Bursting bead oil filtering and transferring device
The integrated popping bead filtration and transfer device solves the problem of cumbersome operations in collecting, filtering, and transferring wet popping beads, achieving efficient and stable popping bead treatment and reducing the risk of inter-device transfer and ground pollution.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- CHINA TOBACCO GUIZHOU IND
- Filing Date
- 2025-04-27
- Publication Date
- 2026-04-21
AI Technical Summary
In the traditional production process of popping beads, the collection, filtration and transfer of wet popping beads are cumbersome and inefficient, and they are prone to spillage and ground contamination during transfer between multiple devices.
Design an integrated bursting bead oil filter transfer device, including an oil storage tank, an oil filter tank, and a transfer component. The collection, filtration, and transfer of wet bursting beads are achieved by adjusting the position of the mounting bracket component. The filter holes and casters are used to improve operating efficiency and stability.
The operation process has been simplified, work efficiency has been improved, the risk of boulders spilling and oil pollution has been reduced, and the stability and convenience of the device have been ensured.
Smart Images

Figure CN224146762U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of popping bead production and processing technology, and in particular to a popping bead oil filtration and transfer device. Background Technology
[0002] Cigarette flavor capsules, also known as flavoring beads, beads, or crisp capsules, are small, liquid beads containing different types of flavoring ingredients embedded in tobacco filters. The flavoring ingredients are mostly liquid. Smokers can pop the capsule while smoking, allowing the flavoring ingredients to flow into the cigarette tow, enriching the flavor of the cigarette.
[0003] The production of popping beads typically involves bead-making and drying processes. Therefore, collecting, filtering, and transferring the wet popping beads produced in the bead-making process to the drying process is a crucial step. Traditionally, this involves using a bead-receiving tank, an oil-filtering tank, and a transfer vehicle to perform these steps separately. This process is not only cumbersome and reduces worker efficiency, but also significantly increases the risk of spillage and oil contamination during the transfer of popping beads from the receiving tank to the oil-filtering tank and from the filtered beads to the transfer vehicle. Utility Model Content
[0004] The purpose of this invention is to solve the technical problems in the production of popping beads, which require multiple devices to collect, filter, and transfer the wet popping beads produced in the bead-making process. This is cumbersome, inefficient, and prone to spillage and oil contamination of the ground during transfer. This invention provides a popping bead filtration and transfer device that integrates the collection, filtration, and transfer of wet popping beads into a single multi-functional device. This not only simplifies operation and improves worker efficiency but also avoids the need to transfer wet popping beads between multiple devices, reducing the risk of spillage and oil contamination.
[0005] To solve the above-mentioned technical problems, the present invention discloses a capsule oil filter transfer device, comprising:
[0006] An oil storage tank has an oil storage cavity and an opening at the top that communicates with the oil storage cavity. The oil storage tank is used to hold menthol oil.
[0007] An oil filter bucket is at least partially placed inside an oil storage chamber. The oil filter bucket has a receiving cavity, and the top of the oil filter bucket is provided with a collection port communicating with the receiving cavity. The receiving cavity is used to hold the popping beads. The side wall and / or bottom surface of the receiving cavity are provided with multiple filter holes. The diameter of the filter holes is smaller than the diameter of the popping beads. The oil filter bucket can rotate relative to the oil storage bucket between a first position and a second position, and the oil filter bucket can move up and down inside the oil storage chamber.
[0008] The transfer assembly includes a base plate with multiple casters on its bottom surface and an oil storage tank located on top of the base plate.
[0009] The first card holder group is located on the inner wall of the oil storage tank. The first card holder group includes at least two first card holders, and each first card holder is spaced apart along the circumference of the oil storage tank.
[0010] The second bracket assembly is located on the outer wall of the oil filter tank. The second bracket assembly includes at least two second brackets, and each second bracket is spaced apart along the circumference of the oil filter tank.
[0011] When the oil filter tank is in the first position, the projection of the first mounting bracket group on the horizontal plane does not coincide with the projection of the second mounting bracket group on the horizontal plane at all; when the oil filter tank is in the second position, the projection of the first mounting bracket group on the horizontal plane coincides with the projection of the second mounting bracket group on the horizontal plane at least partially.
