Mounting mechanism for glass accessories
By designing a glass attachment installation mechanism including support plate, hoisting cylinder, pressing assembly and imitation positioning block, the problem of large-size attachment mismatch with the glass profile is solved, and the attachment and glass are fully fitted, and the installation quality and production efficiency are improved.
Patent Information
- Application Number
- CN202421610434.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-09
- Publication Date
- 2025-06-13
- Estimated Expiration
- 2034-07-09
AI Technical Summary
During the installation of automotive glass accessories, large-sized accessories are difficult to make the profile, resulting in mismatch between the accessories and the glass profile, and the problem of inadequate bonding occurs. Frequent rework is required for manual correction, which increases labor costs and affects product quality.
An installation mechanism for glass accessories is designed, including a support plate, a jacking cylinder, a pressing component and a counterfeit positioning block. The accessories on the jacking cylinder drive the counterfeit positioning block are initially in conflict with the glass profile, and then the accessories are squeezed by the pressing end of the pressing component to eliminate the gap between the edge of the attachment and the middle part and the glass to ensure that the profile is fully fit.
The accessories profile and the glass profile are fully fitted, reducing the rework frequency, improving the installation quality, reducing labor costs, and improving the overall production efficiency.
Smart Images

Figure CN222971407U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of glass accessory installation equipment, and particularly relates to an installation mechanism for glass accessories. Background Art
[0002] During the process of automobile design and manufacturing, specific accessories are usually installed on the automobile glass, so as to enhance the functionality of the glass and improve the user experience.
[0003] However, it is found in the actual installation process of the accessories that due to the difficulty in manufacturing the surface of large-sized accessories, it is very difficult to ensure the consistency of the surfaces of each accessory. Therefore, the installed accessories cannot be completely matched with the surface of the glass, and it is easy to have problems of incomplete bonding at the edges and in the middle of the accessories. Therefore, it is often necessary to rework and manually press and correct by the staff. However, due to the limited ability of manual correction, not only can the product quality problem not be effectively solved, but also additional labor costs will be increased. Summary of the Utility Model
[0004] The technical problem to be solved by the utility model is: how to provide an installation mechanism for glass accessories that can improve the installation quality of glass accessories and thus reduce the rework frequency.
[0005] In order to solve the above technical problem, the technical solution adopted by the utility model is:
[0006] An installation mechanism for glass accessories, comprising a support plate, a lifting cylinder, a pressing component and a profiling positioning block, wherein the profiling positioning block is connected to the movable end of the lifting cylinder through the support plate;
[0007] In the Z-axis direction, one side of the profiling positioning block close to the support plate is connected to the fixed end of the pressing component;
[0008] The pressing end of the pressing component penetrates through the profiling positioning block, and the pressing end of the pressing component is arranged on the side of the profiling positioning block away from the support plate;
[0009] The pressing end of the pressing component can move relative to the profiling positioning block.
[0010] Further, the pressing component includes a pressing cylinder and a top block;
[0011] In the Z-axis direction, an avoidance channel with both ends open is provided on the profiling positioning block;
[0012] The top block is connected to the movable end of the pressing cylinder;
[0013] The pressing cylinder can drive the top block to move relative to the profiling positioning block;
[0014] The avoidance passage is located on the moving path of the top block.
[0015] Furthermore, it further includes at least four accessory adjustment components;
[0016] The accessory adjustment components are circumferentially and uniformly distributed outside the profiling positioning block around the Z-axis;
[0017] The adjustment ends of the accessory adjustment components are arranged towards the inside of the profiling positioning block;
[0018] The adjustment ends of the accessory adjustment components can move relative to the profiling positioning block.
[0019] Furthermore, the accessory adjustment component includes an adjustment block and an adjustment bolt;
[0020] A guiding groove is provided on the outside of the profiling positioning block;
[0021] The adjustment block is connected to the profiling positioning block through the adjustment bolt, and the adjustment block is arranged in the guiding groove;
[0022] The adjustment block is slidably connected to the side wall of the guiding groove.
[0023] Furthermore, in the Z-axis direction, the adjustment end of the adjustment block and the supporting surface of the profiling positioning block are arranged in a staggered manner, and the adjustment end of the adjustment block is higher than the supporting surface of the profiling positioning block.
