Laminating machine for glass production
By introducing a heat dissipation mechanism into the glass lamination machine for glass production and using a fan to quickly cool down, the problem of high temperature on the glass surface after lamination is solved, ensuring the safety of staff.
Patent Information
- Application Number
- CN202421200836.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-05-29
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2034-05-29
AI Technical Summary
The existing glass lamination machine for glass production has a high temperature after lamination, which lacks heat dissipation function, which can easily cause burns to the hands of staff.
A glass lamination machine for production is designed, which includes a heat dissipation mechanism to quickly dissipate the laminated glass through a fan to reduce the glass temperature and ensure the safety of the staff when removing the glass.
It effectively reduces the glass temperature after lamination, avoids scalding of the staff's hands, and improves the safety of use.
Smart Images

Figure CN222921213U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of laminating machines, in particular to a laminating machine for glass production. Background Art
[0002] The glass laminating machine is a special equipment that uses the vacuum principle to heat the glass under vacuum conditions, use atmospheric pressure to compress the glass in the vacuum bag to expel air, so that no bubbles are generated, and melt the film at a suitable temperature, thereby gluing two or more pieces of glass together.
[0003] After searching, the authorization announcement number CN215627648U is a glass production laminating machine, whose structure includes a load-bearing base, a support column, a support seat, a connecting frame, a hydraulic pump 1, a hydraulic rod 1, a clamping piece, a threaded plate, a movable groove, a movable block, a threaded motor, a threaded rod, a limit plate, a connecting column, a connecting plate, a hydraulic pump 2, a hydraulic rod 2 and a heating plate, and the support column is arranged on the load-bearing base. The practical new type belongs to the technical field of laminating machines, specifically a glass production laminating machine, which effectively solves the defects of most traditional glass production laminating machines on the market, such as simple functions and crude structures. While ensuring the basic glass laminating effect, it can also heat all parts of the glass at one time to avoid the poor laminating effect caused by uneven heating effect. It is a very excellent glass production laminating machine.
[0004] However, after the laminating machine completes the laminating work on the glass, the surface temperature of the glass will be relatively high. Since the laminating machine does not have the heat dissipation function for the glass, it is easy to cause burns to the hands of the staff when taking out the glass.
[0005] Therefore, it is necessary to provide a new glass production laminating machine to solve the above technical problems. Utility Model Content
[0006] In order to solve the technical problem that the existing laminating machine does not have the heat dissipation function for the glass, and thus easily causes burns to the hands of the staff when taking out the glass, the utility model provides a laminating machine for glass production.
[0007] The laminating machine for glass production provided by the utility model includes: a first housing, with a discharge port opened on one side of the first housing; a second housing fixedly installed on one side of the first housing; a plurality of rotating shafts respectively rotatably installed on the first housing and the second housing, and a roller is fixedly sleeved on each of the plurality of rotating shafts; two conveyor belts respectively sleeved on the plurality of rollers; two driving motors respectively fixedly installed on the first housing and the second housing, and the output shafts of the two driving motors are respectively fixedly connected to one ends of two of the rotating shafts; a vacuum pump fixedly installed on one side of the first housing, a suction pipe is fixedly installed on the suction end of the vacuum pump, and one end of the suction pipe extends into the interior of the first housing and is installed on the first housing with a clamping mechanism for fixing the glass; a heating mechanism assembled on the first housing for laminating the glass; a shielding mechanism installed on the first housing for shielding the discharge port; a heat dissipation mechanism assembled on the second housing for cooling the glass.
[0008] As a further scheme of the utility model, the clamping mechanism includes: two first electric telescopic rods respectively fixedly installed on the inner walls of both sides of the first housing; two fixing plates respectively fixedly installed on the output rods of the two first electric telescopic rods, and anti-slip pads are fixedly installed on one side of the two fixing plates close to each other.
[0009] As a further scheme of the utility model, the heating mechanism includes: a screw rod rotatably installed on the inner walls of both sides of the first housing, and one end of the screw rod extends to the outside of the first housing; a slide rod fixedly installed on the inner walls of both sides of the first housing, a slider is slidably installed on the slide rod, and the slider is threadedly connected to the screw rod; a servo motor arranged on one side of the first housing, and the output shaft of the servo motor is fixedly connected to one end of the screw rod; an electric push rod fixedly installed at the bottom of the slider, an installation plate is fixedly installed on the output rod of the electric push rod, and a heating plate is fixedly installed at the bottom of the installation plate.
