Fixed-length cutting device for glass product production

By combining the adjustment and lifting components, and using the synchronous pulley and synchronous belt to drive the sliding frame to slide on the screw, the glass tube can be cut to a fixed length. This solves the problem of the inability to quickly position and cut in the existing technology, and improves the cutting efficiency and accuracy.

CN223468315UActive Publication Date: 2025-10-24TAIXING ZHICHENG GLASS CO LTD
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Patent Information

Application Number
CN202422454785.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-11
Publication Date
2025-10-24
Estimated Expiration
2034-10-11

AI Technical Summary

Technical Problem

Existing cutting equipment cannot quickly position and cut glass tubes of different lengths, resulting in a significant time consumption.

Method used

By combining adjustment and lifting components, and through the cooperation of synchronous pulleys, synchronous belts and screws, the sliding frame can be precisely slid and the cutting machine components can be moved synchronously to achieve fixed-length cutting of glass tubes.

Benefits of technology

It improves the efficiency and accuracy of glass tube cutting, and reduces the number of steps and time consumed in the cutting process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of glass product cutting, in particular to a fixed-length cutting device for glass product production, which comprises a rack, a cutting machine component is arranged in the left end of the rack, two groups of screws are movably inserted in the left end of the rack, and baffles are fixedly mounted at the left ends of the two groups of screws. And the baffle is attached to an opening in the left side of the rack, the right ends of the two sets of screws are sleeved with a sliding frame, and an adjusting assembly is arranged in the sliding frame. The two sets of double-layer synchronous wheels, the two sets of first synchronous wheels, the first synchronous belt and the two sets of second synchronous belts are rotated, and the two sets of first synchronous wheels drive the sliding frame to slide on the two sets of screws, so that the leftward sliding length of the two sets of screws is adjusted, and the end of a glass tube is attached to the baffle; the sliding frame, the two sets of screws and the glass tube synchronously move leftwards, after the left side of the sliding frame is attached to the left end of the rack, the cutting length of the glass tube can be controlled, and the glass tube can be conveniently cut at different fixed distances and lengths.
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Description

TECHNICAL FIELD

[0001] The utility model relates to glass product cutting technical field, concretely is a fixed length cutting device for glass product production. BACKGROUND

[0002] Glass product is the life article, industrial article collectively called that adopts glass as main raw material and processes, and glass is a kind of relatively transparent solid substance, forms continuous network structure when melting, and gradually increases and hardens without crystallizing of silicate non-metallic material in the cooling process, and glass product is widely used in building, daily use, medical treatment, chemistry, home, electron, instrument, nuclear engineering etc., now cutting device needs to carry out segmented cutting to the glass tube produced in the use process, and in the process of cutting, different specification length's glass tube cannot be positioned and cut quickly, need to consume certain time to carry out cutting length positioning to glass tube, lead to the device to consume a large amount of time in the use process, for this, we propose a fixed length cutting device for glass product production to solve the above problems. UTILITY MODEL CONTENT

[0003] The utility model discloses a fixed length cutting device for glass product production, to solve the problem that the different specification length's glass tube cannot be positioned and cut quickly in the process of cutting in the background art, need to consume certain time to carry out cutting length positioning to glass tube, lead to the device to consume a large amount of time in the use process.

[0004] To achieve the above object, the utility model provides the following technical scheme: a fixed length cutting device for glass product production, including frame,

[0005] The left end in the frame is provided with cutting machine assembly, the left end in the frame is movably inserted with two groups of screw rods, the left end of two groups of screw rods is fixedly installed with baffle, the baffle is attached with the left side opening of frame, the right end of two groups of screw rods is sleeved with sliding frame, the sliding frame is provided with adjusting assembly, the left end in the frame is provided with lifting assembly.

[0006] Preferably, the adjusting assembly includes two groups of first synchronous wheels and two groups of double-layer synchronous wheels, two groups of the first synchronous wheels are rotatably installed in the lower end of the sliding frame, two groups of the double-layer synchronous wheels are rotatably installed in the upper end of the sliding frame, a first synchronous belt is sleeved on two groups of the double-layer synchronous wheels, two groups of second synchronous belts are sleeved on two groups of the double-layer synchronous wheels and two groups of the first synchronous wheels, two groups of the first synchronous wheels are threadedly sleeved on two groups of the screw rods, second springs are sleeved on two groups of the screw rods, and two groups of the second springs are between the left end of the frame and the left side of the sliding frame.

[0007] Preferably, the front side of the lower end of the frame is provided with a scale value.

