Plant raw material grinding device for shampoo production

CN224822798UActive Publication Date: 2026-10-09GUANGZHOU SHENGKO BIOTECHNOLOGY CO LTD
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Patent Information

Application Number
CN202521639043.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-04
Publication Date
2026-10-09
Estimated Expiration
2035-08-04

AI Technical Summary

Technical Problem

但是现有的碾磨装置大都需要在密封的腔体内进行转动粉碎碾磨,这种碾磨设备在碾磨过程中容易发热,而热敏性成分在温度>35℃时加速分解,尤其在炎热的夏季,发热会导致DHT抑制率下降,影响植物原料制成洗发水后的护发效果,因此设计了一种用于侧柏叶等含热敏性特性的植物原料的洗发水生产用植物原料碾磨装置

Benefits of technology

[0013]实际应用中,通过进料口将侧柏叶等含热敏性特性的植物原料投入碾磨罐,通过粉碎碾磨机构碾磨粉碎,通过降温系统给碾磨过程中的侧柏叶等含热敏性特性的植物原料降温,避免出现热敏性成分在温度>35℃时加速分解,碾磨摩擦生热导致DHT抑制率下降的情况;碾磨完成后,打开密封门,通过出料口将碾磨后的植物原料排出;本实用新型能在碾磨过程中给侧柏叶等含热敏性特性的植物原料降温,尤其在炎热的夏季,避免出现热敏性成分在温度>35℃时加速分解,碾磨摩擦生热导致DHT抑制率下降的情况,保证了植物原料制成洗发水后的护发效果。

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Abstract

The utility model relates to shampoo production technical field, concretely is a kind of plant raw material grinding device for shampoo production, including rack, be set on the grinding jar of rack, be set on the feed inlet of grinding jar top, be set on the discharge outlet of grinding jar side, the comminution grinding mechanism of output end into grinding jar, for the cooling system that the inside of grinding jar is used to cool down, the discharge outlet detachably connected with sealing door, the comminution grinding mechanism is used to grind the material in grinding jar to grind;The utility model can cool down plant raw material with heat-sensitive characteristics such as cypress leaf in the grinding process, especially in hot summer, avoid the case that heat-sensitive component is accelerated to decompose when temperature > 35 DEG C, grinding friction heat leads to the situation that DHT inhibition rate drops, guarantees the hair care effect after plant raw material is made into shampoo.
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Description

Technical Field

[0001] This utility model relates to the field of shampoo production technology, specifically to a plant raw material grinding device for shampoo production. Background Technology

[0002] Many plant-based shampoos contain heat-sensitive plant ingredients such as arborvitae leaves. During shampoo production, grinding equipment is needed to grind these heat-sensitive plant ingredients. However, existing grinding devices mostly require rotating grinding within a sealed chamber. This type of equipment easily generates heat during grinding, and heat-sensitive components decompose more rapidly at temperatures above 35°C. Especially in hot summers, this heat can lead to a decrease in DHT inhibition rate, affecting the hair-care effect of the shampoo made from the plant ingredients. Therefore, a plant ingredient grinding device for shampoo production using heat-sensitive plant ingredients such as arborvitae leaves was designed. Utility Model Content

[0003] The purpose of this invention is to address the above-mentioned shortcomings by providing a plant raw material grinding device for shampoo production. This device can cool down heat-sensitive plant raw materials such as arborvitae leaves during the grinding process, especially in the hot summer. It avoids the accelerated decomposition of heat-sensitive components at temperatures above 35°C and the decrease in DHT inhibition rate caused by frictional heat generation during grinding, thus ensuring the hair care effect of the shampoo made from the plant raw materials.

[0004] To achieve the above objectives, the present invention adopts the following technical solution:

[0005] A plant raw material grinding device for shampoo production includes a frame, a grinding tank mounted on the frame, a feed inlet at the top of the grinding tank, a discharge outlet on one side of the grinding tank, a crushing and grinding mechanism with its output end extending into the grinding tank, a cooling system for cooling the inside of the grinding tank, a detachably connected sealing door at the discharge outlet, and the crushing and grinding mechanism for crushing and grinding the material inside the grinding tank.

[0006] Furthermore, the crushing and grinding mechanism includes a grinding shaft rotatably connected inside the grinding tank, crushing blades disposed on the grinding shaft, a reducer and a grinding motor fixed on the frame, the output end of the grinding motor being driven by a drive pulley, the input end of the reducer being provided with a driven pulley, the drive pulley and the driven pulley being connected by a belt, and the output end of the reducer being driven by a coupling to the grinding shaft.

[0007] Furthermore, a connecting channel is provided at one end of the grinding shaft, and multiple cooling holes communicating with the connecting channel are provided inside the grinding tank; the cooling system includes a cooling seat and a cold air blower, the cooling seat is fixed at one end of the grinding tank, a cooling cavity is provided inside the cooling seat, the cooling cavity is communicating with the connecting channel, and the cooling cavity is connected to the air outlet of the cold air blower through an air inlet pipe.

