Glass punching device capable of clamping glass with different thicknesses
By eliminating the clamping mechanism and the synchronous moving mechanism through the height difference, the problem of uneven force when drilling glass of different thicknesses in the prior art is solved, realizing stable clamping and uniform support of the glass, and improving the reliability of drilling.
Patent Information
- Application Number
- CN202423271012.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-30
- Publication Date
- 2025-12-09
- Estimated Expiration
- 2034-12-30
AI Technical Summary
Existing glass drilling devices cannot effectively clamp glass of different thicknesses, resulting in uneven force on the glass during drilling, which can easily lead to displacement and breakage.
A height difference elimination clamping mechanism is adopted. Through the coordinated movement of the drive component and the moving component, the glass with a height difference is clamped and fixed. The XY axis moving component and the synchronous moving mechanism ensure the synchronous movement of the laser drilling machine and the support table, providing uniform support.
This effectively avoids glass breakage caused by uneven force during drilling, improving the practicality of the device and the reliability of drilling.
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Figure CN223643953U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to glass punching technology field, concretely relates to a glass punching device of different thickness glass can be clamped. BACKGROUND
[0002] The glass punching device is a type of numerical control machine tool, focuses on the precision machining and non-standard shape cutting of various glasses, and its characteristics include compact size, high precision of finished products and high processing efficiency.
[0003] Chinese patent CN221021765U discloses a kind of glass punching device, it includes: bottom cover, the top of the bottom cover is fixedly installed with base, the top of the base is provided with ceramic drill bit, the top of the base is provided with handle bar;Clamping assembly, the clamping assembly is fixedly installed at the top of base;Wherein, the clamping assembly includes fixed position, pressing position;Punching assembly, the punching assembly is fixedly installed at the top of base;Wherein, the punching assembly includes movable part, drill site.But, the device still has the following problems in the process of using:
[0004] The clamping assembly is fixedly arranged and can only clamp horizontal glass, when punching glass with height difference, it can cause uneven stress on glass and glass deviation during punching.
[0005] Therefore, the utility model designs a kind of glass punching device of different thickness glass can be clamped to solve above-mentioned problem. UTILITY MODEL CONTENT
[0006] In view of the above shortcomings of prior art, the utility model provides a kind of glass punching device of different thickness glass can be clamped.
[0007] To achieve the above object, the utility model is realized by the following technical solutions:
[0008] The utility model provides a kind of glass punching device that can clamp different thickness glass, including base, further including laser punch, height difference elimination compression mechanism, support plate, support vertical plate, XY axis moving component, fixed plate, synchronous movement mechanism and support table, support plate is fixedly installed on the left side of the upper end of base;Support vertical plate is fixedly installed on the right side of the upper end of base;Height difference elimination compression mechanism for being fixed to the glass with height difference is installed on support plate;The height difference elimination compression mechanism includes drive assembly for driving two groups of movable components movement and movable component for compressing glass;The movable component is provided with two groups, and movable component is symmetrically installed on the right end of support plate and the left end of support vertical plate before and after;Drive assembly is installed in the middle of support plate, and drive assembly is simultaneously connected with the part of two groups of movable components installed in the right end of support plate;XY axis moving component is installed in the inner bottom of base, and XY axis moving component is connected with fixed plate;Synchronous movement mechanism is installed on fixed plate for controlling laser punch and support table synchronous movement;Laser punch and support table are installed on synchronous movement mechanism;The laser punch and support table are coaxially arranged.
[0009] Further, the drive assembly includes a double-shaft air cylinder, a push plate, and a damping gear, the double-shaft air cylinder is fixedly installed on the inner wall of the support plate, the output end of the double-shaft air cylinder is fixedly connected with the push plate, and the damping gear is rotatably installed on the right end of the push plate.
[0010] Further, a torsional spring is arranged on the connecting shaft of the damping gear and the push plate, one end of the torsional spring is fixedly connected with the push plate, and the other end of the torsional spring is fixedly connected with the damping gear.
