Automobile skylight glass mounting tool
By designing a stable component and auxiliary positioning component with adjustable positioning pins, the problem that the existing automotive sunroof glass installation tooling cannot adapt to different vehicle sizes is solved, and the tooling is high versatility and assembly accuracy are achieved.
Patent Information
- Application Number
- CN202510518431.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-24
- Publication Date
- 2025-05-23
- Estimated Expiration
- 2045-04-24
AI Technical Summary
The positioning pin design of the existing automotive sunroof glass installation tool cannot flexibly adapt to the size differences of different models, resulting in increased production costs and working hours, and the height of the positioning pin is unadjustable, reducing the versatility of the tooling.
Design a vehicle sunroof glass installation tool for including a stable assembly and an auxiliary positioning assembly. Through the multiple positioning columns and locking nut structures of the stable assembly, the position and height of the positioning pins are flexible, and the electric push rod and positioning plate structure of the auxiliary positioning assembly is ensured to ensure the accurate installation path of the sunroof glass.
It realizes flexible adjustment of positioning pins, adapts to the sunroof frame size of different models, reduces the need to replace tooling, improves the versatility and assembly accuracy of tooling, and reduces assembly errors and rework.
Smart Images

Figure CN120024430A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of automobile sunroof glass installation tooling, in particular to an automobile sunroof glass installation tooling. Background Art
[0002] The automotive sunroof glass installation tool is a core device used to achieve precise assembly of the sunroof glass and the roof frame. It ensures that the installation position and angle meet the design requirements through physical limiting and clamping functions. The tool is usually composed of a support frame, a clamping module and a positioning assembly. Among them, the positioning pin structure is a key positioning component that directly affects the assembly accuracy. The positioning pin is precisely inserted into the preset threaded hole of the sunroof frame with a columnar protrusion structure, and the horizontal displacement of the frame is limited by rigid contact, providing a stable reference for subsequent glass bonding and bolt fixing, thereby avoiding sealing failure or assembly misalignment caused by frame offset.
[0003] However, the design of the locating pins has significant limitations in actual applications. Their positions are usually preset based on the size of the sunroof frame of a single vehicle model. If they need to be adapted to different vehicle models, it is often necessary to replace the tooling or reprocess the base, which increases production costs and working hours. Although some tooling can achieve micro-adjustment of the locating pins through waist-shaped holes or slide rail structures, their displacement range is still difficult to cover the size differences of multiple vehicle models. In addition, the height of the locating pins is usually not adjustable. When the curvature of the roof or the height of the frame mounting surface changes due to vehicle model design, it is necessary to use gaskets or overall tooling modifications to adapt to the changes. The lack of flexibility reduces the versatility of the sunroof glass installation tooling.
[0004] Therefore, a kind of automobile sunroof glass installation tool is proposed. Summary of the invention
[0005] The object of the present invention is to provide a vehicle sunroof glass installation tool to solve the problems raised in the above background technology.
[0006] To achieve the above-mentioned purpose, the present invention provides the following technical scheme: a car sunroof glass installation tool, including an installation tool, on which a plurality of stabilizing components are symmetrically arranged, the stabilizing components comprising a chassis, the chassis is rotatably connected to the top surface of the installation tool, a cross slot is opened on the chassis, a sliding shaft is slidably connected inside the cross slot, a slot plate is sleeved on the sliding shaft, a positioning column is fixedly arranged on the slot plate, a locking nut is threadedly connected to the outer surface of the positioning column, a plurality of support rods are fixedly connected to the top surface of the locking nut, a limit sleeve is commonly fixedly connected to the top of the plurality of support rods, a plurality of guide columns are slidably connected to the top surface of the positioning column in an annular array, an end of the guide column away from the axis of the positioning column is fixedly connected to an inclined plate, and an end of the guide column away from the inclined plate is fixedly connected to a limiting arc plate, each guide column is sleeved with a spring, a positioning pin is inserted into the positioning column, an inclined surface is arranged on the top of the inclined plate, an inclined surface corresponding to the inclined plate is arranged on the inner side of the limiting sleeve, and four threaded fixing holes are equidistantly arranged along the circumferential direction on the chassis.
