Rapid cooling and shaping device for rhinitis plaster

CN223817883UActive Publication Date: 2026-01-23山西药科职业学院
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Patent Information

Application Number
CN202422834900.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-20
Publication Date
2026-01-23
Estimated Expiration
2034-11-20

AI Technical Summary

Technical Problem

但是自然冷却速度缓慢,极大地延长了生产周期,降低了生产效率,且自然冷却过程中往往存在冷却不均匀的问题,膏药在冷却过程中可能会出现外部表面区域冷却过快,而内部区域冷却不足的情况,这会使膏药的质量参差不齐,影响产品的一致性

Benefits of technology

[0013] 1. This utility model uses the telescopic end of the electric cylinder to drive the connecting plate to move, which drives the extrusion rod to drive the piston to slide relative to the inside of the extrusion tube. This allows the ointment inside the extrusion tube to be transported through the tube to the inner disc shell, and then evenly dispersed and extruded through multiple dispersion tubes, so that the ointment can be divided into multiple small ointment strips. After the ointment is squeezed into multiple small ointment strips, it is cooled, which greatly increases the contact area between the ointment and the cooling airflow.

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Abstract

The utility model provides a quick cooling and shaping device for rhinitis plaster, which relates to the field of rhinitis plaster processing and comprises a cooling tank, an extrusion pipe is fixedly connected to the upper end of the cooling tank, an input pipe is arranged on the pipe wall of the upper end of the extrusion pipe, and a control valve is arranged at the connecting position of the input pipe and the extrusion pipe; and the accelerated cooling mechanism comprises a built-in disc shell, the built-in disc shell is fixedly arranged in the cooling tank, a plurality of dispersing pipes are arranged on the shell wall of the lower end of the built-in disc shell, and a bobbin is arranged in the middle of the built-in disc shell. The connecting plate is driven to move through the telescopic end of the electric cylinder, the extrusion rod is driven to drive the piston to slide relative to the interior of the extrusion pipe, and ointment in the extrusion pipe is conveyed into the built-in disc shell through the barrel pipe and then is evenly dispersed and extruded out through the multiple dispersion pipes; the ointment can be divided into a plurality of small ointment strips, and the ointment is extruded into the plurality of small ointment strips to be cooled, so that the contact area between the ointment and cooling airflow is increased.
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Description

TECHNICAL FIELD

[0001] The utility model relates to rhinitis plaster processing field especially relates to a rhinitis plaster quick cooling and shaping device. BACKGROUND

[0002] Rhinitis is that nasal mucosa or submucosal tissue is damaged because of virus infection, germ infection, irritant stimulation etc., leading to acute or chronic inflammation. Rhinitis generally uses plaster to assist treatment.

[0003] In the production process of rhinitis plaster, cooling and shaping is a key link, and the traditional rhinitis plaster cooling mode is usually simple and direct, such as natural cooling or using a simple air cooling device to cool. However, natural cooling is slow, greatly prolongs the production cycle, reduces the production efficiency, and the cooling is often uneven in the natural cooling process, and the external surface area of the plaster may be cooled too quickly, and the internal area may be insufficiently cooled, which will make the quality of the plaster uneven, and affect the consistency of the product.

[0004] Therefore, it is necessary to provide a new rhinitis plaster quick cooling and shaping device to solve the above technical problems. UTILITY MODEL CONTENTS

[0005] To solve the above technical problems, the utility model provides a rhinitis plaster quick cooling and shaping device.

[0006] The rhinitis plaster quick cooling and shaping device provided by the utility model comprises a cooling tank, an extrusion pipe is fixedly connected to the upper end of the cooling tank, an input pipe is arranged on the upper end pipe wall of the extrusion pipe, a control valve is arranged at the connection position of the input pipe and the extrusion pipe, an accelerated cooling mechanism is arranged on the cooling tank, the accelerated cooling mechanism comprises an inner disc shell, the inner disc shell is fixedly arranged in the inner part of the cooling tank, a plurality of dispersion pipes are arranged on the lower end shell wall of the inner disc shell, a cylinder pipe is arranged at the middle position of the inner disc shell, one end of the cylinder pipe is connected with the lower end pipe wall of the extrusion pipe, and an extrusion assembly is arranged in the inner part of the extrusion pipe.

[0007] Preferably, the plurality of dispersion pipes are arranged in equidistant annular arrangement.

[0008] Preferably, the extrusion assembly comprises an extrusion rod, the extrusion rod is slidably connected with the upper end pipe wall of the extrusion pipe, a piston is arranged at the lower end of the extrusion rod, and the piston is arranged in the inner part of the extrusion pipe.

[0009] Preferably, a connecting plate is arranged on the upper end shell wall of the extrusion rod, a stand is arranged on the upper end shell wall of the cooling tank, an electric cylinder is arranged on the stand, and the telescopic end of the electric cylinder is fixedly connected with the connecting plate.

