Adjustable glass cutting machine
By introducing an electric slide rail and auxiliary pushing components into the glass cutting machine, multi-directional positioning of the glass is achieved, solving the problem of glass skew and improving cutting accuracy.
Patent Information
- Application Number
- CN202520027572.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-02
- Publication Date
- 2025-12-05
- Estimated Expiration
- 2035-01-02
AI Technical Summary
Existing glass cutting machines lack adjustable positioning components, which causes the glass to easily tilt when it moves under the laser, affecting cutting accuracy.
An adjustable glass cutting machine was designed, comprising a conveyor frame, an electric slide rail, a cylinder, and an auxiliary pushing component. Through the electric slide rail and the pull-out frame in conjunction with a spring structure, multi-directional positioning of the glass is achieved, ensuring that the glass remains centered below the laser.
This effectively prevents the glass from tilting during the cutting process and improves cutting accuracy.
Smart Images

Figure CN223633260U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to glass cutting machine technical field especially relates to an adjustable glass cutting machine. BACKGROUND
[0002] Glass cutting machine is a kind of mechanical equipment specially used for glass processing and blanking, the whole production process uses computer control, and the degree of automation is high, maintenance is convenient, and laser glass cutting machine is a kind of high-precision equipment for cutting glass using laser technology, and its core component is laser, for generating high-energy laser beam, laser beam is guided to glass piece on the workbench through optical path system, and high-temperature point is formed on glass piece, so that glass is locally melted and gasified, to realize cutting.
[0003] When the existing glass cutting machine is used, in order to carry out flow cutting operation, glass is directly placed on the conveying frame, and the conveying belt is used to convey the glass, but the adjustable positioning assembly is not installed on the existing glass cutting machine, so that the glass cannot be kept in the center state when moving to the laser below, and it is easy to be inclined, so as to directly affect the cutting precision of the glass cutting machine, and the scrap rate is directly increased. UTILITY MODEL CONTENTS
[0004] In view of the problems in the prior art, the utility model provides an adjustable glass cutting machine, which solves the problem that the adjustable positioning assembly is not installed on the existing glass cutting machine, so that the glass cannot be kept in the center state when moving to the laser below, and it is easy to be inclined, so as to directly affect the cutting precision of the glass cutting machine.
[0005] The utility model is realized in this way, an adjustable glass cutting machine, including the conveying frame that can drive glass, still include: the top plate that is fixed in the conveying frame and supports the conveying belt, two groups of first electric slide rail sliding seats are fixed on the conveying frame along the front and back direction symmetry, the top frame is fixed on the first electric slide rail sliding seat through the first sliding seat, the second electric slide rail sliding seat is fixed on the top frame, the supporting plate is fixed on the second electric slide rail sliding seat through the second sliding seat, and the cylinder is embedded on the supporting plate, the piston rod of the cylinder is fixed with the laser that can cut glass through the horizontal plate, the auxiliary pushing assembly that is used in cooperation with glass is arranged on the conveying frame.
[0006] As a preferred embodiment of this utility model, the auxiliary pushing component includes a third electric slide rail fixed to the bottom of the conveyor frame and having built-in positive and negative threaded rods. Pull-out brackets are inserted on both sides of the top of the front and back of the conveyor frame. One end of two adjacent sets of pull-out brackets is fixed to a pressure plate located above the conveyor belt, and the other end of two adjacent sets of pull-out brackets is fixed to the third slide of the third electric slide rail. Multiple sets of T-shaped columns are inserted sequentially along the left and right direction on each set of pressure plates. A push plate is fixed to one end of one adjacent set of T-shaped columns. A first spring is wound around each set of T-shaped columns. The two ends of the first spring are fixed to the protruding end of the T-shaped column and the pressure plate. Multiple sets of limiting brackets are slidably arranged sequentially along the left and right direction on each set of pressure plates. A pressing bracket is inserted on each set of limiting brackets, and the bottom end of the pressing bracket is attached to the push plate. A second spring is wound around each set of pressing brackets. The two ends of the second spring are fixed to the top protruding end of the pressing bracket and the limiting bracket.
[0007] As a preferred embodiment of this utility model, each set of pressure plates is provided with a transverse slide, the bottom end of each set of limiting frames is fixed with a slide plate that can slide in the transverse slide, each set of slide plates is provided with an auxiliary pin, and the bottom of the inner cavity of each set of transverse slides is provided with multiple sets of auxiliary holes for the auxiliary pins to be inserted in sequence along the left and right directions.
