Vertical glass frame assembly

By designing a vertical glass frame assembly, the combination of support frame and control components is used to solve the problem of footprint and labor costs caused by horizontal design, and the single-person operation of the rear windshield is fixed.

CN223279224UActive Publication Date: 2025-08-29GUANGDONG YUZHENG EQUIP MFG CO LTD
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Patent Information

Application Number
CN202422856777.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-22
Publication Date
2025-08-29
Estimated Expiration
2034-11-22

AI Technical Summary

Technical Problem

The existing rear windshield workpiece of the car adopts a horizontal design, resulting in an over-the-top footprint, and two staff members are required to work together during operation, increasing labor costs.

Method used

A vertical glass frame assembly is designed, including a support frame, a support assembly, an adsorption assembly, a fixing assembly and a control assembly, to support the rear windshield by providing a support assembly on the inclined panel of the support frame, and to use the control assembly to control the adsorption assembly and a fixing assembly to fix the rear windshield.

Benefits of technology

It has achieved the reduction of the demand for footprint and reduced labor costs, so that the rear windshield can be fixed by a single person.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of automobile assembly, in particular to a vertical glass frame assembly which comprises a supporting frame, a supporting assembly, an adsorption assembly, a first fixing assembly and a control assembly. An inclined panel is arranged at the top of the support frame; the supporting assembly, the adsorption assembly and the first fixing assembly are all arranged on the top face of the inclined panel, and the supporting assembly is used for supporting a rear windshield; the adsorption assembly is used for adsorbing a rear windshield; the first fixing assembly is used for pressing the rear windshield; the control assembly is electrically connected with the adsorption assembly and the first fixing assembly. A worker only needs to control the adsorption assembly to suck the rear windshield through the control assembly and then control the first fixing assembly to press the rear windshield from the top, and then the rear windshield can be fixed. The problems that due to the fact that an existing automobile rear windshield tool is designed in a horizontal mode, the occupied area is too large, two workers need to work cooperatively in the operation process, and the labor cost is increased are solved.
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Description

Technical Field

[0001] The utility model relates to the technical field of automobile assembly, in particular to a vertical glass frame assembly. Background Art

[0002] During the automobile manufacturing process, the rear windshield of the car needs to be assembled with other parts after being tempered and formed to meet the requirements of vehicle installation. The current glass tooling adopts a horizontal design, resulting in excessive floor space and requiring two workers to work together during operation, resulting in increased labor costs. Utility Model Content

[0003] In order to solve the problem that the current automobile rear windshield tooling adopts a horizontal design, which causes the floor space to be too large and requires two workers to work together during operation, resulting in increased labor costs.

[0004] The utility model provides a vertical glass frame assembly, comprising a support frame, a support component, an adsorption component, a first fixing component and a control component; an inclined panel is provided on the top of the support frame; the support component is arranged on the top surface of the inclined panel, and the support component is used to support the rear windshield; the adsorption component is arranged on the top surface of the inclined panel, and the adsorption component is used to adsorb the rear windshield; the first fixing component is arranged on the top surface of the inclined panel, and the adsorption component is used to press the rear windshield; the control component is electrically connected to the adsorption component and the first fixing component, and the control component is used to control the adsorption component and the first fixing component to fix the rear windshield.

[0005] Preferably, the support assembly includes a first support member, a support frame, a pad, a limit member and a pressure sensor; one end of the first support member is fixed to the inclined panel, and the other end is fixedly connected to the bottom of the support frame, the shape of the support frame matches that of the rear windshield, a pad is provided on the top of the support frame, the limit member is fixed to the outside of the support frame, the pressure sensor is located at the top of the support frame, the pressure sensor is electrically connected to the control assembly, the rear windshield presses the pressure sensor and is placed above the support frame.

[0006] Preferably, the adsorption assembly includes a second support member, a first drive member, a connecting member, a suction cup, a second drive member and a support rod; the bottom end of the second support member is fixed to the inclined panel, the first drive member and the second drive member are cylinders or electric cylinders and are both electrically connected to the control assembly, the cylinder end of the first drive member and the cylinder end of the second drive member are respectively fixed on both sides of the second support member, the connecting member is fixed to the piston rod end of the first drive member, the suction cup is fixed to the top end of the connecting member, the suction cup is electrically connected to the control assembly, and the support rod is fixed to the piston rod end of the second drive member.

