Device for putting water purification biological wax into water
By designing a water-purified biowax water drop device that integrates counterweights and floats, and is equipped with a biowax placement bag, the problem of biowax being easily cut and lost under the impact of water flow in the prior art is solved, and effective protection of biowax and efficient water repair are achieved.
Patent Information
- Application Number
- CN202422023310.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-21
- Publication Date
- 2025-06-13
- Estimated Expiration
- 2034-08-21
AI Technical Summary
The existing water purification biological wax delivery device can easily cause the biological wax to produce opposite forces with the rope under the impact of the water flow, resulting in the biological wax cutting and the separation of the counterweight block or float ball, increasing the difficulty of water body repair.
A water-purified biowax water drop device is designed to integrate the counterweight and float balls into one device, and equipped with biowax placement bags to protect the biowax. The counterweight is connected to the bottom of the placing bag, the two sides of the placing bag are fixed to the float ball by a rope, and the drawstring is connected to each other through the bottom hole of the placing bag and the center of the counterweight is connected to each other to achieve stable fixation of the device.
It effectively protects the biowax from damage, reduces the probability of loss in water, the device can be reused, reduces the cost of delivery and labor, and improves the efficiency of delivery.
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Figure CN222974997U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of biological wax feeding devices, and specifically relates to a water feeding device for purified water biological wax in water. Background Technique
[0002] Purified water biological wax is a paraffin-based biological material based on microbial effects and electrochemical oxidation. It is mainly applied to the restoration and reconstruction of the water ecological cycle to restore the ecological diversity of water bodies. Purified water biological wax has technical characteristics such as rich trace mineral elements, diverse carbon bond forms, and high-density nano-microporous structures. It can directionally activate microorganisms such as bacillus spores in the water body, and at the same time provide a continuous carbon source and sufficient living space for the growth and reproduction of microorganisms, restore the carbon-nitrogen-phosphorus balance in polluted water bodies, and reconstruct the water ecological cycle system.
[0003] A biological wax feeding device is a device that assists in the water ecological restoration of biological wax. When purified water biological wax is separately placed in water, it will float on the water surface. A counterweight needs to be equipped to increase the weight to fix the placement position, and at the same time, a floating ball is equipped to confirm the position of the biological wax at any time.
[0004] Currently, the method of drilling and binding a counterweight and a floating ball to the purified water biological wax is a relatively common method for placing biological wax in water. However, due to the high viscosity and low hardness of the biological wax, after the rope binding and placement, the water flow directly contacts the rope. Under the action of the water flow impact force, the biological wax will generate a certain reverse acting force with the rope. In addition, the biological wax is relatively soft, and the rope will cut the biological wax, resulting in the separation of the biological wax from the counterweight or the floating ball, which adds difficulties to the restoration of the water body. Currently, there is a study on designing the counterweight and the floating ball into an integrated device. For example, Tonglu Qianding Technology Co., Ltd. disclosed a fishing bait basket device (Chinese patent, authorization announcement number: CN 206118875U, authorization announcement date: April 26, 2017). Its principle is roughly the same as that of the water feeding device for purified water biological wax. The fishing bait basket device is equipped with a counterweight and a floating ball, but the purified water biological wax cannot be placed inside its device, and it is not applicable to the water feeding of purified water biological wax. Summary of the Invention
[0005] Aiming at the deficiencies of the prior art, the utility model provides a water feeding device for purified water biological wax in water, which designs the counterweight and the floating ball into an integrated device and is equipped with a biological wax placement bag to protect the purified water biological wax, solving the problems in the above background.
[0006] To achieve the above objectives, the utility model is implemented through the following technical solutions: a water purification biological wax water delivery device, including a placement bag, the bottom two corners of the placement bag are connected with counterweight blocks, a support mechanism is arranged inside the bag opening of the placement bag, both sides of the bag opening of the placement bag are fixedly connected with floats by ropes, a fixing groove is arranged at the edge of the bag opening of the placement bag, a drawstring is arranged inside the fixing groove, and the tail ends of both ends of the drawstring are provided with length adjustment mechanisms, and the two ends of the drawstring pass through the holes reserved at the bottom of the placement bag and pass through the center of the counterweight block to be tied together.
[0007] Preferably, the length adjustment mechanism comprises a fixing plate arranged at the bottom of the counterweight block, the fixing plate is a circular plate with a central opening, and the tail ends of both ends of the drawstring pass through the circular holes of the fixing plate and are connected to each other.