[0010] As a further scheme of the utility model, the shielding mechanism includes: a second electric telescopic rod fixedly installed on one side of the first housing; a stopper fixedly installed on the output rod of the second electric telescopic rod, and the stopper is arranged corresponding to the discharge port.
[0011] As a further scheme of the utility model, the heat dissipation mechanism includes: a bracket fixedly installed on the inner wall of the top of the second housing; a plurality of fans fixedly installed at the bottom of the bracket.
[0012] As a further scheme of the utility model, a placing port is opened on one side of the first housing, and a sealing door is arranged on the placing port.
[0013] As a further solution of the present utility model, a protective case is fixedly installed on one side of the first housing, and one side inner wall of the protective case is fixedly connected to one side of the servo motor.
[0014] Compared with the related art, the laminating machine for glass production provided by the present utility model has the following beneficial effects:
[0015] The present utility model provides a laminating machine for glass production. Through the feeding port, the double-layer glass to be laminated can be placed on the conveyor belt inside the first housing. After placing, the feeding port is blocked by the sealing door. Through the clamping mechanism, the double-layer glass can be effectively fixed, which can prevent the double-layer glass from shifting during the laminating work. Through the heating mechanism, the double-layer glass can be uniformly heated, so that the film between the double-layer glasses melts, and an effective laminating work on the double-layer glass is carried out, avoiding the situation of poor laminating effect caused by uneven heating effect. Through the vacuum pump, the air in the first housing can be pumped away, so that the laminating machine laminates the double-layer glass in a vacuum environment, which is beneficial to improving the laminating effect. Through the shielding mechanism, the discharge port can be blocked and the blockage of the discharge port can also be released. When releasing the blockage, two driving motors can be started to drive the two conveyor belts to rotate, so that the processed double-layer glass can be conveyed into the second housing. Through the heat dissipation mechanism, the laminated double-layer glass can be quickly cooled. When the temperature of the double-layer glass drops, the staff can take it away relatively safely without scalding the hands of the staff, and the use effect is good. Description of the Drawings
[0016] For the convenience of those skilled in the art to understand, the present utility model will be further described below with reference to the drawings.
[0017] Figure 1 It is a three-dimensional structural schematic diagram of a preferred embodiment of the laminating machine for glass production provided by the present utility model;
[0018] Figure 2 It is a sectional structural schematic diagram of the present utility model;
[0019] Figure 3 It is Figure 2 an enlarged structural schematic diagram of part A in
[0020] Figure 4 It is Figure 2 an enlarged structural schematic diagram of part B in
[0021] In the figure: 1. First housing; 2. Discharge port; 3. Second housing; 4. Rotating shaft; 5. Roller; 6. Conveyor belt; 7. Driving motor; 8. First electric telescopic rod; 9. Fixed plate; 10. Vacuum pump; 11. Screw; 12. Slide bar; 13. Slide block; 14. Servo motor; 15. Electric push rod; 16. Mounting plate; 17. Heating plate; 18. Second electric telescopic rod; 19. Stopper; 20. Sealing door; 21. Bracket; 22. Fan. Detailed implementation manner
[0022] Please refer to Figures 1-4 , in which, Figure 1 is a schematic three-dimensional structure diagram of a preferred embodiment of the laminating machine for glass production provided by the present utility model; Figure 2 is a schematic cross-sectional structure diagram of the present utility model; Figure 3 is Figure 2 an enlarged structure diagram of part A in Figure 4 is Figure 2 an enlarged structure diagram of part B in . The laminating machine for glass production includes: a first housing 1, on one side of which there is a discharge port 2; a second housing 3 fixedly installed on one side of the first housing 1; a plurality of rotating shafts 4 respectively rotatably installed on the first housing 1 and the second housing 3, and a roller 5 is fixedly sleeved on each of the plurality of rotating shafts 4; two conveyor belts 6 respectively sleeved on the plurality of rollers 5; two driving motors 7 respectively fixedly installed on the first housing 1 and the second housing 3, and the output shafts of the two driving motors 7 are respectively fixedly