Glue supply device with heat preservation structure
Patent Information
- Application Number
- CN202522023925.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-19
- Publication Date
- 2026-08-18
- Estimated Expiration
- 2035-09-19
AI Technical Summary
[0003]但是软胶囊植物胶胶液对温度的控制要求高,用PVC软管供胶会导致胶液温度低出胶不顺畅,如使用加热套装置保温,时间久管道有糊味,无法满足工艺和质量要求
[0013]本实用新型提出的一种具有保温结构的供胶装置,有益效果在于:本实用新型通过连接组件将运输组件与分隔组件内的各类管件进行有效连接,在使用过程中可随时拆卸部分管件进行清理,有助于提高维护效率,同时,借助特定的保温结构和胶盒供胶控制,能够稳定输出胶皮,不仅满足产品质量要求与生产需求,还有效提升了整体生产效率。
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Figure CN224644065U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of glue supply device technology, and in particular to a glue supply device with a heat preservation structure. Background Technology
[0002] In the soft capsule industry, the sac compression process is a crucial step in product quality control. The sac compression process involves pressing out the molten gel with compressed air, which is then conveyed through a PVC hose to a gelatin box. After the gelatin box undergoes spiral adjustment of the gelatin thickness and is cooled by air conditioning and dried by a fan, the gelatin is formed by rotating a drum once and then pulled into a mold and a sprayer. The gelatin is then filled with molten material by a pump, mechanically pressurized, and pneumatically pressured and sheared to obtain the capsules.
[0003] However, the plant-based adhesive solution for soft capsules requires high temperature control. Using PVC hoses to supply the adhesive will result in low adhesive temperature and uneven dispensing. If a heating jacket is used for insulation, the pipes will develop a burnt smell over time, which cannot meet the process and quality requirements. Utility Model Content
[0004] The purpose of this invention is to address the aforementioned shortcomings in the existing technology by proposing a glue supply device with a heat-insulating structure.
[0005] To achieve the above objectives, the present invention adopts the following technical solution:
[0006] Design a glue supply device with a heat-insulating structure, including two glue boxes arranged opposite each other. Each of the two glue boxes is provided with a transport component for supplying glue to the glue box. A separator component is provided between the two transport components. A heat-insulating component for heat preservation of the glue is provided on the outside of the transport component. The glue boxes, transport components and separator components are all fixed together by connecting components.
[0007] Furthermore, the transport assembly includes a plurality of first bends and a first straight pipe, the bends and the straight pipes being fixedly connected by the connecting assembly, a valve being fixedly connected to one of the connection points between the bends and the straight pipes by the connecting assembly, and one of the first bends being fixedly connected to the plastic box by the connecting assembly.
[0008] Furthermore, the separating component includes several second bends, second straight pipes, tees, and conversion components. The second bends, second straight pipes, tees, and conversion components are fixedly connected to each other through the connecting component. Both ends of the tees are fixedly connected to two first straight pipes through the connecting component.
[0009] Furthermore, the connecting assembly includes two opposing semicircular plates, which are rotatably connected. The connection points between the transport assembly and the separating assembly, which are connected by the connecting assembly, are all formed with connecting rings. The free ends of the semicircular plates are all provided with U-shaped seats. A screw is rotatably connected to one of the U-shaped seats, and the screw is slidably connected to the other U-shaped seat. The front end of the screw is threadedly connected to a threaded sleeve, which abuts against the U-shaped seat. The semicircular plates are sleeved on the outside of the two connecting rings.
[0010] Furthermore, the insulation component includes a straight pipe insulation sleeve, a bent pipe insulation sleeve, a ball valve insulation sleeve, and a tee insulation sleeve. The straight pipe insulation sleeve includes a first insulation sleeve, with a hook surface fixedly connected to the front of one end of the first insulation sleeve and a loop surface fixedly connected to the back of the other end of the first insulation sleeve.
[0011] Furthermore, the three insulation sleeves of the bent pipe, the ball valve, and the tee are identical in structure. The insulation sleeve of the bent pipe includes a second insulation sleeve. Both sides of one end of the second insulation sleeve are fixedly connected with straps, and hooks are fixedly connected to the straps. Both sides of the other end of the second insulation sleeve are fixedly connected with loop surfaces, and the hook surfaces are fixedly connected to the loop surfaces.