[0012] When collecting the burst beads, the oil filter transfer device must first be moved to the designated position and a certain volume of burst bead oil filled into the oil storage tank. Then, the oil filter tank is placed into the oil storage chamber through the opening, maintaining the tank in the first position and moving it downwards. Because the projections of the first and second holder groups on the horizontal plane are not aligned when the oil filter tank is in the first position, the second holders pass through the gaps between the first holders during the downward movement, without interference. Once the bottom of the oil filter tank contacts the bottom of the oil storage chamber, it sinks into the burst bead oil. The dripped burst beads are then conveyed to the oil filter transfer device via a conveyor belt, completing the collection of wet burst beads. Since the oil storage tank contains a certain volume of burst bead oil, the wet burst beads are cushioned by the oil when falling into the oil filter tank and will not break, remaining immersed in the oil. Before drying the collected wet popping beads, the oil filter transfer device is moved to the designated location. The operator lifts the oil filter tank until the height of each second holder is higher than the height of each first holder. Then, the operator rotates the oil filter tank containing the wet popping beads to a second position, so that the bottom of at least a portion of the second holder contacts the upper surface of at least a portion of the first holder, suspending the oil filter tank in the oil storage tank. At this point, the bottom of the oil filter tank is higher than the liquid level of the popping bead oil in the oil storage tank, allowing the popping bead oil to drip through the filter holes into the oil storage tank, thus completing the filtration of the wet popping beads. After filtration, the operator can place the filtered popping beads into a dryer for drying, completing the collection, filtration, and transfer of the wet popping beads.
[0013] By adopting the above technical solution, a single device can be used to complete the collection, filtration, and transfer of the popping beads, simplifying operation and improving worker efficiency. Furthermore, this application avoids the phenomenon of popping beads being transferred between multiple devices, as seen in existing technologies that use multiple devices for collection and filtration, thus reducing the risk of popping bead spillage and oil contamination of the ground. Simultaneously, the device is equipped with casters at the bottom, allowing for convenient and quick transfer of the collected and filtered popping beads to the designated processing location.
[0014] Optionally, the oil storage cavity includes a first cavity and a second cavity arranged sequentially from top to bottom. The first cavity is cylindrical and the second cavity is conical. The diameter of the second cavity gradually decreases from top to bottom, and the bottom of the second cavity is provided with a first outlet.
[0015] Using the above technical solution, after each batch of wet popping beads is collected, filtered, and transferred, a certain volume of popping bead oil will accumulate in the oil storage chamber, which can be discharged through the first outlet. During the discharge of popping bead oil, the conical design of the second chamber acts as a guide, accelerating the discharge speed of the popping bead oil.
[0016] Optionally, the transshipment component also includes:
[0017] The support is located on the base plate, and the oil storage tank is located above the support. The support is used to support the oil storage tank.
[0018] The tie rod is connected to the support.
[0019] By adopting the above technical solution and incorporating a pull rod, the operator can easily move the device, facilitating the transfer of the bursting beads. The support unit on the base plate provides excellent support for the oil storage tank mounted on it, improving the overall stability of the device.
[0020] Optionally, the support includes a housing and at least two support blocks. The housing is cylindrical, and each support block is spaced apart on the inner wall of the housing along the circumference. The upper end of the support block is in contact with the bottom surface of the oil storage tank.
[0021] By adopting the above technical solution, the support block set inside the shell can increase the support rigidity of the shell and the support strength of the bottom plate, so as to better support the oil storage tank.
[0022] Optionally, an oil drain window is provided on the side wall of the shell, and a bend is provided below the oil storage tank. The upper end of the bend is connected to the first outlet, and the outlet end of the bend faces the oil drain window. A ball valve is provided on the bend, and the ball valve is used to control the opening and closing of the bend.
[0023] The above technical solution allows the bouncy ball oil in the storage tank to be discharged through a curved pipe. The drain window allows operators to easily reach their hands into the housing to open and close the ball valve, providing ample operating space and convenience.
[0024] Optionally, the number of first card holders is equal to the number of second card holders, with each first card holder evenly distributed along the circumference of the oil storage tank and each second card holder evenly distributed along the circumference of the oil filter tank.
[0025] By adopting the above technical solution, when the oil filter barrel is filtering oil, each of the second brackets is placed above each of the first brackets, so that the oil filter barrel is subjected to uniform force, thereby improving the stability of the oil filter barrel during the oil filtering process.
