Multi-source heat energy collaborative drying device for ink printing of packaging box

By using a multi-source thermal energy synergistic drying device, which utilizes a servo motor to drive the turntable to rotate and a heat-conducting plate to heat the device, combined with a ventilation system, the problems of localized overheating and uneven drying in packaging box ink printing are solved, thus achieving uniform drying of the packaging boxes.

CN223559299UActive Publication Date: 2025-11-18JIANGSU HONGYA PACKAGING TECH CO LTD
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Patent Information

Application Number
CN202423017488.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-09
Publication Date
2025-11-18
Estimated Expiration
2034-12-09

AI Technical Summary

Technical Problem

In the existing technology, when printing ink on packaging boxes, using a heat source to dry both sides of the packaging box can easily cause localized overheating and uneven drying effect.

Method used

A multi-source thermal energy synergistic drying device is adopted. The turntable is driven to rotate by a servo motor. Combined with electric heating coils, heat conduction plates and ventilation system, it can achieve uniform heating and drying of packaging boxes. The synergistic effect of heat conduction plates and electric heating coils avoids local overheating, and the ventilation system improves heat diffusion efficiency.

Benefits of technology

This method achieves uniform drying of the packaging boxes, avoids localized overheating, and improves drying effect and efficiency.

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Abstract

The utility model discloses a multi-source heat energy collaborative drying device for ink printing of a packaging box, which comprises a driving unit, the driving unit comprises a supporting table and an annular shell fixedly connected to the top of the supporting table, a servo motor is fixedly mounted at the bottom of the supporting table, and the output end of the servo motor penetrates through the top of the supporting table and is fixedly connected with a turntable; an annular groove matched with the rotary disc is formed in the outer wall of the annular shell, the side wall of the rotary disc penetrates through the annular groove and is located in the annular shell, the top of the annular shell is connected with a cover plate through a hinge, and an L-shaped notch matched with the cover plate is formed in the side wall of the annular shell. When the gear drives the packaging box to rotate through the heat conduction disc, the bottom and the outer wall of the packaging box can be fully dried through the heat conduction disc and the electric heating ring, and the packaging box body can be uniformly and fully dried through cooperative operation of a plurality of heat sources.
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Description

TECHNICAL FIELD

[0001] The utility model relates to drying device technical field especially relates to a packing box ink printing is with multi -source heat energy cooperation drying device. BACKGROUND

[0002] The packing box ink has rich kind. From the component, mainly include pigment, connecting material, solvent and additive, water -based ink is with water as solvent, almost does not contain harmful organic solvent, greatly reduces the pollution to the environment and the harm to the health of operating personnel, also will not release the irritating smell in the drying process after printing, and the quality of packing box ink is crucial to the final effect of packing box, and high -quality ink can not only present clear, bright, lasting printing pattern, but also guarantee that packing box pattern does not fade, does not flake in the transportation, storage and marketing process, effectively improves the quality of packing box and the market competitiveness of commodity.

[0003] When the ink of the packing box is dried, part drying mode carries out drying to the packing box on the conveying belt, so that the packing box is sequentially close to the heat source and is dried, the heat source is usually arranged on the two sides of the conveying belt in the moving process, which makes the drying efficiency of the side close to the heat source position higher, and the drying efficiency of the side far away from the heat source position lower, thereby easily causing local overheating of the packing box, and the drying effect is uneven, therefore, the multi-source heat energy cooperation drying device for packing box ink printing is provided. SUMMARY

[0004] This section aims to outline some aspects of the embodiments of the present utility model and briefly introduce some preferred embodiments. Some simplifications or omissions may be made in this section and the abstract of the specification and the utility model name to avoid obscuring the purpose of this section, the abstract of the specification and the utility model name. Such simplifications or omissions cannot be used to limit the scope of the utility model.

[0005] In view of the above problems of the prior art, the present utility model is proposed.

[0006] Therefore, the utility model aims to provide a multi-source heat energy cooperation drying device for packing box ink printing, which is suitable for solving the problem that the heat source usually dries both sides of the packing box in the moving process of the conveying belt, thereby easily causing local overheating of the packing box, and the drying effect is uneven.