[0011] Further, the movable component includes a guide rail, a sliding plate, a rack, a compression block, and a connecting plate, the guide rail is symmetrically fixedly installed on the right end of the support plate and the left end of the support vertical plate, and the sliding plate is limitingly and slidably connected with the guide rail; the rack is fixedly installed on the sliding plate, and the racks installed on the right end of the support plate before and after are meshingly connected with the damping gear; the compression block is fixedly installed on the bottom end of the sliding plate; one end of the two connecting plates is fixedly connected with the sliding plate on the right end of the support plate, the other end of the connecting plate is fixedly connected with the sliding plate on the left end of the support vertical plate, and the two connecting plates are symmetrically distributed on the front and back sides of the close end of the support plate and the support vertical plate.
[0012] Further, the synchronous movement mechanism includes a synchronous drive assembly and a moving plate, the right end of the fixed plate is provided with a sliding groove; the synchronous drive assembly is installed on the fixed plate; two moving plates are installed on the synchronous drive assembly; the moving plate is limitingly and slidably connected with the sliding groove; the laser punch is fixedly installed on the front end of the upper moving plate, and the support table is fixedly installed on the front end of the lower moving plate.
[0013] Further, the synchronous driving assembly comprises a servo motor and a bidirectional screw rod, the servo motor is fixedly installed at the upper end of the fixed plate, and the upper and lower ends of the bidirectional screw rod are rotationally connected with the upper and lower ends of the fixed plate; the output end of the servo motor is fixedly connected with the bidirectional screw rod; the two moving plates are threadedly connected with the bidirectional screw rod.
[0014] Further, the two moving plates are symmetrically distributed at the upper and lower ends of the bidirectional screw rod.
[0015] Further, the XY-axis moving assembly is composed of two horizontally arranged horizontal transverse linear modules and a horizontal vertical linear module; the two horizontally arranged horizontal transverse linear modules are fixedly installed at the inner bottom of the base, and the two ends of the horizontal vertical linear module are fixedly connected with the moving ends of the two horizontally arranged horizontal transverse linear modules; the fixed plate is fixedly connected with the moving end of the horizontal vertical linear module.
[0016] Compared with the prior art, the utility model has the advantages that the glass needing to be punched is placed in the middle of the base, then the driving assembly works to drive the two groups of movable assemblies to move downward, when the left movable assembly touches the high end of the glass, the right movable assembly will continue to move downward until the right movable assembly presses the low end of the glass, so that the glass with height difference is pressed and fixed, the non-uniform stress of the glass during punching is avoided, and the practicability of the device is improved; when the glass is fixed, the XY-axis moving assembly works to drive the fixed plate to move until the fixed plate drives the laser puncher and the supporting table to move to the set punching position, at this time, the glass is located between the laser puncher and the supporting table, then the synchronous moving mechanism works to drive the laser puncher and the supporting table to move toward the glass at the same time until the upper end of the supporting table is fixed with the lower end of the glass, at this time, the bottom end of the laser puncher is slightly higher than the upper end of the glass, then the laser puncher works to punch, the synchronous moving mechanism enables the supporting table and the laser puncher to move together, and the glass can be more effectively supported during punching. BRIEF DESCRIPTION OF DRAWINGS
[0017] In order to more clearly illustrate the technical scheme in the embodiments of the utility model or the prior art, the following will briefly introduce the drawings needed to be used in the embodiment or the prior art description. Obviously, the drawings in the following description are only some embodiments of the utility model, and those skilled in the art can also obtain other drawings according to these drawings without creating any creative labor.
[0018] Figure 1 It is a three-dimensional view of the glass punching device of the utility model that can clamp glass of different thicknesses Figure 1 ;
[0019] Figure 2The utility model discloses a glass punching device of different thickness glass can be clamped.
[0020] Figure 3 The utility model discloses a glass punching device of different thickness glass can be clamped. Figure 2 ;
[0021] Figure 4 For Figure 3 The utility model discloses a glass punching device of different thickness glass can be clamped.
