Fixture for LOW-E glass installation

By designing a clamping device with a detachable suction cup and mounting block, combined with a precision adjustment device and a locking mechanism, the problem that existing clamps cannot adapt to glasses of different sizes is solved, and an efficient, precise and stable clamping effect is achieved in glass processing.

CN223442147UActive Publication Date: 2025-10-17HEBEI SHOUJING GLASS PRODUCTS TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202423027923.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-09
Publication Date
2025-10-17
Estimated Expiration
2034-12-09

AI Technical Summary

Technical Problem

Existing Low-E glass installation fixtures cannot flexibly adapt to glass of different sizes, resulting in increased operational complexity, unstable clamping effects, and insufficient adjustment capabilities of the suction cup's vacuum speed, affecting processing accuracy and safety.

Method used

A clamping device consisting of a detachable suction cup and a mounting block is designed. Combined with a precision adjustment device and a locking mechanism, the suction cup can be moved horizontally and vertically. It can quickly adapt to glass of different specifications and accurately adjust the suction speed through components such as a fixed tube and a control sleeve to ensure stability and locking effect.

Benefits of technology

It improves the applicability and operating efficiency of the fixture, reduces human errors, ensures accurate glass positioning, avoids damage, and achieves high precision and stability in glass processing.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a LOW-E glass installation clamp which comprises a base, a clamping device is arranged on the base, the clamping device comprises a suction cup and an installation block, the suction cup is installed on the installation block, one end of the suction cup is connected with an adjusting device, and the adjusting device comprises a fixed pipe, a control sleeve, a connecting pipe, a middle through pipe, an adjusting sleeve, an adjusting rod, a movable rod and a through groove. The middle through pipe is arranged in the fixed pipe, the adjusting sleeve is arranged on the outer side of the adjusting rod in a sleeving mode through threads, the movable rod is arranged in the middle through pipe, the through grooves are formed in the side wall of the middle through pipe, and a locking mechanism is arranged on the outer side of the fixed pipe and comprises a movable block, a movable groove, a self-locking sleeve, a connecting plate, a control sleeve, a reset spring, a self-locking rod and a self-locking groove. The movable block is arranged on the inner side of the connecting plate, the movable groove is formed in the outer side of the self-locking sleeve, one end of the self-locking rod is connected with the outer wall of the control sleeve through the reset spring, and the multiple self-locking grooves are formed in the outer wall of the fixing pipe.
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Description

TECHNICAL FIELD

[0001] The utility model relates to glass installation technical field more specifically, it relates to the clamp for LOW-E glass installation. BACKGROUND

[0002] In the LOW-E glass processing industry, there are some key problems in the design of existing installation clamps, which directly affect the efficiency and safety of glass processing. First, the existing clamp structure is relatively fixed and cannot flexibly adapt to different sizes of glass, resulting in the need to frequently replace the clamp or use other auxiliary equipment for clamping during operation. This not only increases the complexity of the operation steps, but also reduces the scope of application of the equipment and the overall production efficiency. In addition, the design of this fixed structure requires the operator to spend extra time and effort to ensure the fixation and clamping of the glass when processing different specifications of glass, thereby increasing the risk of human error.

[0003] Secondly, although some equipment is equipped with a suction cup to assist in the positioning and clamping of the glass, the pipeline structure connecting the suction cup and the air pump is relatively simple and lacks the ability to flexibly adjust the suction speed. This means that when processing different specifications and thicknesses of glass, the suction force of the suction cup may not achieve the desired effect. Either the suction force is insufficient, causing the glass to move easily during processing, or the suction force is too strong, which may cause unnecessary damage to the glass.

[0004] In addition, although some equipment attempts to improve this defect by setting a device that can adjust the suction speed, the mechanism of these devices is often imperfect and has low structural stability. Due to equipment movement, vibration or other external factors, these devices are prone to looseness and displacement, resulting in the failure of suction speed adjustment and affecting the clamping effect and processing precision. SUMMARY

[0005] (I) Technical problem solved

[0006] In view of the problems existing in the prior art, the utility model provides a clamp for LOW-E glass installation to solve the technical problems mentioned in the background art.

