 2 includes: a handle 201, on which a holding space is provided; two suction cups 202, which are respectively fixed at both ends of the handle 201; a connecting frame 203, which is fixed in the holding space of the handle 201, and a through hole is provided on the connecting frame 203 for the belt 41 to pass through to provide a limit for the belt 41; The fixing part 1 includes a fixing structure and a control structure. The fixing structure includes: a fixing frame 101, and the fixing frame 101 has an L-shaped structure; a slideway 102, and the slideway 102 is opened on the side surface of the fixing frame 101; a slider 103, and the slider 103 is slidably arranged in the slideway 102; a pressing plate 104, and the pressing plate 104 is fixed at one end of the slider 103; a connecting plate 105, and the connecting plate 105 is fixed at the other end of the slider 103. The control structure includes: a bracket 111, and the bracket 111 is fixed on the side surface of the fixing frame 101; a rotating shaft 112, and the rotating shaft 112 is rotatably installed on the bracket 111; a cam 113, and the cam 113 is fixedly sleeved on the rotating shaft 112, and the cam 113 is arranged opposite to the connecting plate 105; a limiting ring 114, and the limiting ring 114 is slidably sleeved on the rotating shaft 112; a knob 115, and the knob 115 is fixed at one end of the rotating shaft 112; a first spring 116, one end of the first spring 116 is connected to the bracket 111, and the other end is connected to the limiting ring 114; a plurality of teeth 117, and the plurality of teeth 117 are respectively opened on the limiting ring 114 and the knob 115. During the rotation of the cam 113, the connecting plate 105 can be extruded. When the connecting plate 105 is extruded, it can move, and the slider 103 and the pressing plate 104 will also move accordingly until the pressing plate 104 and the fixing frame 101 jointly clamp the tempered glass. At this time, the staff loosens the limiting ring 114, and the limiting ring 114 will reset under the action of the first spring 116, so that a plurality of teeth 117 on the limiting ring 114 are engaged with a plurality of teeth 117 on the knob 115. Under the limiting action of the limiting ring 114 and the plurality of teeth 117 thereon, the knob 115 and the rotating shaft 112 cannot rotate, and the positions of the cam 113, the connecting plate 105, the slider 103 and the pressing plate 104 will also be fixed. This design facilitates the staff to quickly fix the tempered glass by using the fixing frame 101 and the pressing plate 104; The moving part 3 includes a base structure, a clamping structure, a driving structure and an adjusting structure. The base structure includes: a base plate 301; four connecting rods 302, which are respectively fixed at the four corner positions on the top surface of the base plate 301; a bracket 303, which is fixed at the top ends of the four connecting rods 302, and the bracket 303 is of a U-shaped structure; universal wheels 304, which are installed on the bottom surface of the base plate 301; a sliding plate 305, which is slidably arranged on the bracket 303; two second springs 306, one ends of the two second springs 306 are respectively connected to the bracket 303, and the other ends are respectively connected to the sliding plate 305. The clamping structure includes: two first openings 311, both of which are opened on the bracket 303 and are arranged opposite to each other; two sliding plates 312, which are respectively slidably arranged in the two first openings 311; two clamping plates 313, which are respectively fixed at one ends of the two sliding plates 312 close to each other; two side plates 314, which are respectively fixed at one ends of the two sliding plates 312 away from each other; two third springs 315, one ends of the two third springs 315 are respectively connected to the bracket 303, and the other ends are respectively connected to the two side plates 314. The driving structure includes: a control block 321, which is fixed on the bottom surface of the sliding plate 305, and the control block 321 is composed of two mirror-image frustum structures; two second openings 322, both of which are opened on the bracket 303 and are arranged opposite to each other; two sliding rods 323, which are respectively slidably arranged in the two second openings 322; two guide sleeves 324, both of which are fixed on the side surface of the bracket 303; two vertical rods 325, which are