[0008] Preferably, the support mechanism includes four fixing sleeves arranged opposite to each other inside the bag opening of the placement bag, two fixing sleeves arranged opposite to each other are connected with detachable fixing rods, and a rotating shaft capable of horizontal rotation is arranged in the middle of the fixing rods.
[0009] Preferably, when the storage bag is placed in water, the bag opening of the storage bag is in an open state and floats in the water through the support mechanism. When the storage bag is not placed in water, the bag opening can be tightened and folded into a compact shape similar to a backpack by pulling the drawstring.
[0010] Preferably, there are two drawstrings, two floats and two counterweights.
[0011] Preferably, the main body of the storage bag is a mesh structure.
[0012] Preferably, water-purifying biological wax is placed inside the placement bag.
[0013] Preferably, when the bag is placed in water, the opening of the bag floats on the water surface due to the buoyancy of the float, and the counterweight ensures that the bottom of the bag sinks into the water, so that the bag as a whole presents a stable floating state that is inclined but close to vertical.
[0014] Compared with the prior art, the beneficial effects of the utility model are as follows: the utility model proposes a device for putting biological wax into water for purification, which can protect the biological wax from damage and prevent the biological wax from being lost; two counterweight blocks and two floats are each provided to reduce the probability of loss in the water. If the counterweight block or the float is accidentally lost due to hydraulic impact, a drawstring design is provided to facilitate the addition of the counterweight block or the float; the device is reusable to reduce the cost of placement; no manpower is required to add the counterweight block and the float, which reduces labor costs and improves placement efficiency.
[0015] Additional aspects and advantages of the present invention will be given in part in the following description, and in part will become apparent from the following description, or will be learned through the practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 A schematic diagram of the structure of a water purification biological wax water delivery device Figure 1 .
[0017] Figure 2 A schematic diagram of the structure of a water purification biological wax water delivery device Figure 2 .
[0018] Figure 3 The present invention is a schematic diagram of the circuit board structure of a water purification biological wax water delivery device.
[0019] Figure 4 This is a schematic diagram of the mounting structure of a water purification biological wax water delivery device.
[0020] In the figure: 1. placement bag; 2. counterweight; 3. float; 4. fixing groove; 5. drawstring; 6. length adjustment mechanism; 61. fixing plate; 7. supporting mechanism; 71. fixing sleeve; 72. fixing rod; 73. rotating shaft. DETAILED DESCRIPTION
[0021] The following is a detailed description of the implementation of the utility model in conjunction with the accompanying drawings and examples. The following examples are used to illustrate the utility model, but cannot be used to limit the scope of the utility model. All other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.
[0022] Combination Figure 1 , Figure 2 , Figure 3 and Figure 4As shown in the figure, a water purification biological wax water delivery device includes a placement bag 1. At the two bottom corners of the placement bag 1, there are connected counterweight blocks 2. Inside the opening of the placement bag 1, there is a support mechanism 7. On both sides of the opening of the placement bag 1, there are floating balls 3 fixedly connected by ropes. At the edge of the opening of the placement bag 1, there is a fixing groove 4. Inside the fixing groove 4, there is a drawstring 5. At the ends of both ends of the drawstring 5, there is a length adjustment mechanism 6. The two ends of the drawstring 5 pass through the holes reserved at the bottom of the placement bag 1 and penetrate through the centers of the counterweight blocks 2 and are tied together with each other. Specifically, a water purification biological wax water delivery device aims to improve the water purification efficiency and simplify the delivery process. To ensure its stability, usability, and environmental friendliness in the water area. The placement bag 1 is the main body of the whole device, made of high-strength, corrosion-resistant, and water-quality harmless materials, such as environmentally friendly polyester fiber or nylon materials. This kind of material can not only effectively carry the water purification biological wax but also resist the erosion of underwater organisms and the damage caused by long-term immersion. The design of the placement bag 1 takes into account the principle of hydrodynamics, and the shape is optimized to reduce resistance, ensuring stable floating in the water flow or sinking to the specified depth as required. The counterweight blocks 2 connected to the two bottom corners are made of high-density environmentally friendly materials, such as environmentally friendly alternatives to lead or ferroalloy, to ensure the stability of the device in the water. The design of the counterweight blocks 