A special snail freshness maintaining device for snail powder

CN224722544UActive Publication Date: 2026-09-08GUANGXI ACADEMY OF FISHERY SCI
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Patent Information

Application Number
CN202522182901.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-15
Publication Date
2026-09-08
Estimated Expiration
2035-10-15

AI Technical Summary

Technical Problem

[0003]虽然现有技术中的螺蛳粉专用螺蛳鲜度保持装置的有益效果较多,但仍存在以下问题:现有螺蛳存放装置大多采用电动风机进行通风,并使用压缩机制冷或电加热方式进行温度调节,这种设计不仅增加了能耗和设备成本,而且在停电或设备故障时会导致系统完全失效,易造成螺蛳大量死亡,可靠性和实用性较差,同时,传统装置通常只设置简单的排水孔,缺乏系统的水分导流和收集机制,螺蛳分泌的水分容易在箱底积聚,形成死水区域,不仅导致螺蛳窒息死亡,还促进了细菌滋生,加速螺蛳腐败变质,严重影响螺蛳的鲜度和存活时间

Benefits of technology

1、本实用新型通过通排热管与集气罩的协同作用,利用热空气自然上升的"烟囱效应",实现了无需外部动力的持续空气循环。同时,蒸汽板与吸水板组成的蒸发系统,通过水分蒸发吸热原理,有效降低箱内温度并调节湿度,解决了传统螺蛳存放装置因温湿度失控导致的螺蛳死亡和鲜度下降问题。

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Abstract

The utility model discloses a special clam rice freshness keeping device for clam rice, including the box, the box inboard wall sliding connection has a plurality of depositing box, heat removal pipe, water collecting inclined plate, drain plate and steam board, the box top sleeve joint has the top cover, the top cover bottom integrated forming connection hem, gas collecting hood and heat removal channel, the inboard wall fixed connection of heat removal channel has the ventilating board, the box bottom fixed connection has the bottom disc, the bottom disc top is provided with the connecting groove, the inboard wall sliding connection of connecting groove has the drawer, the drawer inner chamber bottom place has the water absorption board, this kind of special clam rice freshness keeping device for clam rice realizes the unpowered ventilation and the automatic regulation and control of temperature and humidity through pure mechanical structure, and energy -conserving and environment -friendly and high reliability, secondly, the innovative three -level drainage system effectively separates the clam with the ponding, and realizes the moisture recycling with the evaporation cooling.
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Description

Technical Field

[0001] This utility model relates to the field of snail preservation, and in particular to a snail freshness preservation device specifically for snail rice noodles. Background Technology

[0002] As the core ingredient for making snail rice noodle soup base, the freshness of snails directly determines the savory flavor and final quality of the soup. From the field to the factory, maintaining the snails' life state during harvesting, transportation, and temporary holding is the key to ensuring freshness. We have specially designed an innovative storage device for snail raw materials in snail rice noodles.

[0003] Although existing snail freshness preservation devices for snail rice noodles offer many benefits, they still have the following problems: Most existing snail storage devices use electric fans for ventilation and compressor refrigeration or electric heating for temperature regulation. This design not only increases energy consumption and equipment costs, but also leads to complete system failure in the event of power outages or equipment malfunctions, easily causing a large number of snails to die. This results in poor reliability and practicality. At the same time, traditional devices usually only have simple drainage holes and lack a systematic water diversion and collection mechanism. The water secreted by the snails easily accumulates at the bottom of the box, forming a stagnant water area. This not only causes the snails to suffocate and die, but also promotes bacterial growth, accelerates the spoilage of the snails, and seriously affects the freshness and survival time of the snails. Utility Model Content

[0004] The purpose of this utility model is to provide a snail freshness preservation device specifically for snail rice noodles, which addresses the above-mentioned problems. According to this utility model, the device achieves unpowered ventilation and automatic temperature and humidity control through a purely mechanical structure, which is energy-saving, environmentally friendly and highly reliable. Secondly, the innovative three-stage drainage system effectively separates snails from water and combines evaporative cooling to achieve water recycling.