[0008] Preferably, the lifting assembly comprises a fixed sleeve fixedly installed on the left end of the rack, a first connecting rod slidingly installed in the fixed sleeve, first sliding grooves formed on the front and back sides of the first connecting rod, first sliding blocks symmetrically installed on the right end of the fixed sleeve, a second connecting rod rotatably installed on the left end of the rack, the upper end of the first connecting rod being hingedly connected with the right end of the second connecting rod, a third connecting rod arranged on the left side of the rack, the upper and lower ends of the third connecting rod being connected with the left end of the second connecting rod and the upper side of the cutting machine assembly respectively, second sliding blocks fixedly installed on the left end of the cutting machine assembly, second sliding grooves symmetrically formed on the left end of the rack, the two groups of second sliding blocks sliding in the two groups of second sliding grooves, a first spring arranged in the left end of the rack, and a protrusion arranged on the upper end of the sliding frame.

[0009] Preferably, the lower side of the first connecting rod and the upper side of the first spring are both arranged in an inclined manner, and the lower end of the first sliding block and the upper side of the first spring are arranged in the same inclined direction.

[0010] Preferably, the two groups of second sliding blocks and the inner walls of the two groups of second sliding grooves are both T-shaped, and the two groups of second sliding blocks are matched with the inner walls of the two groups of second sliding grooves.

[0011] Compared with the prior art, the utility model has the advantages that: the two groups of double-layer synchronous wheels, the two groups of first synchronous wheels, the first synchronous belt and the two groups of second synchronous belts are rotated, the sliding frame is driven by the two groups of first synchronous wheels to slide on the two groups of screw rods, the sliding length of the two groups of screw rods to the left is adjusted, the glass tube end is attached to the baffle, the sliding frame, the two groups of screw rods and the glass tube are synchronously moved to the left, the left side of the sliding frame is attached to the left end of the rack, and then the cutting length of the glass tube can be controlled, the glass tube can be cut at different fixed lengths, when the sliding frame moves to the left end of the rack, the first spring on the upper end of the sliding frame drives the first sliding block, the second connecting rod, the third connecting rod and the cutting machine assembly to move, the cutting machine assembly is moved downward, the glass tube can be cut, the continuity of the glass tube cutting is improved, and the steps required for cutting the glass tube are reduced. BRIEF DESCRIPTION OF DRAWINGS

[0012] In order to more clearly illustrate the technical solutions of the embodiments of the present utility model or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or the prior art description. Obviously, the drawings in the following description are only some embodiments of the present utility model, and other drawings can also be obtained by those skilled in the art without any creative effort.

[0013] Figure 1 It is a structural front view of the present utility model;

[0014] Figure 2 It is a structure front view section schematic view of the utility model;

[0015] Figure 3 It is a structure right view section schematic view of the utility model;

[0016] Figure 4 It is a structure left view section schematic view of the utility model;

[0017] Figure 5 It is a structure right view section schematic view of the utility model in sliding frame;

[0018] Figure 6 It is the utility model Figure 3 A partial enlarged schematic view in the utility model;

[0019] Figure 7 It is the utility model Figure 4 B partial enlarged schematic view in the utility model.

[0020] In the figure: 1, rack;2, cutting machine assembly;3, screw;4, baffle;5, sliding frame;6, first synchronous wheel;7, double-layer synchronous wheel;8, first synchronous belt;9, second synchronous belt;10, fixed sleeve;11, first connecting rod;12, first sliding groove;13, first sliding block;14, second connecting rod;15, third connecting rod;16, second sliding block;17, second sliding groove;18, first spring;19, lug;20, second spring. Specific implementation

[0021] The technical scheme in the embodiments of the utility model will be described clearly and completely below in conjunction with the drawings in the embodiments of the utility model, obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by the person skilled in the art without creative labor are within the protection scope of the utility model.

[0022] Please refer to Figures 1-7 The utility model provides a kind of fixed-length cutting device for glass product production, including rack 1,

[0023] The left end of the rack 1 is provided with a cutting machine assembly 2, the left end of the rack 1 is movably provided with two groups of screw rods 3, the left end of the two groups of screw rods 3 is fixedly provided with a baffle 4, the baffle 4 is attached to the left side opening of the rack 1, the right end of the two groups of screw rods 3 is sleeved with a sliding frame 5, the sliding frame 5 is provided with an adjusting assembly, the left end of the rack 1 is provided with a lifting assembly, the sliding frame 5 is slid on the two groups of screw rods 3 through the adjusting assembly, the sliding distance of the two groups of screw rods 3, the baffle 4 and the sliding frame 5 to the left is controlled, and the glass tube moves to the left synchronously with the baffle 4 and the two groups of screw rods 3, that is, the cutting length of the glass tube can be controlled, and the cutting machine assembly 2 is lowered through the lifting assembly when the sliding frame 5 moves to the left, so that the glass tube can be cut synchronously;

