Conveying mechanism of glass printing machine and using method of conveying mechanism

The glass printing machine's adjustable guidance system with integrated dust removal addresses misalignment and friction issues, ensuring accurate alignment and improved printing quality and adaptability.

CN120308658AInactive Publication Date: 2025-07-15新沂市铭达玻璃有限公司
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202510621356.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-14
Publication Date
2025-07-15
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

During the transportation process of existing glass printing machines, the glass is prone to inclination, resulting in error in printing position, and the sliding friction between the glass and the guide plate causes wear, affecting the aesthetic effect.

Method used

The guide belt structure of adjustable inclined sections and vertical sections is adopted, combined with the vacuum cleaner assembly, the glass is directed to the center of the drum through the inclined section. The vertical section keeps the glass vertical, and the dust is cleaned through the vacuum cleaner assembly to adapt to glass of different sizes.

Benefits of technology

Effectively reduce glass inclination, reduce sliding friction, improve printing accuracy and cleanliness of glass surfaces, and enhance the practicality of the device.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120308658A_ABST
    Figure CN120308658A_ABST
Patent Text Reader

Abstract

The invention discloses a conveying mechanism of a glass printing machine and a using method of the conveying mechanism. The conveying mechanism comprises a machine body, and a conveying roller for conveying glass is arranged at the upper end of the inner side of the machine body; the printing box is arranged at one end of the upper surface of the machine body to print the conveyed glass; the mounting plate is detachably mounted at the upper end of the side wall of the machine body, and a fixed pipe is fixed on the mounting plate; the position adjusting assembly is arranged on one side of the fixing pipe; through the adjustable inclined section and the vertical section, the device can well enable glass to return to the center of the conveying roller, then the glass is kept vertical through the vertical section, inclination is reduced, the inclined section and the vertical section are easy to adjust, and the application range of glass of different sizes is widened; sliding friction between the glass conveying device and the glass can be reduced through the moving guide belt, the influence of friction on the surface of the glass is reduced, dust on the surface of the glass can be sucked and cleaned in the conveying process through the arranged dust suction assembly, and it is guaranteed that the surface of the glass is clean.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of glass printing machine conveying, and particularly relates to a conveying mechanism of a glass printing machine and its using method. Background Art

[0002] Glass printing is a technology that prints patterns or designs on the surface of glass, and is usually used in fields such as decoration, identification, advertising, architecture, and home. It can transfer patterns, words, or images firmly onto the glass surface through various printing methods, making the glass surface more beautiful and practical. When printing a batch of glass, generally, a plurality of glasses are conveyed to the inside of the printing box through conveying rollers to achieve an automatic printing effect.

[0003] When conveying glass for printing currently, in order to reduce the deviation of the glass placement position, which may cause incorrect printing positions, generally, a "V"-shaped guiding plate is used to guide the conveyed glass so that the glass is concentrated at the middle position of the conveying roller. However, this kind of guiding cannot correct the tilting of the glass placement well, resulting in the influence on the printing effect when the glass is tilted, and the sliding friction between the glass and the guiding plate will also cause wear on the glass surface, affecting the aesthetic effect of the glass. For this reason, we propose a conveying mechanism of a glass printing machine and its using method. Summary of the Invention

[0004] The purpose of the present invention is to provide a conveying mechanism of a glass printing machine and its using method to solve the problems raised in the above background art.

[0005] To achieve the above purpose, the present invention provides the following technical solution: A conveying mechanism of a glass printing machine, comprising: A machine body, and a conveying roller for conveying glass is arranged at the upper end inside the machine body; A printing box, which is arranged at one end of the upper surface of the machine body to print the conveyed glass; A mounting plate, which is detachably mounted at the upper end of the side wall of the machine body, and a fixed pipe is fixed on the mounting plate; A position adjusting component, which is arranged on one side of the fixed pipe, and a guiding belt for guiding the glass is sleeved on the outer surface of the position adjusting component; Wherein, the guiding belt includes an inclined section and a vertical section. One end of the vertical section has an inclined section corresponding to the incoming material direction, and the vertical section is perpendicular to the conveying roller; A dust suction component, which is slidably mounted at the top of the position adjusting component to remove dust from the conveyed glass.