[0008] As a preferred embodiment of this utility model, an arc-shaped plate is fixed to the top of each set of pressing frames, and a fixing cylinder is fixed to one side of the front and back of the top plate, and a T-shaped insert rod for inserting the arc-shaped plate is inserted into the fixing cylinder.
[0009] As a preferred embodiment of this utility model, the number of T-shaped columns on each set of push plates is at least three sets, and the limiting frame in each set is an L-shaped structure.
[0010] As a preferred embodiment of this utility model, guide blocks are fixed on the right side of both the front and back sides of the inner cavity of the conveyor frame, and the left side of the guide blocks is attached to the pressure plate and the push plate.
[0011] As a preferred embodiment of this invention, a gap is reserved between the push plate and the conveyor belt of the conveyor frame.
[0012] Compared with the prior art, the beneficial effects of this utility model are as follows:
[0013] The utility model discloses a set up auxiliary push component, utilize the third electric slide rail sliding seat of built -in right and left hand thread rod, and cooperate the pull -out frame, can change the position of the pressing plate and push board, and the design of first spring, and cooperate T type post, can give its certain buffer capacity when push board and glass contact, avoid the hard direct contact damage glass, thereby can according to the size of glass its side edge fast pressing positioning, and make it keep in the central state on the conveyer belt, and push board is in contact when with pressing plate, utilize the elastic resilience of second spring, will make pressing frame separate from the top of push board, and adhere to the top of glass, utilize pressing frame can to the top of glass at this time carry out the continuity pressing positioning, utilize adjustable positioning structure at this time, can according to the size of glass to its multidirectional positioning, can effectively guarantee glass keep in the central state when moving to the laser below, avoid glass in the process of cutting skew, improved the cutting accuracy of glass cutting machine. BRIEF DESCRIPTION OF DRAWINGS
[0014] Figure 1 It is the structure schematic diagram of the utility model;
[0015] Figure 2 It is the structure partial view of the utility model;
[0016] Figure 3 It is the structure partial explosion drawing of the utility model;
[0017] Figure 4 It is Figure 3 The structure enlarged view of A place in
[0018] In the drawing:
[0019] 1, conveying frame;2, top plate;3, first electric slide rail sliding seat;4, top frame;5, second electric slide rail sliding seat;6, air cylinder;7, laser;8, flow guide block;9, third electric slide rail sliding seat;10, pull -out frame;11, pressing plate;12, push board;13, T type post;14, first spring;15, horizontal slide;16, slide plate;17, limit frame;18, pressing frame;19, second spring;20, auxiliary bolt;21, auxiliary insertion hole;22, fixed cylinder;23, T type insertion rod. DETAILED DESCRIPTION
[0020] In order to further understand the utility model content, characteristics and efficacy of the utility model, the following examples are cited, and cooperate the drawing and are explained in detail as follows.
[0021] The structure of the utility model is described in detail below in combination with the drawings.
[0022] As Figures 1 to 4The utility model discloses an adjustable glass cutting machine, including the transmission frame 1 that can drive to glass, be provided with the controller on the supporting leg of transmission frame 1, still include: the top plate 2 of supporting of being fixed in transmission frame 1 to the conveyer belt, two groups of first electric slide rail sliding seat 3 are fixed along the front -back direction symmetry on transmission frame 1, and the top frame 4 is fixed on first electric slide rail sliding seat 3 through first sliding seat, and the second electric slide rail sliding seat 5 is fixed on the top frame 4, and the supporting plate is fixed on the second electric slide rail sliding seat 5 through second sliding seat, and the supporting plate is embedded with cylinder 6, and the piston rod of cylinder 6 is fixed with the laser 7 that can cut glass through the transverse plate, and the auxiliary pushing assembly that cooperates with glass is set up on transmission frame 1, through setting up auxiliary pushing assembly, utilize adjustable positioning structure, can according to the size of glass to its multidirectional positioning, can effectively guarantee that glass keeps the central state when moving to the below of laser 7, avoids the glass in the process of cutting and inclines, improves the cutting accuracy of glass cutting machine.