[0007] Preferably, the first fixed component includes a first slide rail, a first slider, a connecting plate, a third drive member, a third support member, a fourth drive member, a pressure member and a mechanical sensor; the first slide rail is fixed to the inclined panel, the first slider is slidably connected to the first slide rail, the bottom surface of the connecting plate is fixedly connected to the first slider, the third drive member and the fourth drive member are both cylinders or electric cylinders and are electrically connected to the control component, the cylinder end of the third drive member is fixed to the inclined panel, the piston rod end of the third drive member is fixedly connected to the connecting plate, the fixed bottom end of the third support member is fixed to the top surface of the connecting plate, the cylinder end of the fourth drive member is fixed to the third support member, the piston rod end of the fourth drive member is fixedly connected to the pressure member, the mechanical sensor is fixed to the inclined panel and electrically connected to the control component, and the mechanical sensor is used to detect the position of the connecting plate.

[0008] Preferably, the vertical glass frame assembly also includes a second fixed component, the second fixed component includes a second slide rail, a second slider, a fourth support, a first fixed component, a transmission rod, a rotating block, a fifth driving component and a limit block; the second slide rail is fixedly connected to the inclined panel, the second slider is slidably connected to the second slide rail, the bottom surface of the fourth support and the second slider are fixedly connected, the first fixed component is fixedly connected to the top surface of the fourth support, one end of the transmission rod is hinged to the fourth support, the other end of the transmission rod is hinged to the rotating block, the center of the rotating block is pinned to the inclined panel, the fifth driving component is a cylinder or an electric cylinder and is electrically connected to the control component, the cylinder end of the fifth driving component is fixed to the inclined panel, the piston rod end of the fifth driving component is hinged to the rotating block, and the limit block is fixed to the inclined panel near the rotating block.

[0009] Preferably, the vertical glass frame assembly also includes a third fixing component, which includes a fifth support member, a sixth drive member, and a second fixing member. The bottom of the fifth support member is fixed to the inclined panel, the sixth drive member is a cylinder or an electric cylinder and is electrically connected to the control component, the cylinder end of the sixth drive member is fixed to the top of the fifth support member, and the piston rod end of the sixth drive member is fixedly connected to the second fixing member.

[0010] Preferably, the vertical glass frame assembly further includes a detection component, which includes a fixedly connected photoelectric sensor and a base, the photoelectric sensor is electrically connected to the control component, and the photoelectric sensor is used to detect the position of the rear windshield.

[0011] Preferably, the base includes a sixth support member, a first adjustment member, an adapter plate, a seventh drive member and a pad. The sixth support member is fixed to the inclined panel, the first adjustment member and the sixth support member are pinned, and the first adjustment member rotates back and forth around the hinge of the sixth support member; the first adjustment member and the adapter plate are pinned, and the adapter plate rotates left and right around the first adjustment member; the seventh drive member is a pneumatic cylinder or an electric cylinder, the cylinder end of the seventh drive member is fixed to the adapter plate, and the piston rod end of the seventh drive member is fixedly connected to the pad; the photoelectric sensor is fixedly connected to the top of the pad.

[0012] Preferably, there are at least two pads, a connecting groove is provided on one side of the pad, a connecting screw is provided on the other side of the pad, a trapezoidal tenon is provided on the top of the pad, and a trapezoidal mortise is provided on the bottom of the pad. The trapezoidal tenon and the trapezoidal mortise fit together, and the length direction of the trapezoidal tenon is the same as the length direction of the connecting screw.

[0013] Preferably, the control assembly includes a control button, the support frame is provided with a third slide rail, the third slide rail is provided with a sliding member, and the control button is located on the control assembly.

[0014] The beneficial effect of the present invention is that by providing an inclined panel on the support frame and a support assembly on the inclined panel to support the rear windshield, a worker can simply control the suction assembly to suck the rear windshield through the control assembly and then control the first fixing assembly to press the rear windshield from the top to fix the rear windshield. This solves the problem that the current automobile rear windshield fixture adopts a horizontal design, resulting in excessive floor space occupation and requiring two workers to work together, which increases labor costs. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 The utility model provides a three-dimensional diagram of a vertical glass frame assembly.