[0005] To achieve the above-mentioned objectives, the technical solution adopted by this utility model is as follows: According to one aspect of the present invention, a snail freshness preservation device for snail rice noodles is provided, including a box body, a plurality of storage boxes being slidably connected to the inner side wall of the box body, a heat pipe being fixedly connected to the inner side wall of the box body, a plurality of water collecting inclined plates being fixedly connected to the bottom inner side wall of the box body, a plurality of drainage plates being fixedly connected to the bottom of the plurality of water collecting inclined plates, and a steam plate being fixedly connected to the top of the drainage plates. The top of the box is fitted with a top cover, the bottom of the top cover is integrally formed and connected with rolled edges, the inner side wall of the top cover is fixedly connected with a gas collection hood, the bottom of the gas collection hood is closely attached to the heat exhaust pipe, the top of the top cover has a heat exhaust channel, and the inner side wall of the heat exhaust channel is fixedly connected with a ventilation plate. The bottom of the box is fixedly connected to a chassis, and a connecting groove is opened on the top of the chassis. A drawer is slidably connected to the inner side wall of the connecting groove, and a water-absorbing plate is placed at the bottom of the inner cavity of the drawer.

[0006] Preferably, the inner sidewall of the box has multiple mounting grooves, and multiple sliders are slidably connected to the inner sidewalls of the multiple mounting grooves. The sidewalls of the multiple sliders are integrally formed and connected to the storage box. The outer sidewall of the storage box has multiple vent holes, and the bottom of the inner cavity of the storage box has multiple water filter holes.

[0007] Preferably, the outer wall of the heat exhaust pipe has multiple hot air ports, each hot air port having a rectangular structure, and the multiple hot air ports are horizontally aligned with the multiple vent holes.

[0008] Preferably, the top of the ventilation plate has multiple heat exhaust ports, the heat exhaust ports have a wave-shaped structure, and the air intake grille has a louver structure.

[0009] Preferably, the top of the steam plate has multiple steam holes, which are conical in shape, and the top of the drainage plate has multiple drainage holes, which are circular in shape.

[0010] Preferably, a plurality of magnetic strips are fixedly connected to the inner side wall of the connecting groove, a plurality of magnetic strips are magnetically connected to one side wall of the magnetic strips, the drawer is fixedly connected to the side wall of the plurality of magnetic strips, a pull block is integrally formed on the side wall of the drawer, and the drawer is located below the steam plate and the plurality of drainage plates.

[0011] In summary, due to the adoption of the above technical solution, the beneficial effects of this utility model are: 1. This utility model utilizes the synergistic effect of the heat pipe and the gas collection hood to achieve continuous air circulation without external power by taking advantage of the "chimney effect" of naturally rising hot air. At the same time, the evaporation system composed of the steam plate and the water absorption plate effectively reduces the temperature inside the box and regulates the humidity by absorbing heat through water evaporation, thus solving the problems of snail death and loss of freshness caused by uncontrolled temperature and humidity in traditional snail storage devices.

[0012] 2. This utility model utilizes a three-stage drainage system—comprising a filter hole in the storage box, a water collection ramp, and a drainage plate—to achieve rapid separation and directional flow of water secreted by snails. This design not only prevents snails from suffocating and dying due to prolonged immersion in water but also reuses the collected water for evaporation and cooling, thus achieving water recycling and significantly improving the snails' survival rate and freshness retention time. Attached Figure Description

[0013] Figure 1 This is a three-dimensional structural schematic diagram of the present invention; Figure 2This is an exploded view of the overall structure of this utility model; Figure 3 This is a bottom view of the top cover structure of this utility model; Figure 4 This is a schematic diagram of the box structure of this utility model; Figure 5 This is a schematic diagram of the chassis structure of this utility model; Figure 6 This is a bottom view of the steam plate structure of this utility model; In the attached diagram: 1. Top cover; 110. Rolled edge; 120. Gas collection hood; 130. Ventilation plate; 2. Box body; 201. Mounting groove; 210. Heat exhaust pipe; 211. Hot air outlet; 220. Storage box; 221. Water filter hole; 222. Sliding block; 223. Vent hole; 230. Water collection inclined plate; 240. Drainage plate; 250. Steam plate; 251. Steam hole; 260. Air intake grille; 3. Chassis; 310. Connecting groove; 320. Magnetic strip one; 330. Drawer; 340. Pull block; 350. Magnetic strip two; 360. Water absorption plate. Detailed Implementation

[0014] To make the objectives, technical solutions, and advantages of this utility model clearer, the following detailed description is provided with reference to the accompanying drawings and preferred embodiments. However, it should be noted that many details listed in the specification are merely to provide the reader with a thorough understanding of one or more aspects of the utility model, and these aspects can be achieved even without these specific details.