[0023] As the utility model is preferred, the auxiliary pushing assembly includes the third electric slide rail sliding seat 9 of fixing in transmission frame 1 bottom and built-in positive and negative screw rod, the both sides of transmission frame 1 front and back top are inserted with pull-out frame 10, and the pressing plate 11 located above the conveyer belt is fixed in one end of adjacent two groups of pull-out frame 10, and the other end of adjacent two groups of pull-out frame 10 is fixed on the third sliding seat of third electric slide rail sliding seat 9, and a plurality of T-shaped columns 13 are inserted in order along the left and right direction on each pressing plate 11, and the push plate 12 is fixed in one end of adjacent multiple T-shaped columns 13, and the first spring 14 is wound on each T-shaped column 13, and the both ends of first spring 14 are fixed on the protruding end of T-shaped column 13 and pressing plate 11, and a plurality of limiting frames 17 are slidably arranged in order along the left and right direction on each pressing plate 11, and the pressing frame 18 is inserted on each limiting frame 17, and the bottom end of pressing frame 18 is attached to the push plate 12, and the second spring 19 is wound on each pressing frame 18, and the both ends of second spring 19 are fixed on the top protruding end of pressing frame 18 and limiting frame 17, the third electric slide rail sliding seat 9 of built-in positive and negative screw rod is designed, and is matched with pull-out frame 10, pressing plate 11 and push plate 12, so that the side edge of glass can be quickly pressed and positioned according to the size of glass, and the glass can be kept in the central state on the conveyer belt, and when the push plate 12 contacts the pressing plate 11, the pressing frame 18 will be separated from the top of the push plate 12, and the locking state of the pressing frame 18 is released, so that the top of the glass can be continuously pressed and positioned by the pressing frame 18 under the cooperation of the second spring 19.
[0024] As the utility model discloses preferably, the horizontal slide 15 is arranged on each pressing plate 11, the slide plate 16 capable of sliding in the horizontal slide 15 is fixed to the bottom of each limiting frame 17, the auxiliary bolt 20 is inserted on each slide plate 16, and the auxiliary insertion hole 21 for the auxiliary bolt 20 is sequentially arranged on the bottom of the inner cavity of each horizontal slide 15 along the left-right direction, so that the size, position and quantity of the limiting frame 17 can be freely changed according to needs, the glass of different sizes can be better pressed and positioned, and the normal cutting of the laser 7 on the glass is not affected.
[0025] As the utility model discloses preferably, the arc-shaped plate is fixed to the top of each pressing frame 18, the fixed cylinder 22 is fixed to one side of the front and back of the top plate 2, the T-shaped insertion rod 23 for the arc-shaped plate is inserted in the fixed cylinder 22, the T-shaped insertion rod 23 can be placed in the fixed cylinder 22, so that the T-shaped insertion rod 23 is not lost, and the plurality of arc-shaped plates can be uniformly inserted by the T-shaped insertion rod 23, so that the plurality of arc-shaped plates can be driven to synchronously displace, and the position of the plurality of pressing frames 18 can be conveniently and quickly changed.
[0026] As the utility model discloses preferably, the number of the T-shaped column 13 on each push plate 12 is at least three, and each limiting frame 17 is in L-shaped structure, so that the number of the T-shaped column 13 is limited, the buffering effect of the push plate 12 is improved, the overall stability of the push plate 12 is improved, the limiting frame 17 in L-shaped structure can provide a mounting space for the pressing frame 18, and the pressing frame 18 can be stably clamped with the push plate 12.
[0027] As the utility model discloses preferably, the flow guide block 8 is fixed to the right side of the front and back of the inner cavity of the conveying frame 1, the left side of the flow guide block 8 is attached to the pressing plate 11 and the push plate 12, the flow guide block 8 can avoid that the glass directly contacts the pressing plate 11 and the push plate 12, and the normal transmission and conveying of the glass on the conveying frame 1 is not affected.
[0028] As the utility model discloses preferably, the push plate 12 and the conveying belt of the conveying frame 1 are reserved with a spacing, so that the push plate 12 does not directly contact the conveying belt, the normal operation of the push plate 12 is not affected, and the push plate 12 does not contact the pressing plate 11 when the push plate 12 does not contact the glass.
[0029] The working principle of the utility model is as follows:
[0030] Reference Figures 1 to 4The user opens the conveying frame 1 through the controller, so that the conveying belt on the conveying frame 1 can be driven to move the glass to a suitable position, at this time, the user closes the conveying frame 1 and opens the third electric sliding rail sliding seat 9, at this time, the built-in positive and reverse threaded rods can be used to drive the two groups of pulling frames 10 on the front and back sides to move reversely, so that the pressing plate 11 is reversely moved, and then the pressing plate 12 is synchronously displaced, and the pressing plate 12 will contact the glass in advance, at this time, the elastic rebound of the first spring 14 is used in combination with the limiting of the T-shaped column 13 on the pressing plate 12, so that the pressing plate 12 is given a certain buffering capacity, so as to avoid the hard direct contact of the pressing plate 12 to damage the glass, so that the glass can be quickly pressed and positioned according to the size of the glass, and the glass is kept in the centered state on the conveying belt, until the pressing plate 11 and the pressing plate 12 are attached, at this time, the pressing frame 18 will be lowered under the elastic action of the second spring 19 and will be separated from the top of the pressing plate 12, at this time, the pressing frame 18 can be used to continuously press and position the top of the glass, and the adjustable positioning structure is adopted, so that the glass can be positioned in multiple directions according to the size of the glass, so as to effectively ensure that the glass is kept in the centered state when moving to the position below the laser cutter 7, so as to avoid the glass from being inclined in the cutting process, at this time, the user opens the first electric sliding rail sliding seat 3, the second electric sliding rail sliding seat 5 and the air cylinder 6 through the controller, so that the position of the laser cutter 7 can be freely changed, and then the laser cutter 7 can be used to cut the glass.
