Portable melt electrostatic spinning test device with intelligent feeding function
By designing a portable melt electrospinning experimental device with a mixing and processing mechanism, the problems of raw material processing efficiency and additive ratio flexibility were solved, achieving continuous impurity removal of raw materials and efficient mixing of additives, thus improving the overall performance of the device.
Patent Information
- Application Number
- CN202511313262.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-15
- Publication Date
- 2025-12-19
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Existing portable melt electrospinning test devices with intelligent feeding functions lack continuous impurity and dehumidification structures and additive pre-mixing structures, resulting in insufficient raw material processing efficiency and additive ratio flexibility.
A portable melt electrospinning test device was designed, which includes a mixing mechanism and a processing mechanism. The mixing mechanism is used for pre-mixing raw materials and additives, and the processing mechanism is used for continuous impurity removal and dehumidification. Through the coordinated work of a centralized component, a conveying component, a mixing component, a regulating component, a dehumidifying component, a recovery component, a storage component, a guiding component, and a transport component, continuous impurity removal of raw materials and flexible proportioning of additives can be achieved.
This improves the efficiency of feeding raw materials into the testing device immediately after processing and the flexibility of additive formulation, ensuring efficient mixing and impurity removal of raw materials and additives.
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Figure CN121155408A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of spinning, and particularly relates to a portable melt electrospinning test device with intelligent feeding function. BACKGROUND
[0002] The melt electrospinning test device is an important equipment in the field of material preparation. Through the action of a high-voltage electric field, the polymer melt overcomes the surface tension to form a jet, and solidifies into a fiber in the flight process. The portable device with intelligent feeding function can accurately control the melt feeding, automatically adjust the feeding amount and speed according to the preset parameters. At the same time, it is small and light, which facilitates researchers to carry out tests in different scenes. It can be used for the development of new fiber materials and helps the research and development of new materials and small-batch production in the fields of scientific research and industry.
[0003] At present, a melt electrospinning device and method are disclosed in Chinese invention CN110629298B. The device includes a spinning head, the spinning head includes a heat-conducting block, a material guiding channel, and a heater; the material guiding channel is arranged in the heat-conducting block and penetrates through the heat-conducting block; the heater is located on one side of the material guiding channel. When electrospinning is performed, linear material is placed in the spinning head for heating and melting. The melt electrospinning device has a simple structure, can continuously place a small amount of material into the spinning head for heating to prepare a melt, greatly reduces the weight of the whole spinning head while ensuring continuous feeding, realizes high-speed movement of the spinning head, and is easy to operate.
[0004] The existing portable melt electrospinning test device with intelligent feeding function has the following shortcomings when it is used for spinning test of raw materials in different states: 1. Since there is no structure for continuously removing impurities and moisture from the raw materials, the raw materials cannot be immediately sent to the test device after continuous removal of impurities and moisture, which reduces the efficiency of sending the raw materials to the test device after treatment. 2. Since there is no structure for pre-dispensing of raw material additives, the additive ratio cannot be changed in real time according to the required ratio of the additives, which reduces the flexibility of the raw material and additive ratio. SUMMARY
[0005] The present application aims to solve the problems of the prior art. The advantages of the present application are as follows: 1. Since there is a structure for continuously removing impurities and moisture from the raw materials, the raw materials can be immediately sent to the test device after continuous removal of impurities and moisture, which improves the efficiency of sending the raw materials to the test device after treatment. 2. Since there is a structure for pre-dispensing of raw material additives, the additive ratio can be changed in real time according to the required ratio of the additives, which improves the flexibility of the raw material and additive ratio.