[0015] Please see Figures 1 to 6 This utility model provides a device for maintaining the freshness of snails specifically for snail rice noodles. The technical solution is as follows: Please refer to [link / reference]. Figures 1-6 This embodiment, according to a patent name, includes a housing 2 for providing internal space to accommodate various functional components. Multiple storage boxes 220 are slidably connected to the inner side wall of the housing 2 for directly holding snails. A heat pipe 210 is fixedly connected to the inner side wall of the housing 2, mainly serving as the main channel for hot air circulation, achieving non-powered ventilation through the "chimney effect". Multiple water collection inclined plates 230 are fixedly connected to the bottom inner side wall of the housing 2, specifically inclined guide plates, for guiding the water dripping from the upper layer to the drain plate 240. Multiple drain plates 240 are fixedly connected to the bottom of the multiple water collection inclined plates 230 for draining water into the drawer 330. A steam plate 250 is fixedly connected to the top of the drain plate 240 for passive cooling by passing water vapor and expanding the bottom evaporation area. The top of the box 2 is fitted with a top cover 1. The bottom of the top cover 1 is integrally formed and connected with a rolled edge 110 to form a sealed connection with the box 2. The inner side wall of the top cover 1 is fixedly connected with a gas collection hood 120 for collecting hot air and enhancing the thermal pressure difference ventilation efficiency. The bottom of the gas collection hood 120 is tightly attached to the heat exhaust pipe 210. The top of the top cover 1 has a heat exhaust channel. The inner side wall of the heat exhaust channel is fixedly connected with a ventilation plate 130 for dissipating hot air. The bottom of the box 2 is fixedly connected to the chassis 3. The top of the chassis 3 is provided with a connecting groove 310. A drawer 330 is slidably connected to the inner side wall of the connecting groove 310. A water-absorbing plate 360 ​​is placed at the bottom of the inner cavity of the drawer 330. The water-absorbing plate 360 ​​is made of porous ceramic and is used to absorb moisture and evaporate it to regulate the bottom humidity and overall temperature.

[0016] It is worth noting that, in order to facilitate the disassembly and assembly of the storage box 220, the inner sidewall of the box 2 is provided with multiple mounting slots 201 for installing the storage box 210. Multiple sliders 222 are slidably connected to the inner sidewall of the multiple mounting slots 201. The sidewall of the multiple sliders 222 is integrally formed and connected to the storage box 220. Multiple vent holes 223 are provided on the outer sidewall of the storage box 220 for ventilation. Multiple water filter holes 221 are provided at the bottom of the inner cavity of the storage box 220 for solid-liquid separation inside the storage box.

[0017] Next, in order to achieve rapid heat dissipation, the outer wall of the heat dissipation pipe 210 is provided with multiple hot air ports 211 for collecting hot air. The hot air ports 211 have a rectangular structure, and the multiple hot air ports 211 are horizontally aligned with multiple vent holes 223 to improve the efficiency of hot air collection.

[0018] Meanwhile, in order to further improve heat dissipation efficiency, the top of the ventilation plate 130 is provided with multiple heat dissipation ports, which have a wave-shaped structure. The wave-shaped structure is used to increase the exhaust area and the hot air flow rate. The air intake grille 260 has a louver structure, which increases the air intake speed of the outside air while preventing foreign objects from entering.

[0019] Furthermore, to increase the evaporation area and steam discharge of the water absorption plate 360, specifically, the top of the steam plate 250 is provided with multiple steam holes 251, which are conical in shape to increase the steam flow rate, and the top of the drain plate 240 is provided with multiple drain holes, which are circular in shape.

[0020] Finally, to facilitate the pulling of the drawer 330 and the maintenance of the water absorption plate 360, specifically, multiple magnetic strips 320 are fixedly connected to the inner side wall of the connecting groove 310, and multiple magnetic strips 350 are magnetically connected to the side wall of the magnetic strips 320. The drawer 330 is fixedly connected to the side wall of the multiple magnetic strips 350, and the drawer 330 is integrally formed with a pull block 340 for easy gripping by the user. The drawer 330 is located below the steam plate 250 and multiple drain plates 240 for easy water collection and drainage of water vapor.

[0021] In addition, the circuits, electronic components and modules involved in this utility model are all existing technologies, which can be fully implemented by those skilled in the art, and need not be elaborated upon. The content protected by this utility model does not involve any improvement to the internal structure and method. Combination Figures 1-6 The following is one patent name for this embodiment, and its specific usage process is as follows: 1. Daily filling and use: First, evenly spread the live snails in each storage box 220. The thickness of a single layer should not exceed 5 cm. With the cooperation of the slider 222 and the mounting groove 201, push the storage box smoothly into the box body, ensuring that the top cover 1 completely covers the box body, so that the bottom of the gas collection hood (120) is tightly connected to the heat pipe 210. It is recommended to check the water accumulation in the drawer 330 every 8 hours and clean it by pulling out the pull block 340.