[0024] Furthermore, it further includes a planar displacement component and an angle adjustment seat;
[0025] The profiling positioning block is connected to the movable end of the planar displacement component;
[0026] The planar displacement component is connected to the support plate through the angle adjustment seat.
[0027] Furthermore, the planar displacement component includes an X-direction sliding component and a Y-direction sliding component;
[0028] The profiling positioning block is connected to the movable end of the Y-direction sliding component;
[0029] The Y-direction sliding component is connected to the movable end of the X-direction sliding component;
[0030] The X-direction sliding component is connected to the movable end of the angle adjustment seat.
[0031] Furthermore, an X-direction limiting member is provided at one end in the moving direction of the X-direction sliding component;
[0032] The limiting surface of the X-direction limiting member and the movable end of the X-direction sliding component are arranged oppositely;
[0033] One end of the moving direction of the Y-direction sliding component is provided with a Y-direction limiting member;
[0034] The limiting surface of the Y-direction limiting member and the movable end of the Y-direction sliding component are arranged opposite to each other.
[0035] Further, an X-direction adjusting gasket is provided on the limiting surface of the X-direction limiting member;
[0036] The X-direction adjusting gasket is located on the moving path of the movable end of the X-direction sliding component;
[0037] A Y-direction adjusting gasket is provided on the limiting surface of the Y-direction limiting member;
[0038] The Y-direction adjusting gasket is located on the moving path of the movable end of the Y-direction sliding component.
[0039] Further, a limiting reference block is also provided on the support plate;
[0040] In the X-axis direction, rotating limiting surfaces are respectively provided at both ends of the angle adjusting seat;
[0041] Each of the rotating limiting surfaces is respectively arranged opposite to at least two of the limiting reference blocks;
[0042] The limiting reference block is located on the movement path of the rotating limiting surface.
[0043] Further, when the angle adjusting seat is in the initial state, the rotating limiting surface and the limiting reference block are arranged at intervals.
[0044] Further, it also includes a locking seat and a guiding slide rail;
[0045] In the X-axis direction, the locking seats are respectively provided at both ends of the support plate, and the locking seat is slidably connected to the support plate through the corresponding guiding slide rail;
[0046] The moving direction of the guiding slide rail and the moving direction of the jacking cylinder are parallel to each other;
[0047] The locking surface of the locking seat faces the profiling positioning block.
[0048] Further, it also includes a floating joint;
[0049] The movable end of the jacking cylinder is connected to the support plate through the floating joint.
[0050] The beneficial effect of the utility model is that the installation mechanism of the glass accessory provided by the utility model drives the accessory on the profiling positioning block to come into conflict with the profile of the glass through the driving of the jacking cylinder, and then the accessory is further squeezed by the pressing end of the pressing assembly, so that the gap between the edge and the middle part of the accessory and the glass is eliminated under the action of the pressing assembly, and then the profile of the accessory is completely fitted with the profile of the glass, avoiding affecting the final quality of the product due to poor fitting effect. BRIEF DESCRIPTION OF THE DRAWINGS
[0051] Figure 1 It is a structural schematic diagram of the installation mechanism of the glass accessories in the utility model;
[0052] Figure 2 for Figure 1 A magnified view of point A;
[0053] Figure 3 It is a front view of the installation mechanism of the glass accessory in the utility model;
[0054] Figure 4 It is a left side view of the installation mechanism of the glass accessory in the utility model;
[0055] Description of labels:
[0056] 1. Support plate;
[0057] 2. Lifting cylinder;
[0058] 3. Pressing assembly; 31. Pressing cylinder; 32. Ejector block;
[0059] 4. Profiling positioning block; 41. Avoidance channel; 42. Guide groove;
[0060] 5. Accessory adjustment assembly; 51. Adjustment block;
[0061] 6. Plane displacement assembly; 61. X-direction sliding assembly; 611. X-direction limiter; 612. X-direction adjustment gasket; 62. Y-direction sliding assembly; 621. Y-direction limiter; 622. Y-direction adjustment gasket;
[0062] 7. Angle adjustment seat; 71. Rotation limit surface;
[0063] 8. Limit reference block;
[0064] 9, locking seat; 91, locking block; 911, threaded hole; 912, pin hole;
[0065] 10. Guide rail;
[0066] 11. Floating joint. DETAILED DESCRIPTION
[0067] To describe in detail the technical content, achieved objectives and effects of the present utility model, the following will be described in conjunction with the embodiments and with reference to the drawings.