[0006] The above technical purpose of the present application is achieved by the following technical solution: a portable melt electrospinning test device with intelligent feeding function, comprising a spinning machine body, a deployment mechanism and a processing mechanism, the deployment mechanism is arranged on the front side of the spinning machine body, the processing mechanism is arranged on the inner side of the deployment mechanism, the deployment mechanism comprises a concentration assembly, a conveying assembly, a mixing assembly and an adjusting assembly, the concentration assembly is arranged on the front side of the spinning machine body, the conveying assembly is arranged on the front side of the concentration assembly, the mixing assembly is arranged on the top of the conveying assembly, and the adjusting assembly is arranged on the top of the mixing assembly, the processing mechanism comprises a dehumidifying assembly, a recycling assembly, a storage assembly, a guiding assembly and a conveying assembly, the dehumidifying assembly is arranged on the top of the inner side of the conveying assembly, the recycling assembly is arranged on the front side of the conveying assembly, the storage assembly is arranged on the bottom of the recycling assembly, the guiding assembly is arranged on the inner side of the storage assembly, and the conveying assembly is arranged on the inner side of the guiding assembly.
[0007] By adopting the above technical solution, the spinning machine body is an existing portable melt electrospinning machine, which can perform electrospinning processing on the spinning raw material, and has a plurality of spinning quality detection structures inside, so that the spinning quality can be detected in multiple ways, the deployment mechanism can pre-deploy the additives for the spinning raw material, so that the additive ratio can be changed in real time according to different required ratios, and the flexibility of the raw material and additive ratio is improved, and the processing mechanism can immediately send the raw material after continuous impurity removal and dehumidification into the test device, so that the efficiency of the raw material after processing is immediately sent into the test device is improved.
[0008] The present application further provides that: the concentration assembly comprises a positioning frame, a positioning plate and a combination frame, the positioning frame is fixedly connected to the input end of the front side of the melt electrospinning machine body, the positioning plate is fixedly connected to the top of the positioning frame, and the combination frame is fixedly connected to the top of the positioning plate, and the rear side of the positioning plate is fixedly connected to the front side of the melt electrospinning machine body.
[0009] By adopting the above technical solution, the concentration assembly is provided, the positioning frame can cooperate with the positioning plate and the combination frame, the positioning plate and the combination frame are supported and limited by the positioning frame, the overall structure of the conveying assembly can be supported and limited, and the positioning plate can send the spinning raw material into the spinning machine body through the spinning raw material input end of the spinning machine body.
[0010] The present application further provides that: the conveying assembly comprises a drainage arc plate, an assembled top frame and a conveying pipe, the drainage arc plate is fixedly connected to the front side of the positioning frame, the assembled top frame is clamped on the top of the combination frame, and the conveying pipe is fixedly connected to the left side of the combination frame.
[0011] The technical scheme is adopted, the drainage arc plate can be matched with the assembly top frame and the conveying pipe through the setting of the conveying assembly, the mixed spinning raw material is guided through the drainage arc plate, the spinning raw material can be guided to the positioning plate, the assembly top frame can support and limit the mixing assembly, and the conveying pipe can send the processed raw material at the recycling assembly into the drainage arc plate.
[0012] The technical scheme is adopted, the drainage arc plate can be matched with the assembly top frame and the conveying pipe through the setting of the conveying assembly, the mixed spinning raw material is guided through the drainage arc plate, the spinning raw material can be guided to the positioning plate, the assembly top frame can support and limit the mixing assembly, and the conveying pipe can send the processed raw material at the recycling assembly into the drainage arc plate.
[0013] The technical scheme is adopted, the drainage arc plate can be matched with the assembly top frame and the conveying pipe through the setting of the conveying assembly, the mixed spinning raw material is guided through the drainage arc plate, the spinning raw material can be guided to the positioning plate, the assembly top frame can support and limit the mixing assembly, and the conveying pipe can send the processed raw material at the recycling assembly into the drainage arc plate.
[0014] The technical scheme is adopted, the drainage arc plate can be matched with the assembly top frame and the conveying pipe through the setting of the conveying assembly, the mixed spinning raw material is guided through the drainage arc plate, the spinning raw material can be guided to the positioning plate, the assembly top frame can support and limit the mixing assembly, and the conveying pipe can send the processed raw material at the recycling assembly into the drainage arc plate.
[0015] The technical scheme is adopted, the drainage arc plate can be matched with the assembly top frame and the conveying pipe through the setting of the conveying assembly, the mixed spinning raw material is guided through the drainage arc plate, the spinning raw material can be guided to the positioning plate, the assembly top frame can support and limit the mixing assembly, and the conveying pipe can send the processed raw material at the recycling assembly into the drainage arc plate.
