A rapid prototyping device for plaster concentrate

CN224623275UActive Publication Date: 2026-08-11NANJING SKY LONG PHARMA
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-02
Publication Date
2026-08-11

AI Technical Summary

Technical Problem

[0004]为了解决上述技术问题,本实用新型提供一种敷贴原液快速成型装置,以解决上述背景技术中提出的现有成型装置采用逐个挤出成型的方式制作敷贴,工作效率慢,缺乏输送挤出过程中持续冷却的定型功能的问题

Benefits of technology

[0014] This invention features a high degree of automation, which improves production efficiency. By driving a motor to rotate the shaping device, it achieves automatic separation, conveying, and shaping of liquid materials. Combined with the linkage of the spring rod and the demolding plate, it completes automatic demolding, reducing manual intervention. The continuous operation process greatly improves the production efficiency of application.

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Abstract

This utility model provides a rapid prototyping device for adhesive dressing preparation, relating to the field of adhesive dressing preparation technology. It includes a cooling chamber, the main body of which is a semi-circular ring structure. Two sets of side supports are fixedly installed on the lower sides of the cooling chamber, and two sets of auxiliary conveying rollers are rotatably arranged between the two sets of side supports. A discharge device is fixedly installed at the lower front of the cooling chamber, and a solenoid valve is connected to the discharge device. The other end of the solenoid valve is connected to a liquid tank. A support rod is fixedly installed on the top of the cooling chamber, and support frames are fixedly installed on the top of the support rods on both sides. This utility model has a high degree of automation, improving production efficiency. The automatic separation, conveying, and shaping of the liquid material is achieved by driving a motor to rotate the shaping device. Automatic demolding is completed by the linkage of a spring rod and a demolding plate, reducing manual intervention. The continuous operation process significantly improves the production efficiency of adhesive dressing.
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Description

Technical Field

[0001] This utility model belongs to the field of patch preparation technology, and more specifically, it relates to a rapid prototyping device for patch concentrate. Background Technology

[0002] During the preparation of the dressing, various raw materials are blended and stirred to form a mixed stock solution. After the stock solution cools, it solidifies to form the adhesive part of the dressing. It is then attached to a regular sealing paper strip, which can be rolled up to form a roll product or cut into sheet products for subsequent packaging.

[0003] Based on the above, the current molding equipment uses a one-by-one extrusion molding method to produce patches, which is slow and lacks a shaping function that provides continuous cooling during the extrusion process. Utility Model Content

[0004] To address the aforementioned technical problems, this utility model provides a rapid prototyping device for patch preparation, which solves the problems mentioned in the background art where existing prototyping devices produce patches by extrusion molding one by one, resulting in slow work efficiency and a lack of a continuous cooling and shaping function during the extrusion process.

[0005] The purpose and effect of this utility model's rapid prototyping device for topical application solutions are achieved through the following specific technical means:

[0006] A rapid prototyping device for a plastering solution includes a cooling chamber. The main body of the cooling chamber is a semi-circular ring structure. Two sets of side supports are fixedly installed on the lower sides of the cooling chamber, and two sets of auxiliary conveying rollers are rotatably installed between the two sets of side supports. A discharge device is fixedly installed at the lower front of the cooling chamber, and a solenoid valve is connected to the outside of the discharge device. The other end of the solenoid valve is connected to a liquid tank. A support rod is fixedly installed on the top of the cooling chamber, and a support frame is fixedly installed on the top of the two side support rods. A rotating frame is fixedly installed in the middle of the top of the support frame. A shaping device is slidably attached to the cooling chamber, and twelve sets of grooves are opened around the outside of the shaping device.

[0007] Furthermore, two sets of positioning wheel frames are fixedly installed on both sides of the cooling chamber, and positioning pulleys are rotatably installed on the positioning wheel frames near the shaper; two sets of mounting rings are fixedly installed inside the shaper, and the mounting rings fit into the positioning pulleys.

