Laser device for heat transfer film production
By introducing dual filtration and lifting components into the laser device, the problems of manual handling and gas purification in the production of heat transfer film have been solved, achieving efficient filtration and automated roll installation, thus improving production efficiency and safety.
Patent Information
- Application Number
- CN202423091306.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-16
- Publication Date
- 2026-01-23
- Estimated Expiration
- 2034-12-16
AI Technical Summary
Existing laser equipment for heat transfer film production requires manual handling of heavy heat transfer film rolls, increasing labor burden. Furthermore, the irritating gases generated by the laser mechanism need to be purified through a filter chamber, which requires maintenance after prolonged use, affecting equipment efficiency.
A filter assembly consisting of an interceptor box and a filter chamber was designed to achieve dual filtration of the gas, reduce the burden of large particulate impurities, and allow for quick replacement of the filter plate without stopping the machine. At the same time, a lifting assembly is adopted to automatically lift the heat transfer film roll by a threaded rod driven by a motor, reducing manual operation.
It improves filtration efficiency and maintenance efficiency, reduces labor burden, increases the installation efficiency of heat transfer film rolls, and ensures the safety of the working environment and the continuous operation of the equipment.
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Figure CN223819848U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the production technical field of heat transfer printing film, more specifically, especially relate to a laser device for heat transfer printing film production. BACKGROUND
[0002] In the production and processing process of part of heat transfer printing film, in order to meet the specific production requirement, the pattern and text need to be precisely engraved on the surface of heat transfer printing film. This process depends on a laser device for heat transfer printing film production. The existing laser device for heat transfer printing film production is mainly composed of a workbench, a laser mechanism and a conveying mechanism. The heat transfer printing film is conveyed to the working area of the laser mechanism above the workbench by the conveying mechanism, and then the surface of the heat transfer printing film is engraved with patterns and text by the laser mechanism.
[0003] The present application No. CN202023228126.4 provides a kind of to be applied to heat transfer printing machine on eliminating laser film mottling structure, belong to heat transfer printing machine technical field.It solves the problem that laser film transfer printing effect is not good in existing heat transfer printing machine, easy to produce rainbow mottling, affect the aesthetic property of product.This be applied to heat transfer printing machine on eliminating laser film mottling structure, this heat transfer printing machine includes rubber roll and the die frame consisting of material receiving mechanism and material releasing mechanism, laser film is located between rubber roll and product, die frame drops and makes laser film single side from top to bottom and press on the surface of product or die frame drops and makes laser film double sides from top to bottom and press on the surface of product, then through rubber roll, laser film that single side or double sides press on the surface of product is transferred to the surface of product.The utility model has the advantages of good transfer printing effect, can remove rainbow mottling to improve the aesthetic property of product.
[0004] Based on the above, the existing laser device for heat transfer printing film production mostly needs to transport the heat transfer printing film in roll for laser processing. The heat transfer printing film roll is mostly heavy, which needs to be manually carried into the roll support, increasing the labor burden of workers. Moreover, the laser mechanism will generate a large amount of irritating gas when engraving the heat transfer printing film. In order to ensure the safety of the working environment, these gases need to be first pumped to the filter bin for purification treatment by the fan inside the device before being discharged. However, after long-term use of the filter bin, a large amount of impurity dust will accumulate, which needs to be maintained and replaced in time. The operation is too cumbersome, and the device needs to be stopped before the filter bin can be maintained, affecting the laser efficiency of the device. UTILITY MODEL CONTENTS
[0005] In order to solve the above technical problems, the utility model provides a laser device for hot transfer printing film production to solve the existing laser device for hot transfer printing film production, mostly need to transport the laser processing of the hot transfer printing film, the hot transfer printing film roll is mostly heavy, needs manual handling to roll support inside, aggravate the labor burden of staff, and the laser mechanism will produce a large amount of irritating gas when drawing on the hot transfer printing film, in order to guarantee the safety of the working environment, these gases need to be pumped to the filter bin for purification treatment by the fan inside the device first, and then discharged. But the filter bin will accumulate a lot of impurities after a long time, need to maintain and replace in time, the operation is too cumbersome, and the filter bin needs to be maintained after the device is stopped, which affects the laser efficiency of the device.
[0006] The utility model discloses a laser device for hot transfer printing film production's purpose and function are reached by the following specific technical means:
[0007] A laser device for hot transfer printing film production, including the workbench,
[0008] Laser mechanism, laser mechanism fixed mounting at workbench one side,
[0009] Filter bin, the filter bin sets up at laser mechanism one side,
[0010] Roll support, the roll support bolt connection at workbench one side,
[0011] Hot transfer printing film roll, the hot transfer printing film roll sets up at roll support one side,
[0012] Lifting support, the lifting support sliding connection at roll support one side,
[0013] Filter assembly, the filter assembly sets up in filter bin inside,
[0014] Lifting assembly, the lifting assembly sets up in lifting support inside.