[0006] Preferably, the position adjusting assembly includes an annular cylinder, an adjusting rod, a first guiding roller, a telescopic member, a connecting plate and a second guiding roller. The annular cylinder is sleeved on one end of the fixed tube. A first guiding roller is connected to one side wall of the annular cylinder through the adjusting rod. The telescopic member is slidably mounted on the fixed tube through an elastic structure, and one end of the telescopic member is fixed with a connecting plate. A second guiding roller cooperating with the guiding belt is arranged on the lower surface of the connecting plate.

[0007] As a preferred solution of the present invention, wherein: the telescopic member includes a first telescopic block, a second telescopic block and a limiting bolt. One end of the first telescopic block has a sliding sleeve slidably matched with the fixed tube. The other end of the first telescopic block is slidably connected with a second telescopic block cooperating with the connecting plate, and a limiting bolt for locking the second telescopic block is connected to one side wall of the first telescopic block through a threaded portion.

[0008] As a preferred solution of the present invention, wherein: the elastic structure includes a spring and a fixing block. The fixing block is fixed on the fixed tube. The spring is slidably sleeved on the outer surface of the fixed tube, and two ends of the spring are respectively abutted against the sliding sleeve and the fixing block.

[0009] As a preferred solution of the present invention, wherein: a guiding block cooperating with the dust suction assembly is fixed on the connecting plate.

[0010] As a preferred solution of the present invention, wherein: an adjusting bolt is connected to the front surface of the annular cylinder through a threaded portion, and the adjusting bolt abuts against the fixed tube.

[0011] As a preferred solution of the present invention, wherein: the dust suction assembly includes a support block, a dust suction block, a dust suction port, a connecting chute and a connecting pipe. Connecting chutes slidably matched with the position adjusting assembly are formed at both ends of the lower surface of the support block. A dust suction block is fixed in the middle of the lower surface of the support block, and a dust suction port is formed in the lower surface of the dust suction block. Connecting pipes communicating with the inside of the dust suction port are arranged on both end faces of the support block.

[0012] As a preferred solution of the present invention, wherein: there are two guiding belts.

[0013] A using method of a conveying mechanism of a glass printing machine includes the following steps: S1. Place the glass to be printed on the conveying roller. The motor inside the machine body drives the conveying roller to move to convey the glass. When the glass contacts the inclined section, the glass is guided from the edge of the conveying roller to the center through two symmetrical inclined sections. S2. The glass continues to move to contact the vertical section. The two vertical sections contact the side surface of the glass to straighten the glass and reduce the inclination of the glass. S3. The dust suction block is externally connected to a dust suction machine through a connecting pipe, and negative pressure is generated inside the dust suction port to suck and remove the dust on the glass surface. After removal, the glass is conveyed to the inside of the printing box for printing; S4. When the size of the glass is adjusted, loosen the limit bolt to make the second telescopic block slide inside the first telescopic block to adjust the distance between the two vertical sections to match the width of the glass; S5. Further loosen the adjusting bolt to make the ring cylinder rotate around the fixed pipe, and then adjust the position of the first guide roller to change the angle between the inclined section and the vertical section, so that the distance between one ends of the two inclined sections adapts to the width of the glass. After adjustment, the spring pushes the sliding sleeve to slide on the fixed pipe to automatically tension the guide belt by the second guide roller.

[0014] Compared with the prior art, the beneficial effects of the present invention are: Through the adjustable inclined section and vertical section of the present invention, it avoids the conventional guiding of the glass. Only through the guiding plates arranged in a "V" shape, it is not easy to keep the glass vertical, and there is a risk of tilting when the glass is conveyed. This device can well center the glass on the conveying roller, and then keep the glass vertical through the vertical section, reducing tilting, and it is easy to adjust the inclined section and the vertical section, improving the applicable range for glasses of different sizes. Through the moving guide belt, the sliding friction between the guide belt and the glass can also be reduced, reducing the impact of friction on the glass surface. By providing a dust suction component, it is beneficial to suck and clean the dust on the glass surface during the conveying process, reducing the interference of dust on glass printing and increasing the practicality of the device. Description of the Drawings

[0015] Figure 1 is the overall structural schematic diagram of the present invention; Figure 2 is the structural schematic diagram of the guide belt installation of the present invention; Figure 3 is the structural schematic diagram of the position adjustment component of the present invention; Figure 4 is the structural schematic diagram of the telescopic member of the present invention; Figure 5 is the structural schematic diagram of the ring cylinder of the present invention; Figure 6 is the structural schematic diagram of the dust suction component of the present invention.