[0007] (II) Technical solution

[0008] In order to achieve the above object, the utility model provides the following technical scheme: LOW E glass installation clamp, including the base, its characterized in be: the base is provided with clamping device, the clamping device includes sucking disc and mounting block, the sucking disc is detachably installed on the mounting block, the mounting block is set on the base top, one end of the sucking disc is connected with adjusting device, the adjusting device includes fixed pipe, control cover, connecting pipe, middle pipe, adjusting cover, adjusting lever, movable rod and through slot, the fixed pipe is connected in one end of sucking disc, the control cover both ends are connected with fixed pipe and connecting pipe and move, the middle pipe is fixedly arranged in the fixed pipe, the adjusting cover is set on the outside of adjusting lever through screw, the adjusting lever is connected in one end of movable rod, the movable rod is slidably arranged in the middle pipe, a plurality of through slots are formed in the lateral wall of the middle pipe, the fixed pipe outside is provided with locking mechanism, the locking mechanism includes movable block, movable slot, self-locking cover, connecting plate, control cover, return spring, self-locking rod and self-locking slot, the movable block is arranged on the inner side of connecting plate, and the movable block is slidably arranged in the movable slot, the movable slot is spirally formed on the outside of self-locking cover, the self-locking cover is slidably arranged on the outside of fixed pipe, the connecting plate is fixedly connected on one side of control cover, the control cover is rotatably arranged on the outside of fixed pipe, one end of self-locking rod is connected with the outer wall of control cover through return spring, the other end of self-locking rod is inserted into self-locking slot, a plurality of self-locking slots are formed on the outer wall of fixed pipe.

[0009] The utility model further sets up, the fixed pipe outside fixedly arranged with slide rail, the self-locking cover inside correspondingly formed with slide groove, the slide groove is matched with slide rail.

[0010] The utility model further sets up, the movable rod outside is formed with guide groove, the middle pipe inner wall is fixedly provided with guide rail, the guide rail is matched with guide groove.

[0011] The utility model further sets up, the adjusting cover outside fixedly arranged with connecting rod, the control cover inner wall is fixedly connected with the outer wall of adjusting cover through connecting rod.

[0012] The utility model further sets up, the base is movably equipped with slide frame, the second lead screw is rotatably arranged on the slide frame, the mounting block and second lead screw are movably connected through thread, the base is movably equipped with first lead screw, the slide frame and first lead screw are movably connected through thread, and the both ends of first lead screw and second lead screw are symmetrically provided with opposite threads.

[0013] The utility model further sets up, the base is detachably equipped with first motor, the slide frame is detachably equipped with second motor, the output end of first motor, the output end of first lead screw, one end of second motor and one end of second lead screw are all equipped with transmission wheel, the transmission wheel outside is equipped with transmission belt, and the above-mentioned parts provide stable power output and transmission effect for the movement of sucking disc.

[0014] The utility model further sets up, the base top detachably establishes hydraulic cylinder, hydraulic cylinder output end is equipped with hydraulic rod, the hydraulic rod bottom end is connected with the pressboard, the setting of above -mentioned components can be more stable to the clamping of glass.

[0015] The utility model further sets up, the base top detachably establishes hydraulic cylinder, hydraulic cylinder output end is equipped with hydraulic rod, the hydraulic rod bottom end is connected with the pressboard, the setting of above -mentioned components can be more stable to the clamping of glass.

[0016] (Three) beneficial effects

[0017] Compared with the prior art, the utility model provides a clamp for LOW-E glass installation, with the following

[0018] Beneficial effects:

[0019] 1. The beneficial effects of the clamping device are that the detachable suction cup and mounting block can quickly adapt to different sizes of glass, allowing the operator to adjust the equipment to match different specifications of glass, thereby improving the applicability and operation efficiency of the equipment. In addition, the horizontal and vertical movement ability of the suction cup mechanical system makes the positioning of the glass more accurate, reduces the risk of human error, and improves the precision and consistency of processing.