[0022] 2. Ventilation and temperature control during use: The device utilizes the heat generated by the snail's own respiration to form an upward airflow through the heat pipe 210. The hot air is collected by the air collection hood 120 and discharged through the wave-shaped heat exhaust port of the ventilation plate 130. At the same time, the cold air at the bottom is naturally replenished through the louver structure of the air intake grille 260, forming a continuous airflow circulation. The conical steam holes 251 on the steam plate 250 increase the evaporation area and absorb heat in the box through water evaporation.

[0023] 3. Daily maintenance: After every 24 hours of use, all storage boxes 220 should be removed and cleaned to remove any residual impurities. The water absorption performance of the water absorption plate 360 ​​should be checked regularly. If hardening or contamination is found, it should be replaced in time. The drainage channels of the water collection slope plate 230 and the drainage plate 240 should be cleaned to ensure that there is no blockage. The drawer 330 can be easily disassembled for thorough cleaning through the magnetic connection of magnetic strip 1 320 and magnetic strip 2 350. When not in use for a long time, all parts should be dried before reassembly and storage.

[0024] The above description is only a preferred embodiment of the present utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the principle of the present utility model, and these improvements and modifications should also be considered within the protection scope of the present utility model.

Claims

1. A special snail freshness maintaining device for snail rice, characterized in that, include: Box (2), the inner side wall of the box (2) is slidably connected with multiple storage boxes (220), the inner side wall of the box (2) is fixedly connected with a heat pipe (210), the bottom inner side wall of the box (2) is fixedly connected with multiple water collecting inclined plates (230), the bottom of the multiple water collecting inclined plates (230) is fixedly connected with multiple drain plates (240), and the top of the drain plates (240) is fixedly connected with a steam plate (250); The top of the box (2) is fitted with a top cover (1), the bottom of the top cover (1) is integrally formed and connected with a rolled edge (110), the inner side wall of the top cover (1) is fixedly connected with a gas collection hood (120), the bottom of the gas collection hood (120) is closely attached to the heat exhaust pipe (210), the top of the top cover (1) is provided with a heat exhaust channel, and the inner side wall of the heat exhaust channel is fixedly connected with a ventilation plate (130). The bottom of the box (2) is fixedly connected to a chassis (3), and a connecting groove (310) is provided on the top of the chassis (3). A drawer (330) is slidably connected to the inner wall of the connecting groove (310), and a water-absorbing plate (360) is placed at the bottom of the inner cavity of the drawer (330).

2. The special freshwater clam keeping device for river snail noodles according to claim 1, characterized in that: The inner sidewall of the box (2) is provided with multiple mounting slots (201), and multiple sliders (222) are slidably connected to the inner sidewall of the multiple mounting slots (201). The sidewall of the multiple sliders (222) is integrally formed and connected to the storage box (220). The outer sidewall of the storage box (220) is provided with multiple vent holes (223), and the bottom of the inner cavity of the storage box (220) is provided with multiple water filter holes (221).

3. The special snail freshness keeping device for snail noodles according to claim 2, characterized in that: The outer wall of the heat exhaust pipe (210) is provided with a plurality of hot air ports (211), the hot air ports (211) are rectangular in structure, and the plurality of hot air ports (211) are horizontally aligned with the plurality of vent holes (223).

4. The special snail freshness keeping device for snail noodles according to claim 3, characterized in that: The ventilation plate (130) has multiple heat exhaust ports on its top, the heat exhaust ports have a wave-shaped structure, and the air intake grille (260) has a louver structure.

5. The special snail freshness keeping device for snail noodles according to claim 4, characterized in that: The steam plate (250) has multiple steam holes (251) on its top, and the multiple steam holes (251) are conical in shape. The drain plate (240) has multiple drain holes on its top, and the drain holes are circular in shape.

6. The special freshwater clam keeping device for congee with clams according to claim 5, characterized in that: The inner wall of the connecting groove (310) is fixedly connected with a plurality of magnetic strips one (320), the side wall of the magnetic strips one (320) is magnetically connected with a plurality of magnetic strips two (350), the side wall of the plurality of magnetic strips two (350) is fixedly connected with the drawer (330), the side wall of the drawer (330) is integrally formed with a pull block (340), and the drawer (330) is located below the steam plate (250) and the plurality of drain plates (240).