[0015] Further, the filter assembly includes:
[0016] Intercepting box, the intercepting box fixed mounting in filter bin and laser mechanism intermediate position,
[0017] Transmission plate, the transmission plate sliding connection in intercepting box inside,
[0018] Handle, the handle welding at transmission plate one side.
[0019] Further, the filter assembly further includes:
[0020] Filter plate, the filter plate is provided with two groups, two filter plates sliding connection in transmission plate inside.
[0021] Further, the filter assembly further comprises:
[0022] The limiting hole is arranged on the upper portion of the transmission plate.
[0023] The limiting bolt is slidably connected in the inside of the intercepting box.
[0024] The first elastic member is fixedly installed on the outside of the limiting bolt.
[0025] Further, the lifting assembly comprises:
[0026] The lifting motor is fixedly installed on the upper portion of the coiled material support.
[0027] The threaded rod is fixedly installed on the lower portion of the lifting motor, is rotatably connected on the outside of the coiled material support, and is threadedly connected in the inside of the lifting support.
[0028] The guide rod is fixedly installed on the outside of the coiled material support.
[0029] Further, the lifting assembly further comprises:
[0030] The inclined surface blocks are fixedly installed on the two sides in the inside of the lifting support.
[0031] The limiting blocks are slidably connected in the inside of the two groups of inclined surface blocks.
[0032] The second elastic members are fixedly installed in the inside of the two groups of inclined surface blocks.
[0033] Further, the lifting assembly further comprises:
[0034] The rotating grooves are arranged on the two sides in the inside of the coiled material support.
[0035] The stop flaps are fixedly installed on the outside of the two groups of rotating grooves.
[0036] Compared with the prior art, the utility model has the beneficial effects that:
[0037] Firstly, the utility model has a filter assembly, the stimulating gas is doubly filtered through the intercepting box and the filter bin, the filtering effect is greatly improved, the filter plate in the inside of the intercepting box is utilized to intercept the large particle impurities in the gas in advance, the burden of the filter bin is reduced, the maintenance period of the filter bin is increased, the filter plate can be quickly replaced without closing the device, and the maintenance efficiency is greatly improved.
[0038] Secondly, the utility model discloses have the lifting assembly, through the lifting motor drive screw rod rotation, make the lifting support to the heat transfer printing film coiled material and lift, reduce the labor burden of staff, it is convenient to the heat transfer printing film coiled material and install fast, has improved the installation efficiency of heat transfer printing film coiled material greatly.
[0039] The utility model discloses have the double filtration, convenient maintenance, reduce the labor burden and so on advantage, has improved the filtration effect greatly, and reduce the filtration bin burden, has improved the maintenance efficiency greatly, and reduce the labor burden of staff, it is convenient to the heat transfer printing film coiled material and install fast. BRIEF DESCRIPTION OF DRAWINGS
[0040] Figure 1 It is the main body structure schematic diagram of the utility model.
[0041] Figure 2 It is the filtration bin structure schematic diagram of the utility model.
[0042] Figure 3 It is the transmission plate structure schematic diagram of the utility model.
[0043] Figure 4 It is the coiled material support structure schematic diagram of the utility model.
[0044] Figure 5 It is the lifting support structure schematic diagram of the utility model.
[0045] In the drawing, the corresponding relation of component name and drawing number is as follows:
[0046] 1, workbench, 2, laser mechanism, 3, filtration bin, 301, intercepting box, 302, transmission plate, 303, handle, 304, filter plate, 305, limiting bolt, 306, first elastic part, 307, limiting hole, 4, coiled material support, 5, heat transfer printing film coiled material, 6, lifting support, 601, lifting motor, 602, screw rod, 603, guide rod, 604, inclined surface block, 605, limiting block, 606, second elastic part, 607, rotation groove, 608, baffle. DETAILED DESCRIPTION
[0047] The embodiment of the utility model is further described in detail below in combination with the drawings and examples. The following examples are used to illustrate the utility model, but cannot be used to limit the scope of the utility model.
[0048] Example one:
[0049] As shown in the accompanying drawings: Figure 1 To the accompanying drawings: Figure 5 As shown in the accompanying drawings:
[0050] The utility model provides a kind of laser device for heat transfer printing film production, including workbench 1;
[0051] The laser mechanism 2 is fixedly installed on one side of the workbench 1.
[0052] The filter bin 3 is arranged on one side of the laser mechanism 2.
[0053] The roll material support 4 is bolted on one side of the workbench 1.
[0054] The thermal transfer film roll material 5 is arranged on one side of the roll material support 4.