[0024] Further, the adjusting assembly comprises two groups of first synchronous wheels 6 and two groups of double-layer synchronous wheels 7, the two groups of first synchronous wheels 6 are rotatably installed in the lower end of the sliding frame 5, the two groups of double-layer synchronous wheels 7 are rotatably installed in the upper end of the sliding frame 5, the first synchronous belt 8 is sleeved on the two groups of double-layer synchronous wheels 7, the two groups of second synchronous belts 9 are sleeved on the two groups of double-layer synchronous wheels 7 and the two groups of first synchronous wheels 6, the two groups of first synchronous wheels 6 are threadedly sleeved on the two groups of screw rods 3, the second spring 20 is sleeved on the two groups of screw rods 3, and the two groups of second springs 20 are between the left end of the rack 1 and the left side of the sliding frame 5, the structure can drive the sliding frame 5 to slide on the two groups of screw rods 3 by rotating the two groups of first synchronous wheels 6, the two groups of double-layer synchronous wheels 7, the first synchronous belt 8 and the two groups of second synchronous belts 9, that is, the sliding length of the baffle 4 and the two groups of screw rods 3 to the left can be controlled.

[0025] Further, the lower end of the rack 1 is provided with a scale value, the structure can accurately control the sliding adjustment of the sliding frame 5 on the two groups of screw rods 3 according to the scale value provided on the front side of the rack 1.

[0026] Further, the lifting assembly comprises a fixing sleeve 10 fixedly installed on the left end of the rack 1, a first connecting rod 11 slidably installed in the fixing sleeve 10, first sliding grooves 12 formed on the front and back sides of the first connecting rod 11, first sliding blocks 13 symmetrically installed on the right end of the fixing sleeve 10, a second connecting rod 14 rotatably installed on the left end of the rack 1, the upper end of the first connecting rod 11 hingedly connected with the right end of the second connecting rod 14, a third connecting rod 15 arranged on the left side of the rack 1, the upper and lower ends of the third connecting rod 15 respectively connected with the left end of the second connecting rod 14 and the upper side of the cutting machine assembly 2, second sliding blocks 16 fixedly installed on the left end of the cutting machine assembly 2, second sliding grooves 17 symmetrically formed on the left end of the rack 1, the two groups of second sliding blocks 16 sliding in the two groups of second sliding grooves 17, a first spring 18 arranged in the left end of the rack 1, and a protrusion 19 arranged on the upper end of the sliding frame 5.

[0027] Further, the lower side of the first connecting rod 11 and the upper side of the first spring 18 are both arranged in an inclined manner, the lower end of the first sliding block 13 and the upper side of the first spring 18 are arranged in the same inclined direction, and the shape of the first spring 18 is adapted to the lower side of the first connecting rod 11 when the first spring 18 moves, so that the first spring 18 continuously pushes the first connecting rod 11 upward when the sliding frame 5 moves to the left.

[0028] Further, the two groups of second sliding blocks 16 and the inner walls of the two groups of second sliding grooves 17 are both T-shaped, and the two groups of second sliding blocks 16 are adapted to the inner walls of the two groups of second sliding grooves 17, so that the two groups of second sliding blocks 16 can only slide upward and downward in the two groups of second sliding grooves 17, and drive the cutting machine assembly 2 to synchronously slide upward and downward.

[0029] Working principle: when the glass tube is cut to a fixed length, Figure 2As shown, the two sets of double-layer synchronous wheels 7 and the first synchronous belt 8 are rotated, the two sets of double-layer synchronous wheels 7 are rotated through the two sets of second synchronous belts 9 to drive the two sets of first synchronous wheels 6 to rotate on the two sets of screw rods 3, the two sets of first synchronous wheels 6 are rotated to drive the sliding frame 5 to slide left and right on the two sets of screw rods 3, and the glass tube is accurately adjusted according to the scale value on the front side of the rack 1, then the end of the glass tube is attached to the right side of the baffle 4, the glass tube is pushed by the pushing device at the right end of the rack 1, so that the glass tube, the two sets of screw rods 3, the baffle 4 and the sliding frame 5 are synchronously moved to the left, the sliding frame 5 is moved to the left through the upper first spring 18 and the lower first connecting rod 11, and the first spring 18 is moved to drive the first connecting rod 11 to be lifted upwards, the first connecting rod 11 is slid upwards in the fixed sleeve 10, the upper end of the first connecting rod 11 lifts the left end of the second connecting rod 14, the second connecting rod 14 is synchronously lowered at the left end, and the second connecting rod 14 drives the third connecting rod 15 to move downwards, the third connecting rod 15 moves downwards to drive the cutting machine assembly 2 to move downwards, the cutting machine assembly 2 is slid in the two sets of second sliding grooves 17 through the two sets of second sliding blocks 16, and the ends of the left and right ends of the glass tube are attached to the baffle 4 and the pushing device at the right end of the rack 1 respectively, so that the glass tube has a certain clamping and fixing effect when cutting, then the cutting machine assembly 2 cuts the glass tube, and the above is the whole working principle of the utility model.