[0020] 2. The beneficial effects of the adjusting device are that a series of precise mechanical components, such as the fixed tube, control sleeve, connecting tube, middle tube, adjusting sleeve, adjusting rod, movable rod and through slot, realize accurate adjustment of the air suction speed. This design allows the operator to adjust the suction force of the suction cup according to the specifications and thickness of the glass to ensure that the glass does not move or is not damaged during processing. The threaded connection and guide rail design of the adjusting device ensure the stability and accuracy of the adjustment process, thereby improving the reliability and repeatability of processing.

[0021] 3. The beneficial effects of the locking mechanism are that the combination of the movable block, movable slot, self-locking sleeve, connecting plate, control sleeve, return spring, self-locking rod and self-locking slot realizes the locking and release of the adjusting device. This design ensures that the adjusting device remains stable after adjusting the air suction speed, preventing adjustment failure due to equipment movement or vibration. The reset function of the locking mechanism allows the operator to easily repeat the adjustment process without affecting the parameters already set, thereby improving the convenience and efficiency of operation. BRIEF DESCRIPTION OF DRAWINGS

[0022] Figure 1 It is the whole structure schematic diagram of the clamp for LOW-E glass installation in the utility model;

[0023] Figure 2It is the sectional view structural schematic diagram of the second motor part in the utility model;

[0024] Figure 3 It is the structural schematic diagram of the adjusting device and the locking mechanism part in the utility model;

[0025] Figure 4 It is the sectional view structural schematic diagram of the adjusting device and the locking mechanism part in the utility model;

[0026] Figure 5 It is Figure 4 It is the local amplification structural schematic diagram of A in the utility model;

[0027] Figure 6 It is the structural schematic diagram of the self-locking sleeve part in the utility model.

[0028] In the drawing: 1, base; 2, suction cup; 3, mounting block; 4, fixed pipe; 5, control sleeve; 6, connecting pipe; 7, middle pipe; 8, adjusting sleeve; 9, adjusting rod; 10, movable rod; 11, through slot; 12, movable block; 13, movable slot; 14, self-locking sleeve; 15, connecting plate; 16, control sleeve; 17, reset spring; 18, self-locking rod; 19, self-locking slot; 20, slide rail; 21, sliding groove; 22, guide groove; 23, guide rail; 24, connecting rod; 25, sliding frame; 26, second lead screw; 27, first lead screw; 28, first motor; 29, second motor; 30, transmission wheel; 31, transmission belt; 32, sliding groove; 33, moving wheel; 34, hydraulic cylinder; 35, hydraulic rod; 36, pressing plate. DETAILED DESCRIPTION

[0029] It should be noted that the embodiments in the present application and the features in the embodiments can be combined with each other without conflict.

[0030] It should be noted that, unless otherwise specified, all technical and scientific terms used in the present application have the same meaning as generally understood by those skilled in the art to which the present application belongs.

[0031] In the utility model, unless otherwise specified, the orientation such as "up, down" is generally for the direction shown in the drawing, or for the vertical, perpendicular or gravity direction; similarly, for the convenience of understanding and description, "left, right" is generally for the left and right shown in the drawing; "inner, outer" refers to the inner and outer relative to the contour of each component itself, but the above orientation words are not used to limit the utility model.