[0008] Furthermore, the interior of the cooling chamber is a hollow structure, and two sets of pipe interfaces are integrally installed at both ends on one side of the cooling chamber.

[0009] Furthermore, the rear end of the discharge device is attached to the outside of the forming device.

[0010] Furthermore, a drive gear is rotatably mounted on the rear side of the rotating frame, and a drive motor is fixedly mounted on the outside of the rotating frame. The drive motor and the rotating shaft of the drive gear are connected by a bevel gear transmission. A gear ring is fixedly mounted in the middle of the inside of the forming device, and the drive gear meshes with the gear ring.

[0011] Furthermore, each of the external grooves of the forming device is slidably provided with a release plate, and each side of the release plate that is in contact with the forming device is fixedly provided with two sets of spring rods. The spring rods pass through the forming device, are fitted with springs, and are fixedly provided with baffles.

[0012] Furthermore, the bottom of the support frame is integrally provided with two arc-shaped protrusions, which can contact the baffle of the lower spring rod.

[0013] Compared with the prior art, the present invention has the following beneficial effects:

[0014] This invention features a high degree of automation, which improves production efficiency. By driving a motor to rotate the shaping device, it achieves automatic separation, conveying, and shaping of liquid materials. Combined with the linkage of the spring rod and the demolding plate, it completes automatic demolding, reducing manual intervention. The continuous operation process greatly improves the production efficiency of application.

[0015] The cooling effect is controllable, ensuring product quality. The cooling chamber adopts a semi-circular ring structure and is equipped with a circulating cooling equipment or tap water heat exchange system, which can quickly and evenly cool and shape the liquid material. At the same time, the liquid material chamber maintains the temperature through a heater to ensure the stability of the liquid material, thus ensuring the forming quality of the application from multiple aspects.

[0016] With a reasonable structural design, convenient operation and high resource utilization, the equipment has a compact layout of all components. The side support and auxiliary conveying rollers facilitate the bearing and movement of the oil paper rolls. The pipe interface can be flexibly connected to the circulation equipment or tap water. The output water can also be used by other equipment, which simplifies the operation process and realizes the efficient use of water resources. Attached Figure Description

[0017] Figure 1 This is a three-dimensional structural diagram of the present invention.

[0018] Figure 2 This is a schematic diagram of the axonal structure of this utility model.

[0019] Figure 3 This is a utility model Figure 2 Another structural diagram from another angle.

[0020] Figure 4 This is a three-dimensional sectional view of the present invention.

[0021] Figure 5 This is a utility model Figure 4 Another structural diagram from another angle.

[0022] In the diagram, the correspondence between component names and drawing numbers is as follows:

[0023] 1. Cooling chamber; 101. Side support; 102. Auxiliary conveyor roller; 103. Positioning wheel frame; 104. Positioning pulley; 105. Support rod frame; 106. Pipe interface; 2. Discharge device; 3. Solenoid valve; 4. Liquid tank; 5. Support frame; 6. Rotating frame; 601. Drive gear; 602. Drive motor; 7. Forming device; 701. Demolding piece; 702. Spring rod; 703. Mounting ring; 704. Gear ring. Detailed Implementation

[0024] The embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples.

[0025] Example 1:

[0026] As attached Figure 1 To be continued Figure 5 As shown:

[0027] This utility model provides a rapid prototyping device for a patch preparation solution, including a cooling chamber 1. The main body of the cooling chamber 1 is a semi-circular ring structure. Two sets of side supports 101 are fixedly installed on the lower sides of the cooling chamber 1, and two sets of auxiliary conveying rollers 102 are rotatably installed between the two sets of side supports 101. A discharge device 2 is fixedly installed at the lower front of the cooling chamber 1. A solenoid valve 3 is connected to the outside of the discharge device 2. A liquid tank 4 is connected to the other end of the solenoid valve 3. A heater is installed in the inner wall of the liquid tank 4. A support rod frame 105 is fixedly installed on the top of the cooling chamber 1, and a support frame 5 is fixedly installed on the top of the support rod frames 105 on both sides. A rotating frame 6 is fixedly installed in the middle of the top of the support frame 5. A shaper 7 is slidably attached in the cooling chamber 1, and twelve sets of grooves are opened around the outside of the shaper 7.