respectively slidably connected to the two guide sleeves 324; two fourth springs 326, one ends of the two fourth springs 326 are respectively connected to the two guide sleeves 324; two first driving plates 327, which are respectively fixed at the bottom ends of the two vertical rods 325, the two first driving plates 327 are respectively connected to the other ends of the two fourth springs 326, and inclined surfaces are arranged on both of the two first driving plates 327; two second driving plates 328, which are respectively fixed at the top ends of the two vertical rods 325, and inclined surfaces are arranged on both of the two second driving plates 328. When the staff places the tempered glass on the sliding plate 305, the two clamping plates 313 can automatically approach each other and jointly clamp the tempered glass, playing a fixing role for the tempered glass and the bracket 303. In this case, the universal wheels 304 on the bottom surface of the base plate 301 facilitate the staff to move the tempered glass and carry out the handling work of the tempered glass. It is worth noting that the threaded rod 332 plays a limiting role in the position of the control block 321. When the bottom of the control block 321 falls on the top end of the threaded rod 332, both of the two sliding rods 323 are directly opposite to the middle of the control block 321. The adjusting structure includes: a threaded port 331 which is opened on the bottom surface of the bracket 303 and is disposed opposite to the control block 321; a threaded rod 332 which is threadedly sleeved in the threaded port 331. The bottom end of the threaded rod 332 extends to the outside of the threaded port 331 and is equipped with a knob. When the threaded rod 332 moves downward, the control block 321 resting on the threaded rod 332 will also move downward. Since the top dimension of the control block 321 is smaller than its middle dimension, when the control block 321 moves downward, the control block 321 no longer provides a squeezing force to the two sliding rods 323, and the two sliding rods 323 no longer apply force to the two driving plates one 327. At this time, the two driving plates one 327 will move downward and reset under the action of the two springs four 326, and the two sliding rods 323 will also reset accordingly. When the two driving plates one 327 move downward, they can also drive the two driving plates two 328 to move downward through the two vertical rods 325, so that the two driving plates two 328 no longer apply force to the two sliding plates 312, and the two sliding plates 312 will reset under the action of the two springs three 315, which makes the two clamping plates 313 move away from each other. Therefore, the staff can quickly release the clamping action of the two clamping plates 313 on the tempered glass by rotating the threaded rod 332; A connecting structure is arranged between the two fixing parts 1, and the connecting structure is connected to the two adsorption parts 2. The connecting structure includes: a binding band 41 which is fixed on the side surface of one of the fixing frames 101; a fixing seat 42 which is fixed on the binding band 41; a rotating seat 43 which is rotatably installed on the fixing seat 42, and there is a gap between the fixing seat 42 and the rotating seat 43. Anti-slip stripes are arranged on the side surface of the rotating seat 43; a plurality of teeth 44 which are all fixed on the rotating seat 43; a mounting frame 45 which is fixed on the side surface of the other fixing frame 101, and the mounting frame 45 is of a U-shaped structure. The staff adsorbs the four suction cups 202 on the two handles 201 on the surface of the tempered glass, then pulls the binding band 41 to make the binding band 41 pass through the two through holes on the two connecting frames 203. Then, the staff makes the binding band 41 pass through the two mounting frames 45, and then pulls the binding band 41 back to make the binding band 41 pass through the gap between the fixing seat 42 and the rotating seat 43. Then, the staff tightens the binding band 41 to make the binding band 41 in a taut state. Next, the staff presses the rotating seat 43 to make the rotating seat 43 buckle on the fixing seat 42. When the rotating seat 43 rotates, the plurality of teeth 44 thereon will rotate accordingly. When the rotating seat 43 buckles on the fixing seat 42, the plurality of teeth 44 can jointly press the binding band 41, so as to fix the binding band 41.