[0016] The technical scheme is adopted, the drainage arc plate can be matched with the assembly top frame and the conveying pipe through the setting of the conveying assembly, the mixed spinning raw material is guided through the drainage arc plate, the spinning raw material can be guided to the positioning plate, the assembly top frame can support and limit the mixing assembly, and the conveying pipe can send the processed raw material at the recycling assembly into the drainage arc plate.
[0017] The technical scheme is adopted, the dehumidification assembly is arranged, the air supply fan can be connected with the electric heater and the heat conduction coil, the air supply fan can blow the external air to the heat conduction coil, and the air flows through the heat conduction coil and is transported to the conveying assembly, the electric heater is arranged on the heat conduction coil, and the air flowing through the heat conduction coil can be heated, so that the raw materials in the conveying assembly are dehumidified.
[0018] The application further provides that the recycling assembly comprises a connecting plate, a material pumping pump and an air pumping fan, the connecting plate is connected to the input end on the right side of the front side of the conveying pipe, the rear side of the connecting plate is fixedly connected to the bottom of the assembled top frame, the material pumping pump is connected to the right side of the connecting plate, and the air pumping fan is fixedly connected to the bottom of the connecting plate.
[0019] The technical scheme is adopted, the recycling assembly is arranged, the connecting plate can be connected with the material pumping pump and the air pumping fan, the material pumping pump and the air pumping fan are limited by the connecting plate, the material pumping pump can pump the spinning raw materials into the conveying assembly, so that the conveying assembly is provided with raw materials, and the air pumping fan can pump the air in the conveying assembly, so that the impurities and moisture in the separation part are transported into the storage assembly for recycling.
[0020] The application further provides that the storage assembly comprises an assembled pipe, a filter bag and a negative ion generator, the assembled pipe is connected to the output end at the bottom of the air pumping fan, the filter bag is fixedly connected to the bottom of the assembled pipe, and the negative ion generator is connected to the bottom of the filter bag.
[0021] The technical scheme is adopted, the storage assembly is arranged, the assembled pipe can be connected with the filter bag and the negative ion generator, the filter bag and the negative ion generator are temporarily fixed at the bottom of the air pumping fan through the assembled pipe, the impurities and moisture in the air pumped by the air pumping fan can be guided into the filter bag, the filter bag can intercept the impurities and moisture in the air, the negative ion generator can pump negative ions into the filter bag, so that the sterilization and disinfection effects can be achieved through the negative ions, and the filter bag can be replaced by disassembling and assembling the assembled pipe.
[0022] The application further provides that the guide assembly comprises positioning rods, guide rings and guide fan blades, the positioning rods are rotatably connected to the two sides of the inner side of the connecting plate, the guide rings are fixedly connected to the two sides of the inner side of the positioning rods, and the guide fan blades are fixedly connected to the inner side of the guide rings.
[0023] The technical scheme is adopted, the guide assembly is arranged, the positioning rods can be connected with the guide rings and the guide fan blades, the guide rings are limited by the positioning rods, when the guide fan blades are pushed by the air flowing from top to bottom, the guide rings can be driven to rotate along the positioning rods, so that the conveying assembly can be driven to rotate, and the centrifugal force required for the decontamination of the conveying assembly can be provided.
[0024] The application is further provided as follows: the conveying assembly comprises an intercepting net pipe, a guide rotating rod and a spiral conveying blade, the intercepting net pipe is fixedly connected to the inner side of the guide ring, the guide rotating rod is fixedly connected to the two sides of the inner side of the positioning rod, and the spiral conveying blade is welded to the surface of the guide rotating rod, and the surface of the spiral conveying blade is in contact with the inner side of the intercepting net pipe.