[0068] When installing large-sized accessories, it is found that due to the difficulty in manufacturing the profile of large-sized accessories, it is very difficult to ensure the consistency of the profiles of each accessory. As a result, the installed accessories cannot be perfectly matched with the profile of the glass, and it is easy to have problems of incomplete bonding at the edges and in the middle of the accessories. Therefore, it is often necessary to rework and manually press and correct by the staff. However, due to the limited ability of manual correction, not only can the product quality problem not be effectively solved, but also additional labor costs will be increased.
[0069] Based on this, please refer to Figures 1 to 4 , a mounting mechanism for glass accessories is proposed, including a support plate 1, a lifting cylinder 2, a pressure-applying component 3 and a profiling positioning block 4. The profiling positioning block 4 is connected to the movable end of the lifting cylinder 2 through the support plate 1; in the Z-axis direction, the side of the profiling positioning block 4 close to the support plate 1 is connected to the fixed end of the pressure-applying component 3; the pressure-applying end of the pressure-applying component 3 penetrates through the profiling positioning block 4, and the pressure-applying end of the pressure-applying component 3 is arranged on the side of the profiling positioning block 4 away from the support plate 1; the pressure-applying end of the pressure-applying component 3 can move relative to the profiling positioning block 4.
[0070] Specifically, the number of the pressure-applying components 3 and the specific positions of the pressure-applying components 3 on the profiling positioning block 4 can be freely matched according to the actual structure of the accessories to be assembled, so as to be able to make real-time adjustments according to the fitting conditions of different accessories and the glass, and further ensure the product quality of the finished product.
[0071] It can be understood that when the mounting mechanism for glass accessories of the present utility model is in use, through the drive of the lifting cylinder 2, the accessories on the profiling positioning block 4 are initially in contact with the profile of the glass, and then the pressure-applying end of the pressure-applying component 3 further presses the accessories, so as to eliminate the gaps between the edges and the middle part of the accessories and the glass under the action of the pressure-applying component 3; compared with the existing mounting mechanism for glass accessories, it can not only make the profile of the accessories fit perfectly with the profile of the glass, avoiding affecting the final quality of the product due to poor fitting effect; at the same time, it can also greatly reduce the frequency of product rework and deviation correction, achieving the effects of improving the overall production efficiency and saving the additional labor costs generated by manual deviation correction.
[0072] In some embodiments, the blanking component 3 includes a blanking cylinder 31 and a top block 32; in the Z-axis direction, the profiling positioning block 4 is provided with an avoidance channel 41 with openings at both ends; the top block 32 is connected to the movable end of the blanking cylinder 31; the blanking cylinder 31 can drive the top block 32 to move relative to the profiling positioning block 4; the avoidance channel 41 is located on the moving path of the top block 32. Specifically, the top block 32 can be made of any commercially available material with good mechanical properties and strong plasticity, such as polyurethane. This design makes a specific transformation to the composition structure of the blanking component 3, thereby providing structural support for the blanking component 3 to further drive the local position of the accessory to fit the glass, and setting an avoidance channel 41 on the profiling positioning block 4 for the movable end of the blanking cylinder 31 and the top block 32 to pass through, which can avoid interference between the blanking component 3 and the profiling positioning block 4 during the process of pressing the accessory, and further affect the fitting effect between the accessory and the glass.