[0026] Optionally, the oil filter tank also includes:
[0027] Two hanging ears are provided on the outer wall of the oil filter barrel, and the two hanging ears are mirrored along the axis of the oil filter barrel;
[0028] The handle has two lugs at each end that connect to the oil filter tank.
[0029] The above technical solution allows for easy lifting, rotating, and placement of the oil filter bucket, making it convenient and quick to adjust its position.
[0030] Optionally, the upper end of the oil storage tank is provided with a plurality of positioning grooves spaced apart along the circumference of the oil storage tank. The number of positioning grooves is equal to the number of first card seats, and the projection of each positioning groove on the horizontal plane corresponds one-to-one with the midpoint of each first card seat.
[0031] By adopting the above technical solution, the positions of the first card holders can be marked, enabling the operator to accurately determine the position of each first card holder. When the operator adjusts the oil filter tank to the oil filtering state, they can directly align the midpoint of each second card holder on the oil filter tank with each positioning groove to determine that the oil filter tank is in the second position, without needing to observe the position of each first card holder inside the oil storage tank.
[0032] Optionally, the number of moving wheels is four, consisting of two directional wheels and two omnidirectional wheels. The two directional wheels are mirror images of the moving direction of the transfer component, and the two omnidirectional wheels are mirror images of the moving direction of the transfer component.
[0033] By adopting the above technical solution, the front wheels are directional wheels, which provide a clear traction direction for the movement of the oil filter transfer device, ensuring that the device remains stable when moving in a straight line. The rear wheels are omnidirectional wheels, allowing the rear wheels to flexibly follow the movement trajectory of the front wheels when turning. The design of front directional wheels and rear omnidirectional wheels avoids the simultaneous rotation of the front and rear wheels, thereby preventing loss of control or "swivel" during movement and improving the stability of the device during movement.
[0034] Optionally, the oil storage tank, oil filter tank, first cassette assembly, and second cassette assembly are all made of stainless steel.
[0035] By adopting the above technical solution, and by setting the materials of the oil storage tank, oil filter tank, first clamping group and second clamping group to stainless steel, the strength of the oil storage tank, oil filter tank, first clamping group and second clamping group can be increased, making the device less prone to damage during use and extending the service life of the device. Attached Figure Description
[0036] Figure 1 This diagram shows a structural schematic of the bouncy bead oil filtration transfer device provided in an embodiment of the present invention.
[0037] Figure 2 This diagram shows a partial structural schematic of the bouncy bead oil filtration transfer device provided in an embodiment of the present invention.
[0038] Figure 3 Show Figure 2 Top view;
[0039] Figure 4 Show Figure 3 Sectional view along axis AA;
[0040] Figure 5 This diagram shows the structure of the oil filter bucket provided in an embodiment of the present invention;
[0041] Figure 6 A top view of the oil storage tank provided in an embodiment of the present invention is shown;
[0042] Figure 7 Show Figure 6 BB-direction sectional view;
[0043] Figure 8 This shows a top view of the support portion provided in an embodiment of the present invention;
[0044] Figure 9 Show Figure 8 CC-direction sectional view;
[0045] Figure 10 Show Figure 4 A magnified view of part D in the middle.
[0046] Figure label:
[0047] 1. Oil storage tank; 11. Oil storage cavity; 111. First cavity; 112. Second cavity; 12. Opening; 13. Inner wall; 14. First outlet; 2. Oil filter tank; 21. Receptacle; 22. Collection port; 23. Outer wall; 24. Filter hole; 25. Hanging lug; 26. Handle; 3. Transfer assembly; 31. Base plate; 32. Moving wheel; 321. Directional wheel; 322. Universal wheel; 33. Support part; 331. Housing; 332. Support block; 333. Oil drain window; 34. Pull rod; 41. First bracket; 51. Second bracket; 6. Bend; 61. Internal thread bend; 62. Oil delivery pipe; 63. Ball valve; 64. Pagoda connector; 7. Positioning groove. Detailed Implementation
[0048] The following specific embodiments illustrate the implementation of this utility model. Those skilled in the art can easily understand other advantages and effects of this utility model from the content disclosed in this specification. Although the description of this utility model will be presented in conjunction with preferred embodiments, this does not mean that the features of this utility model are limited to this embodiment. On the contrary, the purpose of describing the utility model in conjunction with the embodiments is to cover other options or modifications that may be derived based on the claims of this utility model. To provide a deep understanding of this utility model, many specific details will be included in the following description. This utility model may also be implemented without using these details. Furthermore, to avoid confusion or obscuring the focus of this utility model, some specific details will be omitted in the description. It should be noted that, without conflict, the embodiments and features in the embodiments of this utility model can be combined with each other.