[0007] To solve the above technical problems, the utility model provides the following technical scheme: a multi-source heat energy cooperation drying device for packing box ink printing, comprising:

[0008] A driving unit comprises a support table and a ring-shaped shell fixedly connected to the top of the support table, the bottom of the support table is fixedly installed with a servo motor, the output end of the servo motor penetrates the top of the support table and is fixedly connected with a rotating disc, the outer wall of the ring-shaped shell is provided with a ring-shaped groove matched with the rotating disc, the sidewall of the rotating disc penetrates the ring-shaped groove and is located in the ring-shaped shell, the top of the ring-shaped shell is connected with a cover plate through a hinge, and the sidewall of the ring-shaped shell is provided with an L-shaped notch matched with the cover plate.

[0009] A drying unit comprises a controller fixedly connected to the inner side of the outer wall of the ring-shaped shell, the inner wall of the ring-shaped shell is fixedly connected with an electric heating ring, the sidewall of the rotating disc is fixedly connected with a plurality of evenly distributed fixed plates, the top of each fixed plate is rotatably connected with a gear, the top of each gear is fixedly connected with a heat-conducting disc, and the inner wall of the ring-shaped shell is fixedly connected with an inner gear ring engaged with each gear.

[0010] As a preferred scheme of the multi-source heat energy collaborative drying device for packaging box ink printing, the top of each heat-conducting disc is provided with two sliding grooves, the inner wall of each sliding groove is fixedly connected with a round rod, the outer wall of each round rod is slidably sleeved with a clamping plate, and one side of each clamping plate is fixedly connected with a spring sleeved on the round rod.

[0011] As a preferred scheme of the multi-source heat energy collaborative drying device for packaging box ink printing, the top of each heat-conducting disc is provided with two sliding grooves, the inner wall of each sliding groove is fixedly connected with a round rod, the outer wall of each round rod is slidably sleeved with a clamping plate, and one side of each clamping plate is fixedly connected with a spring sleeved on the round rod.

[0012] As a preferred scheme of the multi-source heat energy collaborative drying device for packaging box ink printing, the top of each heat-conducting disc is provided with two sliding grooves, the inner wall of each sliding groove is fixedly connected with a round rod, the outer wall of each round rod is slidably sleeved with a clamping plate, and one side of each clamping plate is fixedly connected with a spring sleeved on the round rod.

[0013] As a preferred scheme of the multi-source heat energy collaborative drying device for packaging box ink printing, the top of each heat-conducting disc is provided with two sliding grooves, the inner wall of each sliding groove is fixedly connected with a round rod, the outer wall of each round rod is slidably sleeved with a clamping plate, and one side of each clamping plate is fixedly connected with a spring sleeved on the round rod.

[0014] As a preferred scheme of the multi-source heat energy collaborative drying device for packaging box ink printing, the top of each heat-conducting disc is provided with two sliding grooves, the inner wall of each sliding groove is fixedly connected with a round rod, the outer wall of each round rod is slidably sleeved with a clamping plate, and one side of each clamping plate is fixedly connected with a spring sleeved on the round rod.

[0015] The utility model discloses an electric heating ring is arranged on the fixed plate of drying unit, and the electric heating ring is connected with the controller, and the electric heating ring is used for heating and drying the packaging box. BRIEF DESCRIPTION OF DRAWINGS

[0016] In order to more clearly illustrate the technical scheme of the embodiment of the utility model, the following will be to the embodiment description needed to use the drawing of simple introduction, obviously, the following description in the drawing is only some embodiments of the utility model, for the ordinary skilled person in the art, under the premise of not paying the creative labor, can also obtain other drawings according to these drawings. Wherein:

[0017] Figure 1 The whole structure schematic diagram of the multiple-source heat energy cooperative drying device for packaging box ink printing provided by the utility model is shown in the figure.

[0018] Figure 2 The top cut structure schematic diagram of the annular box provided by the utility model is shown in the figure.

[0019] Figure 3 The annular box and the rotating disc position structure schematic diagram provided by the utility model are shown in the figure.

[0020] Figure 4 The drying unit local structure schematic diagram provided by the utility model is shown in the figure.