[0073] In some embodiments, the above-mentioned installation mechanism of the glass accessory further includes at least four accessory adjustment components 5; the accessory adjustment components 5 are circumferentially and uniformly distributed outside the profiling positioning block 4 around the Z-axis; the adjustment end of the accessory adjustment component 5 faces the inside of the profiling positioning block 4; the adjustment end of the accessory adjustment component 5 can move relative to the profiling positioning block 4; the accessory adjustment component 5 includes an adjustment block 51 and an adjustment bolt; a guide groove 42 is provided on the outside of the profiling positioning block 4; the adjustment block 51 is connected to the profiling positioning block 4 through the adjustment bolt, and the adjustment block 51 is arranged in the guide groove 42; the adjustment block 51 is slidably connected to the side wall of the guide groove 42. Specifically, long circular holes are provided on some of the adjustment blocks 51, and any commercially available locking parts (such as bolts) pass through the long circular holes to fix the adjustment block 51 in the guide groove 42; that is, when it is necessary to finely adjust the accessory through the adjustment block 51, only the position of the adjustment block 51 in the guide groove 42 needs to be changed along the extension direction of the guide groove 42. After moving to the specified position, tighten the locking parts to effectively fix the adjustment block 51 and achieve the effect of restricting the offset of the accessory. After the accessory is placed on the profiling positioning block 4, the staff can change the relative position between the adjustment block 51 and the profiling positioning block 4 to achieve fine adjustment of the accessory, thereby improving the bonding accuracy between the accessory and the glass subsequently.
[0074] In some embodiments, in the Z-axis direction, the adjustment end of the adjustment block 51 and the supporting surface of the profiling positioning block 4 are arranged in a staggered manner, and the adjustment end of the adjustment block 51 is higher than the supporting surface of the profiling positioning block 4, and the distance between the two is Figure 2 α in. This design makes a specific improvement to the positional relationship between the adjustment block 51 and the profiling positioning block 4, which can not only make the adjustment end of the adjustment block 51 abut against the outside of the accessory to finely adjust the accessory, but also play a limiting role for the accessory after adjusting the position of the accessory, so as to avoid the offset of the accessory during the process of approaching the glass, and further affect the bonding accuracy between the accessory and the glass.
[0075] In some embodiments, it further includes a planar displacement component 6 and an angle adjustment seat 7; the profiling positioning block 4 is connected to the movable end of the planar displacement component 6; the planar displacement component 6 is connected to the support plate 1 through the angle adjustment seat 7; the planar displacement component 6 includes an X-direction sliding component 61 and a Y-direction sliding component 62; the profiling positioning block 4 is connected to the movable end of the Y-direction sliding component 62; the Y-direction sliding component 62 is connected to the movable end of the X-direction sliding component 61; the X-direction sliding component 61 is connected to the movable end of the angle adjustment seat 7. Specifically, the connection relationship between the profiling positioning block 4, the X-direction sliding component 61, the Y-direction sliding component 62, and the angle adjustment seat 7 can be freely changed, that is, as long as it is ensured that the above structures are sequentially connected to the movable ends of the corresponding structures to achieve the effect of compound motion by superimposing translation and rotation. The above-mentioned mechanisms are preferably connected in the layout manner of the present invention to ensure the smoothness of the profiling positioning block 4 during position deviation correction. This design effectively increases the displacement flexibility of the profiling positioning block 4 by arranging the planar displacement component 6 and the angle adjustment seat 7 on the support plate 1 and further improving the composition structure of the planar displacement component 6, so that the staff can adjust the accessory to the optimal bonding position according to actual needs, ensuring the bonding accuracy of the accessory to the glass subsequently.