[0049] It should be noted that in this specification, similar reference numerals and letters in the following figures indicate similar items. Therefore, once an item is defined in one figure, it does not need to be further defined and explained in subsequent figures.
[0050] In the description of this embodiment, it should be noted that the terms "upper", "lower", "inner", "bottom", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, or the orientation or positional relationship that the utility model product is usually placed in during use. They are only for the convenience of describing the utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on the utility model.
[0051] The terms “first”, “second”, etc., are used only to distinguish descriptions and should not be interpreted as indicating or implying relative importance.
[0052] In the description of this embodiment, it should also be noted that, unless otherwise explicitly specified and limited, the terms "set up," "connected," and "linked" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this embodiment based on the specific circumstances.
[0053] To make the objectives, technical solutions, and advantages of this utility model clearer, the embodiments of this utility model will be described in further detail below with reference to the accompanying drawings.
[0054] See Figure 1 The present invention discloses a capsule oil filter transfer device, including an oil storage tank 1, an oil filter tank 2, a transfer component 3, a first card holder group and a second card holder group.
[0055] See Figure 7 The oil storage tank 1 has an oil storage cavity 11, and the top of the oil storage tank 1 is provided with an opening 12 that communicates with the oil storage cavity 11. The oil storage tank 1 is used to hold the popping bead oil.
[0056] See Figure 2 and Figure 5 The oil filter 2 is at least partially placed inside the oil storage chamber 11. The oil filter 2 has a receiving cavity 21. The top of the oil filter 2 is provided with a collection port 22 communicating with the receiving cavity 21. The receiving cavity 21 is used to hold the popping beads. The side wall and / or bottom surface of the receiving cavity 21 are provided with a plurality of filter holes 24. The diameter of the filter holes 24 is smaller than the diameter of the popping beads. The oil filter 2 can rotate relative to the oil storage 1 between a first position and a second position, and the oil filter 2 can move up and down inside the oil storage chamber 11.
[0057] The transfer assembly 3 includes a base plate 31, on the bottom surface of which are provided multiple casters 32, and an oil storage tank 1 is located above the base plate 31.
[0058] See Figure 6 The first card holder group is located on the inner side wall 13 of the oil storage tank 1. The first card holder group includes at least two first card holders 41, and each first card holder 41 is arranged at intervals along the circumference of the oil storage tank 1.
[0059] See Figure 5 The second bracket group is located on the outer wall 23 of the oil filter tank 2. The second bracket group includes at least two second brackets 51, and each second bracket 51 is arranged at intervals along the circumference of the oil filter tank 2.
[0060] When the oil filter tank 2 is in the first position, the projection of the first mounting bracket group on the horizontal plane does not coincide with the projection of the second mounting bracket group on the horizontal plane at all; when the oil filter tank 2 is in the second position, the projection of the first mounting bracket group on the horizontal plane coincides with the projection of the second mounting bracket group on the horizontal plane at least partially.