[0021] The specific working principle of the present invention is as follows: When the toughened glass handling device proposed by the present invention is in use, first, the staff fixes the two fixing parts 1 on both sides of the toughened glass respectively. Specifically, the staff fits the fixing frame 101 to the side of the toughened glass, and then pushes the limit ring 114, so that several teeth 117 on the limit ring 114 are separated from several teeth 117 on the knob 115. Without the restriction of the limit ring 114 and several teeth 117 thereon, the knob 115 can rotate freely. Then the staff rotates the knob 115, drives the rotating shaft 112 to rotate by using the knob 115, and when the rotating shaft 112 rotates, it can drive the cam 113 to rotate. During the rotation of the cam 113, it can squeeze the connecting plate 105. When the connecting plate 105 is squeezed, it can move, and the slider 103 and the pressing plate 104 will also move accordingly until the pressing plate 104 and the fixing frame 101 jointly clamp the toughened glass. At this time, the staff releases the limit ring 114, and the limit ring 114 will reset under the action of the first spring 116, so that several teeth 117 on the limit ring 114 are engaged with several teeth 117 on the knob 115. Under the limiting action of the limit ring 114 and several teeth 117 thereon, the knob 115 and the rotating shaft 112 cannot rotate, and the positions of the cam 113, the connecting plate 105, the slider 103 and the pressing plate 104 will also be fixed. This design facilitates the staff to quickly fix the toughened glass by using the fixing frame 101 and the pressing plate 104; Further, the staff adsorbs the four suction cups 202 on the two handles 201 on the surface of the toughened glass, and then pulls the strap 41 to make the strap 41 pass through the two connecting frames 203 on the two handles 201. Then, the staff makes the strap 41 pass through the two mounting frames 45, and then pulls back the strap 41 to make the strap 41 pass through the gap between the fixed seat 42 and the rotating seat 43. Then, the staff tightens the strap 41 to make the strap 41 in a tight state. Next, the staff presses the rotating seat 43 to make the rotating seat 43 buckle on the fixed seat 42. When the rotating seat 43 rotates, several teeth 44 thereon will rotate accordingly. When the rotating seat 43 buckles on the fixed seat 42, several teeth 44 can jointly press the strap 41, so as to play a role in fixing the strap 41. In this case, the strap 41 can play a role in connecting the two fixing frames 101, and the strap 41 passes through the two connecting frames 203 on the two handles 201. During the transportation of the toughened glass, when the suction cup 202 detaches from the toughened glass, the staff can still fix the toughened glass through the two handles 201, the strap 41 and the two fixing parts 1. This design provides an additional traction force for the toughened glass to prevent the toughened glass from tipping when the suction cup 202 detaches from the toughened glass; After fixing the two fixing parts 1 and the two adsorption parts 2, the staff use a lifting device to lift the tempered glass, or the tempered glass can also be lifted manually. The purpose is to separate the tempered glass from the ground. Then, the staff place the bracket 303 at the middle position of the bottom of the tempered glass and lower the tempered glass so that the tempered glass falls on the slide plate 305. In this case, the tempered glass will press down the slide plate 305, causing the slide plate 305 to move downward. When the slide plate 305 moves downward, it can drive the control block 321 to move downward. The control block 321 is composed of two mirror-image frustum structures. The cross-sectional dimension of the control block 321 gradually decreases from the middle to both ends, that is, the sizes of the two ends of the control block 321 are smaller than its middle size. In the initial state, under the elastic force of the two springs four 326, the guide sleeve 324 is located at the top of the vertical rod 325. At this time, the inclined surface of the driving plate one 327 will squeeze one end of the slide rod 323, making the other end of the slide rod 323 face the bottom of the control block 321. In this case, when the control block 321 moves downward, its lower half will squeeze the two slide rods 323, causing the two slide rods 323 to move away from each other. When the two slide rods 323 move away from each other, they can synchronously squeeze the inclined surfaces of the two driving plates one 327. When the inclined surfaces of the two driving plates one 327 are squeezed, they can move upward synchronously. The two vertical rods 325 and the two driving plates two 328 will also move upward synchronously. When the two driving plates two 328 move upward, their inclined surface parts will squeeze the facing sliding plates 312, which causes the two sliding plates 312 to approach each other. When the two sliding plates 312 approach each other, they can drive the two clamping plates 313 to approach each other until the two clamping