[0032] Please refer to Figures 1-6, a clamp for installing LOW-E glass includes a base 1, which is characterized in that: a clamping device is provided on the base 1, the clamping device includes a suction cup 2 and a mounting block 3, the suction cup 2 is detachably mounted on the mounting block 3, the mounting block 3 is arranged above the base 1, one end of the suction cup 2 is connected to an adjustment device, the adjustment device includes a fixed tube 4, a control sleeve 5, a connecting tube 6, a middle tube 7, an adjustment sleeve 8, an adjustment rod 9, a movable rod 10 and a through groove 11, the fixed tube 4 is connected to one end of the suction cup 2, the two ends of the control sleeve 5 are movably connected to the fixed tube 4 and the connecting tube 6 respectively, the middle tube 7 is fixedly arranged in the fixed tube 4, the adjustment sleeve 8 is movably sleeved on the outside of the adjusting rod 9 through a thread, the adjusting rod 9 is connected to one end of the movable rod 10, and the movable rod 10 is slidably arranged in the middle tube 7, multiple The through groove 11 is opened on the side wall of the middle through tube 7, and a locking mechanism is provided on the outside of the fixed tube 4. The locking mechanism includes a movable block 12, a movable groove 13, a self-locking sleeve 14, a connecting plate 15, a control sleeve 16, a return spring 17, a self-locking rod 18 and a self-locking groove 19. The movable block 12 is arranged on the inner side of the connecting plate 15, and the movable block 12 is slidably set in the movable groove 13. The movable groove 13 is spirally opened on the outside of the self-locking sleeve 14. The self-locking sleeve 14 is slidably set on the outside of the fixed tube 4. The connecting plate 15 is fixedly connected to one side of the control sleeve 16, and the control sleeve 16 is rotatably sleeved on the outside of the fixed tube 4. One end of the self-locking rod 18 is connected to the outer wall of the control sleeve 5 through the return spring 17, and the other end of the self-locking rod 18 is inserted into the self-locking groove 19. Multiple self-locking grooves 19 are opened on the outer wall of the fixed tube 4.

[0033] A slide rail 20 is fixedly provided on the outer side of the fixed tube 4 , and a slide groove 21 is correspondingly provided on the inner side of the self-locking sleeve 14 , and the slide groove 21 is adapted to the slide rail 20 .

[0034] A guide groove 22 is formed on the outer side of the movable rod 10 , and a guide rail 23 is fixedly formed on the inner wall of the central through tube 7 , and the guide rail 23 is adapted to the guide groove 22 .

[0035] A connecting rod 24 is fixedly provided on the outer side of the adjustment sleeve 8 , and the inner wall of the control sleeve 5 is fixedly connected to the outer wall of the adjustment sleeve 8 via the connecting rod 24 .

[0036] In this embodiment, when the air extraction speed needs to be adjusted, the control sleeve 16 is first rotated so that the control sleeve 16 drives the movable block 12 to rotate through the connecting plate 15, and then the movable block 12 rotates along the movable groove 13. Due to the spiral structure of the movable groove 13 and the adaptability of the movable block 12, the self-locking sleeve 14 slides along the slide rail 20 and the slide groove 21, and then the outer side of the self-locking rod 18 loses the limit of the inner wall of the self-locking sleeve 14, and then the control sleeve 5 is rotated, and then the control sleeve 5 drives the self-locking rod 18 to move. When the self-locking rod 18 is engaged, the side wall of the self-locking groove 19 squeezes one end of the self-locking rod 18. Due to the rounded structure design at the edge of the self-locking groove 19 and the end of the self-locking rod 18, one end of the self-locking rod 18 slides out of the self-locking groove 19, and the other end of the self-locking rod 18 drives the return spring 17 to stretch. At the same time, the control sleeve 5 drives the adjustment sleeve 8 to rotate through the connecting rod 24. Since the adjustment sleeve 8 and the adjustment rod 9 are movably connected by threads, and the guide rail 23 and the guide groove 22 cooperate to limit the movable rod 10, the movable rod 10 and the adjustment rod 9 are movably connected. The rod 9 will not rotate, and then the adjusting rod 9 will drive the movable rod 10 to slide along the guide rail 23 and the guide groove 22, and then the number of the through grooves 11 opened on the side wall of the middle tube 7 that are blocked by the movable rod 10 will change, and then the volume of gas passing through will change, thereby changing the speed of gas passing through, thereby achieving the purpose of adjusting the pumping speed. After the adjustment is appropriate, the rotation of the control sleeve 5 is stopped, and the return spring 17 drives the self-locking rod 18 to reset, so that one end of the self-locking rod 18 is inserted into the corresponding self-locking groove 19, and then the control sleeve 16 is rotated in the opposite direction. The control sleeve 16 will drive the movable block 12 to rotate through the connecting plate 15, and then the self-locking sleeve 14 slides and resets along the slide rail 20 and the slide groove 21 through the cooperation of the movable block 12 and the movable groove 13, and then the inner wall of the self-locking sleeve 14 will limit the outer end of the self-locking rod 18 again to prevent the self-locking rod 18 from moving, and then the self-locking rod 18 and the self-locking groove 19 cooperate to limit the control sleeve 5, thereby preventing the control sleeve 5 from rotating, thereby ensuring the stability after the flow rate adjustment.