[0022] The figure's reference respectively represents:
[0023] 1, base station;2, laser puncher;3, height difference elimination compression mechanism;31, drive assembly;311, double axle air cylinder;312, push plate;313, damping gear;32, movable assembly;321, guide rail;322, sliding plate;323, rack;324, compression block;325, connecting compression plate;4, support plate;5, support vertical board;6, XY axle movement assembly;7, fixed plate;8, synchronous movement mechanism;81, servo motor;82, two -way screw;83, moving plate;84, sliding groove;9, support table. Specific implementation
[0024] In order to make the utility model embodiment's purpose, technical scheme and advantage more clearly, below will combine the figure in the utility model embodiment, and the technical scheme in the utility model embodiment is clearly, completely described. Obviously, the described embodiment is the part embodiment of the utility model, instead of all the embodiment. Based on the embodiment in the utility model, all other embodiments that the ordinary skill in the art obtains without making the creative labor are all within the range of the utility model protection.
[0025] The "left", "right", "front", "back", "upper", "lower" in the following description are oriented with the perspective of the front view.
[0026] In some embodiments, please refer to the Figures 1-4The utility model provides a glass punching device of clamping different thickness glass, including base 1, still include laser puncher 2, height difference elimination compression mechanism 3, support plate 4, support vertical board 5, XY axis moving assembly 6, fixed plate 7, synchronous movement mechanism 8 and support station 9, the left side fixed mounting of upper end of base 1 has support plate 4, the right side fixed mounting of upper end of base 1 has support vertical board 5, install height difference elimination compression mechanism 3 for the compression fixed of having height difference glass on support plate 4, height difference elimination compression mechanism 3 includes the drive assembly 31 for driving two groups of movable assembly 32 movement and the movable assembly 32 of compression to glass, the movable assembly 32 is provided with two groups, and movable assembly 32 is installed on the right end of support plate 4 two sides before and after and the left end of support vertical board 5 two sides before and after symmetrically, drive assembly 31 is installed in the middle part of support plate 4, and drive assembly 31 is connected with the part of two groups of movable assembly 32 installed in the right end of support plate 4 simultaneously, XY axis moving assembly 6 is installed in the inner bottom of base 1, and XY axis moving assembly 6 is connected with fixed plate 7, install synchronous movement mechanism 8 of the synchronous movement of laser puncher 2 and support station 9 on fixed plate 7, install laser puncher 2 and support station 9 on synchronous movement mechanism 8, the XY axis moving assembly 6 is formed by two parallel horizontal transverse linear module and a horizontal vertical linear module, the two parallel horizontal transverse linear module fixed mounting is in the inner bottom of base 1, and the both ends of horizontal vertical linear module are fixedly connected with the moving end of two parallel horizontal transverse linear module, fixed plate 7 is fixedly connected with the moving end of horizontal vertical linear module, laser puncher 2 and support station 9 are coaxial line arrangement.
[0027] In the utility model, the glass to be punched is placed in the middle of the base 1, then the drive assembly 31 works to drive the two groups of movable assemblies 32 to move downward, when the front movable assembly 32 touches the high end of the glass, the right movable assembly 32 will continue to move downward until the rear movable assembly 32 presses the low end of the glass, thereby realizing the compression and fixation of the glass with height difference, avoiding the uneven stress on the glass during punching to cause the glass to break, and improving the practicability of the device.
[0028] The driving assembly 31 comprises a double-shaft air cylinder 311, a push plate 312 and a damping gear 313, the double-shaft air cylinder 311 is fixedly installed on the inner wall of the support plate 4, the output end of the double-shaft air cylinder 311 is fixedly connected with the push plate 312, and the damping gear 313 is rotatably installed at the right end of the push plate 312; a torsional spring is arranged on the connecting shaft of the damping gear 313 and the push plate 312, one end of the torsional spring is fixedly connected with the push plate 312, and the other end of the torsional spring is fixedly connected with the damping gear 313, so that the damping gear 313 keeps a stationary state when not subjected to external force;
[0029] The movable assembly 32 comprises guide rails 321, sliding plates 322, racks 323, pressing blocks 324 and connecting pressing plates 325, the guide rails 321 are symmetrically fixedly installed at the right end of the support plate 4 and the left end of the support stand 5, the sliding plates 322 are limitingly and slidably connected with the guide rails 321, the racks 323 are fixedly installed on the sliding plates 322, and the racks 323 installed on the front and back sides of the right end of the support plate 4 are in meshing connection with the damping gear 313, the pressing blocks 324 are fixedly installed at the bottom end of the sliding plates 322, one end of each of the two connecting pressing plates 325 is fixedly connected with the sliding plate 322 at the right end of the support plate 4, the other end of the connecting pressing plate 325 is fixedly connected with the sliding plate 322 at the left end of the support stand 5, and the two connecting pressing plates 325 are symmetrically distributed on the front and back sides of the close end of the support plate 4 and the support stand 5.