connected to one ends of two of the rotating shafts 4; a vacuum pump 10 fixedly installed on one side of the first housing 1, and an air extraction pipe is fixedly installed on the air extraction end of the vacuum pump 10, and one end of the air extraction pipe extends into the interior of the first housing 1 and is installed on the first housing 1 for a clamping mechanism for fixing glass; a heating mechanism assembled on the first housing 1 for laminating glass; a shielding mechanism installed on the first housing 1 for shielding the discharge port 2; a heat dissipation mechanism assembled on the second housing 3 for cooling glass. Through the heating mechanism, the double-layer glass can be uniformly heated, so that the film in the middle of the double-layer glass melts, and effective laminating work can be carried out on the double-layer glass. Through the vacuum pump 10, the air in the first housing 1 can be pumped away, so that the laminating machine can carry out laminating work on the double-layer glass in a vacuum environment, which is beneficial to improving the laminating effect. Through the shielding mechanism, the discharge port 2 can be shielded and the shielding of the discharge port 2 can also be removed. Through the two driving motors 7, the two conveyor belts 6 can be driven to rotate, so that the processed double-layer glass can be conveyed into the second housing 3, and then the double-layer glass can be cooled by the heat dissipation mechanism. When the temperature of the double-layer glass drops, the staff can take it away more safely without scalding the hands of the staff, and the use effect is safe.
[0023] The clamping mechanism includes: two first electric telescopic rods 8 respectively and fixedly installed on the inner walls of both sides of the first housing 1; two fixing plates 9 respectively and fixedly installed on the output rods of the two first electric telescopic rods 8. Anti-slip pads are fixedly installed on the sides of the two fixing plates 9 close to each other. The double-layer glass can be effectively fixed by the clamping mechanism, and displacement of the double-layer glass during the glue sandwiching operation can be avoided.
[0024] The heating mechanism includes: a screw rod 11 rotatably installed on the inner walls of both sides of the first housing 1, and one end of the screw rod 11 extends to the outside of the first housing 1; a sliding rod 12 fixedly installed on the inner walls of both sides of the first housing 1, a slider 13 is slidably installed on the sliding rod 12, and the slider 13 is threadedly connected to the screw rod 11; a servo motor 14 arranged on one side of the first housing 1, and the output shaft of the servo motor 14 is fixedly connected to one end of the screw rod 11; an electric push rod 15 fixedly installed at the bottom of the slider 13, an installation plate 16 is fixedly installed on the output rod of the electric push rod 15, and a heating plate 17 is fixedly installed at the bottom of the installation plate 16. The double-layer glass can be uniformly heated by the heating mechanism, so that the film in the middle of the double-layer glass is melted, and an effective glue sandwiching operation for the double-layer glass can be carried out.
[0025] The shielding mechanism includes: a second electric telescopic rod 18 fixedly installed on one side of the first housing 1; a stop block 19 fixedly installed on the output rod of the second electric telescopic rod 18, and the stop block 19 is arranged corresponding to the discharge port 2.
[0026] The heat dissipation mechanism includes: a bracket 21 fixedly installed on the inner wall of the top of the second housing 3; a plurality of fans 22 fixedly installed at the bottom of the bracket 21.
[0027] An insertion opening is provided on one side of the first housing 1, and a sealing door 20 is arranged on the insertion opening. The double-layer glass to be glued can be placed on the conveyor belt 6 inside the first housing 1 through the insertion opening, and after being placed, the insertion opening is shielded by the sealing door 20.
[0028] A protective housing is fixedly installed on one side of the first housing 1, and the inner wall of one side of the protective housing is fixedly connected to one side of the servo motor 14. The servo motor 14 can be supported and protected by the protective housing, so that the servo motor 14 can be stably fixed on one side of the first housing 1.
[0029] It should be noted that the circuits, electronic components and modules involved in the present invention are all prior arts, which can be fully realized by those skilled in the art without further elaboration. The content protected by the present invention does not involve improvements to software and methods.