[0007] Furthermore, four auxiliary positioning components are symmetrically arranged on the installation tooling, and the auxiliary positioning components include a supporting rotating plate rotatably connected to the installation tooling, an end of the supporting rotating plate away from the installation tooling is fixedly connected to an electric push rod, and a positioning plate is fixedly connected to the telescopic end of the electric push rod, the bottom of the positioning plate is symmetrically rotatably connected to two L-shaped rotating rods, and the bottom of the positioning plate is symmetrically fixedly connected to two limit blocks, and four U-shaped plates are symmetrically fixedly connected to the installation tooling, and the four U-shaped plates are respectively arranged corresponding to the positions of the four supporting rotating plates, and two guide shafts are symmetrically slidably connected to the U-shaped plate, and the two guide shafts on the same U-shaped plate are fixedly connected to an inclined block on their respective sides close to each other, and a spring 2 is sleeved on the guide shaft, and the two ends of the spring 2 are respectively fixedly connected to the U-shaped plate and the guide shaft.
[0008] Furthermore, the top surface of the chassis is flush with the top surface of the installation tooling, and a cross-shaped slide groove having the same shape as the cross groove is provided on the slot plate, and the slide shaft slides in the cross groove and the cross-shaped slide groove of the slot plate at the same time.
[0009] Furthermore, a side of the limiting arc plate away from the inclined plate is provided with an anti-slip texture.
[0010] Furthermore, two ends of the spring 1 are respectively fixedly connected to the positioning column and the adjacent limiting arc plate.
[0011] Furthermore, one end of the electric push rod fixedly connected to the supporting rotating plate is a fixed end, and one end of the electric push rod away from the supporting rotating plate is a telescopic end.
[0012] Furthermore, the upper portion of the positioning plate is arranged obliquely, and the bottom portion of the positioning plate is arranged vertically.
[0013] Compared with the prior art, the present invention has the following beneficial effects: The position and height of the positioning pins can be flexibly adjusted through the stabilizing components, and can be flexibly adjusted according to the size of the sunroof frame of different models, no longer limited to the preset size of a single model. In the mixed-line production scenario of multiple models, the position and height of the positioning pins can be quickly adjusted to adapt to different models, reducing the need to replace the installation tooling due to changes in the model, and improving the versatility of the installation tooling; After adjusting the position of the locating pin, the position and height of the locating pin can be locked to ensure the stability of the locating pin during assembly and reduce assembly errors and rework. By setting up an auxiliary positioning component, when installing the sunroof glass, the sunroof glass can be guided by the positioning plate, and the installation path of the sunroof glass can be guided and corrected by the positioning plate to ensure that the edge of the sunroof glass is aligned with the edge of the sunroof frame, thereby improving the fit between the sunroof frame and the sunroof glass assembly. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 It is a three-dimensional schematic diagram of the overall structure of the present invention; Figure 2 For the present invention Figure 1 The enlarged schematic diagram at A in the middle; Figure 3 For the present invention Figure 1 The enlarged schematic diagram of point B in the middle; Figure 4 It is a structural schematic diagram of the L-shaped rotating rod and the limit block of the present invention; Figure 5 It is a three-dimensional schematic diagram of the installation tooling, chassis and other structures of the present invention; Figure 6 For the present invention Figure 5 The enlarged schematic diagram at C in the middle; Figure 7 It is a three-dimensional schematic diagram of the installation tooling, support rotating plate and other structures of the present invention; Figure 8 For the present invention Figure 7 The enlarged schematic diagram at D in the middle; Fig. 9 It is a three-dimensional schematic diagram of the chassis, sliding shaft, groove plate and other structures of the present invention; Fig.10 It is a three-dimensional schematic diagram of the structures such as the positioning column, the guide column, and the inclined plate of the present invention; Fig.11 It is a three-dimensional schematic diagram of the structures such as the limiting arc plate and the positioning pin of the present invention.