2 allows the weight to be adjusted according to actual needs to adapt to the delivery requirements of different water depths and water flow conditions. At the same time, the structural design of the counterweight blocks 2 enables a central perforation for the drawstring 5 to pass through, realizing the balance and fixation of the device. The support mechanism 7 inside the opening of the placement bag 1 is made of foldable or elastic materials, such as shape memory wire or high-strength plastic skeleton. This design can keep the opening of the bag open before the device is delivered, facilitating the filling of the water purification biological wax; after delivery, it can be adjusted or retracted as needed to adapt to the underwater environment and reduce the impact of water flow on the opening. The floating balls 3 fixedly connected by ropes on both sides of the opening are made of lightweight and high-buoyancy materials such as polystyrene foam to ensure sufficient buoyancy of the device on the water surface. The number and position of the floating balls 3 can be adjusted according to actual needs to achieve stable floating of the device on the water surface or a specific angle of inclination, facilitating the effective release of the water purification biological wax. The fixing groove 4 is cleverly set at the edge of the opening of the placement bag 1 to fix the drawstring 5 and prevent it from sliding or falling off during use. The drawstring 5 is made of wear-resistant and corrosion-resistant nylon rope or polyester fiber rope. The two ends pass through the holes reserved at the bottom of the placement bag 1 and penetrate through the centers of the counterweight blocks 2 and are tied together with each other. The length adjustment mechanism 6 is installed at the end of the drawstring 5, such as a sliding buckle or a locking ring, allowing users to easily adjust the length of the drawstring according to the water depth and delivery requirements, thereby controlling the attitude and depth of the device in the water. The whole device is designed with full consideration of environmental protection and sustainability. All materials are selected as environmentally harmless materials and are easy to recycle and reuse. The water purification biological wax, as its core purification element, is made of natural or biodegradable materials. After being delivered, it can effectively improve the water quality and will not cause negative impacts on the water ecosystem.This water purification biological wax water delivery device provides an efficient, convenient and environmentally friendly solution for water purification with its innovative design concept and comprehensive functional characteristics.
[0023] Combination Figure 3 and Figure 4 As shown, the length adjustment mechanism 6 includes a fixing plate 61 arranged at the bottom of the counterweight 2, and the fixing plate 61 is a circular plate with a central opening, and the tail ends of the two ends of the drawstring 5 pass through the circular hole of the fixing plate 61 to be tied to each other. Specifically, the length adjustment mechanism 6 ensures that the drawstring 5 can be flexibly adjusted and firmly fixed on the counterweight 2. The length adjustment mechanism 6 mainly includes a fixing plate 61 arranged at the bottom of the counterweight 2, and a drawstring tying system used in conjunction with it. The fixing plate 61 is a circular plate structure with a central opening, which is not only easy to process and install, but also can effectively reduce the resistance of the water flow to the fixing plate, ensuring the stability of the entire device in the water. The size of the circular hole is accurately calculated to allow the drawstring 5 to pass smoothly, and to ensure that no excessive friction or wear is generated when the drawstring is tightened. The fixing plate 61 is usually made of corrosion-resistant, high-strength metal materials, such as stainless steel or aluminum alloy, to ensure its reliability and durability for long-term use. After the tail ends of the two ends of the drawstring 5 pass through the circular hole of the fixing plate 61, they are connected to each other by a reliable tying method. This tying method can be a simple knot, such as a fisherman's knot or a double knot, which are easy to tie and difficult to untie, and can effectively prevent the drawstring from accidentally loosening during use. In addition, in order to further improve the safety and convenience of the system, a quick-release lock or safety pin can be added to the knot, allowing the user to quickly untie or re-tighten the drawstring when needed without the effort of untying a complex knot. Through the design of the length adjustment mechanism 6, the user can easily adjust the length of the drawstring 5 according to actual needs, thereby controlling the opening and closing degree of the bag mouth of the placement bag 1. When the bag mouth needs to be completely closed to prevent the leakage of bio-wax, the drawstring 5 can be tightened and tied firmly; when the bio-wax needs to be gradually released, the drawstring 5 can be appropriately loosened to keep the bag mouth in a certain open state. This flexible adjustment method not only improves the use efficiency of the device, but also enhances its adaptability under different water conditions.