[0061] When collecting the popping beads, the oil filter transfer device is first moved to the designated position and a certain volume of popping bead oil is placed in the oil storage tank 1. Then, the oil filter tank 2 is placed into the oil storage chamber 11 through the opening 12, keeping the oil filter tank 2 in the first position and moving it downwards. Because the projections of the first and second card groups on the horizontal plane are not completely coincident when the oil filter tank 2 is in the first position, each of the second card groups 51 passes through the gaps between the first card groups 41 during the downward movement of the oil filter tank 2, and there is no interference between the second card groups 51 and the first card groups 41. After the oil filter tank 2 moves downwards until its bottom contacts the bottom of the oil storage chamber 11, the oil filter tank 2 sinks into the popping bead oil. Subsequently, the dripped popping beads are conveyed to the oil filter transfer device via a conveyor belt, completing the collection of wet popping beads. Because the oil storage tank 1 contains a certain volume of popping bead oil, the wet popping beads are cushioned by the oil when falling into the oil filter tank 2 and will not break, remaining immersed in the oil. Before drying the collected wet popping beads, the oil filter transfer device is moved to a designated location, and the operator lifts the oil filter tank 2 until the height of each second bracket 51 is higher than the height of each first bracket 41. Then, the operator rotates the oil filter tank 2 containing the wet popping beads to a second position, so that at least part of the bottom of the second bracket 51 contacts at least part of the upper surface of the first bracket 41, thus suspending the oil filter tank 2 within the oil storage tank 1. Figure 4 and Figure 10 As shown. At this time, the bottom of the oil filter tank 2 is higher than the liquid level of the bursting oil in the oil storage tank 1. The bursting oil on the bursting beads can drip through the filter hole 24 into the oil storage tank 1 to complete the filtration of the wet bursting beads. After the filtration is completed, the operator can put the filtered bursting beads in the device into the dryer for drying to complete the collection, filtration and transfer of the wet bursting beads.
[0062] By adopting the above technical solution, the collection, filtration, and transfer of popping beads can be completed using a single device, simplifying operation and improving worker efficiency. Furthermore, this application avoids the phenomenon of popping beads being transferred between multiple devices, as seen in existing technologies that use multiple devices for collection and filtration, thus reducing the risk of popping bead spillage and oil contamination of the ground. Simultaneously, the device is equipped with casters 32 at the bottom, allowing for convenient and quick transfer of the collected and filtered popping beads to the designated processing location.
[0063] Specifically, the oil storage tank 1, the oil filter tank 2, the first card holder assembly, and the second card holder assembly are all made of stainless steel.
[0064] For example, each first bracket 41 is welded to the inner side wall 13 of the oil storage tank 1, and each second bracket 51 is welded to the outer side wall 23 of the oil filter tank 2.
[0065] By adopting the above technical solution, and by setting the materials of the oil storage tank 1, oil filter tank 2, first bracket group and second bracket group to stainless steel, the strength of the oil storage tank 1, oil filter tank 2, first bracket group and second bracket group can be increased, making the device less prone to damage during use and extending the service life of the device.
[0066] Specifically, see Figure 3 and Figure 6 The number of first card holders 41 is equal to the number of second card holders 51. Each first card holder 41 is evenly distributed along the circumference of the oil storage tank 1, and each second card holder 51 is evenly distributed along the circumference of the oil filter tank 2.
[0067] For example, there are four first card holders 41 and four second card holders 51, and both the first card holders 41 and the second card holders 51 are arc-shaped. When the oil filter tank 2 is filtering oil, each second card holder 51 is placed above each first card holder 41, so that the oil filter tank 2 is subjected to uniform force, thereby improving the stability of the oil filter tank 2 during the oil filtering process.
[0068] Specifically, see Figure 8 The number of moving wheels 32 is four, namely two directional wheels 321 and two omnidirectional wheels 322. The two directional wheels 321 move in the direction of movement relative to the transfer component 3 (e.g., Figure 8 As shown in the X direction, the two casters 322 are mirrored relative to the moving direction of the transfer assembly 3. Exemplarily, the two directional wheels 321 and the two casters 322 are spaced apart along the moving direction of the transfer assembly 3. During movement, the two directional wheels 321 are the front wheels, and the two casters 322 are the rear wheels.
[0069] Using the above technical solution, the front wheels, designated as directional wheels 321, provide a clear traction direction for the movement of the oil filter transfer device, ensuring stability when the device moves in a straight line. The rear wheels, designated as omnidirectional wheels 322, allow the rear wheels to flexibly follow the movement trajectory of the front wheels when turning. The design of the front directional wheels 321 and the rear omnidirectional wheels 322 prevents the front and rear wheels from rotating simultaneously, thereby avoiding loss of control or "swivel" during movement and improving the stability of the device during movement.
[0070] Specifically, see Figure 5 The oil filter tank 2 also includes two hanging ears 25 and a handle 26. The two hanging ears 25 are provided on the outer wall 23 of the oil filter tank 2, and the two hanging ears 25 are mirror images of each other along the axis of the oil filter tank 2. The two ends of the handle 26 are respectively connected to the oil filter tank 2 through the two hanging ears 25.