[0016] Figure 2 This is a three-dimensional diagram of the vertical glass frame assembly provided by the utility model after fixing the rear windshield.

[0017] Figure 3 This is a three-dimensional diagram of the support assembly provided by the utility model.

[0018] Figure 4 This is a three-dimensional diagram of the adsorption component provided by the utility model.

[0019] Figure 5 This is a three-dimensional diagram of the first fixing assembly provided by the present invention.

[0020] Figure 6 This is a three-dimensional diagram of the second fixing assembly provided by the present invention.

[0021] Figure 7 This is a three-dimensional diagram of the third fixing assembly provided by the present invention.

[0022] Figure 8 This is a three-dimensional diagram of the detection component provided by the utility model.

[0023] In the figure: 1-support frame; 11-tilt panel; 12-third slide rail; 13-sliding member; 2-support assembly; 21-first support member; 22-support frame; 23-pad; 24-limiting member; 25-pressure sensor; 3-rear windshield; 4-adsorption assembly; 41-second support member; 42-first driving member; 43-connecting member; 44-suction cup; 45-second driving member; 46-support rod; 5-first fixing assembly; 51-first slide rail; 52-first slider; 53-connecting plate; 54-third driving member; 55-third support member; 56-fourth driving member; 57-pressing member; 58-mechanical sensor; 6-control group Parts; 61-control button; 7-second fixing component; 71-second slide rail; 72-second slider; 73-fourth support member; 74-first fixing member; 75-transmission rod; 76-rotating block; 77-fifth driving member; 78-limiting block; 8-third fixing component; 81-fifth support member; 82-sixth driving member; 83-second fixing member; 9-detection component; 91-photoelectric sensor; 92-base; 921-sixth support member; 922-first adjusting member; 923-adapter plate; 924-seventh driving member; 925-pad; 926-connecting groove; 927-connecting screw; 928-trapezoidal tenon; 929-trapezoidal mortise. DETAILED DESCRIPTION

[0024] The following will be combined with the drawings in the embodiments of this application to clearly and completely describe the technical solutions in the embodiments of this application. Obviously, the embodiments described are only part of the embodiments of this application, not all of the embodiments. Based on the embodiments in this application, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of this application.

[0025] Reference Figures 1-8 A vertical glass frame assembly includes a support frame 1, a support component 2, an adsorption component 4, a first fixing component 5 and a control component 6; an inclined panel 11 is provided on the top of the support frame 1; the support component 2 is provided on the top surface of the inclined panel 11, and the support component 2 is used to support the rear windshield 3; the adsorption component 4 is provided on the top surface of the inclined panel 11, and the adsorption component 4 is used to adsorb the rear windshield 3; the first fixing component 5 is provided on the top surface of the inclined panel 11, and the adsorption component 4 is used to press the rear windshield 3; the control component 6 is electrically connected to the adsorption component 4 and the first fixing component 5, and the control component 6 is used to control the adsorption component 4 and the first fixing component 5 to fix the rear windshield 3.

[0026] By providing an inclined panel 11 on the support frame 1 and a support assembly 2 on the inclined panel 11 to support the rear windshield 3, a worker only needs to control the suction assembly 4 to suck the rear windshield 3 through the control assembly 6, and then control the first fixing assembly 5 to press the rear windshield 3 from the top to fix the rear windshield 3. This solves the problem that the current horizontal design of the rear windshield 3 tooling of automobiles takes up too much space and requires two workers to work together, which increases labor costs.

[0027] In some embodiments, as Figure 3 As shown, the support assembly 2 includes a first support member 21, a support frame 22, a pad 23, a limit member 24 and a pressure sensor 25; one end of the first support member 21 is fixed to the inclined panel 11, and the other end is fixedly connected to the bottom of the support frame 22, the support frame 22 matches the shape of the rear windshield 3, a pad 23 is provided on the top of the support frame 22, the limit member 24 is fixed to the outside of the support frame 22, the pressure sensor 25 is located at the top of the support frame 22, the pressure sensor 25 is electrically connected to the control assembly 6, and the rear windshield 3 presses the pressure sensor 25 and is placed above the support frame 22.