[0012] Furthermore, the straight pipe insulation sleeve, the bent pipe insulation sleeve, the ball valve insulation sleeve, and the tee insulation sleeve are electrically connected by wires, and one end of the wires is electrically connected to a temperature controller.
[0013] The present invention proposes a glue supply device with a heat insulation structure, which has the following advantages: The present invention effectively connects the transport component and various pipes in the separation component through the connecting component. During use, some pipes can be disassembled for cleaning at any time, which helps to improve maintenance efficiency. At the same time, with the help of a specific heat insulation structure and glue box glue supply control, the glue can be stably output, which not only meets the product quality requirements and production needs, but also effectively improves the overall production efficiency. Attached Figure Description
[0014] Figure 1 The three-dimensional representation of this utility model Figure 1 ;
[0015] Figure 2 The three-dimensional representation of this utility model Figure 2 ;
[0016] Figure 3 This is a schematic diagram of the first insulation sleeve structure of this utility model;
[0017] Figure 4 This is a schematic diagram of the second insulation sleeve structure of this utility model;
[0018] Figure 5 For the present utility model Figure 2 A schematic diagram of the structure of region A.
[0019] In the diagram: 1. Glue box; 2. Transport component; 21. First bend; 22. First straight pipe; 23. Valve; 3. Insulation component; 31. Straight pipe insulation sleeve; 32. Bend pipe insulation sleeve; 33. Ball valve insulation sleeve; 34. T-joint insulation sleeve; 35. First insulation sleeve; 36. Hook surface; 37. Loop surface; 38. Strap; 39. Second insulation sleeve; 30. Wire; 301. Thermostat; 4. Separator component; 41. Second bend; 42. Second straight pipe; 43. Converter; 44. T-joint; 5. Connecting component; 51. Semicircular plate; 52. U-shaped seat; 53. Screw; 54. Threaded sleeve; 55. Connecting ring. Detailed Implementation
[0020] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.
[0021] Reference Figures 1-5 A glue supply device with a heat-insulating structure includes two glue boxes 1 arranged opposite each other. Each of the two glue boxes 1 is provided with a transport component 2 for supplying glue to the glue box 1. A separator component 4 is provided between the two transport components 2. A heat-insulating component 3 for heat preservation of the glue is provided on the outside of the transport component 2. The glue box 1, the transport component 2 and the separator component 4 are all fixed by a connecting component 5. It should be noted that the glue box 1 is prior art and will not be described in detail here.
[0022] It should be noted that the transport component 2 includes a plurality of first bends 21 and a first straight pipe 22. The first bends 21 and the first straight pipe 22 are fixedly connected by the connecting component 5. A valve 23 is fixedly connected to one of the connection points between the first bends 21 and the first straight pipe 22 by the connecting component 5. One of the first bends 21 is fixedly connected to the plastic box 1 by the connecting component 5.
[0023] The first bend 21 is connected to the glue box 1 via the connecting component 5 to supply glue to the inside of the glue box 1. The other end of the first bend 21 is fixedly connected to the valve 23 via the connecting component 5. The flow rate of the glue is controlled by the valve 23. The other end of the valve 23 is fixedly connected to the first straight pipe 22 via the connecting component 5. The other end of the first straight pipe 22 is fixedly connected to another first bend 21 via the connecting component 5. Then, the other end of the first bend 21 is fixedly connected to another first straight pipe 22 via the connecting component 5. The other end of the first straight pipe 22 is fixedly connected to the tee pipe 44 via the connecting component 5.
[0024] Furthermore, the separating component 4 includes several second bends 41, second straight pipes 42, tee pipes 44, and conversion components 43. The second bends 41, second straight pipes 42, tee pipes 44, and conversion components 43 are fixedly connected to each other by the connecting component 5. Both ends of the tee pipe 44 are fixedly connected to two first straight pipes 22 by the connecting component 5.