[0024] Combination Figure 1 , Figure 2 , Figure 3 and Figure 4As shown, the support mechanism 7 includes four fixed sleeves 71 oppositely arranged inside the mouth of the placement bag 1. A detachable fixing rod 72 is connected inside two oppositely arranged fixed sleeves 71. A rotatable shaft 73 capable of horizontal rotation is arranged in the middle of the fixing rod 72. Specifically, the support mechanism 7 is arranged inside the mouth of the placement bag 1, providing a stable and flexible support structure for the device. The support mechanism 7 mainly consists of four oppositely arranged fixed sleeves 71, two detachable fixing rods 72, and a rotatable shaft 73 located in the middle of the fixing rod 72. The fixed sleeve 71, as the basic component of the support mechanism, is installed inside the mouth of the placement bag 1 and is usually made of high-strength and corrosion-resistant plastic or metal materials. It not only provides a stable installation point for the fixing rod 72 but also ensures the firmness of the overall structure of the support mechanism 7. The four fixed sleeves 71 are arranged in pairs oppositely, forming a stable quadrilateral framework, effectively preventing the device from deforming or shifting due to water flow impact after being put in. The fixing rod 72, as the key component connecting the fixed sleeves 71, is made of lightweight and strong materials such as aluminum alloy or carbon fiber. Users can easily disassemble and install it according to actual needs, facilitating the transportation, storage, and maintenance of the device. When the fixing rod 72 is inserted into the fixed sleeve 71 and locked, they jointly form a stable support framework, providing strong support for the placement bag 1. The rotatable shaft 73 is located in the middle of the two fixing rods 72 to realize the storage of the fixing rod 72. When it is necessary to close the mouth of the bag, the fixing rods 72 can be rotated and placed together in the placement bag 1, making the placement bag 1 convenient to carry and transport.
[0025] Combined with Figure 2 、 Figure 3 and Figure 4As shown, when the placement bag 1 is placed in water, the bag opening of the placement bag 1 is in an open state and floats in the water through the support mechanism 7. When the placement bag 1 is not placed in water, by pulling the drawstring 5, the bag opening is tightened and folded into a compact form similar to a backpack. Specifically, when the placement bag 1 is placed in water, its uniquely designed support mechanism 7 plays a crucial role. The four relatively arranged fixed sleeves 71 and the detachable fixed rod 72 together form a stable support framework, which not only ensures that the bag opening of the placement bag 1 can remain open, but also enables the entire device to float in the water in an elegant posture. This design of the open bag opening not only facilitates the uniform and slow release of the biological wax into the water body when needed, but also improves the stability and visibility of the device in the water, making it convenient for monitoring and maintenance personnel to track its position. However, when the placement bag 1 is not placed in water and is in a state of transportation, storage or waiting to be put into use, its form undergoes a clever transformation. At this time, the user only needs to simply pull the drawstring 5. Through the cooperative action of the length adjustment mechanism 6, the tails at both ends of the drawstring will quickly tighten and be firmly tied together. During this process, the bag opening of the placement bag 1 will gradually fold up as the drawstring is tightened, and finally form a compact form similar to a backpack. This form transformation not only greatly reduces the volume of the device, making it convenient to carry and transport, but also avoids accidental leakage or damage of the biological wax during movement.
[0026] Combined with Figure 1 and Figure 4As shown, there are two drawstrings 5, two floating balls 3 and two counterweights 2. Specifically, in the design of the water purification biological wax water delivery device, a significant feature is that the drawstrings 5, floating balls 3 and counterweights 2 all adopt a dual configuration, that is, two of each component are provided. This design is not simply an increase in quantity, but a well - considered one based on enhancing the stability, balance and convenience of use of the device. First of all, the setting of two drawstrings 5 makes it more flexible and precise to adjust the opening and closing of the bag mouth. By pulling the two drawstrings simultaneously, users can more easily control the tightness of the bag mouth to ensure that the release speed of the biological wax meets the preset requirements. In addition, when one drawstring 5 fails for some reason (such as wear, breakage), the other drawstring 5 can still maintain the basic closed state of the bag mouth, thus improving the safety and reliability of the device. Secondly, the provision of two floating balls 3 provides the device with stronger buoyancy and stability. They are respectively connected to both sides of the mouth of the placement bag 1 and keep the balance of the device on the water surface through the buoyancy effect. This dual - buoyancy design can not only effectively resist the impact of water flow and the influence of waves, but also provide a certain buffering effect when the device is affected by external forces, preventing the leakage of biological wax or damage to the device due to violent shaking. Finally, the setting of two counterweights 2 ensures the stable sinking and positioning of the device in water. As an important part of the device, the weight and distribution of the counterweights 2 directly affect the attitude and position of the device in water. By reasonably arranging the positions and weights of the two counterweights 2, the device can quickly and stably sink into the target water area after being put in and maintain a certain inclination angle, which is conducive to the uniform release of biological wax. At the same time, the counterweights 2 also have a certain anti - slip function to prevent the device from moving or drifting at the bottom of the water.
