Camellia oil production cleaning device
Patent Information
- Application Number
- CN202521981101.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-15
- Publication Date
- 2026-09-25
- Estimated Expiration
- 2035-09-15
AI Technical Summary
[0004]为解决上述背景技术中提出的现有技术对山茶油的清洗效果较差的问题,本实用新型提供如下技术方案:
本实用新型通过在原料进入进料斗内后,可对原料中的树叶、灰尘等杂质可被风吹入储渣箱内,以对原料进行初步过滤,最后原料落入导向框内后,进行擦洗和刷洗,通过对原料的初步清洗,可增加原料的清洗效率,且在箱体内清洗后的原料从箱体内取出时,从多个漏果槽内流出的干净水可对限位篮内的原料进行冲洗,以将限位篮内的原料冲洗干净,清洗效果较好。
Smart Images

Figure CN224794147U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of camellia oil production technology, and in particular to a camellia oil production cleaning device. Background Technology
[0002] Before camellia oil production, it is necessary to remove dust and other foreign matter from the surface of the raw materials through cleaning so that the camellia oil does not contain other impurities during subsequent production.
[0003] For example, Chinese patent application CN202421099521.2 discloses a raw material cleaning device for camellia oil production. Its specific content is as follows: a through groove is provided in the lower half of the pot body, and an isolation net is installed in the through groove. The isolation net prevents material from leaking from the through groove into the cleaning tank. The raw material to be cleaned is put into the pot body, and the first valve is closed, allowing the water supply mechanism to supply water to the cleaning tank from the outside through the water inlet pipe and telescopic hose. When the water level in the cleaning tank reaches a specified height, the water supply is stopped. The lifting mechanism can drive the pot body to swing up and down around its hinged axis via ropes. During the swinging process, the raw material is screened and washed. With the installation of an ultrasonic generator and transducer, the raw material can be cleaned using ultrasonic waves. The wastewater after cleaning enters the filter box through the drain pipe for filtration. The filtered water is pumped back to the cleaning tank for continued use. However, it still has the following technical problems: Although dust can enter the water through the isolation net in the middle of the channel, if the camellia oil raw material contains large particles such as camellia tree leaves, these large particles cannot pass through the isolation net, making the above structure less effective at cleaning camellia oil. Utility Model Content
[0004] To address the problem mentioned in the background section regarding the poor cleaning effect of existing technologies on camellia oil, this utility model provides the following technical solution: A camellia oil production cleaning device, including a cleaning tank; The cleaning tank is equipped with an outer casing for guiding the raw materials.
[0005] A feed hopper is installed at the upper middle part of the outer box, a blower for blowing impurities to the right is installed at the left middle part of the feed hopper, and an umbrella-shaped guide plate for preliminary wiping of the raw material surface is installed at the middle part of the outer box.
[0006] The cleaning tank includes a tank body, a filter box is installed on the left side of the tank body, a water pump is installed above the filter box, a second water outlet pipe is installed at one end of the water pump, and a nozzle for rinsing the raw materials on the umbrella-shaped guide plate is connected to one end of the second water outlet pipe.
[0007] Furthermore, a storage battery is installed in the inner cavity of the outer casing, a guide plate for guiding the raw materials is installed on the upper right side of the feed hopper, and a baffle for limiting impurities is installed on the lower right side of the feed hopper, and the baffle is a V-shaped plate.
[0008] Furthermore, a slag storage box for storing impurities is installed at the upper end of the right inner cavity of the outer box. A connecting pipe communicating with the inner cavity of the feed hopper is installed on the left side of the slag storage box, and a baffle is installed at the lower left end of the connecting pipe. An air outlet pipe is installed on the right side of the slag storage box, and a filter screen is installed inside the air outlet pipe.
[0009] Furthermore, a guide frame for limiting the position of the raw material is installed in the middle of the outer box, and an umbrella-shaped guide plate is installed in the middle of the guide frame. The guide frame is located below the feed hopper. Multiple fruit-leaking grooves are opened at the bottom of the guide frame, and multiple brush bristles are installed on the inner wall of the fruit-leaking grooves.