[0076] In some embodiments, an X-direction limiting member 611 is provided at one end of the moving direction of the X-direction sliding assembly 61; the limiting surface of the X-direction limiting member 611 is arranged opposite to the moving end of the X-direction sliding assembly 61; a Y-direction limiting member 621 is provided at one end of the moving direction of the Y-direction sliding assembly 62; the limiting surface of the Y-direction limiting member 621 is arranged opposite to the moving end of the Y-direction sliding assembly 62; an X-direction adjusting gasket 612 is provided on the limiting surface of the X-direction limiting member 611; the X-direction adjusting gasket 612 is located on the moving path of the moving end of the X-direction sliding assembly 61; a Y-direction adjusting gasket 622 is provided on the limiting surface of the Y-direction limiting member 621; the Y-direction adjusting gasket 622 is located on the moving path of the moving end of the Y-direction sliding assembly 62; specifically, the thicknesses of the X-direction adjusting gasket 612 and the Y-direction adjusting gasket 622 can be freely adjusted according to actual requirements. The commonly used thicknesses of the two are 0.1 mm, 0.2 mm, 0.5 mm or 1 mm, and they can also be used in combination with adjusting gaskets of different specifications and thicknesses to meet more different thickness requirements. This design further improves the composition structure of the X-direction sliding assembly 61 and the Y-direction sliding assembly 62. By providing the corresponding X-direction limiting member 611 and Y-direction limiting member 621, the problem that the X-direction sliding assembly 61 or the Y-direction sliding assembly 62 derails due to excessive movement can be avoided, thus affecting the normal bonding work of the accessory; and by respectively providing the corresponding X-direction adjusting gasket 612 and Y-direction adjusting gasket 622 on the X-direction limiting member 611 and the Y-direction limiting member 621, the position adjustment accuracy of the profiling positioning block 4 can be effectively improved. That is, after the installation mechanism of the present utility model is fixed at a suitable position by the staff, the error between the limit positions of the X-direction sliding assembly 61 and the Y-direction sliding assembly 62 and the position of the accessory to be installed on the glass will be initially confirmed, and then the corresponding adjusting pads are added or subtracted to eliminate this error value. Furthermore, after one adjustment, each time an accessory is installed subsequently, only by making the moving end of the X-direction sliding assembly 61 and the moving end of the Y-direction sliding assembly 62 abut against the corresponding adjusting pads, the adjustment work of the accessory can be quickly completed, achieving the effect of improving work efficiency.
[0077] In some embodiments, a limiting reference block 8 is further provided on the support plate 1; in the X-axis direction, rotating limiting surfaces 71 are respectively provided at both ends of the angle adjusting seat 7; each rotating limiting surface 71 is respectively arranged opposite to at least two limiting reference blocks 8; the limiting reference blocks 8 are located on the movement path of the rotating limiting surfaces 71; when the angle adjusting seat 7 is in the initial state, the rotating limiting surfaces 71 and the limiting reference blocks 8 are arranged at intervals, and the distance between them is Figure 4β in it. During the installation process of the accessory, usually only a small range of adjustment of the installation angle of the accessory is required. Therefore, a corresponding limit reference block 8 is set on the movement path of the angle adjustment seat 7, which can avoid affecting the overall bonding accuracy due to excessive rotation angle. After rotating to the optimal position, the movable end of the angle adjustment seat 7 is fixed on the support plate 1 through any locking member, such as a locking bolt, to prevent the profiling positioning block 4 from shifting during the process of approaching the glass.
[0078] In some embodiments, the installation mechanism of the above glass accessory further includes a locking seat 9 and a guide rail 10; in the X-axis direction, locking seats 9 are respectively provided at both ends of the support plate 1, and the locking seats 9 are slidably connected to the support plate 1 through corresponding guide rails 10; the moving direction of the guide rail 10 is parallel to the moving direction of the lifting cylinder 2; the locking surface of the locking seat 9 faces the profiling positioning block 4; the locking seat 9 includes a locking block 91; a threaded hole 911 and a pin hole 912 are provided on the locking surface of the locking block 91. Specifically, the stroke of the lifting cylinder 2 is less than the stroke of the guide rail 10, so as to avoid the positioning seat from derailing from the guide rail 10 and further affecting the normal installation work of the accessory; and the locking seat 9 can also be arranged at both ends of the support plate 1 in the Y-axis direction, that is, as long as the effect of fixing the support plate 1 is achieved. When in use, the fixed end of the lifting cylinder 2 and the locking seat 9 need to be fixed at the specified positions, and then the accessory on the profiling positioning block 4 is driven by the lifting cylinder 2 to move towards the glass; during the movement, through the cooperation between the locking seat 9 and the guide rail 10, the support plate 1 can make a directional movement along the moving direction of the guide rail 10, so as to avoid the support plate 1 from shaking during the movement and affecting the bonding accuracy of the accessory.