[0015] In the figure: 11, installation tool; 12, skylight frame; 13, skylight glass; 21, chassis; 22, cross slot; 23, sliding shaft; 24, slotted plate; 25, positioning column; 26, locking nut; 27, support rod; 28, limiting sleeve; 29, guide column; 210, inclined plate; 211, limiting arc plate; 212, spring 1; 213, positioning pin; 214, threaded fixing hole; 31, support rotating plate; 32, electric push rod; 33, positioning plate; 34, L-shaped rotating rod; 35, limit block; 36, U-shaped plate; 37, guide shaft; 38, inclined block; 39, spring 2. DETAILED DESCRIPTION
[0016] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0017] Embodiments provided by the present invention: Example
[0018] like Figure 1 as well as Figures 5 to 11 As shown, a vehicle sunroof glass installation tool includes an installation tool 11, and the installation tool 11 is used to limit the position and stabilize the sunroof frame 12 when the sunroof glass 13 is installed on the sunroof frame 12.
[0019] The skylight frame 12 and the skylight glass 13 are of the prior art, and a plurality of threaded holes are distributed on the skylight frame 12 .
[0020] The installation tool 11 is provided with a plurality of stabilizing components for limiting and stabilizing the skylight frame 12 in a rectangular array, the stabilizing components including a chassis 21, the chassis 21 is rotatably connected to the top surface of the installation tool 11, a cross slot 22 is provided on the chassis 21, a sliding shaft 23 is slidably connected inside the cross slot 22, a slot plate 24 is sleeved on the sliding shaft 23, a positioning column 25 is fixedly provided on the outer side of the slot plate 24, a locking nut 26 is sleeved on the outer side of the positioning column 25, a plurality of support rods 27 are fixedly connected to the top surface of the locking nut 26, a plurality of support rods 27 are fixedly connected to the top ends of the plurality of support rods 27 are fixedly connected to a limiting sleeve 28, a plurality of guide columns 29 are slidably connected to the top surface of the positioning column 25 in a ring array, an end of the guide column 29 away from the axis of the positioning column 25 is fixedly connected to an inclined plate 210, and an end of the guide column 29 away from the inclined plate 210 is fixedly connected to a limiting arc plate 211, each guide column 29 is sleeved with a spring 212, and a positioning pin 213 is inserted into the positioning column 25.
[0021] The top surface of the chassis 21 is flush with the top surface of the installation tool 11 , and the chassis 21 is embedded in the installation tool 11 .
[0022] like Fig. 9 As shown, four threaded fixing holes 214 are equidistantly arranged on the chassis 21 along the circumferential direction. After the bolts are screwed into the threaded fixing holes 214 and the bottoms of the bolts are in contact with the installation tooling 11, the chassis 21 can be fixed to prevent the chassis 21 from rotating relative to the installation tooling 11.
[0023] The groove plate 24 is provided with a cross-shaped slide groove having the same shape as the cross groove 22 . The slide shaft 23 slides in the cross groove 22 and the cross-shaped slide groove of the groove plate 24 at the same time, and the slide shaft 23 can rotate in the cross-shaped slide groove of the groove plate 24 .
[0024] The locking nut 26 is threadedly connected to the positioning column 25 , and a rubber pad is provided at the bottom of the locking nut 26 .
[0025] like Fig.10 , Fig.11 As shown, inclined surfaces are provided on the inner side of the limit sleeve 28 and the top of the inclined plate 210, and the inclined surfaces of the limit sleeve 28 and the inclined plate 210 are provided correspondingly, and the inclined plate 210 is located on the downward movement path of the limit sleeve 28. Specifically, when the limit sleeve 28 moves downward and contacts the inclined plate 210, the inclined surface of the limit sleeve 28 contacts the inclined surface of the inclined plate 210.