[0025] By adopting the above technical scheme, the intercepting net pipe can cooperate with the guide rotating rod and the spiral conveying blade through the conveying assembly. The intercepting net pipe can intercept the raw materials. When the intercepting net pipe rotates with the guide assembly, the impurities in the raw materials can be removed from the pores of the intercepting net pipe under the centrifugal force. The intercepting net pipe can intercept the raw materials. The spiral conveying blade can gradually convey the raw materials from the material pumping pump to the conveying pipe under the rotation of the guide rotating rod, so that the effect of removing impurities from the raw materials is achieved.
[0026] In summary, the application has the following advantages: 1. By arranging the adjusting mechanism, the concentrating assembly can cooperate with the conveying assembly, the mixing assembly and the adjusting assembly. The concentrating assembly can support and limit the conveying assembly to form a raw material and additive storage space. The adjusting assembly can support and limit the mixing assembly. The adjusting assembly can on-site adjust a plurality of different additives. The adjusted additives can be conveyed to the mixing assembly. The mixing assembly can mix the additives and then convey them to the conveying assembly. The additives can be provided to the spinning machine body through the concentrating assembly, thereby improving the flexibility of the raw material and additive ratio. 2. By arranging the processing mechanism, the dehumidifying assembly can cooperate with the recycling assembly, the storage assembly, the guide assembly and the conveying assembly. The recycling assembly can be connected to the spinning raw material conveying equipment to convey the spinning raw materials to the conveying assembly. The dehumidifying assembly can heat the air and then convey it to the guide assembly to provide power for the rotation of the guide assembly. The guide assembly can drive the conveying assembly to convey the raw materials to the adjusting mechanism while removing the impurities in the raw materials under the centrifugal force. The hot air can also remove the moisture. The recycling assembly can pump the moisture and impurities to the storage assembly for storage. The storage assembly can store the impurities and moisture. The air can be disinfected and sterilized by negative ions, thereby improving the efficiency of the raw materials immediately after processing. BRIEF DESCRIPTION OF DRAWINGS
[0027] Figure 1 is a schematic diagram of the overall structure of the application; Figure 2 is a schematic diagram of the connection between the adjusting mechanism and the processing mechanism of the application; Figure 3 is a schematic diagram of the structure of the adjusting mechanism of the application; Figure 4 is the structure schematic diagram of the concentrating assembly and conveying assembly of the present application; Figure 5 is the structure schematic diagram of the mixing assembly of the present application; Figure 6 is the structure schematic diagram of the adjusting assembly of the present application; Figure 7 is the structure schematic diagram of the processing mechanism of the present application; Figure 8 is the structure schematic diagram of the dehumidifying assembly of the present application; Figure 9 is the structure schematic diagram of the recycling assembly of the present application; Figure 10 is the structure schematic diagram of the storage assembly of the present application; Figure 11 is the structure schematic diagram of the guiding assembly and conveying assembly of the present application.
[0028] Reference signs: 1, spinning machine body; 2, deployment mechanism; 21, concentrating assembly; 211, positioning frame; 212, positioning plate; 213, combined frame; 22, conveying assembly; 221, drainage arc plate; 222, assembled top frame; 223, conveying pipe; 23, mixing assembly; 231, mixing pipe; 232, limiting rod; 233, hole-spiral plate rotating rod; 24, adjusting assembly; 241, trapezoidal box; 242, storage tank; 243, feeding pump; 3, processing mechanism; 31, dehumidifying assembly; 311, flow-sending electric fan; 312, electric heater; 313, heat-conducting coil; 32, recycling assembly; 321, connecting plate; 322, material-pumping pump; 323, air-pumping electric fan; 33, storage assembly; 331, assembled pipe; 332, filter bag; 333, negative ion generator; 34, guiding assembly; 341, positioning rod; 342, guide ring; 343, flow-guiding fan blade; 35, conveying assembly; 351, intercepting net pipe; 352, guiding rotating rod; 353, spiral conveying blade. DETAILED DESCRIPTION
[0029] The present application is further described in detail below in combination with the drawings.