[0030] In the utility model, when not carrying out the punching operation, the torsional spring on the damping gear 313 controls the damping gear 313 to keep a stationary state, the double-shaft air cylinder 311 drives the push plate 312 to move downwards, the damping gear 313 moves downwards along with the push plate 312, and the damping gear 313 drives the racks 323 on the front and back sides of the support plate 4 to move downwards along with the sliding plate 322, and the sliding plate 322 on the support plate 4 drives the sliding plate 322 on the support stand 5 to move through the connecting pressing plate 325; when the pressing block 324 on the front side touches the high-position end of the glass, the pressing block 324 on the rear side does not touch the glass, the rack 323 on the front side drives the damping gear 313 to rotate clockwise, so that the rack 323 on the rear side continues to move downwards until the pressing block 324 on the rear side touches the low-position end of the glass, and at this moment, the glass is fixed;
[0031] The synchronous moving mechanism 8 includes a servo motor 81, a bidirectional lead screw 82, and a moving plate 83. A sliding groove 84 is provided at the right end of the fixed plate 7. The servo motor 81 is fixedly installed on the upper end of the fixed plate 7, and the upper and lower ends of the bidirectional lead screw 82 are rotatably connected to the upper and lower ends of the fixed plate 7. The output end of the servo motor 81 is fixedly connected to the bidirectional lead screw 82. The two moving plates 83 are threadedly connected to the bidirectional lead screw 82, and the moving plates 83 are limited and slidably connected to the sliding groove 84. The two moving plates 83 are symmetrically distributed at the upper and lower ends of the bidirectional lead screw 82. A laser drilling machine 2 is fixedly installed at the front end of the upper moving plate 83, and a support platform 9 is fixedly installed at the front end of the lower moving plate 83.
[0032] In this invention, after the glass is fixed, the XY axis moving assembly 6 drives the fixed plate 7 to move until it moves to the set drilling position. At this time, the glass is located between the laser drilling machine 2 and the support table 9. Then, the servo motor 81 drives the bidirectional lead screw 82 to rotate. The rotation of the bidirectional lead screw 82 causes the upper and lower moving plates 83 to move towards the glass along the sliding groove 84 at the same time until the upper end of the support table 9 is fixed to the lower end of the glass. At this time, the bottom end of the laser drilling machine 2 is slightly higher than the upper end of the glass. Then, the laser drilling machine 2 can start drilling.
[0033] The above embodiments are only used to illustrate the technical solutions of this utility model, and are not intended to limit it. Although this utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions will not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of this utility model.
Claims
1. A glass drilling device capable of clamping glass of different thicknesses, comprising a base (1), characterized in that: It also includes a laser drilling machine (2), a height difference elimination and clamping mechanism (3), a support plate (4), a support upright plate (5), an XY axis moving assembly (6), a fixed plate (7), a synchronous moving mechanism (8), and a support platform (9). The support plate (4) is fixedly installed on the upper left side of the base (1); the support upright plate (5) is fixedly installed on the upper right side of the base (1); the height difference elimination and clamping mechanism (3) for clamping and fixing glass with height difference is installed on the support plate (4); the height difference elimination and clamping mechanism (3) includes a driving assembly (31) for driving the movement of two sets of movable components (32) and a movable component (32) for clamping the glass; the movable component (32) is provided in two sets, and the movable group The components (32) are symmetrically installed on the front and rear sides of the right end of the support plate (4) and on the front and rear sides of the left end of the support plate (5); the drive assembly (31) is installed in the middle of the support plate (4), and the drive assembly (31) is simultaneously connected to the part of the two sets of movable components (32) installed on the right end of the support plate (4); the XY axis moving assembly (6) is installed in the inner bottom of the base (1), and the XY axis moving assembly (6) is connected to the fixed plate (7); the fixed plate (7) is equipped with a synchronous moving mechanism (8) that controls the synchronous movement of the laser drilling machine (2) and the support platform (9); the synchronous moving mechanism (8) is equipped with the laser drilling machine (2) and the support platform (9); the laser drilling machine (2) and the support platform (9) are arranged on the same axis.