[0010] Preferably, a gas supply pipe is provided on one side wall of the cooling tank, and an exhaust pipe is provided on the other side wall of the cooling tank. A fan is installed and connected to one end of the gas supply pipe.

[0011] Preferably, a main filter screen is installed and connected at the air inlet end of the fan, and a secondary filter screen is installed and connected on the pipe wall at the other end of the exhaust pipe.

[0012] Compared with related technologies, the rapid cooling and shaping device for nasal plaster provided by this utility model has the following beneficial effects:

[0013] 1. This utility model uses the telescopic end of the electric cylinder to drive the connecting plate to move, which drives the extrusion rod to drive the piston to slide relative to the inside of the extrusion tube. This allows the ointment inside the extrusion tube to be transported through the tube to the inner disc shell, and then evenly dispersed and extruded through multiple dispersion tubes, so that the ointment can be divided into multiple small ointment strips. After the ointment is squeezed into multiple small ointment strips, it is cooled, which greatly increases the contact area between the ointment and the cooling airflow.

[0014] 2. This utility model uses a fan to deliver air through an air supply pipe to the interior of the cooling tank, and then outputs it through an exhaust pipe, creating an airflow within the cooling tank. This accelerates the cooling of multiple small strips of plaster. Compared to the traditional method of cooling large plasters, this dispersed cooling method can cool and solidify the plaster more quickly, significantly improving cooling efficiency, shortening the production cycle, and providing strong support for the large-scale production of nasal plasters. Attached Figure Description

[0015] Figure 1 A schematic diagram of a preferred embodiment of this utility model;

[0016] Figure 2 for Figure 1 The diagram shows the internal structure of the extrusion tube.

[0017] Figure 3 for Figure 2 The diagram shows the exploded structure of the cooling tank.

[0018] The following are the labels in the diagram: 1. Cooling tank; 2. Extrusion pipe; 3. Input pipe; 31. Control valve; 4. Internal disc shell; 41. Dispersion pipe; 42. Extrusion rod; 43. Piston; 5. Connecting plate; 51. Electric cylinder; 6. Air supply pipe; 61. Exhaust pipe; 62. Fan; 7. Main filter screen; 71. Secondary filter screen. Detailed Implementation

[0019] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0020] Please refer to the following: Figures 1 to 3The utility model provides a kind of rhinitis plaster rapid cooling setting device, including: cooling tank 1, the upper end of cooling tank 1 is fixedly connected with extrusion pipe 2, the upper end pipe wall of extrusion pipe 2 is equipped with input pipe 3, control valve 31 is equipped at the connecting position of input pipe 3 and extrusion pipe 2;Accelerate cooling mechanism, accelerate cooling mechanism includes built-in disc shell 4, built-in disc shell 4 is fixedly arranged in the inside of cooling tank 1, the lower end shell wall of built-in disc shell 4 is equipped with multiple dispersion pipes 41, the middle position of built-in disc shell 4 is equipped with cylinder pipe, one end of cylinder pipe is connected with the lower end pipe wall of extrusion pipe 2, the inside of extrusion pipe 2 is equipped with extrusion component.

[0021] In the specific implementation process, as shown in Figure 2 And Figure 3 Multiple dispersion pipes 41 are arranged in equidistant annular arrangement.

[0022] It should be noted that: the inside of extrusion pipe 2 is slid relative to piston 43, so that the ointment in the inside of extrusion pipe 2 is transported to built-in disc shell 4 through cylinder pipe, and then uniformly dispersed and extruded through multiple dispersion pipes 41, so that the ointment can be divided into multiple small ointment strips, which is convenient for subsequent cooling and greatly increases the contact area of the ointment and cooling airflow.

[0023] As shown in Figure 1 And Figure 2 Extrusion component includes extrusion rod 42, and the upper end pipe wall of extrusion pipe 2 is slidably connected with extrusion rod 42, and piston 43 is installed and connected at the lower end of extrusion rod 42, and piston 43 is arranged in the inside of extrusion pipe 2.

[0024] It should be noted that: the upper end pipe wall of extrusion pipe 2 is slid relative to extrusion rod 42, so that the inside of extrusion pipe 2 is slid relative to piston 43, so that the ointment in the inside of extrusion pipe 2 is transported to built-in disc shell 4 through cylinder pipe, and then uniformly dispersed and extruded through multiple dispersion pipes 41, so that the ointment can be divided into multiple small ointment strips.

[0025] As shown in Figure 1 And Figure 2 The upper end shell wall of extrusion rod 42 is equipped with connecting plate 5, the upper end shell wall of cooling tank 1 is equipped with stand, electric cylinder 51 is installed and connected on the stand, and the telescopic end of electric cylinder 51 is fixedly connected with connecting plate 5.