[0071] For example, see Figure 5 Two hanging ears 25 are welded to the outer wall of the oil filter barrel 2. The two ends of the handle 26 are respectively hinged to the two hanging ears 25. A groove for suspending the oil filter barrel 2 is provided at the midpoint of the handle 26.
[0072] By adopting the above technical solution, the handle 26 is designed to facilitate lifting, rotating and placing the oil filter bucket 2, so as to adjust the position of the oil filter bucket 2, which is convenient and quick.
[0073] Specifically, see Figure 7 The oil storage chamber 11 includes a first chamber 111 and a second chamber 112 arranged sequentially from top to bottom. The first chamber 111 is cylindrical and the second chamber 112 is conical. The diameter of the second chamber 112 gradually decreases from top to bottom, and a first outlet 14 is provided at the bottom of the second chamber 112.
[0074] Using the above technical solution, after each batch of wet popping beads is collected, filtered, and transferred, a certain volume of popping bead oil will accumulate in the oil storage chamber 11, which can be discharged through the first outlet 14. During the discharge of popping bead oil, the conical design of the second chamber 112 plays a guiding role, which can accelerate the discharge speed of the popping bead oil.
[0075] Further, see Figure 1 and Figure 9 The transfer assembly also includes a support portion 33 and a pull rod 34. The support portion 33 is disposed on the base plate 31, and the oil storage tank 1 is disposed above the support portion 33. The support portion 33 is used to support the oil storage tank 1. The pull rod 34 is connected to the support portion 33, and the operator can move the device by pulling the pull rod 34. Exemplarily, the pull rod 34 is welded to the support portion 33.
[0076] By adopting the above technical solution and setting the pull rod 34, the operator can easily push the device to move, facilitating the transfer of the bursting beads. The support part 33 set on the base plate 31 can provide good support for the oil storage tank 1 set on it, improving the overall stability of the device.
[0077] Specifically, see Figure 8 and Figure 9 The support part 33 includes a housing 331 and at least two support blocks 332. The housing 331 is cylindrical, and each support block 332 is spaced apart along the circumference of the housing 331 on the inner wall of the housing 331. The upper end of the support block 332 is in contact with the bottom surface of the oil storage tank 1.
[0078] For example, there are four support blocks 332, which extend vertically and are evenly distributed around the circumference of the housing 331. One side wall of each support block 332 is fixedly connected to the inner wall of the housing 331 by welding, the upper end of each support block 332 is fixedly connected to the bottom surface of the oil storage tank 1 by welding, and the lower end of each support block 332 is fixedly connected to the base plate 31 by nuts. For example, both the housing 331 and the support blocks 332 are made of stainless steel.
[0079] By adopting the above technical solution, the support block 332 set in the shell 331 can increase the support rigidity of the shell 331 and the support strength of the bottom plate 31, so as to better support the oil storage tank 1.
[0080] Further, see Figure 1 , Figure 2 and Figure 9 The side wall of the housing 331 is provided with an oil drain window 333. The lower part of the oil storage tank 1 is provided with a bend 6. The upper end of the bend 6 is connected to the first outlet 14. The outlet end of the bend 6 faces the oil drain window 333. A ball valve 63 is provided on the bend 6. The ball valve 63 is used to control the opening and closing of the bend 6.
[0081] For example, see Figure 9 The bend 6 includes an internally threaded bend 61 and an oil delivery pipe 62 arranged sequentially along the discharge direction of the popping oil. The inlet end of the internally threaded bend 61 is threadedly connected to the first outlet 14, and the outlet end of the internally threaded bend 61 is threadedly connected to the inlet end of the oil delivery pipe 62. A ball valve 63 is located at the outlet end of the oil delivery pipe 62, and the inlet end of the ball valve 63 is connected to the outlet end of the oil delivery pipe 62. Exemplarily, the outlet end of the ball valve 63 is also provided with a pagoda connector 64, and the inlet end of the pagoda connector 64 is threadedly connected to the outlet end of the ball valve 63. The oil filter transfer device also includes a hose (not shown in the figure). One end of the hose is connected to the outlet end of the pagoda connector 64, and the other end of the hose can be connected to an external popping oil recovery device.
[0082] The above technical solution allows the bouncy oil in the oil storage tank 1 to be discharged through the bend pipe 6. The oil drain window 333 allows operators to easily reach their hands into the housing 331 through the drain window 333 to open and close the ball valve 63, providing ample operating space and convenience.