[0028] The first support member 21 serves to adjust the position and height of the support frame 22, which supports the rear windshield 3 from the edge; the pad 23 is supported by a soft material, such as rubber or sponge, which serves to buffer and increase friction to prevent the glass from sliding; the limit member 24 is fixed to the outer side of the left and right sides and the bottom of the support frame 22, which serves to support and limit the rear windshield 3 to prevent the rear windshield 3 from sliding and being damaged when the rear windshield 3 is placed at an angle.

[0029] In some embodiments, as Figure 4 As shown, the adsorption component 4 includes a second support member 41, a first drive member 42, a connecting member 43, a suction cup 44, a second drive member 45 and a support rod 46; the bottom end of the second support member 41 is fixed to the inclined panel 11, the first drive member 42 and the second drive member 45 are cylinders or electric cylinders and are both electrically connected to the control component 6, the cylinder end of the first drive member 42 and the cylinder end of the second drive member 45 are respectively fixed to the two sides of the second support member 41, the connecting member 43 is fixed to the piston rod end of the first drive member 42, the suction cup 44 is fixed to the top end of the connecting member 43, the suction cup 44 is electrically connected to the control component 6, and the support rod 46 is fixed to the piston rod end of the second drive member 45.

[0030] The support rod 46 is used to support the rear windshield 3. The top of the support rod 46 is provided with a rubber soft sleeve, which plays a role of buffering and increasing friction to prevent the glass from sliding; the suction cup 44 is an electric suction cup, and the rear windshield 3 is placed on the top of the support rod 46. The rear windshield 3 compresses the suction cup 44, and the control component 6 drives the suction cup 44 to adsorb and fix the rear windshield 3. The first drive member 42 and the second drive member 45 synchronously drive the suction cup 44 and the support rod 46 to move downward until the edge of the rear windshield 3 abuts the support frame 22. The pressure sensor 25 detects the pressure exerted by the glass and transmits the information to the control component 6. When the pressure reaches the set pressure value, the control component 6 controls the first drive member 42 and the second drive member 45 to stop moving downward, so that the rear windshield 3 is stably placed above the support frame 22.

[0031] In some embodiments, as Figure 5 As shown, the first fixed component 5 includes a first slide rail 51, a first slider 52, a connecting plate 53, a third driving member 54, a third support member 55, a fourth driving member 56, a pressure member 57 and a mechanical sensor 58; the first slide rail 51 is fixed to the tilting panel 11, the first slider 52 is slidably connected to the first slide rail 51, the bottom surface of the connecting plate 53 is fixedly connected to the first slider 52, the third driving member 54 and the fourth driving member 56 are both cylinders or electric cylinders and are electrically connected to the control component 6, the cylinder end of the third driving member 54 is fixed to the tilting panel 11, the piston rod end of the third driving member 54 is fixedly connected to the connecting plate 53, the fixed bottom end of the third support member 55 is fixed to the top surface of the connecting plate 53, the cylinder end of the fourth driving member 56 is fixed to the third support member 55, the piston rod end of the fourth driving member 56 is fixedly connected to the pressure member 57, the mechanical sensor 58 is fixed to the tilting panel 11 and electrically connected to the control component 6, and the mechanical sensor 58 is used to detect the position of the connecting plate 53.

[0032] The first fixing assembly 5 is located on the outside of the supporting assembly 2. After the rear windshield 3 is placed on the supporting frame 22, the third driving member 54 pulls the connecting plate 53 toward the side close to the rear windshield 3. The mechanical sensor 58 is used to detect whether the connecting plate 53 has reached the set position. Specifically, the mechanical sensor 58 adopts a limit switch, and the limit switch is installed at the set position of the connecting plate 53. When the connecting plate 53 moves to the set position, the connecting plate 53 touches the trigger rod or button of the limit switch. After triggering, the circuit inside the limit switch changes, and the limit switch electrically connected to the limit switch is turned on. The control component 6 detects the change and determines that the connecting plate 53 has reached the set position, and accordingly controls the third driving member 54 to stop moving. At this time, the pressure member 57 is located directly above the support frame 22; then the fourth driving member 56 drives the pressure member 57 to move downward to press the rear windshield 3, and the pressure sensor 25 detects the pressure applied by the glass and transmits the information to the control component 6. When the set pressure value is reached, the control component 6 controls the fourth driving member 56 to stop moving. At this time, the pressure applied by the pressure member 57 just presses the rear windshield 3 without causing damage to the rear windshield 3.