[0079] In some embodiments, in the X-axis direction, the locking surfaces of the locking blocks 91 respectively arranged at both ends of the support plate 1 form a virtual plane; the virtual plane forms an angle with the X-axis, and the formed angle is Figure 4 θ in it. The size of the angle formed by the virtual plane and the X-axis can be freely adjusted according to the actual situation. The range of the angle formed by the virtual plane and the X-axis in the present invention is preferably 0° to 40°. Since the surface of the automotive glass usually has a curvature, after the installation mechanism of the present invention is fixed on the specified tooling table through the designed locking block 91, the moving direction of the lifting cylinder 2 can form an angle with the stroke of the specified tooling table, so that the support surface of the profiling positioning block 4 can be adapted to the glass profile to be assembled, thereby effectively improving the bonding accuracy between the accessory and the glass.
[0080] In some embodiments, the installation mechanism of the above-mentioned glass accessory further includes a floating joint 11; the movable end of the lifting cylinder 2 is connected to the support plate 1 through the floating joint 11. The floating joint 11 is arranged between the movable end of the lifting cylinder 2 and the support plate 1, which can eliminate the eccentric error caused by the installation accuracy problem between the two, thus effectively absorbing the eccentric load and lateral load generated at the connection, and further avoiding the situation that the lifting cylinder 2 is bent and damaged due to long-term movement in the eccentric state, so as to extend the service life of the lifting cylinder 2.
[0081] Please refer to Figures 1 to 4 , Embodiment 1 of the present utility model is:
[0082] An installation mechanism for a glass accessory, comprising a support plate 1, a lifting cylinder 2, a material pressing assembly 3 and a profiling positioning block 4. The profiling positioning block 4 is connected to the movable end of the lifting cylinder 2 through the support plate 1; in the Z-axis direction, one side of the profiling positioning block 4 close to the support plate 1 is connected to the fixed end of the material pressing assembly 3; the material pressing end of the material pressing assembly 3 penetrates through the profiling positioning block 4, and the material pressing end of the material pressing assembly 3 is arranged on the side of the profiling positioning block 4 away from the support plate 1; in the Z-axis direction, the material pressing end of the material pressing assembly 3 can move relative to the profiling positioning block 4.
[0083] In this embodiment, the material pressing assembly 3 includes a material pressing cylinder 31 and a top block 32; in the Z-axis direction, the profiling positioning block 4 is provided with an avoidance channel 41 with both ends open; the top block 32 is connected to the movable end of the material pressing cylinder 31; the material pressing cylinder 31 can drive the top block 32 to move relative to the profiling positioning block 4; the avoidance channel 41 is located on the moving path of the top block 32.
[0084] In this embodiment, the above-mentioned installation mechanism of the glass accessory further includes four accessory adjustment components 5; the accessory adjustment components 5 are circumferentially and uniformly distributed around the Z-axis outside the profiling positioning block 4; the adjustment end of the accessory adjustment component 5 is arranged towards the inside of the profiling positioning block 4; the adjustment end of the accessory adjustment component 5 can move relative to the profiling positioning block 4; the accessory adjustment component 5 includes an adjustment block 51 and an adjustment bolt; a guide groove 42 is provided on the outside of the profiling positioning block 4; the adjustment block 51 is connected to the profiling positioning block 4 through the adjustment bolt, and the adjustment block 51 is arranged in the guide groove 42; the adjustment block 51 is slidably connected to the side wall of the guide groove 42.
[0085] In this embodiment, in the Z-axis direction, the adjustment end of the adjustment block 51 and the support surface of the profiling positioning block 4 are arranged in a staggered manner, and the adjustment end of the adjustment block 51 is higher than the support surface of the profiling positioning block 4.
[0086] In this embodiment, it further includes a planar displacement assembly 6 and an angle adjustment seat 7; the profiling positioning block 4 is connected to the moving end of the planar displacement assembly 6; the planar displacement assembly 6 is connected to the support plate 1 through the angle adjustment seat 7; the planar displacement assembly 6 includes an X-direction sliding assembly 61 and a Y-direction sliding assembly 62; the profiling positioning block 4 is connected to the moving end of the Y-direction sliding assembly 62; the Y-direction sliding assembly 62 is connected to the moving end of the X-direction sliding assembly 61; the X-direction sliding assembly 61 is connected to the moving end of the angle adjustment seat 7.