[0026] like Fig. 9 , Fig.10 As shown, a side of the limiting arc plate 211 away from the inclined plate 210 is provided with an anti-slip texture.
[0027] like Fig.10 , Fig.11 As shown, two ends of the spring 1 212 are fixedly connected to the upper surface of the positioning column 25 and the adjacent limiting arc plate 211 respectively.
[0028] The positioning pin 213 is an existing structure, and the user can replace the positioning pin 213 with a matching one according to the size of the threaded hole of the skylight frame 12 .
[0029] The coordination of the structures including the chassis 21, the cross slot 22, the sliding shaft 23, and the groove plate 24 is as follows: the sliding shaft 23 slides in the cross slot 22 and the cross-shaped sliding groove of the groove plate 24, so that the relative position of the chassis 21 and the groove plate 24 can be changed. At the same time, by rotating the chassis 21 and the groove plate 24, the position of the positioning column 25 can be adjusted, and by cooperating with the sliding shaft 23 through the groove plate 24, the positioning pins 213 on two adjacent positioning columns 25 can be brought close to each other, so as to adapt to two adjacent threaded holes on the skylight frame 12.
[0030] In the initial stage of the stabilizing assembly, when the positioning pin 213 is not inserted into the threaded hole on the skylight frame 12, the internal structural states of the stabilizing assembly are as follows: The sliding shaft 23 is located at the central position of the cross groove 22 and the cross-shaped sliding groove of the groove plate 24. Structures such as the groove plate 24 and the positioning column 25 are located at the exact center of the chassis 21. The bottom surface of the locking nut 26 does not contact the top surface of the chassis 21 and the installation tooling 11. The limiting sleeve 28 does not contact and fit with the inclined plate 210. The first spring 212 does not generate elastic deformation. The limiting arc plate 211 does not contact the positioning pin 213. The positioning pin 213 is in a state of not moving upward inside the positioning column 25.
[0031] When the stabilizing assembly limits and stabilizes the skylight frame 12, first, the user determines the number and distribution positions of the threaded holes on the skylight frame 12. Subsequently, multiple stabilizing assemblies are adjusted according to the number and distribution positions of the threaded holes on the skylight frame 12, so that the adjusted multiple positioning pins 213 can accurately be inserted into the multiple threaded holes on the skylight frame 12.
[0032] First, the user can adjust the position of the positioning pin 213 according to the position of the threaded hole on the skylight frame 12. Specifically, the user can move the positioning column 25 in the required direction. At this time, the positioning pin 213 is driven to move together. During this process, the position adjustment of the positioning column 25 and the positioning pin 213 can be realized through the cooperation of structures such as the chassis 21, the cross groove 22, the sliding shaft 23, and the groove plate 24.
[0033] And multiple stabilizing assemblies are arranged on the installation tooling 11 and can adapt to the positions of the threaded holes on skylight frames 12 of different models.
[0034] When the positioning pin 213 moves to a position corresponding to the threaded hole on the skylight frame 12, the user pulls out the positioning pin 213 from the positioning column 25 by the required length, so that the positioning pin 213 moves upward on the positioning column 25 to the height required by the user. Subsequently, the user rotates and moves the locking nut 26 downward on the positioning column 25 by a tool (such as a hex wrench), that is, the user tightens the locking nut 26 downward. As the locking nut 26 is in threaded fit with the positioning column 25, when the locking nut 26 moves to contact the top surface of the chassis 21 and the top surface of the installation tooling 11, at this time, the locking nut 26 cannot continue to move downward. The locking nut 26 generates frictional force between the top surface of the chassis 21 and the top surface of the installation tooling 11 through the rubber pad at the bottom. The frictional force will hinder the movement of the positioning column 25 and the chassis 21, so that the position of the positioning column 25 is fixed.