[0021] Figure 5 The ventilation cover cut internal structure schematic diagram provided by the utility model is shown in the figure. BRIEF DESCRIPTION OF DRAWINGS

[0023] 100, drive unit;101, support table;102, annular shell;103, servo motor;104, rotating disc;105, cover plate;106, limit rod;200, drying unit;201, controller;202, electric heating ring;203, fixed plate;204, gear;205, heat conduction disc;206, inner gear ring;207, sliding slot;208, round bar;209, clamping plate;210, spring;211, rubber strip;212, ventilation cover;213, connecting frame;214, electric fan;215, deflector. DETAILED DESCRIPTION

[0024] In order to make the above-mentioned purpose, features and advantages of the utility model more obvious and easy to understand, the specific embodiment of the utility model will be described in detail in the following with the drawings of the specification.

[0025] In the following description, a lot of specific details are set forth in order to facilitate a thorough understanding of the present application, but the present application can be practiced in other ways not described herein, and it is understood that one of ordinary skill in the art can make such modifications without departing from the scope of the present application, therefore, the present application is not limited to the specific embodiments disclosed below.

[0026] Secondly, the "one embodiment" or "embodiment" referred to herein means that the specific features, structures or characteristics can be included in at least one implementation of the present application. "In one embodiment" appearing in different places in the specification does not mean the same embodiment, nor is it an embodiment that is independent of or mutually exclusive with other embodiments.

[0027] Thirdly, the present application is described in detail in conjunction with the schematic diagram, and in the detailed description of the embodiments of the present application, the cross-sectional view of the device structure is partially enlarged without the general proportion for the convenience of description, and the schematic diagram is only an example, which should not limit the scope of protection of the present application herein. In addition, the three-dimensional spatial dimensions including length, width and depth should be included in actual manufacture.

[0028] Embodiments

[0029] Reference Figures 1-4 For one embodiment of the present application, a multi-source heat energy collaborative drying device for packaging box ink printing is provided, comprising: a driving unit 100 and a drying unit 200;

[0030] The driving unit 100 comprises a support table 101 and an annular shell 102 fixedly connected to the top of the support table 101, a servo motor 103 is fixedly installed at the bottom of the support table 101, the output end of the servo motor 103 penetrates through the top of the support table 101 and is fixedly connected with a turntable 104, an annular groove matching the turntable 104 is formed in the outer wall of the annular shell 102, the sidewall of the turntable 104 penetrates through the annular groove and is located in the annular shell 102, a cover plate 105 is hingedly connected to the top of the annular shell 102, and an L-shaped notch matching the cover plate 105 is formed in the sidewall of the annular shell 102;

[0031] The drying unit 200 comprises a controller 201 fixedly connected to the inner side of the outer wall of the annular shell 102, an electric heating ring 202 is fixedly connected to the inner wall of the annular shell 102, a plurality of evenly distributed fixed plates 203 are fixedly connected to the sidewall of the turntable 104, a gear 204 is rotatably connected to the top of each fixed plate 203, a heat-conducting disc 205 is fixedly connected to the top of each gear 204, and an inner gear ring 206 meshing with each gear 204 is fixedly connected to the inner wall of the annular shell 102.

[0032] The cover plate 105 is used to shield the L-shaped gap of the annular shell 102 to prevent heat loss inside the annular shell 102, the rotating disc 104 is driven to rotate by the servo motor 103, so that the workers can place the guarantee boxes on each heat conduction disc 205 through the L-shaped gap in turn, and then the electric heating ring 202 is started to heat the inside of the annular shell 102, the electric heating ring 202 is provided with resistance wires inside, the electric heating ring 202 generates heat by electrifying the resistance wires, and the controller 201 is used to control the temperature of the electric heating ring 202 to heat, so as to dry according to the material of the packaging box at different temperatures, when each heat conduction disc 205 is placed with a packaging box, the cover plate 105 is closed and shields the L-shaped gap;