[0025] In this embodiment, the two ends of the three-way pipe 44 are fixedly connected to the two first straight pipes 22 on both sides by the connecting component 5 respectively. Then, the upper end of the upright part of the three-way pipe 44 is fixedly connected to the second straight pipe 42 by the connecting component 5. The other end of the second straight pipe 42 is fixedly connected to the second bend pipe 41 by the connecting component 5. The other end of the second bend pipe 41 is fixedly connected to the conversion component 43 by the connecting component 5. The conversion component 43 is a 50 to 38 adapter. The other end of the conversion component 43 is fixedly connected to another second bend pipe 41 by the connecting component 5.
[0026] It should be noted that the connecting component 5 includes two opposing semicircular plates 51, which are rotatably connected. The connecting points of the transport component 2 and the separation component 4 connected by the connecting component 5 are all formed with connecting rings 55. The free ends of the semicircular plates 51 are all provided with U-shaped seats 52. A screw 53 is rotatably connected in one of the U-shaped seats 52. The screw 53 is slidably connected to the other U-shaped seat 52. The front end of the screw 53 is threadedly connected with a threaded sleeve 54. The threaded sleeve 54 abuts against the U-shaped seat 52. The semicircular plates 51 are sleeved on the outside of the two connecting rings 55.
[0027] The inner ring of one of the semicircular plates 51 has a groove in the middle. During use, the groove abuts against the two connecting rings 55, thereby fixing the two connecting rings 55 together. A sealing ring is provided between the connecting rings 55. After the two semicircular plates 51 fix the two connecting rings 55, the screw 53 is exposed by rotating the threaded sleeve 54. Then the screw 53 is inserted into another U-shaped seat 52. After that, the threaded sleeve 54 is rotated so that the threaded sleeve 54 abuts against the U-shaped seat 52, thereby fixing the two semicircular plates 51.
[0028] Furthermore, the insulation component 3 includes a straight pipe insulation sleeve 31, a bent pipe insulation sleeve 32, a ball valve insulation sleeve 33, and a tee insulation sleeve 34. The straight pipe insulation sleeve 31 includes a first insulation sleeve 35. A hook surface 36 is fixedly connected to the front of one end of the first insulation sleeve 35, and a loop surface 37 is fixedly connected to the back of the other end of the first insulation sleeve 35.
[0029] The loop side 37 and the hook side 36 are the two adhesive sides of the Velcro, which is existing technology and will not be described in detail here. In the process of use, the first straight tube 22 and the second straight tube 42 are wrapped by the first insulation sleeve 35, and then the first insulation sleeve 35 is fixed by sticking on the hook side 36 and the loop side 37 on both sides of the first insulation sleeve 35.
[0030] The three insulation sleeves 32, 33, and 3-way insulation sleeve 34 have the same structure. The insulation sleeve 32 includes a second insulation sleeve 39. Both sides of one end of the second insulation sleeve 39 are fixedly connected with straps 38, and hook surfaces 36 are fixedly connected to the straps 38. Both sides of the other end of the second insulation sleeve 39 are fixedly connected with loop surfaces 37, and the hook surfaces 36 and loop surfaces 37 are fixedly connected.
[0031] Wrap the second insulation sleeve 39 around the first bend 21, the second bend 41, the valve 23, the adapter 43, or the tee pipe 44, and then attach the hook side 36 on the strap 38 to the loop side 37 on the second insulation sleeve 39 to fix the second insulation sleeve 39.
[0032] Based on the above embodiments, the straight pipe insulation sleeve 31, the bent pipe insulation sleeve 32, the ball valve insulation sleeve 33 and the three-way insulation sleeve 34 are electrically connected by a wire 30, and one end of the wire 30 is electrically connected to a thermostat 301.
[0033] The insulation jacket includes a heating core made of uniformly arranged nickel-chromium alloy wires to ensure even heating. The inner insulation layer is made of high-grade mica or fiberglass cloth, which is heat-resistant and has reliable insulation. The insulation layer is made of thick fiberglass cotton, which effectively keeps the temperature low and saves energy. The outer shell is not hot to the touch. The outer protective layer is made of high-temperature resistant and chemical-resistant fabric, which is wear-resistant, easy to clean, and has a long service life. This is existing technology and will not be described in detail here. The wires 30 are connected in series with each other through connectors. The wires 30 are connected to the nickel-chromium alloy wires inside the insulation jacket through terminals. The temperature controller 301 is connected to the power supply by an external wire 30. The temperature controller 301 includes a controller, a temperature display screen, and other structural components. This is existing technology and will not be described in detail here.