[0035] When the locking nut 26 moves downward, the locking nut 26 drives the limiting sleeve 28 to move downward synchronously through the support rod 27. When the limiting sleeve 28 moves downward, the limiting sleeve 28 moves downward until its inclined surface contacts the inclined surface of the inclined plate 210, and as the limiting sleeve 28 continues to move downward, the limiting sleeve 28 squeezes the inclined plate 210, so that the inclined plate 210 pushes the guide column 29 and the limiting arc plate 211 to move toward the center of the positioning column 25. At this time, the spring 1 212 is stretched, and as the limiting arc plate 211 moves, the limiting arc plate 211 gradually contacts the center of the positioning column 25. The limiting sleeve 28 touches and squeezes the side wall of the positioning pin 213. When the limiting sleeve 28 moves to its vertical surface and contacts the inclined plate 210, the inclined plate 210 no longer pushes the guide column 29 and the limiting arc plate 211 to move. As the locking nut 26 locks the position of the positioning column 25, the state of the limiting arc plate 211 and the positioning pin 213 being squeezed and contacted is locked synchronously, and then the positioning pin 213 is clamped and fixed by multiple limiting arc plates 211, and the anti-slip texture on the inner surface of the limiting arc plate 211 makes the length of the positioning pin 213 extending out of the positioning column 25 fixed.
[0036] When the user has completed the adjustment of multiple stabilizing components, the user directly aligns the threaded holes on the sunroof frame 12 with the positioning pins 213, so that the multiple positioning pins 213 are inserted into the multiple threaded holes on the sunroof frame 12. At this time, the stabilizing components complete the limiting and stabilizing of the sunroof frame 12.
[0037] When multiple stable components are used, if there are extra unused stable components, the extra unused stable components are as follows: Figure 8 The state shown in the right side of the stabilizing component is specifically: the positioning pin 213 on the unused stabilizing component has not moved upward, and the height of the positioning pin 213 is lower, which will not affect the used stabilizing component and the skylight frame 12.
[0038] When adjusting the position of the positioning column 25, if the locking nut 26 only contacts the top surface of the chassis 21 after moving downward (that is, the locking nut 26 does not contact the top surface of the chassis 21 and the top surface of the installation tool 11 at the same time), the external bolt can be screwed into the threaded fixing hole 214 on the chassis 21 so that the bolt contacts the installation tool 11, and the chassis 21 can be fixed, thereby locking the position of the positioning column 25.
[0039] Since the installation tool 11 usually handles large quantities of skylight frames 12 of the same model when limiting and stabilizing the skylight frames 12, when different models of skylight frames 12 need to be limited and stabilized, the user only needs to adjust the stabilizing component so that the positioning pin 213 corresponds to the position of the threaded hole on the different models of skylight frames 12. Specifically: when installing the skylight glass 13 on the same model of skylight frame 12, it is only necessary to adjust the stabilizing component during the first installation, and the adjusted stabilizing component is universal for the same model of skylight frames 12.
[0040] When it is necessary to readjust the stabilizing assembly, the user can rotate the locking nut 26 upward and remove the bolt in the threaded fixing hole 214. At this time, the locking nut 26 no longer restricts the movement of the positioning column 25. At the same time, as the locking nut 26 moves upward, the locking nut 26 drives the limiting sleeve 28 to move upward until it no longer conflicts with the inclined plate 210. At this time, under the elastic contraction of the spring 1 212, the limiting arc plate 211 is pulled until it no longer conflicts with the side wall of the positioning pin 213. At this time, the positioning pin 213 can be adjusted up and down in the positioning column 25.
[0041] In summary, during the use of the stabilizing component, the position and height of the locating pin 213 can be flexibly adjusted through the stabilizing component, and can be flexibly adjusted according to the size of the sunroof frame 12 of different models, and is no longer limited to the preset size of a single model. In the mixed-line production scenario of multiple models, the position and height of the locating pin 213 can be quickly adjusted to adapt to different models, reducing the need to replace the installation tooling 11 due to changes in model changes, thereby improving the versatility of the installation tooling 11.