[0087] In this embodiment, an X-direction limiting member 611 is provided at one end of the X-direction sliding assembly 61 in the moving direction; the limiting surface of the X-direction limiting member 611 and the moving end of the X-direction sliding assembly 61 are oppositely arranged; a Y-direction limiting member 621 is provided at one end of the Y-direction sliding assembly 62 in the moving direction; the limiting surface of the Y-direction limiting member 621 and the moving end of the Y-direction sliding assembly 62 are oppositely arranged; an X-direction adjusting gasket 612 is provided on the limiting surface of the X-direction limiting member 611; the X-direction adjusting gasket 612 is located on the moving path of the moving end of the X-direction sliding assembly 61; a Y-direction adjusting gasket 622 is provided on the limiting surface of the Y-direction limiting member 621; the Y-direction adjusting gasket 622 is located on the moving path of the moving end of the Y-direction sliding assembly 62.
[0088] In this embodiment, a limiting reference block 8 is further provided on the support plate 1; in the X-axis direction, rotating limiting surfaces 71 are respectively provided at both ends of the angle adjustment seat 7; each rotating limiting surface 71 is respectively oppositely arranged with two limiting reference blocks 8; the limiting reference block 8 is located on the moving path of the rotating limiting surface 71; when the angle adjustment seat 7 is in the initial state, the rotating limiting surface 71 and the limiting reference block 8 are arranged at intervals.
[0089] In this embodiment, the installation mechanism of the above glass accessory further includes a locking seat 9 and a guiding slide rail 10; in the X-axis direction, locking seats 9 are respectively provided at both ends of the support plate 1, and the locking seat 9 is slidably connected to the support plate 1 through the corresponding guiding slide rail 10; the moving direction of the guiding slide rail 10 is parallel to the moving direction of the lifting cylinder 2; the locking surface of the locking seat 9 faces the profiling positioning block 4; the locking seat 9 includes a locking block 91; a threaded hole 911 and a pin hole 912 are provided on the locking surface of the locking block 91.
[0090] In this embodiment, in the X-axis direction, the locking surfaces of the locking blocks 91 respectively provided at both ends of the support plate 1 form a virtual plane; the virtual plane forms an angle with the X-axis.
[0091] In this embodiment, the installation mechanism of the above glass accessory further includes a floating joint 11; the moving end of the lifting cylinder 2 is connected to the support plate 1 through the floating joint 11.
[0092] The working principle of the present utility model is as follows:
[0093] The stage of fixing the installation mechanism: first, the pin hole 912 on the locking block 91 pre-fixes the installation mechanism on the designated installation table in a hole-shaft matching manner; then, the locking block 91 and the fixed end of the lifting cylinder 2 are further locked on the installation table through any locking member, thereby completing the fixing work of the installation mechanism of the utility model.
[0094] Accessory assembly stage: First, place the accessory to be assembled on the profiling positioning block 4, and change the adjustment position to achieve fine-tuning of the accessory, and limit the degree of freedom of the accessory on the profiling positioning block 4; then, adjust the position of the plane displacement component 6 and the angle adjustment seat 7 until the accessory is moved to the specified installation position; then, start the lifting cylinder 2, and drive the accessory on the profiling positioning block 4 to move toward the glass through the lifting cylinder 2; when the profile of the accessory conflicts with the profile of the glass, start the pressing cylinder 31, and the pressing end of the pressing component 3 further squeezes the accessory, so that the edge and the middle part of the accessory are close to the glass, and after maintaining the pressure for a period of time, the assembly of the accessory and the glass is completed; finally, reset the lifting cylinder 2 and the pressing cylinder 31 to prepare for the next assembly of the accessory and the glass.
[0095] The above description is only an embodiment of the present invention, and does not limit the patent scope of the present invention. Any equivalent transformations made using the contents of the specification and drawings of the present invention, or directly or indirectly applied in the relevant technical field, are also included in the patent protection scope of the present invention.
Claims
1. A glass accessory installation mechanism, comprising a support plate, a lifting cylinder, a pressing assembly and a profiled positioning block, characterized in that: The contoured positioning block is connected to the movable end of the lifting cylinder through the support plate; In the Z-axis direction, the side of the profiling positioning block close to the support plate is connected to the fixed end of the pressing assembly; The pressing end of the pressing component passes through the profiling positioning block, and the pressing end of the pressing component is arranged on a side of the profiling positioning block away from the support plate; The pressing end of the pressing assembly can move relative to the profiling positioning block.