[0033] During the low-speed rotation of the rotating disc 104, the teeth of each gear 204 can be meshed with the teeth of the inner gear ring 206, so that the gear 204 can rotate by the inner gear ring 206, and the gear 204 can drive the heat conduction disc 205 to rotate, and the heat conduction disc 205 can make the packaging box rotate synchronously, during the rotation of the packaging box, the outer wall of the packaging box can be fully heated and dried by the electric heating ring 202, so as to avoid local overheating of the outer wall of the packaging box, the heat conduction disc 205 is made of copper material, the heat conduction disc 205 can receive the heat of the air in the annular shell 102, and the bottom of the packaging box can be dried, the heat conduction disc 205 does not contact the electric heating ring 202, so as to prevent the heat conduction disc 205 from overheating;

[0034] Therefore, multiple heat sources are provided for the packaging box, and the outer wall and the bottom of the packaging box can be fully heated and dried by rotating the packaging box, the multiple heat sources cooperate to uniformly and fully dry the packaging box body, after drying, the cover plate 105 is opened and the packaging boxes are taken out through the L-shaped gap.

[0035] In addition, the top of each heat conduction disc 205 is provided with two sliding grooves 207, the inner wall of each sliding groove 207 is fixedly connected with a circular rod 208, the outer wall of each circular rod 208 is slidably sleeved with a clamping plate 209, one side of each clamping plate 209 is fixedly connected with a spring 210 sleeved on the circular rod 208, the top of each clamping plate 209 is arc-shaped, and the opposite surfaces of the adjacent two clamping plates 209 are fixedly connected with a plurality of rubber strips 211.

[0036] When the packaging box is placed on the heat-conducting disc 205, the two clamping plates 209 are moved away from each other along the sliding grooves 207 by pulling the two clamping plates 209, and the two clamping plates 209 are squeezed at the same time, then the packaging box is placed between the two clamping plates 209 and the two clamping plates 209 are released, at this time the two springs 210 push the two clamping plates 209 to move close to each other along the two round rods 208, and the packaging box is clamped to improve the stability of the packaging box during rotation, when the packaging box needs to be taken out, the packaging box is directly pulled up to separate from the clamping of the clamping plate 209.

[0037] The top of the two adjacent clamping plates 209 is symmetrically arranged, and the top of the two adjacent clamping plates 209 is curved in a V shape, when the size of the packaging box is slightly larger than the initial interval of the two clamping plates 209, the packaging box is directly moved to the top of the two clamping plates 209, and the packaging box is pressed downward, so that the packaging box pushes the two clamping plates 209 away from each other through the arc surface of the two clamping plates 209, and the two clamping plates 209 automatically clamp the packaging box, thereby the worker can automatically clamp the packaging box through the clamping plate 209, and the rubber strip 211 can increase the friction between the clamping plate 209 and the packaging box, thereby improving the stability of the clamping plate 209.

[0038] Further, one side of the annular shell 102 is fixedly connected with a ventilation cover 212, the inner wall of the ventilation cover 212 is fixedly connected with a connecting frame 213, one side of the connecting frame 213 is fixedly installed with an electric fan 214, one side of each fixed plate 203 is fixedly connected with an inclined flow guide plate 215, and the top of each heat-conducting disc 205 is provided with a plurality of ventilation holes.

[0039] The electric fan 214 is internally provided with a motor for driving the fan blade to rotate, the electric fan 214 can make the heat inside the annular shell 102 flow with the air, and the heat inside the annular shell 102 is more evenly distributed, thereby improving the heat diffusion efficiency of the multiple heat sources, and the flow guide plate 215 can make the hot air at the bottom of the inner cavity of the annular shell 102 flow upward, so that the hot air passes through the ventilation holes of the heat-conducting disc 205 and dries the bottom of the packaging box, further improving the drying effect of the packaging box.

[0040] Further, the top of the annular shell 102 is slidably provided with a limiting rod 106, and one side of the cover plate 105 is provided with a circular groove matching the limiting rod 106.

[0041] The limiting rod 106 is arranged in an L shape, when the cover plate 105 is unfolded, the limiting rod 106 is moved so that the horizontal end at the top of the limiting rod 106 is inserted into the circular groove of the cover plate 105, so as to fix the cover plate 105 to a position convenient for the worker to close, and the side wall of the cover plate 105 is fixedly connected with a U-shaped handle, so as to facilitate the worker to close the cover plate 105.