[0016] It should be noted that in the original text, the description of the guiding plates arranged in a "V" shape in the beneficial effect part seems incorrect. It should be "in a 'V' shape" instead of "in an 'eight' shape" according to the context. The translation has been corrected accordingly.In the figure: 1, machine body; 2, printing box; 3, conveying roller; 4, mounting plate; 5, fixed pipe; 6, position adjusting component; 601, annular cylinder; 602, adjusting rod; 603, first guiding roller; 604, telescopic component; 6041, first telescopic block; 6042, second telescopic block; 6043, limit bolt; 605, connecting plate; 606, second guiding roller; 607, sliding sleeve; 608, spring; 609, fixed block; 610, guiding block; 611, adjusting bolt; 7, inclined section; 8, vertical section; 9, dust suction component; 901, support block; 902, dust suction block; 903, dust suction port; 904, connecting chute; 905, connecting pipe. Specific embodiments

[0017] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0018] Please refer to Figures 1-6 , the present invention provides a technical solution: a conveying mechanism of a glass printing machine, including: Machine body 1, and a conveying roller 3 for conveying glass is arranged at the upper end inside the machine body 1; Printing box 2, which is arranged at one end of the upper surface of the machine body 1 to print the conveyed glass; Mounting plate 4, which is detachably installed at the upper end of the side wall of the machine body 1, and a fixed pipe 5 is fixed on the mounting plate 4 to facilitate the installation of the position adjusting component 6; Position adjusting component 6, which is arranged on one side of the fixed pipe 5, and a guiding belt for guiding the glass is sleeved on the outer surface of the position adjusting component 6 to facilitate adjusting the position of the guiding belt, so as to ensure that the glass entering the inside of the printing box 2 is in a suitable printing position; Among them, the guiding belt includes an inclined section 7 and a vertical section 8. One end of the vertical section 8 has an inclined section 7 corresponding to the incoming material direction, and the vertical section 8 is perpendicular to the conveying roller 3, so as to make the glass return to the central position of the conveying roller 3 through the inclined section 7 and keep the glass vertical through the vertical section 8, avoiding the glass from tilting left and right at the upper end of the conveying roller 3 and affecting the subsequent printing effect; Dust suction component 9, which is slidably installed at the top of the position adjusting component 6 to remove dust from the conveyed glass, so as to ensure the cleanliness of the upper surface of the glass and avoid affecting printing.

[0019] Preferably, the position adjusting assembly 6 includes a ring cylinder 601, an adjusting rod 602, a first guide roller 603, a telescopic member 604, a connecting plate 605 and a second guide roller 606. The ring cylinder 601 is sleeved on one end of the fixed tube 5. One side wall of the ring cylinder 601 is connected with the first guide roller 603 through the adjusting rod 602. The telescopic member 604 is slidably installed on the fixed tube 5 through an elastic structure, and one end of the telescopic member 604 is fixed with the connecting plate 605. A second guide roller 606 matched with the guide belt is arranged on the lower surface of the connecting plate 605, which is convenient to form an inclined section 7 and a vertical section 8 of the guide belt through the first guide roller 603 and a plurality of second guide rollers 606 to achieve different guiding effects on the glass.

[0020] Preferably, the telescopic member 604 includes a first telescopic block 6041, a second telescopic block 6042 and a limit bolt 6043. One end of the first telescopic block 6041 has a sliding sleeve 607 slidably matched with the fixed tube 5. The other end of the first telescopic block 6041 is slidably connected with the second telescopic block 6042 matched with the connecting plate 605, and a limit bolt 6043 for locking the second telescopic block 6042 is connected to one side wall of the first telescopic block 6041 through a threaded portion, which is convenient to adjust the second guide roller 606 to cooperate with glasses of different sizes.