[0010] Furthermore, a soft pad is installed on the outer wall of the umbrella-shaped guide plate, a rotating shaft is installed at the lower middle part of the umbrella-shaped guide plate, a motor is installed at the lower end of the rotating shaft, and the motor is installed at the bottom middle part of the guide frame.
[0011] Furthermore, a water inlet pipe is installed at the upper right side of the box, a water outlet pipe is installed at the lower right side of the box, and an ultrasonic generator is installed inside the box.
[0012] Furthermore, a limiting basket for limiting the raw materials is installed at the upper end of the box, a partition net is installed at the bottom of the limiting basket, and a handle is installed at the upper end of the limiting basket.
[0013] Furthermore, the nozzle is installed on the upper left side of the guide frame, and the lower end of the water pump is equipped with a water inlet pipe connected to the filter box.
[0014] Compared with the prior art, the beneficial effects of this utility model are: This invention allows for the initial filtration of raw materials. After the raw materials enter the feeding hopper, impurities such as leaves and dust are blown into the slag storage box by wind. Finally, the raw materials fall into the guide frame for wiping and brushing. This initial cleaning increases the cleaning efficiency of the raw materials. Furthermore, when the cleaned raw materials are removed from the box, clean water flowing from multiple fruit-leaking troughs can rinse the raw materials in the limiting basket, ensuring that the materials in the limiting basket are thoroughly cleaned. The cleaning effect is quite good. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the overall structure of this utility model; Figure 2 This is a schematic diagram of the internal structure of the outer casing of this utility model; Figure 3 This is a schematic diagram of the internal structure of the cleaning box of this utility model.
[0016] The following is a list of component names represented by the various reference numerals in the attached figures: 100-Outer casing, 101-Battery, 110-Feed hopper, 111-Guide plate, 112-Baffle, 113-Fan, 120-Slag storage box, 121-Connecting pipe, 122-Air outlet pipe, 123-Filter screen, 130-Guide frame, 131-Fruit strainer, 132-Brush bristles, 140-Umbrella-shaped guide plate, 141-Soft pad, 142-Rotating shaft, 143-Motor, 200-Washing box, 210-Box body, 211-Inlet pipe one, 212-Outlet pipe one, 213-Ultrasonic generator, 220-Limiting basket, 221-Separator net, 222-Handle, 230-Filter box, 240-Water pump, 241-Inlet pipe two, 242-Outlet pipe two, 243-Nozzle. Detailed Implementation
[0017] The preferred embodiments of this utility model are described in detail below, and a clear and complete explanation is given in conjunction with the accompanying drawings.
[0018] Please see Figures 1-3 This utility model provides a camellia oil production cleaning device, including a cleaning tank 200, and an outer casing 100 for guiding raw materials is installed on the outside of the cleaning tank 200. A feed hopper 110 is installed in the middle of the upper end of the outer casing 100. A blower 113 for blowing impurities to the right is installed in the middle of the left side of the feed hopper 110. A guide plate 111 for guiding raw materials is fixedly installed on the upper right side of the feed hopper 110, and the right side of the guide plate 111 is higher than the left side of the guide plate 111, so that the raw materials can move to the left side of the feed hopper 110 under the guidance of the guide plate 111 and fall down from the left side of the feed hopper 110. A baffle 112 for limiting impurities is fixedly installed on the lower right side of the feed hopper 110, and the baffle 112 is a V-shaped plate. The baffle 112 prevents impurities such as leaves from moving to the left.
[0019] A slag storage box 120 for storing impurities is installed at the upper end of the inner cavity on the right side of the outer casing 100. A connecting pipe 121 connected to the inner cavity of the feed hopper 110 is fixedly installed on the left side of the slag storage box 120, and a baffle 112 is fixedly installed at the lower left end of the connecting pipe 121. An air outlet pipe 122 is fixedly installed on the right side of the slag storage box 120. A filter screen 123 is installed inside the air outlet pipe 122. After the raw material falls into the feed hopper 110, when the raw material and impurities pass through the right side of the blower 113, the air blown out by the blower 113 blows the leaves and dust between the raw materials toward the slag storage box 120. The leaves and dust enter the interior of the slag storage box 120 through the connecting pipe 121, and are blocked by the filter screen 123 in the air outlet pipe 122, preventing dust from scattering outside the outer casing 100, thereby preventing dust from polluting the working environment and protecting the workers.