[0028] Two sets of positioning wheel frames 103 are fixedly installed on both sides of the cooling chamber 1. Positioning pulleys 104 are rotatably installed on the positioning wheel frames 103 near the shaper 7. Two sets of mounting rings 703 are fixedly installed inside the shaper 7, and the mounting rings 703 are in contact with the positioning pulleys 104.

[0029] The interior of the cooling chamber 1 is hollow, and two sets of pipe interfaces 106 are integrally set at both ends on one side of the cooling chamber 1.

[0030] Among them, the rear end of the discharge device 2 is attached to the outside of the shaping device 7.

[0031] The rotating frame 6 has a drive gear 601 rotatably mounted on its rear side, and a drive motor 602 is fixedly mounted on the outside of the rotating frame 6. The drive motor 602 and the rotating shaft of the drive gear 601 are connected by a bevel gear transmission. A gear ring 704 is fixedly mounted in the middle of the inside of the forming device 7, and the drive gear 601 meshes with the gear ring 704.

[0032] In this device, a release plate 701 is slidably disposed in the outer groove of the molder 7. Two sets of spring rods 702 are fixedly disposed on the side of the release plate 701 that is in contact with the molder 7. The spring rods 702 pass through the molder 7, are fitted with springs, and are fixedly disposed with baffles.

[0033] The bottom of the support frame 5 is integrally provided with two arc-shaped protrusions, which can contact the baffle of the lower spring rod 702.

[0034] Preparation for oil paper roll conveying

[0035] The oil paper roll is passed over the auxiliary conveyor roller 102, which assists in carrying it, and then the oil paper roll is moved by the winding device.

[0036] The mixed stock solution is poured into the liquid storage tank 4, and the temperature of the liquid is maintained by the built-in heater. Then, the solenoid valve 3 is opened to allow the liquid to flow out through the discharge device 2.

[0037] Start the drive motor 602, which drives the drive gear 601 to rotate, and then drives the shaper 7 to rotate as a whole through the gear ring 704.

[0038] Meanwhile, the shaper 7 uses two sets of internal mounting rings 703 to fit against the positioning pulley 104 to ensure stable rotation and movement;

[0039] The shaper 7 separates and delivers liquid material through external grooves, during which the liquid material is rapidly cooled and shaped.

[0040] Connect the two sets of pipe interfaces 106 to the circulating cooling equipment, or directly introduce tap water. The output water can be connected to other water-using equipment. The hollow structure of the cooling chamber 1 provides a heat exchange effect, accelerating the cooling speed of the liquid.

[0041] The bottom of the support frame 5 is integrally provided with two arc-shaped protrusions that can contact the baffle of the spring rod 702. When the liquid material moves with the forming device 7 to the position below the cooling chamber 1, it has been basically cooled and shaped. At this time, the top baffle of the spring rod 702 contacts the arc-shaped protrusion at the bottom of the support frame 5, and the spring rod 702 is pressed down, pushing the demolding piece 701 to push the adhesive out of the groove, so that the adhesive is demolded and falls on the top of the oil paper roll moving below.

[0042] Example 2:

[0043] Based on Example 1, an agitator can be installed above the liquid storage tank 4, with the agitator blades placed inside the liquid storage tank 4. The agitator blades continuously agitate the original liquid to prevent premature sedimentation.

[0044] The specific usage and function of this embodiment are as follows:

[0045] In this invention, when in use, the oil paper roll is passed through the top of the auxiliary conveyor roller 102, the auxiliary conveyor roller 102 is used to assist in carrying the oil paper roll, and a winding device is used to move the oil paper roll.