[0021] Preferably, the elastic structure includes a spring 608 and a fixing block 609. The fixing block 609 is fixed on the fixed tube 5. The spring 608 is slidably sleeved on the outer surface of the fixed tube 5, and both ends of the spring 608 are respectively abutted against the sliding sleeve 607 and the fixing block 609, which is convenient to automatically tension the guide belt after adjustment.

[0022] Preferably, a guide block 610 matched with the dust suction assembly 9 is fixed on the connecting plate 605.

[0023] Preferably, an adjusting bolt 611 is connected to the front surface of the ring cylinder 601 through a threaded portion, and the adjusting bolt 611 abuts against the fixed tube 5, which is convenient to adjust the inclination effect of the inclined section 7 to guide glasses of different sizes.

[0024] Preferably, the dust suction assembly 9 includes a support block 901, a dust suction block 902, a dust suction port 903, a connecting chute 904 and a connecting pipe 905. Connecting chutes 904 slidably matched with the position adjusting assembly 6 are arranged at both ends of the lower surface of the support block 901. A dust suction block 902 is fixed in the middle of the lower surface of the support block 901, and a dust suction port 903 is arranged on the lower surface of the dust suction block 902. Connecting pipes 905 communicated with the inside of the dust suction port 903 are arranged on both end faces of the support block 901, which is convenient to suck and remove the dust on the glass surface, improve the cleaning effect of the glass surface and reduce the influence of dust on glass printing.

[0025] Preferably, the support block 901 is rectangular.

[0026] Preferably, there are two guiding belts, which facilitate better guiding of the glass.

[0027] A method for using a conveying mechanism of a glass printing machine includes the following steps: S1. Place the glass to be printed on the conveying roller 3. The motor inside the machine body 1 drives the conveying roller 3 to move to convey the glass. When the glass contacts the inclined section 7, the glass is diverted from the edge of the conveying roller 3 to the center through the two symmetrical inclined sections 7. S2. The glass continues to move to contact the vertical section 8. The two vertical vertical sections 8 contact the side surface of the glass to straighten the glass and reduce the inclination of the glass. S3. The dust suction block 902 is externally connected to a dust suction machine through a connecting pipe 905, and negative pressure is generated inside the dust suction port 903 to suck and remove the dust on the glass surface. After removal, the glass is conveyed to the inside of the printing box 2 for printing. S4. When the size of the glass is adjusted, loosen the limit bolt 6043 so that the second telescopic block 6042 slides inside the first telescopic block 6041 to adjust the distance between the two vertical sections 8 to match the width of the glass. S5. Further loosen the adjusting bolt 611 to make the ring cylinder 601 rotate around the fixed pipe 5, and then adjust the position of the first guide roller 603 to change the angle between the inclined section 7 and the vertical section 8, so that the distance between one ends of the two inclined sections 7 adapts to the width of the glass. After adjustment, the spring 608 pushes the sliding sleeve 607 to slide on the fixed pipe 5 to automatically tension the guiding belt by the second guide roller 606.

[0028] For those skilled in the art, it is obvious that the present invention is not limited to the details of the above exemplary embodiments, and without departing from the spirit or basic characteristics of the present invention, the present invention can be implemented in other specific forms. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-limiting. The scope of the present invention is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the present invention. Any reference signs in the claims should not be regarded as limiting the claims involved.

Claims

1. A conveying mechanism of a glass printing machine, characterized in that, Comprising: A machine body (1), at the upper end inside the machine body (1), there is a conveying roller (3) for conveying glass; A printing box (2), arranged at one end of the upper surface of the machine body (1) to print the conveyed glass; A mounting plate (4), detachably mounted at the upper end of the side wall of the machine body (1), and a fixed pipe (5) is fixed on the mounting plate (4); A position adjusting component (6), arranged on one side of the fixed pipe (5), and a guiding belt for guiding the glass is sleeved on the outer surface of the position adjusting component (6); Wherein, the guiding belt includes an inclined section (7) and a vertical section (8), one end of the vertical section (8) has an inclined section (7) corresponding to the incoming material direction, and the vertical section (8) is perpendicular to the conveying roller (3); A dust suction component (9), slidably mounted at the top of the position adjusting component (6) to remove dust from the conveyed glass.