[0034] Operating procedure: During operation, the various pipes of the transport component 2 and the separating component 4 are connected through the connecting component 5. Then, the insulation sleeves of the insulation component 3 are respectively placed on the appropriate pipes. After that, the wires 30 between the insulation sleeves are connected in series. Then, the wires 30 are connected to the temperature controller 301. The temperature controller 301 is then connected to an external power supply. After that, the temperature controller 301 is activated to adjust the temperature of the insulation component 3. Then, the colloid can be introduced into the separating component 4. Then, the colloid is divided into two parts through the three-way pipe 44 and introduced into the transport components 2 on both sides respectively. Then, the colloid is supplied to the colloid box 2 through the transport component 2, and the colloid supply rate can be controlled by the valve 23.
[0035] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.
Claims
1. A glue supply device with a heat-insulating structure, comprising two glue boxes (1) arranged opposite each other, characterized in that: Both of the glue boxes (1) are provided with a transport component (2) for supplying glue to the glue box (1), and a separator component (4) is provided between the two transport components (2). A heat preservation component (3) for heat preservation of the glue is provided on the outside of the transport component (2). The glue box (1), the transport component (2) and the separator component (4) are all fixed together by a connecting component (5).
2. The adhesive supply device with a heat-insulating structure according to claim 1, characterized in that: The transport component (2) includes a plurality of first bends (21) and a first straight pipe (22). The first bends (21) and the first straight pipe (22) are fixedly connected by the connecting component (5). A valve (23) is fixedly connected to one of the connection points between the first bends (21) and the first straight pipe (22) by the connecting component (5). One of the first bends (21) is fixedly connected to the plastic box (1) by the connecting component (5).
3. The adhesive supply device with a heat-insulating structure according to claim 2, characterized in that: The separating component (4) includes several second bends (41), second straight pipes (42), tee pipes (44), and conversion components (43). The second bends (41), second straight pipes (42), tee pipes (44), and conversion components (43) are fixedly connected to each other by the connecting component (5). Both ends of the tee pipe (44) are fixedly connected to two first straight pipes (22) by the connecting component (5).
4. The adhesive supply device with a heat-insulating structure according to claim 1, characterized in that: The connecting component (5) includes two opposing semicircular plates (51) that are rotatably connected. The connecting points of the transport component (2) and the separation component (4) connected by the connecting component (5) are all formed with connecting rings (55). The free ends of the semicircular plates (51) are all provided with U-shaped seats (52). A screw (53) is rotatably connected in one of the U-shaped seats (52). The screw (53) is slidably connected to the other U-shaped seat (52). The front end of the screw (53) is threadedly connected with a threaded sleeve (54). The threaded sleeve (54) abuts against the U-shaped seat (52). The semicircular plates (51) are sleeved on the outside of the two connecting rings (55).
5. The adhesive supply device with a heat-insulating structure according to claim 1, characterized in that: The insulation component (3) includes a straight pipe insulation sleeve (31), a bent pipe insulation sleeve (32), a ball valve insulation sleeve (33), and a three-way insulation sleeve (34). The straight pipe insulation sleeve (31) includes a first insulation sleeve (35). A hook surface (36) is fixedly connected to the front of one end of the first insulation sleeve (35), and a loop surface (37) is fixedly connected to the back of the other end of the first insulation sleeve (35).
6. The adhesive supply device with a heat-insulating structure according to claim 5, characterized in that: The three insulation sleeves (32), ball valve insulation sleeve (33) and tee insulation sleeve (34) have the same structure. The insulation sleeve (32) includes a second insulation sleeve (39). Both sides of one end of the second insulation sleeve (39) are fixedly connected with straps (38). The hook surface (36) is fixedly connected to each strap (38). Both sides of the other end of the second insulation sleeve (39) are fixedly connected with loop surface (37). The hook surface (36) and the loop surface (37) are fixedly connected.
7. The adhesive supply device with a heat-insulating structure according to claim 6, characterized in that: The straight pipe insulation sleeve (31), the bent pipe insulation sleeve (32), the ball valve insulation sleeve (33) and the three-way insulation sleeve (34) are electrically connected by a wire (30), and one end of the wire (30) is electrically connected to a thermostat (301).