plates 313 jointly clamp the tempered glass. Based on the above process, when the staff place the tempered glass on the slide plate 305, the two clamping plates 313 can automatically approach each other and jointly clamp the tempered glass, playing a fixing role for the tempered glass and the bracket 303. In this case, the universal wheels 304 on the bottom surface of the bottom plate 301 facilitate the staff to move the tempered glass and carry out the handling work of the tempered glass. It is worth noting that the threaded rod 332 plays a limiting role in the position of the control block 321. When the bottom of the control block 321 falls on the top of the threaded rod 332, both of the two slide rods 323 are facing the middle of the control block 321; Based on the above process, the staff use the two fixing parts 1 and the connection structure to fix the tempered glass, use the two adsorption parts 2 to fix the tempered glass, and use the moving part 3 to move the tempered glass, thereby completing the handling work of the tempered glass. The fixing part 1, the adsorption part 2, the moving part 3 and the connection structure are small in volume, which facilitates the staff to flexibly control the position of the tempered glass and is convenient for the staff to carry the tempered glass into narrow spaces such as corridors or hallways, which improves the flexibility of the handling device; After the tempered glass is transported to the designated position, the staff rotates the screw cap, and uses the screw cap to drive the rotation of the threaded rod 332. When the threaded rod 332 rotates, it can move downward. When the threaded rod 332 moves downward, the control block 321 resting on the threaded rod 332 will also move downward accordingly. Since the top dimension of the control block 321 is smaller than its middle dimension, when the control block 321 moves downward, the control block 321 no longer provides a squeezing force to the two sliding rods 323, and the two sliding rods 323 no longer apply force to the two driving plates one 327. At this time, the two driving plates one 327 will move downward and reset under the action of the two springs four 326, and the two sliding rods 323 will also reset accordingly. When the two driving plates one 327 move downward, they can also drive the two driving plates two 328 to move downward through the two vertical rods 325, so that the two driving plates two 328 no longer apply force to the two sliding plates 312, and the two sliding plates 312 will reset under the action of the two springs three 315. This causes the two clamping plates 313 to move away from each other. Therefore, the staff can quickly release the clamping action of the two clamping plates 313 on the tempered glass by rotating the threaded rod 332, which is convenient for removing the moving part 3 from the bottom of the tempered glass.
[0022] The above is only a preferred specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution and inventive concept of the present invention, makes equivalent substitutions or changes, and should be covered by the protection scope of the present invention.
Claims
1. A tempered glass conveying device, characterized in that: It comprises two fixed parts (1), two adsorption parts (2) and a movable part (3); The fixing part (1) comprises a fixing structure and a control structure; The moving part (3) comprises a base structure, a clamping structure, a driving structure and an adjusting structure; A connecting structure is provided between the two fixing parts (1), and the connecting structure is connected to the two adsorption parts (2).
2. The tempered glass conveying device according to claim 1, characterized in that: The fixed structure comprises: A fixing frame (101), wherein the fixing frame (101) is an L-shaped structure; A slideway (102), wherein the slideway (102) is provided on a side of the fixing frame (101); A slider (103), the slider (103) being slidably disposed in the slideway (102); A pressing plate (104), wherein the pressing plate (104) is fixed to one end of the sliding block (103); A connecting plate (105) is fixed to the other end of the sliding block (103).
3. The tempered glass conveying device according to claim 2, characterized in that: The control structure includes: A bracket (111), wherein the bracket (111) is fixed to a side surface of the fixing frame (101); A rotating shaft (112), wherein the rotating shaft (112) is rotatably mounted on the bracket (111); A cam (113), wherein the cam (113) is fixedly sleeved on the rotating shaft (112), and the cam (113) is arranged directly opposite to the connecting plate (105); A limiting ring (114), wherein the limiting ring (114) is slidably sleeved on the rotating shaft (112); A knob (115), wherein the knob (115) is fixed to one end of the rotating shaft (112); Spring 1 (116), one end of the spring 1 (116) being connected to the bracket (111), and the other end of the spring 1 (116) being connected to the limiting ring (114); A plurality of latch teeth (117), wherein the plurality of latch teeth (117) are respectively disposed on the limiting ring (114) and the knob (115).