[0020] An umbrella-shaped guide plate 140 for preliminary wiping of the raw material surface is installed in the middle of the outer box 100. A guide frame 130 for limiting the raw material is fixedly installed in the middle of the outer box 100. The umbrella-shaped guide plate 140 is movably installed in the middle of the guide frame 130 and can rotate in the middle of the guide frame 130. The guide frame 130 is located below the feed hopper 110. Multiple fruit-leaking grooves 131 are opened at the bottom of the guide frame 130 and are distributed in a circle. Multiple bristles 132 are fixedly installed on the inner wall of the fruit-leaking grooves 131. When the raw material passes through the fruit-leaking grooves 131, the bristles 132 wash the surface of the raw material.
[0021] A soft pad 141 is fixedly installed on the outer wall of the umbrella-shaped guide plate 140. A rotating shaft 142 is fixedly installed at the lower middle part of the umbrella-shaped guide plate 140. A motor 143 for controlling the rotation of the rotating shaft 142 is installed at the lower end of the rotating shaft 142. A control panel is installed on the side of the outer casing 100 to control the operation of the internal equipment of the outer casing 100. The rotating shaft 142 is installed at the output end of the motor 143, and the motor 143 is fixedly installed at the bottom middle of the guide frame 130. The top middle part of the soft pad 141 is located at the lower left side of the feed hopper 110, so that when the raw material falls from below the feed hopper 110, it lands exactly in the middle of the soft pad 141. Motor 143 drives rotating shaft 142 to rotate, which in turn drives soft pad 141 to rotate. The raw material falling on soft pad 141 rolls synchronously as soft pad 141 rotates, causing soft pad 141 to scrub the surface of the raw material. As the raw material rolls, it moves synchronously towards the edge of soft pad 141 and finally falls to the bottom of guide frame 130 and into fruit strainer 131. As the raw material passes through fruit strainer 131, multiple bristles 132 wash the raw material. It can be seen that when the raw material passes through umbrella-shaped guide plate 140 and inside guide frame 130, the raw material can be initially cleaned, which speeds up the cleaning efficiency of the raw material.
[0022] The cleaning tank 200 includes a tank body 210. A water inlet pipe 211 is fixedly installed on the upper right side of the tank body 210, and a water outlet pipe 212 is fixedly installed on the lower right side of the tank body 210. An external pump can be used to deliver clean water from an external source into the tank body 210, and dirty water at the bottom of the tank body 210 can be discharged to the outside of the outer tank 100 through the water outlet pipe 212 to ensure the cleanliness of the water inside the tank body 210. An ultrasonic generator 213 is installed inside the tank body 210 to facilitate the cleaning of materials within the limiting basket 220. A limiting basket 220 for limiting the raw materials is installed at the upper end of the box 210. A partition net 221 is fixedly installed at the bottom of the limiting basket 220. Handles 222 are fixedly installed on the left and right sides of the upper end of the limiting basket 220. The raw materials fall into the limiting basket 220 through the fruit strainer 131. When the ultrasonic generator 213 is started, the dirt on the raw materials falls down through the partition net 221. After the raw materials are finally cleaned, the cleaned raw materials in the limiting basket 220 are taken out of the box 210 by holding the handles 222. When the limiting basket 220 is taken out of the box 210, the filtered clean water falling from the fruit strainer 131 rinses the raw materials to ensure that the raw materials are clean.
[0023] A filter box 230 is fixedly installed on the left side of the housing 210 for filtering water. The filter box 230 has an existing structure, therefore this utility model does not provide a detailed description of its internal structure. A water pump 240 is installed on top of the filter box 230. A storage battery 101 is installed inside the outer housing 100, providing power to the equipment inside the outer housing 100. One end of the water pump 240 is connected to a second water outlet pipe 242, and the other end of the second water outlet pipe 242 is connected to a nozzle 243 for rinsing the raw materials on the umbrella-shaped guide plate 140. The nozzle 243 is mounted on the guide frame 130. On the upper left side, the lower end of the water pump 240 is equipped with a second water inlet pipe 241 that is connected to the filter box 230. After the water pump 240 is started, it draws the clean water filtered in the filter box 230, so that the clean water is delivered to the nozzle 243 through the second water outlet pipe 242. The water sprayed from the nozzle 243 washes the raw materials on the pad 141. After the raw materials are delivered, when the limiting basket 220 is taken out from the box 210, the water sprayed from the nozzle 243 flows through the pad 141 to multiple fruit draining trays 131, so that the filtered clean water can wash the raw materials in the limiting basket 220.