[0083] Further, see Figure 6 The upper edge of the oil storage tank 1 is provided with a plurality of positioning grooves 7 spaced apart along the circumference of the oil storage tank 1. The number of positioning grooves 7 is equal to the number of first card seats 41, and the projection of each positioning groove 7 on the horizontal plane corresponds one-to-one with the midpoint of each first card seat 41. For example, the number of positioning grooves 7 is four.
[0084] When the oil filter tank 2 is placed into the oil storage chamber 11, it obstructs the first retaining seats 41, making it difficult for the operator to determine their positions. This application addresses this by providing positioning grooves 7 along the upper edge of the oil storage tank 1 to mark the positions of the first retaining seats 41, allowing the operator to accurately determine their locations. When adjusting the oil filter tank 2 to the filtering state, the operator can directly align the midpoints of the second retaining seats 51 on the oil filter tank 2 with the positioning grooves 7 to confirm that the oil filter tank 2 is in the second position, without needing to observe the positions of the first retaining seats 41 within the oil storage tank 1.
[0085] During the production of popping beads, the dripped popping beads are conveyed a distance on a conveyor belt with an oil-filtering function before entering the oil filtration and transfer device. During this process, most of the oil adhering to the wet popping beads is filtered out. Because the popping beads are easily broken under external force, a small amount of popping bead oil needs to be placed in the oil storage chamber 11 of the oil storage tank 1 beforehand to provide a buffer during the process of the popping beads falling into the device. Before the popping beads fall into the device, the operator needs to rotate the oil filter tank 2 to the first position using the handle 26 and place it downward into the oil storage chamber 11. At this time, the bottom surface of the oil filter tank 2 is lower than the liquid surface of the popping bead oil, and part of the oil filter tank 2 is submerged in the popping bead oil.
[0086] Wet popping beads with a small amount of popping oil attached fall into the oil filter tank 2. As popping beads are continuously produced, the number of popping beads and popping oil in the oil filter transfer device increases continuously. After collecting a batch of popping beads, the operator pushes the device to a designated location using the pull rod 34 for the drying process. Before drying, the wet popping beads immersed in the popping oil need to be filtered. The operator lifts the oil filter tank 2 upwards using the handle 26. Since the position of the positioning groove 7 indirectly reflects the position of each first holder 41, when the midpoint of each second holder 51 aligns with the positioning groove 7, it can be determined that the oil filter tank 2 is in the second position. At this time, the operator lowers the oil filter tank 2 until the upper surface of each first holder 41 is in contact with the bottom of each second holder 51. At this time, the oil filter transfer device is adjusted to the oil filtering state, and the popping oil drips through the filter holes 24 on the oil filter tank 2 into the oil storage chamber 11 of the oil storage tank 1. After filtration is completed, the operator uses other tools to transfer the popping beads in the oil filter tank 2 to the drying equipment.
[0087] After collecting, filtering, and transferring a batch of popping beads, the popping bead oil in the oil storage chamber 11 needs to be discharged into the popping bead oil recovery device. The operator can connect a hose to one end of the pagoda connector 64 and place the other end of the hose into the recovery device. When it is necessary to discharge the popping bead oil, the operator inserts both hands through the drain window 333 into the cavity of the housing 331 and turns the handle of the ball valve 63 to open it. The popping bead oil is then discharged sequentially through the first outlet 14, the bend 6, and the hose into the recovery device. After the popping bead oil in the oil storage chamber 11 is emptied, the operator again inserts both hands through the drain window 333 into the cavity of the housing 331 and turns the handle of the ball valve 63 to close it, completing the discharge of the popping bead oil. Then, the device is pushed back to the popping bead collection point by the pull rod 34, and the above steps are repeated to collect, filter, and transfer multiple batches of popping beads. The popping bead oil filtration and transfer device provided by this utility model has the characteristics of high functionality, simple structure, and convenient operation. It can not only improve the work efficiency of staff, but also reduce the risk of menthol spillage and menthol oil contamination of the ground, making it highly practical.
[0088] Although the present invention has been illustrated and described with reference to certain preferred embodiments, those skilled in the art should understand that the above description is a further detailed explanation of the present invention in conjunction with specific embodiments, and should not be construed as limiting the specific implementation of the present invention to these descriptions. Those skilled in the art can make various changes in form and detail, including some simple deductions or substitutions, without departing from the spirit and scope of the present invention.