2. The glass drilling device capable of clamping glass of different thicknesses according to claim 1, characterized in that, The drive assembly (31) includes a dual-shaft cylinder (311), a push plate (312), and a damping gear (313). The dual-shaft cylinder (311) is fixedly installed on the inner wall of the support plate (4). The output end of the dual-shaft cylinder (311) is fixedly connected to the push plate (312). The damping gear (313) is rotatably installed on the right end of the push plate (312).
3. The glass drilling device capable of clamping glass of different thicknesses according to claim 2, characterized in that, A torsion spring is provided on the connecting shaft between the damping gear (313) and the push plate (312). One end of the torsion spring is fixedly connected to the push plate (312), and the other end of the torsion spring is fixedly connected to the damping gear (313).
4. The glass drilling device capable of clamping glass of different thicknesses according to claim 3, characterized in that, The movable component (32) includes a guide rail (321), a sliding plate (322), a rack (323), a clamping block (324), and a connecting pressure plate (325). The guide rail (321) is symmetrically fixedly installed on the right end of the support plate (4) and the left end of the support upright plate (5). The sliding plate (322) is slidably connected to the guide rail (321). The rack (323) is fixedly installed on the sliding plate (322), and the racks (323) installed on the front and rear sides of the right end of the support plate (4) are also fixedly installed on the sliding plate (322). 3) Engages with the damping gear (313); the clamping block (324) is fixedly installed at the bottom of the sliding plate (322); one end of the two connecting pressure plates (325) is fixedly connected to the sliding plate (322) at the right end of the support plate (4), and the other end of the connecting pressure plates (325) is fixedly connected to the sliding plate (322) at the left end of the support plate (5), and the two connecting pressure plates (325) are symmetrically distributed on the front and rear sides of the support plate (4) and the support plate (5) at their closest ends.
5. The glass drilling device capable of clamping glass of different thicknesses according to claim 4, characterized in that, The synchronous moving mechanism (8) includes a synchronous driving component and a moving plate (83). A sliding groove (84) is provided at the right end of the fixed plate (7). The synchronous driving component is installed on the fixed plate (7). Two moving plates (83) are installed on the synchronous driving component. The moving plate (83) is slidably connected to the sliding groove (84). A laser drilling machine (2) is fixedly installed at the front end of the upper moving plate (83), and a support platform (9) is fixedly installed at the front end of the lower moving plate (83).
6. The glass drilling device capable of clamping glass of different thicknesses according to claim 5, characterized in that, The synchronous drive assembly includes a servo motor (81) and a bidirectional lead screw (82). The servo motor (81) is fixedly installed on the upper end of the fixed plate (7), and the upper and lower ends of the bidirectional lead screw (82) are rotatably connected to the upper and lower ends of the fixed plate (7). The output end of the servo motor (81) is fixedly connected to the bidirectional lead screw (82). Two moving plates (83) are threadedly connected to the bidirectional lead screw (82).
7. The glass drilling device capable of clamping glass of different thicknesses according to claim 6, characterized in that, The two movable plates (83) are symmetrically distributed at the upper and lower ends of the bidirectional lead screw (82).
8. The glass drilling device capable of clamping glass of different thicknesses according to claim 1, characterized in that, The XY axis moving assembly (6) consists of two parallel horizontal linear modules and one horizontal vertical linear module; the two parallel horizontal linear modules are fixedly installed on the inner bottom of the base (1), and the two ends of the horizontal vertical linear module are fixedly connected to the moving ends of the two parallel horizontal linear modules; the fixing plate (7) is fixedly connected to the moving ends of the horizontal vertical linear module.
Citation Information
Patent Citations
Glass punching device
CN221021765U