[0026] It should be noted that: the telescopic end of electric cylinder 51 is started to drive connecting plate 5 to move, so that the upper end pipe wall of extrusion pipe 2 is slid relative to extrusion rod 42, so that the inside of extrusion pipe 2 is slid relative to piston 43.

[0027] As shown in Figure 1 And Figure 2 One end of the side wall of cooling tank 1 is equipped with gas conveying pipe 6, the other side wall of cooling tank 1 is equipped with exhaust pipe 61, and fan 62 is installed and connected at one end of gas conveying pipe 6.

[0028] It should be noted that: the fan 62 is started to make air through the air pipe 6 to the inside of the cooling tank 1, and then output through the exhaust pipe 61, forming air flow acceleration to cool the multiple small ointment strips.

[0029] Reference Figure 1 And Figure 3 As shown, the fan 62 is installed at the air inlet end of the main filter screen 7, and the other end of the exhaust pipe 61 is installed on the pipe wall of the auxiliary filter screen 71.

[0030] It should be noted that: the main filter screen 7 is installed at the air inlet end of the fan 62, and the auxiliary filter screen 71 is installed at the pipe opening of the exhaust pipe 61, so that the air flow flowing into the cooling tank 1 is clean enough, which does not affect the quality of the ointment cooling.

[0031] The working principle of the nasal ointment cooling and shaping device provided by the utility model is as follows: the ointment is transported to the inside of the extrusion pipe 2 through the input pipe 3, the control valve 31 is closed, the inside of the extrusion pipe 2 is in a sealed state, then the electric cylinder 51 is started to drive the connecting plate 5 to move, the extrusion rod 42 is connected to the upper end wall of the extrusion pipe 2 to slide, the piston 43 is connected to the inside of the extrusion pipe 2 to slide, the ointment in the extrusion pipe 2 is transported to the built-in disc shell 4 through the cylinder pipe, then the multiple dispersion pipes 41 are used to uniformly disperse and extrude, the ointment can be divided into multiple small ointment strips, and the subsequent cooling and heat dissipation are facilitated. The fan 62 is started to make air through the air pipe 6 to the inside of the cooling tank 1, and then output through the exhaust pipe 61, forming air flow acceleration to cool the multiple small ointment strips, so that the ointment can be more quickly cooled and shaped.

[0032] The above is only an embodiment of the utility model, and does not limit the patent range of the utility model, and any equivalent structure or equivalent process conversion using the utility model specification and drawing contents, or direct or indirect application in other related technical fields, are also included in the patent protection range of the utility model.

Claims

1. A rapid cooling and shaping device for nasal plaster, characterized in that, include: Cooling tank (1), with a squeezing pipe (2) fixedly connected to the upper end of the cooling tank (1), and an input pipe (3) provided on the upper end wall of the squeezing pipe (2), and a control valve (31) provided at the connection position between the input pipe (3) and the squeezing pipe (2); The accelerated cooling mechanism includes an internal disc shell (4), which is fixed inside the cooling tank (1). Multiple dispersion tubes (41) are provided on the lower shell wall of the internal disc shell (4). A cylindrical tube is provided at the middle position of the internal disc shell (4). One end of the cylindrical tube is connected to the lower tube wall of the extrusion tube (2). An extrusion assembly is provided inside the extrusion tube (2).

2. The rapid cooling and shaping device for nasal plaster according to claim 1, characterized in that, The multiple dispersion tubes (41) are arranged in an equidistant ring.

3. The rapid cooling and shaping device for nasal plaster according to claim 1, characterized in that, The extrusion assembly includes an extrusion rod (42), which is slidably connected to the upper end wall of the extrusion tube (2). A piston (43) is installed and connected at the lower end of the extrusion rod (42), and the piston (43) is located inside the extrusion tube (2).

4. The rapid cooling and shaping device for nasal plaster according to claim 3, characterized in that, The upper shell wall of the extrusion rod (42) is provided with a connecting plate (5), and the upper shell wall of the cooling tank (1) is provided with a stand. An electric cylinder (51) is installed on the stand, and the telescopic end of the electric cylinder (51) is fixedly connected to the connecting plate (5).

5. The rapid cooling and shaping device for nasal plaster according to claim 1, characterized in that, A gas supply pipe (6) is provided on one side wall of the cooling tank (1), and an exhaust pipe (61) is provided on the other side wall of the cooling tank (1). A fan (62) is installed and connected to one end of the gas supply pipe (6).

6. The rapid cooling and shaping device for nasal plaster according to claim 5, characterized in that, A main filter (7) is installed and connected at the air inlet of the fan (62), and a secondary filter (71) is installed and connected on the other end of the exhaust pipe (61).