2. The glass accessory installation mechanism according to claim 1, characterized in that: The material pressing assembly comprises a material pressing cylinder and a top block; In the Z-axis direction, the profiling positioning block is provided with an avoidance channel with openings at both ends; The top block is connected to the movable end of the press cylinder; The press cylinder can drive the top block to move relative to the profiling positioning block; The avoidance channel is located on the moving path of the top block.
3. The glass accessory installation mechanism according to claim 1, characterized in that: Also included are at least four accessory adjustment assemblies; The accessory adjustment components are evenly distributed around the Z axis on the outside of the contoured positioning block; The adjusting end of the accessory adjusting assembly is arranged toward the interior of the contoured positioning block; The adjusting end of the accessory adjusting assembly can move relative to the contoured positioning block.
4. The glass accessory installation mechanism according to claim 3, characterized in that: The accessory adjustment assembly includes an adjustment block and an adjustment bolt; A guide groove is provided on the outer side of the profiling positioning block; The adjusting block is connected to the profiled positioning block through the adjusting bolt, and the adjusting block is arranged in the guide groove; The adjusting block is slidably connected to the side wall of the guide groove.
5. The glass accessory installation mechanism according to claim 4, characterized in that: In the Z-axis direction, the adjusting end of the adjusting block and the supporting surface of the profiling positioning block are staggered, and the adjusting end of the adjusting block is higher than the supporting surface of the profiling positioning block.
6. The glass accessory installation mechanism according to claim 1, characterized in that: It also includes a plane displacement component and an angle adjustment seat; The contoured positioning block is connected to the movable end of the plane displacement component; The plane displacement assembly is connected to the support plate through the angle adjustment seat.
7. The glass accessory installation mechanism according to claim 6, characterized in that: The plane displacement assembly includes an X-direction sliding assembly and a Y-direction sliding assembly; The contoured positioning block is connected to the movable end of the Y-direction sliding assembly; The Y-direction sliding assembly is connected to the movable end of the X-direction sliding assembly; The X-direction sliding assembly is connected to the movable end of the angle adjustment seat.
8. The glass accessory mounting mechanism according to claim 7, characterized in that: An X-direction limiter is provided at one end of the X-direction sliding assembly in the moving direction; The limiting surface of the X-direction limiting member and the movable end of the X-direction sliding assembly are arranged opposite to each other; A Y-direction limiter is provided at one end of the Y-direction sliding assembly in the moving direction; The limiting surface of the Y-direction limiting member and the movable end of the Y-direction sliding assembly are arranged opposite to each other.
9. The glass accessory mounting mechanism according to claim 8, characterized in that: An X-direction adjustment gasket is provided on the limiting surface of the X-direction limiting member; The X-direction adjustment gasket is located on the moving path of the active end of the X-direction sliding assembly; A Y-direction adjustment gasket is provided on the limiting surface of the Y-direction limiting member; The Y-direction adjusting gasket is located on the moving path of the active end of the Y-direction sliding component.
10. The glass accessory installation mechanism according to claim 6, characterized in that: The support plate is also provided with a limit reference block; In the X-axis direction, two ends of the angle adjustment seat are respectively provided with rotation limiting surfaces; Each of the rotation limiting surfaces is respectively arranged opposite to at least two of the limiting reference blocks; The limit reference block is located on the movement path of the rotation limit surface.
11. The glass accessory mounting mechanism according to claim 10, characterized in that: When the angle adjustment seat is in an initial state, the rotation limiting surface and the limiting reference block are spaced apart.
12. The glass accessory mounting mechanism according to claim 1, characterized in that: It also includes a locking seat and a guide rail; In the X-axis direction, the two ends of the support plate are respectively provided with the locking seats, and the locking seats are slidably connected with the support plate through the corresponding guide rails; The moving direction of the guide rail and the moving direction of the lifting cylinder are parallel to each other; The locking surface of the locking seat is arranged toward the contoured positioning block.
13. The glass accessory mounting mechanism according to claim 1, characterized in that: Also included are floating joints; The movable end of the lifting cylinder is connected to the support plate through the floating joint.