[0042] In use, the cover plate 105 is opened and fixed in the open state by the limiting rod 106, then the rotating disc 104 is rotated by the servo motor 103, so that the workers place the guarantee boxes on each heat conducting disc 205 through the L-shaped gap, when the packaging boxes are placed on the heat conducting disc 205, the two clamping plates 209 are pulled away from each other, then the packaging boxes are placed between the two clamping plates 209 and the two clamping plates 209 are released, at this time the two springs 210 push the two clamping plates 209 to clamp the packaging boxes, when all the packaging boxes are placed, the cover plate 105 is closed, and the electric heating ring 202 is started to heat the inside of the annular shell 102;

[0043] In the process of low-speed rotation of the rotating disc 104, the gear 204 drives the packaging boxes to rotate through the heat conducting disc 205, so that the outer wall of the packaging boxes is fully heated and dried by the electric heating ring 202, then the electric fan 214 is started to make the heat in the annular shell 102 flow with the air, the heat air passes through the ventilation holes of the heat conducting disc 205 through the guide plate 215, and the bottom of the packaging box is dried, so that the drying effect of the packaging box is improved, after drying, the cover plate 105 is opened, and the packaging boxes are taken out through the L-shaped gap.

[0044] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present application and are not limited. Although the present application has been described in detail with reference to the preferred embodiments, it should be understood by those skilled in the art that the technical solutions of the present application can be modified or replaced without departing from the spirit and scope of the present application, and all should be covered in the scope of the claims of the present application.

Claims

1. A multi-source thermal energy synergistic drying device for ink printing on packaging boxes, characterized in that, include: The drive unit (100) includes a support platform (101) and an annular shell (102) fixedly connected to the top of the support platform (101). A servo motor (103) is fixedly installed at the bottom of the support platform (101). The output end of the servo motor (103) passes through the top of the support platform (101) and is fixedly connected to a turntable (104). An annular groove that fits the turntable (104) is opened on the outer wall of the annular shell (102). The side wall of the turntable (104) passes through the annular groove and is located inside the annular shell (102). A cover plate (105) is connected to the top of the annular shell (102) by a hinge. An L-shaped notch that fits the cover plate (105) is opened on the side wall of the annular shell (102). The drying unit (200) includes a controller (201) fixedly connected to the inner side of the outer wall of an annular shell (102). An electric heating coil (202) is fixedly connected to the inner wall of the annular shell (102). A plurality of evenly distributed fixing plates (203) are fixedly connected to the side wall of the turntable (104). A gear (204) is rotatably connected to the top of each fixing plate (203). A heat-conducting plate (205) is fixedly connected to the top of each gear (204). An internal gear ring (206) meshing with each gear (204) is fixedly connected to the inner wall of the annular shell (102).

2. The multi-source thermal energy synergistic drying device for packaging box ink printing according to claim 1, characterized in that: Each of the heat-conducting plates (205) has two grooves (207) on its top. A round rod (208) is fixedly connected to the inner wall of each groove (207). A clamping plate (209) is slidably sleeved on the outer wall of each round rod (208). A spring (210) sleeved on the round rod (208) is fixedly connected to one side of each clamping plate (209).

3. The multi-source thermal energy synergistic drying device for packaging box ink printing according to claim 2, characterized in that: The top of each clamping plate (209) is arc-shaped, and multiple rubber strips (211) are fixedly connected to the opposite surfaces of two adjacent clamping plates (209).

4. The multi-source thermal energy synergistic drying device for packaging box ink printing according to claim 1, characterized in that: A ventilation hood (212) is fixedly connected to one side of the annular shell (102), and a connecting frame (213) is fixedly connected to the inner wall of the ventilation hood (212). An electric fan (214) is fixedly installed on one side of the connecting frame (213).

5. The multi-source thermal energy synergistic drying device for packaging box ink printing according to claim 2, characterized in that: Each of the fixed plates (203) has an inclined guide plate (215) fixedly connected to one side, and each of the heat conduction plates (205) has multiple ventilation holes on its top.

6. The multi-source thermal energy synergistic drying device for packaging box ink printing according to claim 1, characterized in that: A limiting rod (106) is slidably provided on the top of the annular shell (102), and a circular groove that fits the limiting rod (106) is provided on one side of the cover plate (105).