[0030] The working principle of the laminating machine for glass production provided by the present utility model is as follows:
[0031] In this solution, there is also an electric control cabinet, which is arranged on the equipment. When in use, each electrical equipment can be started separately through the electric control cabinet. The power connection method of each electrical equipment is a mature existing technology and is well-known to those skilled in the art, so no redundant description will be given here;
[0032] When in use, first, the double-layer glass to be laminated is placed on the conveyor belt 6 in the first housing 1 through the inlet, and then two first electric telescopic rods 8 are started. The two first electric telescopic rods 8 will drive the two fixing plates 9 to approach each other, so that the anti-slip pads on the two fixing plates 9 fix the edges of the double-layer glass. Then, the sealing door 20 is closed to make the sealing door 20 block the inlet. Then, the vacuum pump 10 is started to pump out the gas in the first housing 1, so that the inside of the first housing 1 is in a vacuum state;
[0033] Then, the electric push rod 15 is started. The electric push rod 15 will drive the mounting plate 16 to move vertically, so that the heating plate 17 at the bottom of the mounting plate 16 contacts the top of the double-layer glass. Then, the servo motor 14 and the heating plate 17 are started. The servo motor 14 will drive the screw rod 11 to rotate. The screw rod 11 will drive the slider 13 to slide left and right on the slide rod 12. The slider 13 will drive the electric push rod 15 to move left and right. The electric push rod 15 will drive the mounting plate 16 and the heating plate 17 to move left and right, so that the heating plate 17 performs uniform heating treatment on the double-layer glass, melts the film in the middle of the double-layer glass. After a period of time, the heating and laminating work on the whole double-layer glass can be completed;
[0034] After the laminating work is completed, the second electric telescopic rod 18 is started. The second electric telescopic rod 18 will drive the stopper 19 to disengage from the discharge port 2. After disengagement, the two first electric telescopic rods 8 are started to move the two fixing plates 9 away from the edge of the double-layer glass and raise them to the corresponding height. Then, the two drive motors 7 are started. The two drive motors 7 will drive the two rotating shafts 4 to rotate. The two rotating shafts 4 will drive the two rollers 5 to rotate. The two rollers 5 will drive the two conveyor belts 6 to rotate. The rotation of the two conveyor belts 6 will cause the remaining rollers 5 to also rotate. The rotation of the two conveyor belts 6 can convey the double-layer glass in the first housing 1 from the discharge port 2 to the second housing 3, so that the double-layer glass can move onto the conveyor belt 6 inside the second housing 3. Then, the second electric telescopic rod 18 is started to restore the stopper 19 to its original position. Then, a plurality of fans 22 are started to dissipate heat from the laminated double-layer glass. When the temperature of the double-layer glass drops, the staff can take out the double-layer glass from one side of the second housing 3, which will not cause burns to the staff's hands and is relatively safe to use. During this heat dissipation process, the staff can put the next double-layer glass to be laminated into the first housing 1 and then perform the same work as above, so that time can be fully utilized.
[0035] Compared with the related art, the laminating machine for glass production provided by the present utility model has the following beneficial effects:
[0036] The present utility model provides a laminating machine for glass production. Through the feeding port, the double-layer glass to be laminated can be placed on the conveyor belt 6 inside the first housing 1. After placement, the feeding port is blocked by the sealing door 20. Through the clamping mechanism, the double-layer glass can be effectively fixed, and the displacement of the double-layer glass during the laminating work can be avoided. Through the heating mechanism, the double-layer glass can be uniformly heated, so that the film in the middle of the double-layer glass melts, and an effective laminating work on the double-layer glass can be carried out, avoiding the poor laminating effect caused by uneven heating. Through the vacuum pump 10, the air in the first housing 1 can be pumped away, so that the laminating machine laminates the double-layer glass in a vacuum environment, which is beneficial to improving the laminating effect. Through the shielding mechanism, the discharge port 2 can be shielded and the shielding of the discharge port 2 can also be released. When the shielding is released, the two drive motors 7 can be started to drive the two conveyor belts 6 to rotate, so that the processed double-layer glass can be conveyed into the second housing 3. Through the heat dissipation mechanism, the laminated double-layer glass can be quickly cooled. When the temperature of the double-layer glass drops, the staff can take it away relatively safely without causing burns to the staff's hands, and the use effect is good.