[0055] The lifting support 6 is slidingly connected on one side of the roll material support 4.
[0056] The filter assembly is arranged inside the filter bin 3.
[0057] The filter assembly comprises:
[0058] The interception box 301 is fixedly installed at the intermediate position between the filter bin 3 and the laser mechanism 2.
[0059] The transmission plate 302 is slidingly connected inside the interception box 301.
[0060] The handle 303 is welded on one side of the transmission plate 302; the laser mechanism 2 draws the gas through the interception box 301 into the filter bin 3 through the fan arranged inside, and the gas is discharged after being filtered by the interception box 301 and the filter bin 3; the handle 303 is pulled to drive the transmission plate 302 to slide inside the interception box 301.
[0061] The filter assembly further comprises:
[0062] The filter plate 304 is arranged in two groups, and the two groups of filter plates 304 are slidingly connected inside the transmission plate 302; the gas outlet of the laser mechanism 2 is opposite to the filter plate 304, and the gas is further filtered by one of the filter plates 304 when passing through the inside of the interception box 301.
[0063] The filter assembly further comprises:
[0064] The limiting hole 307 is arranged on the upper portion of the transmission plate 302.
[0065] The limiting bolt 305 is slidingly connected inside the interception box 301.
[0066] The first elastic member 306 is fixedly installed outside the limiting bolt 305, and plays a role of pulling the limiting bolt 305, sliding the limiting bolt 305 in the intercepting box 301 and compressing the first elastic member 306, releasing the limiting bolt 305, and resetting the first elastic member 306 under the elastic effect, and driving the limiting bolt 305 into the limiting hole 307 to limit the transmission plate 302.
[0067] The specific use mode and role of the embodiment are as follows:
[0068] The laser mechanism 2 draws gas through the intercepting box 301 into the filter bin 3 through the fan arranged inside, and discharges the gas after double filtration through the intercepting box 301 and the filter bin 3.
[0069] When the filter plate 304 in the intercepting box 301 needs to be replaced after being used for a long time, the limiting bolt 305 is pulled out of the limiting hole 307, the limiting of the transmission plate 302 is cancelled, the handle 303 is pulled, the handle 303 drives the transmission plate 302 to slide in the intercepting box 301, and another set of filter plates 304 faces the gas outlet of the laser mechanism 2, the gas is filtered by another set of filter plates 304 when passing through the inside of the intercepting box 301, the limiting bolt 305 is released, the first elastic member 306 is reset under the elastic effect, the first elastic member 306 drives the limiting bolt 305 to enter the limiting hole 307 to limit the transmission plate 302, and the used filter plate 304 can be pulled out of the transmission plate 302, thereby achieving the effect of quickly and alternately replacing the filter plate 304 without closing the laser mechanism 2.
[0070] Embodiment two:
[0071] Based on the embodiment one, as shown in Figures 1 to 5 It further comprises:
[0072] The lifting assembly is arranged in the lifting support 6.
[0073] The lifting assembly comprises:
[0074] The lifting motor 601 is fixedly installed on the upper portion of the coiled material support 4.
[0075] The threaded rod 602 is fixedly installed on the lower portion of the lifting motor 601, rotatably connected to the outer side of the coiled material support 4, and screw-connected to the inside of the lifting support 6.
[0076] A guide rod 603 is fixedly installed outside the coiled material support 4. When the lifting motor 601 is powered on, the lifting motor 601 drives the threaded rod 602 to rotate, the threaded rod 602 drives the lifting support 6 to lift or lower through the thread, and the guide rod 603 plays a guiding role when the lifting support 6 is lifted or lowered.
[0077] The lifting assembly further comprises:
[0078] Two inclined blocks 604 are arranged, and the two groups of inclined blocks 604 are fixedly installed inside the lifting support 6 on both sides.
[0079] Two limiting blocks 605 are arranged, and the two groups of limiting blocks 605 are slidingly connected inside the two groups of inclined blocks 604.
[0080] Two second elastic members 606 are arranged, and the two groups of second elastic members 606 are fixedly installed inside the two groups of inclined blocks 604. The second elastic members 606 play a supporting role on the limiting blocks 605, so that the limiting blocks 605 protrude to the upper part of the inclined blocks 604. The hot transfer film coiled material 5 is placed on the upper part of the inclined blocks 604. The limiting blocks 605 in the protruding state block the hot transfer film coiled material 5, so as to avoid the hot transfer film coiled material 5 from sliding off the upper part of the inclined blocks 604.
[0081] The lifting assembly further comprises:
[0082] Two rotating grooves 607 are arranged, and the two groups of rotating grooves 607 are arranged inside the coiled material support 4 on both sides.