[0042] At the same time, after adjusting the position of the positioning pin 213, the position and height of the positioning pin 213 can be locked, thereby ensuring the stability of the positioning pin 213 during the assembly process and reducing assembly errors and rework. Example
[0043] like Figures 1 to 5 as well as Figure 7 As shown, four auxiliary positioning components for positioning and guiding the sunroof glass 13 are symmetrically arranged on the installation tool 11, and the auxiliary positioning components include a supporting rotating plate 31, and the supporting rotating plate 31 is rotatably connected to the side wall of the installation tool 11. The end of the supporting rotating plate 31 away from the installation tool 11 is fixedly connected to an electric push rod 32, and the end of the electric push rod 32 connected to the supporting rotating plate 31 is a fixed end, and the end of the electric push rod 32 away from the supporting rotating plate 31 is a telescopic end. The telescopic end of the electric push rod 32 is fixedly connected to a positioning plate 33, and the bottom of the positioning plate 33 is symmetrically rotatably connected Two L-shaped rotating rods 34 are connected, and two limit blocks 35 are symmetrically fixedly connected to the bottom of the positioning plate 33. Four U-shaped plates 36 are symmetrically fixedly connected to the installation tool 11. The four U-shaped plates 36 are respectively arranged corresponding to the positions of the four supporting rotating plates 31. Two guide shafts 37 are symmetrically slidably connected to the U-shaped plate 36. The ends of the two guide shafts 37 on the same U-shaped plate 36 that are close to each other are fixedly connected with an inclined block 38. A spring 2 39 is sleeved on the guide shaft 37, and the two ends of the spring 2 39 are respectively fixedly connected to the U-shaped plate 36 and the guide shaft 37.
[0044] like Figure 1 , Figure 5 as well as Figure 7As shown, the upper part of the positioning plate 33 is inclined and the bottom is vertical.
[0045] As Figure 3 shown, when the user rotates the end of the L-shaped rotating rod 34 away from the positioning plate 33 until it is placed vertically downward and then controls the telescopic movement of the electric push rod 32, so that the L-shaped rotating rod 34 fits against the inner surface of the skylight frame 12. At this time, the position adjustment of the positioning plate 33 is completed. When installing the skylight glass 13, the skylight glass 13 can be guided by the positioning plate 33.
[0046] As Figure 3 shown, the limiting block 35 is located below the position where the L-shaped rotating rod 34 is rotatably connected to the positioning plate 33. The function of the limiting block 35 is: when the end of the L-shaped rotating rod 34 away from the positioning plate 33 is vertically downward, the limiting block 35 can abut against the L-shaped rotating rod 34 to ensure that the L-shaped rotating rod 34 remains vertically downward and will not continue to rotate.
[0047] When the skylight glass 13 needs to be installed on the skylight frame 12, the user rotates the L-shaped rotating rod 34 upward, so that the end of the L-shaped rotating rod 34 away from the positioning plate 33 rotates upward from the vertically downward state to the vertically upward state. At this time, the L-shaped rotating rod 34 is no longer on the installation path of the skylight glass 13, thus ensuring the smooth installation of the skylight glass 13.
[0048] As Figure 4 shown, after the L-shaped rotating rod 34 is rotated and adjusted upward, the limiting block 35 limits the L-shaped rotating rod 34 to prevent the L-shaped rotating rod 34 from continuing to rotate, so that the end of the L-shaped rotating rod 34 away from the positioning plate 33 remains in the vertically upward state.