4. The tempered glass conveying device according to claim 1, characterized in that: The adsorption part (2) comprises: A handle (201), wherein a gripping space is provided on the handle (201); Two suction cups (202), the two suction cups (202) being respectively fixed at two ends of the handle (201); A connecting frame (203), wherein the connecting frame (203) is fixed in the holding space of the handle (201), and a through opening is formed on the connecting frame (203).
5. The tempered glass conveying device according to claim 1, characterized in that: The bottom support structure comprises: Bottom plate (301); Four connecting rods (302), the four connecting rods (302) being respectively fixed at four corners of the top surface of the bottom plate (301); A bracket (303), wherein the bracket (303) is fixed to the top ends of the four connecting rods (302), and the bracket (303) is a U-shaped structure; A universal wheel (304), wherein the universal wheel (304) is mounted on the bottom surface of the bottom plate (301); A slide plate (305), wherein the slide plate (305) is slidably disposed on the bracket (303); Two springs (306), one end of each of the two springs (306) is connected to the bracket (303), and the other end of each of the two springs (306) is connected to the slide plate (305).
6. The tempered glass conveying device according to claim 5, characterized in that: The clamping structure comprises: Two openings one (311), the two openings one (311) are both opened on the bracket (303), and the two openings one (311) are arranged opposite to each other; Two sliding plates (312), the two sliding plates (312) being slidably disposed in the two openings (311) respectively; Two clamping plates (313), the two clamping plates (313) being respectively fixed to ends of the two sliding plates (312) that are close to each other; Two side plates (314), the two side plates (314) being respectively fixed to ends of the two sliding plates (312) that are away from each other; Two springs three (315), one end of each of the two springs three (315) is connected to the bracket (303), and the other end is respectively connected to the two side plates (314).
7. The tempered glass conveying device according to claim 6, characterized in that: The driving structure comprises: A control block (321), the control block (321) being fixed on the bottom surface of the slide plate (305), the control block (321) being composed of two mirror-image truncated cone structures; Two second openings (322), both of the second openings (322) are opened on the bracket (303), and the two second openings (322) are arranged opposite to each other; Two sliding rods (323), the two sliding rods (323) are respectively slidably disposed in the two second openings (322); Two guide sleeves (324), both of which are fixed on the side of the bracket (303); Two vertical rods (325), the two vertical rods (325) being slidably connected to the two guide sleeves (324) respectively; Two springs four (326), one end of each of the two springs four (326) being connected to the two guide sleeves (324) respectively; Two driving plates (327), the two driving plates (327) are respectively fixed to the bottom ends of the two vertical rods (325), the two driving plates (327) are respectively connected to the other ends of the two springs (326), and the two driving plates (327) are both provided with inclined surfaces; Two driving plates (328) are respectively fixed on the top ends of the two vertical rods (325), and both driving plates (328) are provided with inclined surfaces.
8. The tempered glass conveying device according to claim 7, characterized in that: The regulatory structure comprises: A threaded opening (331), wherein the threaded opening (331) is provided on the bottom surface of the bracket (303), and the threaded opening (331) is arranged directly opposite to the control block (321); A threaded rod (332), wherein the threaded rod (332) is threadedly sleeved in the threaded opening (331), and the bottom end of the threaded rod (332) extends to the outside of the threaded opening (331) and is provided with a screw cap.
9. The tempered glass conveying device according to claim 2, characterized in that: The connection structure comprises: A strap (41), wherein the strap (41) is fixed to a side surface of one of the fixing frames (101); A fixing seat (42), wherein the fixing seat (42) is fixed on the strap (41); A rotating seat (43), wherein the rotating seat (43) is rotatably mounted on the fixed seat (42), and a gap is provided between the fixed seat (42) and the rotating seat (43); A plurality of teeth (44), wherein the plurality of teeth (44) are all fixed on the rotating seat (43); A mounting frame (45), wherein the mounting frame (45) is fixed to a side surface of another fixing frame (101), and the mounting frame (45) is in a U-shaped structure.
10. The tempered glass conveying device according to claim 9, characterized in that: The side surface of the rotating seat (43) is provided with an anti-slip strip.
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