[0037] See also Figures 1-3 As a further implementation method of the entire device: a sliding frame 25 is movably provided on the base 1, a second screw 26 is rotatably provided on the sliding frame 25, the mounting block 3 and the second screw 26 are movably connected by threads, a first screw 27 is movably provided on the base 1, the sliding frame 25 and the first screw 27 are movably connected by threads, and opposite threads are symmetrically provided at both ends of the first screw 27 and the second screw 26.

[0038] A first motor 28 is detachably provided on the base 1, and a second motor 29 is detachably provided on the sliding frame 25. A transmission wheel 30 is provided at the output end of the first motor 28, the output end of the first screw 27, one end of the second motor 29 and one end of the second screw 26. A transmission belt 31 is provided on the outside of the transmission wheel 30.

[0039] The base 1 is provided with a sliding groove 32, and the lower portion of the sliding frame 25 is detachably provided with a moving wheel 33 which is movably arranged in the sliding groove 32.

[0040] The top end of the base 1 is detachably provided with a hydraulic cylinder 34, and the output end of the hydraulic cylinder 34 is provided with a hydraulic rod 35, and the bottom end of the hydraulic rod 35 is connected with a pressing plate 36.

[0041] More specifically, when the device needs to be used, first, two first motors 28 installed on the base 1 are synchronously opened according to the length of the glass, the first motor 28 rotates through the transmission wheel 30 connected to the output end, then the transmission wheel 30 outside the transmission belt 31 drives the transmission wheel 30 connected to one end of the first lead screw 27 to rotate, then the corresponding transmission wheel 30 drives the first lead screw 27 to rotate synchronously, since the sliding frame 25 is movably connected with the first lead screw 27 through the thread, then the two sliding frames 25 will respectively drive the components installed above and the moving wheel 33 installed below to slide along the sliding groove 32 in opposite directions, so that the mounting block 3 drives the suction cup 2 to move horizontally, when the position of the suction cup 2 is adapted to the length of the glass, the first motor 28 is closed, then two second motors 29 installed on the sliding frame 25 are synchronously opened according to the width of the glass, then the two second motors 29 drive the transmission belt 31 outside the transmission belt 31 to run through the transmission wheel 30 connected to the output end, so that the transmission belt 31 drives the transmission wheel 30 connected to one end of the corresponding second lead screw 26 to rotate, then the transmission wheel 30 drives the second lead screw 26 to rotate, since the mounting block 3 is movably connected with the lead screw through the thread, then the mounting block 3 drives the suction cup 2 and the components arranged below to move in opposite directions, so that the suction cup 2 moves vertically, when the position of the suction cup 2 is adapted to the width of the glass, the second motor 29 is closed, then the glass is placed on the suction cup 2, then the external air pump is opened to perform air suction, so that the suction cup 2 adsorbs and clamps the glass, then the hydraulic cylinder 34 installed at the top end of the base 1 is opened, then the hydraulic rod 35 connected to the output end of the hydraulic cylinder 34 drives the pressing plate 36 to descend, so that the pressing plate 36 presses the glass, then the air cylinder is closed, then the external polishing equipment is opened to polish the side of the glass, after the polishing is completed, the overall device in the utility model can be driven to rotate by the external rotating equipment, so as to realize the polishing of the side wall of the glass.