Claims
1. A capsule oil filter transfer device, characterized in that, include: An oil storage tank, the oil storage tank having an oil storage cavity, the top of the oil storage tank having an opening communicating with the oil storage cavity, the oil storage tank being used to hold popping bead oil; An oil filter bucket, at least partially placed within the oil storage chamber, the oil filter bucket having a receiving cavity, a collection port communicating with the receiving cavity at the top of the oil filter bucket, the receiving cavity for holding popping beads, and multiple filter holes formed on the side walls and / or bottom surface of the receiving cavity, the diameter of the filter holes being smaller than the diameter of the popping beads, the oil filter bucket being rotatable relative to the oil storage bucket between a first position and a second position, and the oil filter bucket being able to move up and down within the oil storage cavity; A transfer assembly, comprising a base plate, with multiple casters mounted on the bottom surface of the base plate, and the oil storage tank positioned above the base plate; The first card holder group is disposed on the inner side wall of the oil storage tank. The first card holder group includes at least two first card holders, and each first card holder is arranged at intervals along the circumference of the oil storage tank. The second card holder group is disposed on the outer side wall of the oil filter barrel. The second card holder group includes at least two second card holders, and each second card holder is arranged at intervals along the circumference of the oil filter barrel. When the oil filter tank is in the first position, the projection of the first card holder group on the horizontal plane does not coincide with the projection of the second card holder group on the horizontal plane; when the oil filter tank is in the second position, the projection of the first card holder group on the horizontal plane coincides with the projection of the second card holder group on the horizontal plane at least partially.
2. The oil filtration transport apparatus of claim 1, wherein, The oil storage chamber includes a first cavity and a second cavity arranged sequentially from top to bottom. The first cavity is cylindrical and the second cavity is conical. The diameter of the second cavity gradually decreases from top to bottom, and a first outlet is provided at the bottom of the second cavity.
3. The oil filtration transport apparatus of claim 2, wherein, The transfer component also includes: A support portion is provided on the base plate, and the oil storage tank is located above the support portion. The support portion is used to support the oil storage tank. A pull rod is connected to the support portion.
4. The oil filtration transport apparatus of claim 3, wherein, The support includes a housing and at least two support blocks. The housing is cylindrical, and each support block is spaced apart along the circumference of the housing on the inner wall of the housing. The upper end of each support block is in contact with the bottom surface of the oil storage tank.
5. The oil filtration transport apparatus of claim 4, wherein, The side wall of the housing is provided with an oil drain window, and the lower part of the oil storage tank is provided with a bend pipe. The upper end of the bend pipe is connected to the first outlet, and the outlet end of the bend pipe faces the oil drain window. A ball valve is provided on the bend pipe, and the ball valve is used to control the opening and closing of the bend pipe.
6. The oil filtration transport apparatus of any one of claims 1 to 5, wherein, The number of first card holders is equal to the number of second card holders. Each first card holder is evenly distributed along the circumference of the oil storage tank, and each second card holder is evenly distributed along the circumference of the oil filter tank.
7. The oil filtration transport apparatus of any one of claims 1 to 5, wherein, The oil filter tank also includes: Two hanging ears are provided on the outer side wall of the oil filter barrel, and the two hanging ears are mirrored along the axis of the oil filter barrel; The handle has two ends connected to the oil filter barrel via two hooks.
8. The oil filtration transport apparatus of any one of claims 1 to 5, wherein, The upper end of the oil storage tank is provided with a plurality of positioning grooves spaced apart along the circumference of the oil storage tank. The number of positioning grooves is equal to the number of the first card seats. The projection of each positioning groove on the horizontal plane corresponds one-to-one with the midpoint of each of the first card seats.
9. The oil filtration transport apparatus of any one of claims 1 to 5, wherein, The number of the moving wheels is four, consisting of two directional wheels and two omnidirectional wheels. The two directional wheels are mirror images of the moving direction of the transfer component, and the two omnidirectional wheels are mirror images of the moving direction of the transfer component.
10. The oil filtration transport apparatus of any one of claims 1 to 5, wherein, The oil storage tank, the oil filter tank, the first card holder assembly, and the second card holder assembly are all made of stainless steel.