[0046] The mixed stock solution is poured into the liquid storage tank 4, and the temperature is maintained by the built-in heater in the liquid storage tank 4. Then, the solenoid valve 3 is opened to allow the liquid to flow into the discharge device 2.

[0047] The drive motor 602 is started to drive the drive gear 601 to rotate, and the drive gear 601 drives the gear ring 704 to rotate, causing the shaper 7 to rotate as a whole. The shaper 7 continues to rotate and move, separating and conveying the liquid material through the groove on the outside of the shaper 7. During this process, the liquid material is rapidly cooled and shaped.

[0048] Connect the two sets of pipe interfaces 106 to the circulating cooling equipment, or use tap water to directly input water and connect the output water to other water-using equipment to provide heat exchange effect and accelerate the cooling speed of liquid materials.

[0049] When the liquid material moves to the position below the cooling chamber 1, it is basically cooled and shaped. At this time, the top baffle of the spring rod 702 contacts the bottom arc protrusion of the support frame 5, presses the spring rod 702 down, pushes out the demolding piece 701, so that the coating is demolded and falls on the top of the oil paper roll.

[0050] Continuous production can be achieved by repeating the above steps.

Claims

1. A rapid prototyping device for a poultice, characterized in that, include: Cooling chamber (1), the main body of the cooling chamber (1) is a semi-circular ring structure, two sets of side supports (101) are fixedly installed on the lower sides of the cooling chamber (1), and two sets of auxiliary conveying rollers (102) are rotatably installed between the two sets of side supports (101); a discharge device (2) is fixedly installed at the lower front of the cooling chamber (1), a solenoid valve (3) is connected to the outside of the discharge device (2), and a liquid tank (4) is connected to the other end of the solenoid valve (3); a support rod frame (105) is fixedly installed on the top of the cooling chamber (1), and a support frame (5) is fixedly installed on the top of the two side support rod frames (105); a rotating frame (6) is fixedly installed in the middle of the top of the support frame (5); a shaper (7) is fitted and slidably in the cooling chamber (1), and twelve sets of grooves are opened around the outside of the shaper (7).

2. The rapid prototyping device for a poultice as described in claim 1, characterized in that: Two sets of positioning wheel frames (103) are fixedly installed on both sides of the cooling chamber (1). Positioning pulleys (104) are rotatably installed on the positioning wheel frames (103) near the shaper (7). Two sets of mounting rings (703) are fixedly installed inside the shaper (7). The mounting rings (703) fit into the positioning pulleys (104).

3. The rapid prototyping device for a dressing solution as described in claim 1, characterized in that: The interior of the cooling chamber (1) is hollow, and two sets of pipe interfaces (106) are integrally set at both ends on one side of the cooling chamber (1).

4. The rapid prototyping device for a dressing solution as described in claim 1, characterized in that: The rear end of the discharge device (2) is attached to the outside of the shaping device (7).

5. The rapid prototyping device for a dressing solution as described in claim 1, characterized in that: The rear side of the rotating frame (6) is provided with a drive gear (601), and the outside of the rotating frame (6) is fixedly provided with a drive motor (602). The drive motor (602) and the shaft of the drive gear (601) are connected by a bevel gear transmission. The middle of the inside of the shaping device (7) is fixedly provided with a gear ring (704), and the drive gear (601) meshes with the gear ring (704).

6. The rapid prototyping device for a poultice as described in claim 1, characterized in that: The molder (7) has a release piece (701) slidably disposed in the outer groove. Two sets of spring rods (702) are fixedly disposed on the side of the release piece (701) that is in contact with the molder (7). The spring rods (702) pass through the molder (7), are fitted with springs, and are fixedly disposed with baffles.

7. The rapid prototyping device for a poultice as described in claim 6, characterized in that: The bottom of the support frame (5) is integrally provided with two arc-shaped protrusions, which can contact the baffle of the lower spring rod (702).