[0042] In summary, when the overall device is in use or operation: when the air extraction speed needs to be adjusted, first rotate the control sleeve 16, so that the control sleeve 16 drives the movable block 12 through the connecting plate 15, then the movable block 12 will rotate along the movable groove 13, due to the spiral structure of the movable groove 13 and the adaptability of the movable block 12, then the self-locking sleeve 14 will slide along the slide rail 20 and the slide groove 21, then the outer side of the self-locking rod 18 will lose the limit of the inner wall of the self-locking sleeve 14, then rotate the control sleeve 5, then the control sleeve 5 will drive the self-locking rod 18 to move, then the side wall of the self-locking groove 19 will extrude one end of the self-locking rod 18, due to the design of the rounded structure of the edge of the self-locking groove 19 and the end of the self-locking rod 18, then one end of the self-locking rod 18 slides out of the self-locking groove 19, and the other end of the self-locking rod 18 will drive the return spring 17 to stretch, at the same time the control sleeve 5 will drive the adjusting sleeve 8 to rotate through the connecting rod 24, due to the threaded connection between the adjusting sleeve 8 and the adjusting rod 9, and the cooperation of the guide rail 23 and the guide groove 22 to limit the movement of the movable rod 10, so that the movable rod 10 and the adjusting rod 9 will not rotate, then the adjusting rod 9 will drive the movable rod 10 to slide along the guide rail 23 and the guide groove 22, then the number of through grooves 11 opened in the side wall of the middle pipe 7 blocked by the movable rod 10 will change, then the volume of the gas passing through will change, thereby changing the speed of the gas passing through, so as to achieve the purpose of adjusting the air extraction speed, after adjusting appropriately, stop rotating the control sleeve 5, and make the return spring 17 drive the self-locking rod 18 to reset, so that one end of the self-locking rod 18 is inserted into the corresponding self-locking groove 19, then rotate the control sleeve 16 in the opposite direction, the control sleeve 16 will drive the movable block 12 to rotate through the connecting plate 15, then the self-locking sleeve 14 will slide along the slide rail 20 and the slide groove 21 through the cooperation of the movable block 12 and the movable groove 13, then the inner wall of the self-locking sleeve 14 will limit the outer end of the self-locking rod 18 again, preventing the self-locking rod 18 from moving, then the self-locking rod 18 and the self-locking groove 19 cooperate to limit the control sleeve 5, thereby preventing the control sleeve 5 from rotating, thereby ensuring the stability of the flow rate after adjustment.

[0043] When the device needs to be used, firstly, two first motors 28 installed on the base 1 are opened synchronously according to the length of the glass, the first motor 28 rotates through the transmission wheel 30 connected at the output end, then the transmission wheel 30 outside the sleeve drives the transmission belt 31, and then the transmission belt 31 drives the transmission wheel 30 connected at one end of the first lead screw 27 to rotate, then the corresponding transmission wheel 30 drives the first lead screw 27 to rotate synchronously, since the sliding frame 25 is movably connected with the first lead screw 27 through the thread, then the two sliding frames 25 drive the components installed above and the moving wheels 33 installed below to slide oppositely along the sliding groove 32, so that the mounting block 3 drives the suction cup 2 to move in the horizontal direction, when the position of the suction cup 2 is adapted to the length of the glass, the first motor 28 is closed, then two second motors 29 installed on the sliding frame 25 are opened synchronously according to the width of the glass, then the two second motors 29 drive the transmission belt 31 outside the sleeve to run through the transmission wheel 30 connected at the output end, so that the transmission belt 31 drives the transmission wheel 30 connected at one end of the corresponding second lead screw 26 to rotate, then the transmission wheel 30 drives the second lead screw 26 to rotate, since the mounting block 3 is movably connected with the lead screw through the thread, then the mounting block 3 drives the suction cup 2 and the components arranged below to move oppositely, so that the suction cup 2 moves in the vertical direction, when the position of the suction cup 2 is adapted to the width of the glass, the second motor 29 is closed, then the glass is placed on the suction cup 2, then the external air pump is opened to perform air suction, so that the suction cup 2 adsorbs and clamps the glass, then the hydraulic cylinder 34 installed at the top end of the base 1 is opened, then the hydraulic cylinder 34 drives the pressing plate 36 to descend through the hydraulic rod 35 connected at the output end, so that the pressing plate 36 presses the glass tightly, then the air cylinder is closed, then the external polishing equipment is opened to polish the side edge of the glass, after the polishing is completed, the overall device in the utility model can be driven to rotate by the external rotating equipment, so that the polishing of the side wall of the glass is realized.