[0083] Two blocking pieces 608 are arranged, and the two groups of blocking pieces 608 are fixedly installed outside the two groups of rotating grooves 607. The rotating grooves 607 inside are inclined surfaces, and the inclination angles of the rotating grooves 607, the blocking pieces 608 and the inclined blocks 604 are consistent.
[0084] The specific use mode and role of the embodiment are as follows:
[0085] When it is needed to install the heat transfer film roll 5 into the rotating groove 607 inside the roll support 4, roll the heat transfer film roll 5 into the lifting support 6, power on the lifting motor 601, rotate the threaded rod 602 with the lifting motor 601, lift the lifting support 6 with the threaded rod 602, lift the inclined block 604 with the lifting support 6, lift the heat transfer film roll 5 with the inclined block 604, block the heat transfer film roll 5 with the limiting block 605 in the protruding state, avoid the heat transfer film roll 5 from sliding off the inclined surface structure of the inclined block 604, when the inclined block 604 moves the heat transfer film roll 5 to the position of the rotating groove 607, press the limiting block 605 into the inclined block 604 with the blocking piece 608, form an inclined plane with the blocking piece 608, the inclined block 604 and the rotating groove 607, roll the heat transfer film roll 5 along the inclined plane into the rotating groove 607 for quick installation.
[0086] In this document, the following points need to be noted:
[0087] 1. The drawings of the embodiments of the present disclosure only relate to the structures involved in the embodiments of the present disclosure, and other structures can refer to the usual design.
[0088] 2. In the case of no conflict, the embodiments of the present disclosure and the features in the embodiments can be combined to obtain new embodiments.
[0089] The above is only a specific implementation of the present disclosure, but the protection scope of the present disclosure is not limited to this. Any person skilled in the art can easily think of changes or replacements within the technical range disclosed by the present disclosure, which should be covered within the protection scope of the present disclosure. Therefore, the protection scope of the present disclosure should be subject to the protection scope of the claims.
Claims
1. A laser device for heat transfer film production, characterized by: The application discloses a laser device for heat transfer film production, which comprises a workbench (1), a laser mechanism (2) fixedly installed on one side of the workbench (1), a filtering bin (3) arranged on one side of the laser mechanism (2), a roll material support (4) boltedly connected on one side of the workbench (1), a heat transfer film roll material (5) arranged on one side of the roll material support (4), a lifting support (6) slidingly connected on one side of the roll material support (4), a filtering assembly arranged in the filtering bin (3), and a lifting assembly arranged in the lifting support (6).
2. The laser device for heat transfer film production of claim 1, wherein: The filtering assembly comprises an intercepting box (301), a transmission plate (302) and a handle (303), the intercepting box (301) is fixedly installed at an intermediate position between the filtering bin (3) and the laser mechanism (2), the transmission plate (302) is slidingly connected in the intercepting box (301), and the handle (303) is welded on one side of the transmission plate (302).
3. The laser apparatus for heat transfer film production of claim 2, wherein: The filtering assembly further comprises two groups of filtering plates (304) slidingly connected in the transmission plate (302).
4. The laser apparatus for heat transfer film production of claim 2, wherein: The filtering assembly further comprises a limiting hole (307), a limiting bolt (305) and a first elastic member (306), the limiting hole (307) is formed in the upper portion of the transmission plate (302), the limiting bolt (305) is slidingly connected in the intercepting box (301), and the first elastic member (306) is fixedly installed outside the limiting bolt (305).
5. The laser apparatus for producing heat transfer film as described in claim 1, characterized in that: The lifting assembly comprises a lifting motor (601), a threaded rod (602) and a guide rod (603), the lifting motor (601) is fixedly installed on the upper portion of the roll material support (4), the threaded rod (602) is fixedly installed on the lower portion of the lifting motor (601), the threaded rod (602) is rotatably connected outside the roll material support (4) and is screwedly connected in the lifting support (6), and the guide rod (603) is fixedly installed outside the roll material support (4).
6. The laser apparatus for heat transfer film production of claim 5, wherein: The lifting assembly further comprises two groups of inclined blocks (604), two groups of limiting stop blocks (605) and two groups of second elastic members (606), the two groups of inclined blocks (604) are fixedly installed on the inner sides of the lifting support (6), the two groups of limiting stop blocks (605) are slidingly connected in the two groups of inclined blocks (604), and the two groups of second elastic members (606) are fixedly installed in the two groups of inclined blocks (604).
7. The laser apparatus for heat transfer film production of claim 5, wherein: The lifting assembly further comprises two groups of rotating grooves (607) and two groups of stop flaps (608), the two groups of rotating grooves (607) are formed on the inner sides of the roll material support (4), and the two groups of stop flaps (608) are fixedly installed outside the two groups of rotating grooves (607).
Citation Information
Patent Citations
Laser film stripe eliminating structure applied to heat transfer printing machine
CN214354850U