[0049] As Figure 1 、 Figure 2 shown, the distance between the U-shaped plate 36 and the inclined block 38 is adapted to the thickness of the supporting rotating plate 31. That is, when the supporting rotating plate 31 drives the electric push rod 32 to rotate close to the skylight frame 12, the supporting rotating plate 31 can be simultaneously in contact with and abutted against the U-shaped plate 36 and the two inclined blocks 38, so that the supporting rotating plate 31 is clamped and limited by the U-shaped plate 36 and the two inclined blocks 38, ensuring that the bottom of the supporting rotating plate 31 and the positioning plate 33 is in a vertical state.
[0050] Among them: the function of the inclined surface provided on the inclined block 38 is: when the supporting rotating plate 31 rotates upward, the supporting rotating plate 31 can abut against the inclined surfaces of the two inclined blocks 38, and can squeeze the two inclined blocks 38 and make them move away from each other. Thus, the supporting rotating plate 31 can rotate between the inclined block 38 and the U-shaped plate 36.
[0051] In the initial state of the auxiliary positioning component, that is, when the installation tooling 11 does not limit the skylight frame 12 and the skylight frame 12 does not need to install the skylight glass 13, the states of each structure inside the auxiliary positioning component are as follows: The end of the support rotating plate 31 away from the installation tool 11 is rotated downward, and the user does not adjust the telescopic end of the electric push rod 32, and the spring 2 39 does not produce elastic deformation.
[0052] When the auxiliary positioning component is in use, when the installation tool 11 first limits a certain model of sunroof frame 12, the user rotates the support rotating plate 31 upwards. During this process, the support rotating plate 31 contacts the inclined surfaces of the two inclined blocks 38, so that the two inclined blocks 38 push the corresponding guide shafts 37 to both sides, and then the spring 2 39 is elastically stretched. When the support rotating plate 31 continues to rotate to a vertical state, the support rotating plate 31 will fit with the inner surface of the U-shaped plate 36. At this time, the support rotating plate 31 no longer contacts the inclined surfaces of the inclined blocks 38, and then under the elastic extension action of the spring 2 39, the two inclined blocks 38 are pushed back to their original position by the spring 2 39. At this time, the support rotating plate 31 is clamped and limited by the U-shaped plate 36 and the two inclined blocks 38, and maintains a vertical state.
[0053] Then rotate the L-shaped rotating rod 34 to a vertical downward position, and adjust the telescopic end of the electric push rod 32 so that the L-shaped rotating rod 34 fits and contacts the inner surface of the sunroof frame 12. After completion, the user rotates the L-shaped rotating rod 34 upward by one hundred and eighty degrees so that the L-shaped rotating rod 34 is not located on the installation path of the sunroof glass 13.
[0054] After the four auxiliary positioning components are adjusted, the positioning plate 33 can guide the sunroof glass 13 during the placement of the sunroof glass 13 .
[0055] When the auxiliary positioning assembly is reset, the user pulls the guide shaft 37 to both sides and rotates the support rotating plate 31 downward. After completion, the guide shaft 37 is no longer pulled, and the two inclined blocks 38 are reset under the elastic contraction action of the spring 2 39. At this time, the auxiliary positioning assembly is reset, and the user can remove the skylight frame 12 from the installation tool 11.
[0056] When the user needs to perform auxiliary positioning and installation on different models of sunroof frames 12 and sunroof glasses 13, the user only needs to adjust the electric push rod 32 and the positioning plate 33 during the first installation. The adjusted auxiliary positioning components are universal for the same model of sunroof frames 12 and sunroof glasses 13.
[0057] In summary, through the operation of the auxiliary positioning assembly, the positioning plate 33 can guide and correct the installation path of the sunroof glass 13, ensure that the edge of the sunroof glass 13 is aligned with the edge of the sunroof frame 12, and improve the fit between the sunroof frame 12 and the sunroof glass 13.
[0058] It should be noted that, in this article, relational terms such as first and second, etc. are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the terms "include", "comprise" or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or device. In the absence of further restrictions, the elements defined by the sentence "including one..." do not exclude the presence of other identical elements in the process, method, article or device including the elements.