[0044] In all the schemes mentioned above, the connection between the two components can be selected according to the actual situation, such as welding, bolt and nut cooperation connection, bolt or screw connection or other known connection mode, which will not be described one by one, in the above, whenever the fixed connection is mentioned, the welding is preferred, although the embodiments of the utility model have been shown and described, those skilled in the art can understand that the embodiments can be changed, modified, replaced and modified in various ways without departing from the principles and spirits of the utility model, the scope of the utility model is defined by the appended claims and their equivalents.

Claims

1. A fixture for installing Low-E glass, comprising a base (1), characterized by: A clamping device is provided on the base (1), the clamping device comprises a suction cup (2) and a mounting block (3), the suction cup (2) is mounted on the mounting block (3), one end of the suction cup (2) is connected to an adjusting device, the adjusting device comprises a fixed tube (4), a control sleeve (5), a connecting tube (6), a central tube (7), an adjusting sleeve (8), an adjusting rod (9), a movable rod (10) and a through groove (11), the central tube (7) is provided in the fixed tube (4), the adjusting sleeve (8) is provided on the outside of the adjusting rod (9) through a threaded sleeve, the movable rod (10) is provided in the central tube (7), a plurality of through grooves (11) are provided on the side wall of the central tube (7), and a locking mechanism is provided on the outside of the fixed tube (4). The locking mechanism comprises a movable block (12), a movable groove (13), a self-locking sleeve (14), a connecting plate (15), a control sleeve (16), a return spring (17), a self-locking rod (18) and a self-locking groove (19); the movable block (12) is arranged on the inner side of the connecting plate (15); the movable groove (13) is opened on the outer side of the self-locking sleeve (14); the self-locking sleeve (14) is arranged on the outer side of the fixed tube (4); the connecting plate (15) is connected to one side of the control sleeve (16); the control sleeve (16) is sleeved on the outer side of the fixed tube (4); one end of the self-locking rod (18) is connected to the outer wall of the control sleeve (5) through the return spring (17); and a plurality of self-locking grooves (19) are opened on the outer wall of the fixed tube (4).

2. The Low-E glass installation fixture according to claim 1, wherein: A slide rail (20) is fixedly provided on the outside of the fixed tube (4), and a slide groove (21) is correspondingly provided on the inside of the self-locking sleeve (14), and the slide groove (21) is adapted to the slide rail (20).

3. The Low-E glass installation fixture according to claim 1, wherein: A guide groove (22) is provided on the outer side of the movable rod (10), and a guide rail (23) is fixedly provided on the inner wall of the central tube (7), and the guide rail (23) is adapted to the guide groove (22).

4. The Low-E glass installation fixture according to claim 3, wherein: A connecting rod (24) is fixedly provided on the outside of the adjustment sleeve (8), and the inner wall of the control sleeve (5) is fixedly connected to the outer wall of the adjustment sleeve (8) via the connecting rod (24).

5. The Low-E glass installation fixture according to any one of claims 1 to 4, characterized in that: A sliding frame (25) is movably provided on the base (1), a second screw (26) is rotatably provided on the sliding frame (25), the mounting block (3) and the second screw (26) are movably connected via a thread, a first screw (27) is movably provided on the base (1), the sliding frame (25) and the first screw (27) are movably connected via a thread, and opposite threads are symmetrically provided at both ends of the first screw (27) and the second screw (26).

6. The Low-E glass installation fixture according to claim 5, characterized in that: A first motor (28) is detachably provided on the base (1), and a second motor (29) is detachably provided on the sliding frame (25). A transmission wheel (30) is provided at the output end of the first motor (28), the output end of the first lead screw (27), one end of the second motor (29), and one end of the second lead screw (26). A transmission belt (31) is sleeved on the outer side of the transmission wheel (30).

7. The Low-E glass installation fixture according to claim 6, wherein: A sliding groove (32) is provided on the base (1), and a movable wheel (33) is detachably provided below the sliding frame (25), and the movable wheel (33) is movably arranged in the sliding groove (32).

8. The Low-E glass installation fixture according to claim 7, characterized in that: A hydraulic cylinder (34) is detachably provided at the top of the base (1), a hydraulic rod (35) is provided at the output end of the hydraulic cylinder (34), and a pressure plate (36) is connected to the bottom end of the hydraulic rod (35).