[0030] It is apparent for those skilled in the art that the present application is not limited to the details of the above exemplary embodiments, but can be implemented in other concrete forms without departing from the spirit or essential characteristics of the present application. Therefore, the embodiments should be considered in all aspects as illustrative and not restrictive, and the scope of the present application is defined by the appended claims rather than the above description, and therefore all changes falling within the meaning and range of equivalents of the essential elements of the claims are intended to be embraced in the present application. Any reference signs in the claims should not be considered as limiting the claims involved.

Claims

1. A length cutting device for glass product production, comprising a rack (1), characterized in that: a cutting machine assembly (2) is arranged in the left end of the rack (1), two groups of screw rods (3) are movably arranged in the left end of the rack (1), a baffle (4) is fixedly arranged at the left end of the two groups of screw rods (3), the baffle (4) is attached to the left side opening of the rack (1), a sliding frame (5) is sleeved at the right end of the two groups of screw rods (3), an adjusting assembly is arranged in the sliding frame (5), and a lifting assembly is arranged in the left end of the rack (1).

2. The fixed-length cutting device for glass product production according to claim 1, characterized in that: The adjusting assembly comprises two groups of first synchronous wheels (6) and two groups of double-layer synchronous wheels (7), the two groups of first synchronous wheels (6) are rotatably arranged in the lower end of the sliding frame (5), the two groups of double-layer synchronous wheels (7) are rotatably arranged in the upper end of the sliding frame (5), a first synchronous belt (8) is sleeved on the two groups of double-layer synchronous wheels (7), two groups of second synchronous belts (9) are sleeved on the two groups of double-layer synchronous wheels (7) and the two groups of first synchronous wheels (6), the two groups of first synchronous wheels (6) are threadedly sleeved on the two groups of screw rods (3), a second spring (20) is sleeved on each of the two groups of screw rods (3), and the two groups of second springs (20) are arranged between the left end of the rack (1) and the left side of the sliding frame (5).

3. The fixed-length cutting device for glass product production according to claim 1, characterized in that: A scale value is arranged on the front side of the lower end of the rack (1).

4. The fixed-length cutting device for glass product production according to claim 1, characterized in that: The lifting assembly comprises a fixed sleeve (10) fixedly arranged on the left end of the rack (1), a first connecting rod (11) slidably arranged in the fixed sleeve (10), first sliding grooves (12) formed on the front and back sides of the first connecting rod (11), a first sliding block (13) symmetrically arranged in the right end of the fixed sleeve (10), a second connecting rod (14) rotatably arranged in the left end of the upper side of the rack (1), the upper end of the first connecting rod (11) hinged to the right end of the second connecting rod (14), a third connecting rod (15) arranged in the left side of the rack (1), the upper and lower ends of the third connecting rod (15) connected to the left end of the second connecting rod (14) and the upper side of the cutting machine assembly (2) respectively, a second sliding block (16) fixedly arranged on the left end of the cutting machine assembly (2), a second sliding groove (17) symmetrically formed in the left end of the rack (1), the two groups of second sliding blocks (16) slidably arranged in the two groups of second sliding grooves (17), a first spring (18) arranged in the left end of the rack (1), and a protrusion (19) arranged on the upper end of the sliding frame (5).

5. The fixed-length cutting device for producing a glass product according to claim 4, wherein: The lower side of the first connecting rod (11) and the upper side of the first spring (18) are both arranged in an inclined manner, the lower end of the first sliding block (13) and the upper side of the first spring (18) are arranged in the same inclined direction.

6. The length cutting device for producing a glass product according to claim 4, wherein: The two groups of second sliding blocks (16) and the inner walls of the two groups of second sliding grooves (17) are both T-shaped, and the two groups of second sliding blocks (16) are adapted to the inner walls of the two groups of second sliding grooves (17).