[0031] It should be noted that the relational terms herein such as first and second and the like are used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any such actual relationship or order between such entities or actions. Moreover, the terms "comprises", "comprising", or any other variations thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can include other elements not expressly listed or inherent to such process, method, article, or apparatus.
[0032] Although the embodiments of the present application have been shown and described, it should be understood by those skilled in the art that various changes, modifications, substitutions and variations can be made thereto without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.
Claims
1. An adjustable glass cutting machine comprising a carriage (1) capable of transmitting motion to glass, characterized in that: Also include: The top plate (2) is fixed in the conveying frame (1) to support the conveying belt, two groups of first electric sliding rail slides (3) are symmetrically fixed on the conveying frame (1) in the front-back direction, the top frame (4) is fixed on the first electric sliding rail slide (3) through the first slide, the second electric sliding rail slide (5) is fixed on the top frame (4), the supporting plate is fixed on the second electric sliding rail slide (5) through the second slide, the air cylinder (6) is embedded on the supporting plate, the piston rod of the air cylinder (6) is fixed with the laser (7) capable of cutting glass through the cross plate, the conveying frame (1) is provided with an auxiliary pushing assembly used in cooperation with the glass.
2. An adjustable glass cutting machine as claimed in claim 1, wherein: The auxiliary pushing assembly comprises a third electric sliding rail slide (9) fixed on the bottom of the conveying frame (1) and provided with a positive and negative screw rod, pull frames (10) are inserted on both sides of the top of the front and back of the conveying frame (1), one end of adjacent two groups of pull frames (10) is fixed with a pressing plate (11) located above the conveying belt, the other end of adjacent two groups of pull frames (10) is fixed on the third slide of the third electric sliding rail slide (9), a plurality of T-shaped columns (13) are sequentially inserted on each group of pressing plates (11) in the left-right direction, one end of adjacent groups of T-shaped columns (13) is fixed with a push plate (12), a first spring (14) is wound on each group of T-shaped columns (13), both ends of the first spring (14) are fixed on the protruding end of the T-shaped column (13) and the pressing plate (11), a plurality of limiting frames (17) are sequentially and slidably arranged on each group of pressing plates (11) in the left-right direction, a pressing frame (18) is inserted on each group of limiting frames (17) and the bottom end of the pressing frame (18) is attached to the push plate (12), a second spring (19) is wound on each group of pressing frames (18), both ends of the second spring (19) are fixed on the top protruding end of the pressing frame (18) and the limiting frame (17).
3. An adjustable glass cutting machine as defined in claim 2, wherein: A transverse slide (15) is formed on each group of pressing plates (11), the bottom end of each group of limiting frames (17) is fixed with a sliding plate (16) capable of sliding in the transverse slide (15), an auxiliary pin (20) is inserted on each group of sliding plates (16), a plurality of auxiliary insertion holes (21) for inserting the auxiliary pin (20) are sequentially formed in the bottom of the inner cavity of each group of transverse slides (15) in the left-right direction.
4. An adjustable glass cutting machine as defined in claim 2, wherein: The top of each group of pressing frames (18) is fixed with an arc-shaped plate, a fixed cylinder (22) is fixed on one side of the front and back of the top plate (2), a T-shaped insertion rod (23) is inserted in the fixed cylinder (22) and used in cooperation with the arc-shaped plate.
5. An adjustable glass cutting machine as defined in claim 2, wherein: The number of T-shaped columns (13) on each group of push plates (12) is at least three groups, and each group of limiting frames (17) is in L-shaped structure.
6. An adjustable glass cutting machine as defined in claim 2, wherein: The right side of the front and back of the inner cavity of the conveying frame (1) is fixed with a flow guide block (8), and the left side of the flow guide block (8) is attached to the pressing plate (11) and the push plate (12).
7. An adjustable glass cutting machine as defined in claim 2, wherein: A space is reserved between the push plate (12) and the conveying belt of the conveying frame (1).