2. The conveying mechanism of a glass printing machine according to claim 1, characterized in that: The position adjusting component (6) includes a ring cylinder (601), an adjusting rod (602), a first guiding roller (603), a telescopic member (604), a connecting plate (605) and a second guiding roller (606). The ring cylinder (601) is sleeved at one end of the fixed pipe (5). One side wall of the ring cylinder (601) is connected with a first guiding roller (603) through the adjusting rod (602). The telescopic member (604) is slidably mounted on the fixed pipe (5) through an elastic structure. One end of the telescopic member (604) is fixed with a connecting plate (605). A second guiding roller (606) matched with the guiding belt is arranged on the lower surface of the connecting plate (605).

3. The conveying mechanism of a glass printing machine according to claim 2, wherein: The telescopic member (604) includes a first telescopic block (6041), a second telescopic block (6042) and a limit bolt (6043). One end of the first telescopic block (6041) has a sliding sleeve (607) slidably matched with the fixed pipe (5). The other end of the first telescopic block (6041) is slidably connected with a second telescopic block (6042) matched with the connecting plate (605). And a limit bolt (6043) for locking the second telescopic block (6042) is connected to one side wall of the first telescopic block (6041) through a threaded part.

4. The conveying mechanism of a glass printing machine according to claim 3, wherein: The elastic structure includes a spring (608) and a fixed block (609). The fixed block (609) is fixed on the fixed pipe (5). The spring (608) is slidably sleeved on the outer surface of the fixed pipe (5). And the two ends of the spring (608) are respectively abutted against the sliding sleeve (607) and the fixed block (609).

5. The conveying mechanism of a glass printing machine according to claim 2, characterized in that: A guiding block (610) matched with the dust suction component (9) is fixed on the connecting plate (605).

6. The conveying mechanism of a glass printing machine according to claim 2, characterized in that: An adjusting bolt (611) is connected to the front surface of the ring cylinder (601) through a threaded part, and the adjusting bolt (611) abuts against the fixed pipe (5).

7. The conveying mechanism of a glass printing machine according to claim 1, characterized in that: The dust suction assembly (9) includes a support block (901), a dust suction block (902), a dust suction port (903), a connecting chute (904) and a connecting pipe (905). At both ends of the lower surface of the support block (901), there are connecting chutes (904) which are slidably matched with the position adjusting assembly (6). In the middle of the lower surface of the support block (901), a dust suction block (902) is fixed, and a dust suction port (903) is formed on the lower surface of the dust suction block (902). Connecting pipes (905) communicating with the inside of the dust suction port (903) are arranged on both end faces of the support block (901).

8. The conveying mechanism of a glass printing machine according to claim 7, characterized in that: The support block (901) is rectangular.

9. The conveying mechanism of a glass printing machine according to claim 1, characterized in that: There are two guiding belts.

10. A method for using a conveying mechanism of a glass printing machine according to any one of claims 1-9, characterized in that, It includes the following steps: S1. Place the glass to be printed on the conveying roller (3). The motor inside the machine body (1) drives the conveying roller (3) to move for glass conveying. When the glass contacts the inclined section (7), the glass is guided from the edge of the conveying roller (3) to the center through two symmetric inclined sections (7). S2. The glass continues to move to contact the vertical section (8). The two vertical vertical sections (8) contact the side surface of the glass to straighten the glass and reduce the inclination of the glass. S3. The dust suction block (902) is externally connected to a dust suction machine through the connecting pipe (905). Negative pressure is generated inside the dust suction port (903) to suck and remove the dust on the glass surface. After removal, the glass is conveyed to the inside of the printing box (2) for printing. S4. When the size of the glass is adjusted, loosen the limit bolt (6043) to make the second telescopic block (6042) slide inside the first telescopic block (6041) to adjust the distance between the two vertical sections (8) to match the width of the glass. S5. Further loosen the adjusting bolt (611) to make the annular cylinder (601) rotate around the fixed pipe (5), and then adjust the position of the first guide roller (603) to change the angle between the inclined section (7) and the vertical section (8), so that the distance between one ends of the two inclined sections (7) adapts to the width of the glass. After adjustment, the spring (608) pushes the sliding sleeve (607) to slide on the fixed pipe (5) to automatically tension the guiding belt by the second guide roller (606).