[0008] Furthermore, the diameter of the cooling hole gradually increases from the connecting channel outwards towards the grinding shaft.

[0009] Furthermore, the air cooler includes a fan fixed at one end of the grinding tank, an air outlet pipe at the output end of the fan, and a cooling shell at the top of the air outlet pipe. The air inlet pipe and the air outlet pipe are respectively connected to the interior of the cooling shell from the top and bottom ends. Multiple semiconductor cooling chips are embedded on the cooling shell. The cold end of the semiconductor cooling chip is provided with heat-absorbing fins facing the interior of the cooling shell, and the hot end of the semiconductor cooling chip is provided with heat-dissipating fins facing the exterior of the cooling shell.

[0010] Furthermore, the feed inlet is funnel-shaped, with the larger end of the feed inlet facing upwards and the smaller end connected to the inside of the grinding tank.

[0011] Furthermore, it also includes a controller, and both the crushing and grinding mechanism and the cooling system are electrically connected to the controller.

[0012] The beneficial effects of this utility model are:

[0013] In practical applications, heat-sensitive plant materials such as arborvitae leaves are fed into the grinding tank through the inlet. The materials are then ground by a crushing and grinding mechanism. A cooling system keeps the heat-sensitive plant materials cool during the grinding process, preventing accelerated decomposition of heat-sensitive components at temperatures above 35°C and avoiding a decrease in DHT inhibition rate due to frictional heat generation during grinding. After grinding, the sealed door is opened, and the ground plant materials are discharged through the outlet. This invention cools heat-sensitive plant materials such as arborvitae leaves during grinding, especially in hot summer months, preventing accelerated decomposition of heat-sensitive components at temperatures above 35°C and a decrease in DHT inhibition rate due to frictional heat generation during grinding, thus ensuring the hair care effect of the shampoo made from the plant materials. Attached Figure Description

[0014] Figure 1 This is the front view of this utility model;

[0015] Figure 2 This is a top view of the present invention;

[0016] Figure 3 This is the right view of this utility model;

[0017] Figure 4 This is a left view of the present invention;

[0018] Figure 5 yes Figure 4 Sectional view at point AA. Detailed Implementation

[0019] like Figures 1-5 As shown, a plant raw material grinding device for shampoo production includes a frame, a grinding tank 1 mounted on the frame, a feed inlet 2 located at the top of the grinding tank 1, a discharge outlet located on one side of the grinding tank 1, a crushing and grinding mechanism with its output end extending into the grinding tank 1, a cooling system for cooling the interior of the grinding tank 1, a detachably connected sealing door 3 at the discharge outlet, and the crushing and grinding mechanism for crushing and grinding the material inside the grinding tank 1.

[0020] Plant materials containing heat-sensitive properties, such as arborvitae leaves, are fed into the grinding tank 1 through the feed inlet 2. They are then ground by the crushing and grinding mechanism. A cooling system is used to cool the plant materials during the grinding process, preventing accelerated decomposition of heat-sensitive components at temperatures above 35°C and avoiding a decrease in DHT inhibition rate due to frictional heat generation during grinding. After grinding, the sealing door 3 is opened, and the ground plant materials are discharged through the discharge outlet. This invention cools the plant materials containing heat-sensitive properties, such as arborvitae leaves, during the grinding process, preventing accelerated decomposition of heat-sensitive components at temperatures above 35°C and a decrease in DHT inhibition rate due to frictional heat generation during grinding, thus ensuring the hair care effect of the shampoo made from the plant materials.

[0021] like Figures 1-5 As shown, the crushing and grinding mechanism includes a grinding shaft 41 rotatably connected inside the grinding jar 1, crushing blades 42 mounted on the grinding shaft 41, a reducer 43 fixed to the frame, and a grinding motor 44. The output end of the grinding motor 44 is driven by a drive pulley 45, and the input end of the reducer 43 is provided with a driven pulley 46. The drive pulley 45 and the driven pulley 46 are connected by a belt 47, and the output end of the reducer 43 is driven by a coupling to the grinding shaft 41. In this embodiment, the grinding motor 44 drives the grinding shaft 41 to rotate through the drive pulley 45, belt 47, driven pulley 46, and reducer 43. The grinding shaft 41 drives the crushing blades 42 to rotate, thus crushing the plant materials inside the grinding jar 1.

[0022] like Figures 1-5As shown, one end of the grinding shaft 41 is provided with a connecting channel 411, and the grinding tank 1 is provided with a plurality of cooling holes 412 communicating with the connecting channel 411; the cooling system includes a cooling seat 51 and a cold air blower 52. The cooling seat 51 is fixed to one end of the grinding tank 1, and a cooling cavity 511 is provided inside the cooling seat 51. The cooling cavity 511 is communicating with the connecting channel 411, and the cooling cavity 511 is connected to the air outlet of the cold air blower 52 through an air inlet pipe 53; in this embodiment, the cold air blower 52 delivers cold air through the air inlet pipe 53 and the cooling cavity 511 into the connecting channel 411, and then into the grinding tank 1 through the cooling holes 412 to cool the plant raw materials being ground.