[0059] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A vehicle sunroof glass installation tool, comprising an installation tool (11), characterized in that: A plurality of stabilizing components are symmetrically arranged on the installation tool (11), and the stabilizing components include a chassis (21), the chassis (21) is rotatably connected to the top surface of the installation tool (11), a cross slot (22) is provided on the chassis (21), a sliding shaft (23) is slidably connected inside the cross slot (22), a slot plate (24) is sleeved on the sliding shaft (23), a positioning column (25) is fixedly arranged on the slot plate (24), the positioning column (25) is externally threadedly connected to a locking nut (26), a plurality of support rods (27) are fixedly connected to the top surface of the locking nut (26), a limiting sleeve (28) is fixedly connected to the top ends of the plurality of support rods (27), and the positioning columns (25) are fixedly connected to the top ends of the plurality of support rods (27). The top surface of (25) is slidably connected to a plurality of guide columns (29) in an annular array, one end of the guide column (29) away from the axis of the positioning column (25) is fixedly connected to a slanted plate (210), and one end of the guide column (29) away from the slanted plate (210) is fixedly connected to a limiting arc plate (211), each guide column (29) is sleeved with a spring (212), a positioning pin (213) is inserted inside the positioning column (25), an inclined surface is arranged on the top of the slanted plate (210), an inclined surface corresponding to the slanted plate (210) is arranged on the inner side of the limiting sleeve (28), and four threaded fixing holes (214) are equidistantly arranged on the chassis (21) along the circumferential direction.
2. The automobile sunroof glass installation tool according to claim 1, characterized in that: Four auxiliary positioning components are symmetrically arranged on the installation tool (11), and the auxiliary positioning components include a support rotating plate (31) rotatably connected to the installation tool (11), an end of the support rotating plate (31) away from the installation tool (11) is fixedly connected to an electric push rod (32), a telescopic end of the electric push rod (32) is fixedly connected to a positioning plate (33), the bottom of the positioning plate (33) is symmetrically rotatably connected to two L-shaped rotating rods (34), and the bottom of the positioning plate (33) is symmetrically fixedly connected to two limit blocks (35). (11) is symmetrically fixedly connected with four U-shaped plates (36), the four U-shaped plates (36) are respectively arranged corresponding to the positions of the four supporting rotating plates (31), the U-shaped plates (36) are symmetrically slidably connected with two guide shafts (37), the two guide shafts (37) on the same U-shaped plate (36) are fixedly connected with an inclined block (38) on the side close to each other, and a spring (39) is sleeved on the guide shaft (37), and the two ends of the spring (39) are respectively fixedly connected to the U-shaped plate (36) and the guide shaft (37).
3. The automobile sunroof glass installation tool according to claim 1, characterized in that: The top surface of the chassis (21) is flush with the top surface of the installation tool (11), and the groove plate (24) is provided with a cross-shaped slide groove having the same shape as the cross groove (22), and the slide shaft (23) slides in the cross groove (22) and the cross-shaped slide groove of the groove plate (24) at the same time.
4. The automobile sunroof glass installation tool according to claim 1, characterized in that: A side of the limiting arc plate (211) away from the inclined plate (210) is provided with an anti-slip texture.
5. The automobile sunroof glass installation tool according to claim 1, characterized in that: The two ends of the spring 1 (212) are respectively fixedly connected to the positioning column (25) and the adjacent limiting arc plate (211).
6. The automobile sunroof glass installation tool according to claim 2, characterized in that: One end of the electric push rod (32) that is fixedly connected to the supporting rotating plate (31) is a fixed end, and one end of the electric push rod (32) that is away from the supporting rotating plate (31) is a telescopic end.
7. The automobile sunroof glass installation tool according to claim 2, characterized in that: The upper portion of the positioning plate (33) is arranged obliquely, and the bottom portion of the positioning plate (33) is arranged vertically.
Citation Information
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