[0033] In some embodiments, as Figure 6 As shown, the vertical glass frame assembly also includes a second fixing component 7, which includes a second slide rail 71, a second slider 72, a fourth support member 73, a first fixing member 74, a transmission rod 75, a rotating block 76, a fifth driving member 77 and a limit block 78; the second slide rail 71 is fixedly connected to the tilting panel 11, the second slider 72 is slidably connected to the second slide rail 71, the bottom surface of the fourth support member 73 and the second slider 72 are fixedly connected, the first fixing member 74 is fixedly connected to the top surface of the fourth support member 73, one end of the transmission rod 75 is hinged to the fourth support member 73, the other end of the transmission rod 75 is hinged to the rotating block 76, the center of the rotating block 76 is pinned to the tilting panel 11, the fifth driving member 77 is a pneumatic cylinder or an electric cylinder and is electrically connected to the control component 6, the cylinder end of the fifth driving member 77 is fixed to the tilting panel 11, the piston rod end of the fifth driving member 77 is hinged to the rotating block 76, and the limit block 78 is fixed to the tilting panel 11 near the rotating block 76.

[0034] The fifth driving member 77 rotates the rotating block 76, which in turn moves the transmission rod 75. The transmission rod 75 then drives the fourth support member 73 to slide along the second slide rail 71, thereby sliding the first fixing member 74. The first fixing member 74 clamps the rear windshield 3 at its outer edge. A stopper 78 limits the rotation range of the rotating block 76, thereby controlling the sliding distance of the first fixing member 74. The second fixing assembly 7 utilizes a single driving member to drive both first fixing members 74, thus saving energy.

[0035] Further, such as Figure 7As shown, the vertical glass frame assembly also includes a third fixing component 8, which includes a fifth support member 81, a sixth drive member 82, and a second fixing member 83. The bottom of the fifth support member 81 is fixed to the tilting panel 11, the sixth drive member 82 is a cylinder or an electric cylinder and is electrically connected to the control component 6, the cylinder end of the sixth drive member 82 is fixed to the top of the fifth support member 81, and the piston rod end of the sixth drive member 82 is fixedly connected to the second fixing member 83.

[0036] The sixth driving member 82 drives the second fixing member 83 to move, and the second fixing member 83 clamps the rear windshield 3 from the outer edge thereof. The third fixing assembly 8 has a simple structure, a small operating space, and flexible positioning, and is disposed in a place that the second fixing assembly 7 cannot reach.

[0037] In some embodiments, as Figure 8 As shown, the vertical glass frame assembly also includes a detection component 9, which includes a fixedly connected photoelectric sensor 91 and a base 92. The photoelectric sensor 91 is electrically connected to the control component 6, and the photoelectric sensor 91 is used to detect the position of the rear windshield 3.

[0038] Furthermore, the base 92 includes a sixth support member 921, a first adjusting member 922, an adapter plate 923, a seventh driving member 924 and a pad 925. The sixth support member 921 is fixed to the inclined panel 11, the first adjusting member 922 and the sixth support member 921 are pinned together, and the first adjusting member 922 rotates back and forth around the hinge of the sixth support member 921; the first adjusting member 922 and the adapter plate 923 are pinned together, and the adapter plate 923 rotates left and right around the first adjusting member 922; the seventh driving member 924 is a pneumatic cylinder or an electric cylinder, the cylinder end of the seventh driving member 924 is fixed to the adapter plate 923, and the piston rod end of the seventh driving member 924 is fixedly connected to the pad 925; the photoelectric sensor 91 is fixedly connected to the top of the pad 925.