[0037] It should be noted that the device structure and drawings of the present utility model mainly describe the principle of the present utility model. On the basis of this design principle, the settings of the power mechanism, power supply system, control system, etc. of the device are not fully described. However, on the premise that those skilled in the art understand the principle of the above-mentioned utility model, the specific details of its power mechanism, power supply system and control system can be clearly known. The control method of the application document is automatically controlled by a controller, and the control circuit of the controller can be realized by simple programming by those skilled in the art;
[0038] The standard parts used therein can all be purchased from the market, and can also be customized according to the description in the specification and drawings. The specific connection methods of each part all adopt conventional means such as bolts, rivets, welding, etc. that are mature in the prior art. The machinery, parts and equipment all adopt conventional models in the prior art, and for the components known to those skilled in the art, their structures and principles can all be known by those skilled in the art through technical manuals or obtained through conventional experimental methods.
[0039] Although the embodiments of the present utility model have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present utility model, or directly or indirectly applied. In other related technical fields, the scope of the present utility model is defined by the appended claims and their equivalents, and is similarly included within the scope of the patent protection of the present utility model.
Claims
1. A laminating machine for glass production, characterized in that: include: A first shell, wherein a discharge port is provided on one side of the first shell; A second shell fixedly mounted on one side of the first shell; A plurality of rotating shafts are rotatably mounted on the first shell and the second shell respectively, and rollers are fixedly sleeved on the plurality of rotating shafts; Two conveyor belts respectively mounted on the plurality of rollers; Two driving motors are respectively fixedly mounted on the first housing and the second housing, and the output shafts of the two driving motors are respectively fixedly connected to one end of two of the rotating shafts; A vacuum pump fixedly mounted on one side of the first shell, a vacuum pipe fixedly mounted on the vacuum pump's vacuum end, one end of the vacuum pipe extending to the inside of the first shell and a clamping mechanism mounted on the first shell for fixing the glass; A heating mechanism mounted on the first housing and used for laminating glass; A shielding mechanism installed on the first shell for shielding the discharge port; A heat dissipation mechanism is mounted on the second housing and is used to cool the glass.
2. The laminating machine for glass production according to claim 1, characterized in that: The clamping mechanism comprises: Two first electric telescopic rods respectively fixedly mounted on the inner walls of both sides of the first shell; Two fixing plates are respectively fixedly mounted on the two output rods of the first electric telescopic rods, and anti-skid pads are fixedly mounted on the sides of the two fixing plates close to each other.
3. The laminating machine for glass production according to claim 1, characterized in that: The heating mechanism comprises: A screw rod rotatably mounted on the inner walls of both sides of the first housing, wherein one end of the screw rod extends to the outside of the first housing; A sliding rod fixedly mounted on the inner walls of both sides of the first housing, a slider being slidably mounted on the sliding rod, and the slider being threadedly connected to the screw rod; A servo motor is arranged on one side of the first housing, and an output shaft of the servo motor is fixedly connected to one end of the screw; An electric push rod is fixedly mounted on the bottom of the sliding block, a mounting plate is fixedly mounted on the output rod of the electric push rod, and a heating plate is fixedly mounted on the bottom of the mounting plate.
4. The laminating machine for glass production according to claim 1, characterized in that: The shielding mechanism comprises: A second electric telescopic rod fixedly mounted on one side of the first housing; A stopper is fixedly mounted on the output rod of the second electric telescopic rod, and the stopper is arranged corresponding to the discharge port.
5. The laminating machine for glass production according to claim 1, characterized in that: The heat dissipation mechanism comprises: A bracket fixedly mounted on the inner wall of the top of the second shell; A plurality of fans are fixedly mounted on the bottom of the bracket.
6. The laminating machine for glass production according to claim 1, characterized in that: A loading port is provided on one side of the first shell, and a sealing door is provided on the loading port.
7. The laminating machine for glass production according to claim 3, characterized in that: A protective shell is fixedly mounted on one side of the first shell, and an inner wall of one side of the protective shell is fixedly connected to one side of the servo motor.
Citation Information
Patent Citations
Laminating machine for glass production
CN215627648U