[0024] Based on the above description and accompanying drawings, those skilled in the art can understand and implement this utility model. Furthermore, any non-creative modifications made to this utility model by those skilled in the art without inventive effort are still within the protection scope of this utility model.
Claims
1. A camellia oil production cleaning device, comprising a cleaning tank (200), characterized in that: The cleaning tank (200) is equipped with an outer box (100) for guiding the raw materials. A feed hopper (110) is installed at the upper middle part of the outer box (100), a blower (113) for blowing impurities to the right is installed at the left middle part of the feed hopper (110), and an umbrella-shaped guide plate (140) for initially wiping the surface of the raw material is installed at the middle part of the outer box (100). The cleaning tank (200) includes a tank body (210), a filter box (230) is installed on the left side of the tank body (210), a water pump (240) is installed above the filter box (230), a second water outlet pipe (242) is installed at one end of the water pump (240), and a nozzle (243) for rinsing the raw materials on the umbrella-shaped guide plate (140) is connected to one end of the second water outlet pipe (242).
2. The camellia oil production cleaning device according to claim 1, characterized in that: The inner cavity of the outer casing (100) is equipped with a storage battery (101), the upper right side of the feed hopper (110) is equipped with a guide plate (111) for guiding the raw materials, and the lower right side of the feed hopper (110) is equipped with a baffle (112) for limiting impurities, and the baffle (112) is a V-shaped plate.
3. The camellia oil production cleaning device according to claim 2, characterized in that: The upper end of the inner cavity on the right side of the outer casing (100) is equipped with a slag storage box (120) for storing impurities. The left side of the slag storage box (120) is equipped with a connecting pipe (121) that communicates with the inner cavity of the feed hopper (110), and a baffle (112) is installed at the lower left end of the connecting pipe (121). The right side of the slag storage box (120) is equipped with an air outlet pipe (122), and a filter screen (123) is installed inside the air outlet pipe (122).
4. The camellia oil production cleaning device according to claim 1, characterized in that: The outer box (100) is equipped with a guide frame (130) for limiting the raw materials in the middle, and an umbrella-shaped guide plate (140) is installed in the middle of the guide frame (130). The guide frame (130) is located below the feed hopper (110). The bottom of the guide frame (130) is provided with multiple fruit-leaking grooves (131), and the inner wall of the fruit-leaking grooves (131) is equipped with multiple brush bristles (132).
5. The camellia oil production cleaning device according to claim 4, characterized in that: The outer wall of the umbrella-shaped guide plate (140) is fitted with a soft pad (141), and a rotating shaft (142) is installed at the lower middle part of the umbrella-shaped guide plate (140). A motor (143) is installed at the lower end of the rotating shaft (142), and the motor (143) is installed at the bottom middle part of the guide frame (130).
6. The camellia oil production cleaning device according to claim 1, characterized in that: A water inlet pipe (211) is installed on the upper right side of the box (210), a water outlet pipe (212) is installed on the lower right side of the box (210), and an ultrasonic generator (213) is installed in the inner cavity of the box (210).
7. The camellia oil production cleaning device according to claim 1, characterized in that: The upper end of the box (210) is equipped with a limiting basket (220) for limiting the raw materials, the bottom of the limiting basket (220) is equipped with a partition net (221), and the upper end of the limiting basket (220) is equipped with a handle (222).
8. The camellia oil production cleaning device according to claim 4, characterized in that: The nozzle (243) is installed on the upper left side of the guide frame (130), and the lower end of the water pump (240) is equipped with a water inlet pipe (241) that is connected to the filter box (230).
Citation Information
Patent Citations
Raw material cleaning equipment for camellia oil production
CN222625590U