[0039] Specifically, the sixth support member 921 and the first adjustment member 922 are both concave structures. The bottom end of the sixth support member 921 is fixedly connected to the inclined panel 11. The two sides of the sixth support member 921 are pinned to the two sides of the first adjustment member 922. The six support member 921 is provided with a first arc hole on both sides with the pin connection as the center. The first adjustment member 922 is provided with a first fixing hole on both sides. The first arc hole and the first fixing hole are bolted together to fix the first adjustment member 922. The first adjustment member 922 is provided with a second arc hole on the side with the pin connection as the center. The adapter plate 923 is provided with a second fixing hole. The second arc hole and the second fixing hole are bolted together to fix the adapter plate 923. Adjusting the position of the first adjustment member 922 and the adapter plate 923 changes the position of the photoelectric sensor 91. The height of the photoelectric sensor 91 is adjusted by raising and lowering the piston rod of the seventh drive member 924.

[0040] More specifically, the pad 925 is provided with at least two, such as Figure 8 As shown, a connecting groove 926 is provided on one side of the pad 925, a connecting screw 927 is provided on the other side of the pad 925, a trapezoidal tenon 928 is provided on the top of the pad 925, and a trapezoidal mortise 929 is provided on the bottom of the pad 925. The trapezoidal tenon 928 and the trapezoidal mortise 929 fit together, and the length direction of the trapezoidal tenon 928 is the same as the length direction of the connecting screw 927.

[0041] The trapezoidal tenon 929 of the upper pad 925 is aligned with the trapezoidal tenon 928 of the lower pad 925 and slides along the trapezoidal tenon 928 until the connecting screw 927 of the upper pad 925 is inserted into the connecting groove 926 of the lower pad 925. The connecting screw 927 is then tightened with a bolt to complete the fixed connection between the upper and lower pads 925. The use of the mortise and tenon connection makes the structure more secure, and only a single bolt is needed to secure the pad 925, making it easier to assemble the pad 925.

[0042] In some embodiments, as Figure 1 As shown, the control assembly 6 includes a control button 61 , the support frame 1 is provided with a third slide rail 12 , the third slide rail 12 is provided with a sliding member 13 , and the control button 61 is located on the control assembly 6 .

[0043] Since the support frame 1 is relatively large, the control button 61 is set on the sliding member 13 to facilitate the staff to move the sliding member 13 to a suitable position for operation according to personal habits or the conditions of the work site.

[0044] In the description of the embodiments of the present invention, it should be understood that the terms "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "center", "top", "bottom", "top", "bottom", "inside", "outside", "inner side", "outer side" and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the present invention. Among them, "inside" refers to an internal or enclosed area or space. "Periphery" refers to the area surrounding a specific component or specific area.

[0045] In the description of the embodiments of the present invention, the terms "first," "second," "third," and "fourth" are used for descriptive purposes only and should not be understood to indicate or imply relative importance or implicitly specify the number of the technical features indicated. Therefore, a feature specified as "first," "second," "third," or "fourth" may explicitly or implicitly include one or more of such features. In the description of the present invention, unless otherwise specified, "plurality" means two or more.

[0046] Although the embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A vertical glass frame assembly, characterized by: include: A support frame, wherein the top of the support frame is provided with an inclined panel; a support assembly, provided on the top surface of the inclined panel, for supporting the rear windshield; an adsorption component, provided on the top surface of the inclined panel, for adsorbing the rear windshield; a first fixing assembly, provided on the top surface of the inclined panel, for pressing the rear windshield; The control component is electrically connected to the adsorption component and the first fixing component, and is used to control the adsorption component and the first fixing component to fix the rear windshield.

2. The vertical glass frame assembly according to claim 1, characterized in that: The support assembly includes a first support member, a support frame, a pad, a limit member and a pressure sensor; one end of the first support member is fixed to the inclined panel, and the other end is fixedly connected to the bottom of the support frame, the support frame and the rear windshield match in shape, a pad is provided on the top of the support frame, the limit member is fixed to the outside of the support frame, the pressure sensor is located at the top of the support frame, the pressure sensor is electrically connected to the control assembly, and the rear windshield presses the pressure sensor and is placed above the support frame.

3. The vertical glass frame assembly according to claim 2, characterized in that: The adsorption assembly includes a second support member, a first drive member, a connecting member, a suction cup, a second drive member and a support rod; the bottom end of the second support member is fixed to the inclined panel, the first drive member and the second drive member are air cylinders or electric cylinders and are electrically connected to the control assembly, the cylinder end of the first drive member and the cylinder end of the second drive member are respectively fixed on both sides of the second support member, the connecting member is fixed to the piston rod end of the first drive member, the suction cup is fixed to the top end of the connecting member, the suction cup is electrically connected to the control assembly, and the support rod is fixed to the piston rod end of the second drive member.