[0027] Combined with Figure 2 and Figure 3As shown, the main body of the placement bag 1 is a mesh structure. Specifically, the main body of the placement bag 1 is designed as a mesh structure, which fully considers the actual needs and use environment of the water purification biological wax water delivery device. First, the selection of the mesh structure is based on the consideration of the air permeability and water permeability of the material. The mesh material is usually woven from high-strength fibers or synthetic materials, and has excellent air permeability and water permeability, which means that the water flow can freely pass through the bag body without causing excessive resistance or accumulation. This feature is crucial for delivery devices that need to work in water for a long time, because it can ensure the stability and smoothness of the device in the water, and avoid damage to the device or poor release of biological wax due to water flow blockage. Secondly, the design of the mesh structure also helps to improve the release efficiency of biological wax. Due to the permeability of the mesh material, the biological wax can be more evenly dispersed into the water body during the release process, and fully mixed with the surrounding water flow, thereby accelerating the dissolution and diffusion rate of the biological wax. This efficient release method not only improves the utilization rate of the biological wax, but also shortens its action time in the water body, which is conducive to improving the water quality faster. In addition, the mesh structure also has certain environmental significance. Compared with traditional closed delivery devices, the placement bag 1 with a mesh structure is easier to degrade or recycle. When the device completes its mission, the user can simply take it out of the water and carry out subsequent treatment without worrying about causing secondary pollution to the water body. This design meets the requirements of current environmental protection concepts and is conducive to promoting the development of green and sustainable water purification technologies. Finally, from the perspective of practical application, the placement bag 1 with a mesh structure also has certain flexibility and adaptability. Users can choose mesh materials of different specifications, materials and meshes to make placement bags according to different water conditions, types of biowax, and delivery requirements. This customized design enables the device to better meet various complex practical application scenarios, improving its scope of application and practicality.
[0028] Combination Figure 1 and Figure 2As shown, the water purification biological wax is placed inside the placement bag 1. Specifically, the water purification biological wax is placed inside the placement bag 1, which is a substance with special effects and environmental protection characteristics. The water purification biological wax, as the name implies, is an innovative material that combines biotechnology and wax characteristics. It can slowly release active ingredients in water and play a significant role in purifying water quality. The main components of the water purification biological wax usually come from natural or synthetic bioactive substances. These substances are carefully selected and proportioned to effectively decompose harmful substances in water, such as heavy metal ions and organic pollutants, while promoting the growth and reproduction of beneficial microorganisms and enhancing the self-purification ability of the water body. This purification process is gentle and lasting, and will not damage the aquatic ecosystem. It is a green and environmentally friendly way to purify water. Inside the placement bag 1, the water purification biological wax is properly placed to prevent leakage or damage during transportation, storage and placement. The mesh structure design of the placement bag 1 not only provides good air permeability and water permeability for the biological wax, but also ensures that the biological wax can be evenly and stably released into the water body. In addition, the material of the placement bag 1 is usually made of corrosion-resistant and wear-resistant polymer materials, which can withstand the complex and changeable underwater environmental conditions and ensure the effectiveness and long-term stability of the biological wax. When the placement bag 1 is put into the target water area, the water purification biological wax inside begins to be gradually released into the water body. As the biological wax dissolves and diffuses, its active ingredients quickly act on the pollutants in the water, initiating a series of complex biochemical reactions and microbial metabolic processes. These processes not only effectively reduce the content of harmful substances in the water body, but also improve the transparency and odor and other sensory indicators of the water body, and enhance the overall quality of the water body. It is worth mentioning that the use of the water purification biological wax is not limited to a single water purification task. It can play an excellent purification effect in different types of water areas such as rivers, lakes and reservoirs. At the same time, due to its environmental protection characteristics and sustainability, the water purification biological wax has also become an important means in the current water purification field.