[0023] like Figures 1-5 As shown, the diameter of the cooling hole 412 gradually increases from the connecting channel 411 to the outside of the grinding shaft 41. In this embodiment, when the diameter of the cooling hole 412 gradually increases from the connecting channel 411 to the outside of the grinding shaft 41, it can increase the wind speed of the cold air to a certain extent, so that the contact effect between the cold air and the plant raw materials is better, and the cold air after heat exchange is discharged from the feed inlet 2.

[0024] like Figures 1-5 As shown, the air cooler 52 includes a fan 521 fixed to one end of the grinding tank 1, an air outlet duct 522 disposed at the output end of the fan 521, and a cooling shell 526 disposed at the top end of the air outlet duct 522. The air inlet duct 53 and the air outlet duct 522 are respectively connected to the interior of the cooling shell 526 from the top and bottom ends. Multiple semiconductor cooling chips 523 are embedded in the cooling shell 526, and the cold ends of the semiconductor cooling chips 523 are provided with heat-absorbing fins facing the interior of the cooling shell 526. The semiconductor cooling chip 523 has heat dissipation fins 525 facing the outside of the cooling shell 526. In this embodiment, the outside air is drawn into the air outlet duct 522 by the fan 521. The heat absorption fins 524 of the cold end of the semiconductor cooling chip 523 in the cooling shell 526 absorb the heat in the air, making the incoming air cold. The heat dissipation fins 525 of the hot end of the semiconductor cooling chip 523 dissipate heat, and the cold air enters the connecting channel 411 through the air inlet duct 53 and the cooling cavity 511.

[0025] like Figures 1-5 As shown, the feed inlet 2 is funnel-shaped, with the larger end of the feed inlet 2 facing upwards and the smaller end connected to the inside of the grinding tank 1; in this embodiment, the funnel-shaped feed inlet 2 makes it easier for plant raw materials to enter the grinding tank 1.

[0026] like Figures 1-5 As shown, it also includes a controller, and the crushing and grinding mechanism and the cooling system are both electrically connected to the controller; in this embodiment, the crushing and grinding mechanism and the cooling system can be controlled by the controller.

[0027] The specific embodiments described herein are merely illustrative examples of this utility model. Those skilled in the art to which this utility model pertains may make various modifications or additions to the described specific embodiments or use similar methods to replace them, without departing from the scope defined by this utility model.

Claims

1. A plant raw material grinding device for shampoo production, characterized in that: The device includes a frame, a grinding jar mounted on the frame, a feed inlet at the top of the grinding jar, a discharge outlet on one side of the grinding jar, a crushing and grinding mechanism with its output end extending into the grinding jar, a cooling system for cooling the interior of the grinding jar, a detachably connected sealing door at the discharge outlet, and the crushing and grinding mechanism for crushing and grinding the material inside the grinding jar.

2. The plant raw material grinding device for shampoo production according to claim 1, characterized in that, The crushing and grinding mechanism includes a grinding shaft rotatably connected inside the grinding tank, crushing blades mounted on the grinding shaft, a reducer and a grinding motor fixed on the frame, a drive pulley driven to the output end of the grinding motor, a driven pulley mounted at the input end of the reducer, a belt connecting the drive pulley and the driven pulley, and a coupling driving the grinding shaft to the output end of the reducer.

3. The plant raw material grinding device for shampoo production according to claim 2, characterized in that, One end of the grinding shaft is provided with a connecting channel, and the grinding tank is provided with a plurality of cooling holes that communicate with the connecting channel; the cooling system includes a cooling seat and a cold air blower, the cooling seat is fixed to one end of the grinding tank, the cooling seat is provided with a cooling cavity, the cooling cavity communicates with the connecting channel, and the cooling cavity is connected to the air outlet of the cold air blower through an air inlet pipe.

4. The plant raw material grinding device for shampoo production according to claim 3, characterized in that, The diameter of the cooling hole gradually increases from the connecting channel toward the outside of the grinding shaft.

5. A plant raw material grinding device for shampoo production according to claim 3, characterized in that, The air cooler includes a fan fixed at one end of the grinding tank, an air outlet pipe at the output end of the fan, and a cooling shell at the top of the air outlet pipe. The air inlet pipe and the air outlet pipe are respectively connected to the interior of the cooling shell from the top and bottom ends. Multiple semiconductor cooling chips are embedded on the cooling shell. The cold end of the semiconductor cooling chip is provided with heat-absorbing fins facing the inside of the cooling shell, and the hot end of the semiconductor cooling chip is provided with heat-dissipating fins facing the outside of the cooling shell.

6. The plant raw material grinding device for shampoo production according to claim 1, characterized in that, The feed inlet is funnel-shaped, with the larger end facing upwards and the smaller end connected to the inside of the grinding tank.

7. The plant raw material grinding device for shampoo production according to claim 1, characterized in that, It also includes a controller, and the crushing and grinding mechanism and the cooling system are both electrically connected to the controller.