4. The vertical glass frame assembly according to claim 3, characterized in that: The first fixed component includes a first slide rail, a first slider, a connecting plate, a third drive member, a third support member, a fourth drive member, a pressure member and a mechanical sensor; the first slide rail is fixed to the inclined panel, the first slider is slidably connected to the first slide rail, the bottom surface of the connecting plate is fixedly connected to the first slider, the third drive member and the fourth drive member are both air cylinders or electric cylinders and are electrically connected to the control component, the cylinder end of the third drive member is fixed to the inclined panel, the piston rod end of the third drive member is fixedly connected to the connecting plate, the fixed bottom end of the third support member is fixed to the top surface of the connecting plate, the cylinder end of the fourth drive member is fixed to the third support member, the piston rod end of the fourth drive member is fixedly connected to the pressure member, the mechanical sensor is fixed to the inclined panel and electrically connected to the control component, and the mechanical sensor is used to detect the position of the connecting plate.

5. The vertical glass frame assembly according to claim 1, characterized in that: It also includes a second fixed assembly, the second fixed assembly includes a second slide rail, a second slider, a fourth support member, a first fixed member, a transmission rod, a rotating block, a fifth driving member and a limit block; the second slide rail is fixedly connected to the inclined panel, the second slider is slidably connected to the second slide rail, the bottom surface of the fourth support member and the second slider are fixedly connected, the first fixed member is fixedly connected to the top surface of the fourth support member, one end of the transmission rod is hinged to the fourth support member, the other end of the transmission rod is hinged to the rotating block, the center of the rotating block is pinned to the inclined panel, the fifth driving member is a cylinder or an electric cylinder and is electrically connected to the control assembly, the cylinder end of the fifth driving member is fixed to the inclined panel, the piston rod end of the fifth driving member is hinged to the rotating block, and the limit block is fixed to the inclined panel near the rotating block.

6. The vertical glass frame assembly according to claim 5, characterized in that: It also includes a third fixing component, which includes a fifth support member, a sixth drive member, and a second fixing member. The bottom of the fifth support member is fixed to the inclined panel. The sixth drive member is a pneumatic cylinder or an electric cylinder and is electrically connected to the control component. The cylinder end of the sixth drive member is fixed to the top of the fifth support member, and the piston rod end of the sixth drive member is fixedly connected to the second fixing member.

7. The vertical glass frame assembly according to claim 1, characterized in that: It also includes a detection component, which includes a fixedly connected photoelectric sensor and a base. The photoelectric sensor is electrically connected to the control component, and the photoelectric sensor is used to detect the position of the rear windshield.

8. The vertical glass frame assembly according to claim 7, characterized in that: The base includes a sixth support member, a first adjustment member, an adapter plate, a seventh drive member and a pad. The sixth support member is fixed to the inclined panel. The first adjustment member and the sixth support member are pin-connected, and the first adjustment member rotates back and forth around the hinge of the sixth support member; the first adjustment member and the adapter plate are pin-connected, and the adapter plate rotates left and right around the first adjustment member; the seventh drive member is a pneumatic cylinder or an electric cylinder, the cylinder end of the seventh drive member is fixed to the adapter plate, and the piston rod end of the seventh drive member is fixedly connected to the pad; the photoelectric sensor is fixedly connected to the top of the pad.

9. The vertical glass frame assembly according to claim 8, characterized in that: There are at least two pads, one side of the pad is provided with a connecting groove, the other side of the pad is provided with a connecting screw, the top of the pad is provided with a trapezoidal tenon, the bottom of the pad is provided with a trapezoidal mortise, the trapezoidal tenon and the trapezoidal mortise fit together, and the length direction of the trapezoidal tenon is the same as the length direction of the connecting screw.

10. The vertical glass frame assembly according to claim 1, characterized in that: The control component includes a control button, the support frame is provided with a third slide rail, the third slide rail is provided with a sliding member, and the control button is located on the control component.