[0029] Combined with Figure 1 、 Figure 2 and Figure 3As shown, when the placement bag 1 is placed in water, due to the buoyancy of the floating ball 3, the opening of the placement bag 1 floats on the water surface. At the same time, the counterweight 2 ensures that the bottom of the bag sinks into the water, making the entire placement bag 1 present a stable floating state that is inclined but close to vertical. Specifically, when the placement bag 1 is properly placed in water, its unique design enables the entire device to make clever use of the buoyancy of the floating ball 3 and the gravity of the counterweight 2 to achieve a stable and efficient floating state. The floating ball 3 is usually installed at the top or opening of the placement bag 1. Through the strong buoyancy it provides, this part of the bag can easily float on the water surface. This design not only ensures the unobstructed opening of the bag, facilitating the smooth release of the biological wax, but also improves the visibility of the device on the water surface, facilitating monitoring and maintenance. At the same time, the counterweight 2 is cleverly arranged at the bottom or near the bottom of the placement bag 1. These counterweights are made of high-density materials and have enough weight to overcome the buoyancy brought by the floating ball, ensuring that the bottom of the bag can sink steadily into the water. This design makes the entire placement bag 1 present a stable floating state that is inclined but close to vertical, which not only ensures that the bag will not be easily overturned or displaced due to water flow fluctuations, but also is conducive to the biological wax flowing more evenly along the inner wall of the bag downward under the action of gravity and being released into the water body. The inclined but close to vertical floating state also brings a series of positive effects. First of all, it helps to increase the contact area and contact time between the biological wax and the water body, thereby improving the release efficiency and utilization rate of the biological wax. Secondly, this state helps to form a certain water flow circulation, promoting the uniform distribution and rapid diffusion of the biological wax in the water body. Finally, since the bottom of the bag sinks into the water, it can effectively prevent the biological wax from being contaminated or adsorbed by floating objects or impurities on the water surface during the release process, further ensuring the purity and effectiveness of the biological wax.
[0030] The above is only the preferred specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution of the present invention and its inventive concept, makes equivalent substitutions or changes, and should be covered by the protection scope of the present invention.
Claims
1. A water purification biological wax water delivery device, comprising a placement bag (1), characterized in that: The two corners at the bottom of the placement bag (1) are connected to a counterweight (2), a support mechanism (7) is arranged inside the bag opening of the placement bag (1), and floating balls (3) are fixedly connected to the bag opening of the placement bag (1) on both sides through ropes. A fixing groove (4) is arranged at the edge of the bag opening of the placement bag (1), a drawstring (5) is arranged inside the fixing groove (4), and length adjustment mechanisms (6) are arranged at the tail ends of both ends of the drawstring (5), and the two ends of the drawstring (5) pass through the holes reserved at the bottom of the placement bag (1) and pass through the center of the counterweight (2) to be tied together.
2. A water purification biological wax water delivery device according to claim 1, characterized in that: The length adjustment mechanism (6) comprises a fixing plate (61) arranged at the bottom of the counterweight (2); the fixing plate (61) is a circular plate with a central hole, and the tail ends of both ends of the drawstring (5) pass through the circular hole of the fixing plate (61) and are connected to each other.
3. A water purification biological wax water delivery device according to claim 2, characterized in that: The support mechanism (7) comprises four fixed sleeves (71) arranged opposite to each other inside the bag opening of the placement bag (1), two fixed sleeves (71) arranged opposite to each other are connected to detachable fixed rods (72), and a rotating shaft (73) capable of horizontal rotation is arranged in the middle of the fixed rods (72).
4. A water purification biological wax water delivery device according to claim 3, characterized in that: When the storage bag (1) is placed in water, the bag opening of the storage bag (1) is in an open state and floats in the water through the support mechanism (7); when the storage bag (1) is not placed in water, the bag opening is tightened and folded into a compact shape similar to a backpack by pulling the drawstring (5).
5. A water purification biological wax water delivery device according to claim 4, characterized in that: There are two of each of the draw rope (5), the float ball (3) and the counterweight block (2).
6. A water purification biological wax water delivery device according to claim 5, characterized in that: The main body of the storage bag (1) is a mesh structure.
7. A water purification biological wax water delivery device according to claim 6, characterized in that: Water-purifying biological wax is placed inside the placement bag (1).
8. A water purification biological wax water delivery device according to claim 7, characterized in that: When the placement bag (1) is placed in water, the opening of the placement bag (1) floats on the water surface due to the buoyancy of the float ball (3), and the counterweight (2) ensures that the bottom of the bag sinks into the water, so that the placement bag (1) as a whole presents a stable floating state that is inclined but close to vertical.
Citation Information
Patent Citations
Fishing bait basket device
CN206118875U
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