[0030] Example 1: Reference Figures 1-6The utility model provides a portable melt electrospinning test device with intelligent feeding function, including spinning machine body 1 and deployment mechanism 2, deployment mechanism 2 is located at the front side of spinning machine body 1, deployment mechanism 2 includes centralized component 21, conveying component 22, mixing component 23 and adjusting component 24, centralized component 21 is located at the front side of spinning machine body 1, conveying component 22 is located at the front side of centralized component 21, mixing component 23 is located at the top of conveying component 22, adjusting component 24 is located at the top of mixing component 23, through setting up deployment mechanism 2, centralized component 21 can cooperate with conveying component 22, mixing component 23 and adjusting component 24, through the support and location of centralized component 21 to conveying component 22, can form raw material and additive storage space, and can support and limit mixing component 23, through adjusting component 24 respectively on -the -spot deployment of multiple different additives, can convey the prepared additive to mixing component 23, mixing component 23 can convey the additive after mixing to conveying component 22, and let the additive mix with raw material, to spinning machine body 1 can be provided through centralized component 21, improve the flexibility when raw material and additive ratio.
[0031] As Figure 4 Indicated, centralized component 21 includes positioning frame 211, locating plate 212 and combination frame 213, positioning frame 211 is fixedly connected at the input end of melt electrospinning machine body 1 front side, locating plate 212 is fixedly connected at the top of positioning frame 211, combination frame 213 is fixedly connected at the top of locating plate 212, the rear side of locating plate 212 is fixedly connected with the front side of melt electrospinning machine body 1, through setting up centralized component 21, positioning frame 211 can cooperate with locating plate 212 and combination frame 213, through the support and location of positioning frame 211 to locating plate 212 and combination frame 213, can support and limit the overall structure of conveying component 22, and locating plate 212 can send spinning raw material into spinning machine body 1 through the spinning raw material input end of spinning machine body 1.
[0032] As Figure 4 Indicated, conveying component 22 includes drainage arc plate 221, assembly top frame 222 and conveying pipe 223, drainage arc plate 221 is fixedly connected at the front side of positioning frame 211, assembly top frame 222 is clamped at the top of combination frame 213, conveying pipe 223 is fixedly connected at the left side of combination frame 213, through setting up conveying component 22, drainage arc plate 221 can cooperate with assembly top frame 222 and conveying pipe 223, through the guidance of drainage arc plate 221 to the spinning raw material of completing mixing, can guide spinning raw material to locating plate 212, assembly top frame 222 can support and limit mixing component 23, conveying pipe 223 can send the raw material of completing processing at recycling component 32 into drainage arc plate 221.
[0033] As Figure 5 shown, the mixing assembly 23 includes a mixing pipe 231, a limiting rod 232 and a perforated spiral plate rotating rod 233, the mixing pipe 231 is communicated at the top of the assembly top frame 222, the limiting rod 232 is fixedly connected at the top and bottom of the inner side of the mixing pipe 231, and the perforated spiral plate rotating rod 233 is rotatably connected to the inner side of the limiting rod 232. By setting the mixing assembly 23, the mixing pipe 231 can cooperate with the limiting rod 232 and the perforated spiral plate rotating rod 233, and the mixing pipe 231 can deliver the prepared additives from the adjusting assembly 24 to the assembly top frame 222, so as to provide the required additives for the drainage arc plate 221. The limiting rod 232 can limit the perforated spiral plate rotating rod 233, so that the perforated spiral plate rotating rod 233 rotates along the limiting rod 232. The perforated spiral plate rotating rod 233 can rotate with the flowing additives, and during rotation, the perforated spiral plate rotating rod 233 drives the additives to further mix, thereby improving the stability of the mixed additives after preparation.
[0034] As Figure 6 shown, the adjusting assembly 24 includes a trapezoidal box 241, a storage tank 242 and a feeding pump 243, the trapezoidal box 241 is communicated at the top of the mixing pipe 231, three storage tanks 242 are respectively communicated at both sides and the top of the trapezoidal box 241, and the feeding pump 243 is communicated at the top of the storage tank 242. By setting the adjusting assembly 24, the trapezoidal box 241 can cooperate with the storage tank 242 and the feeding pump 243, and the feeding pump 243 can be connected to multiple different additive delivery devices. Multiple different additives can be delivered into the storage tank 242 for separate storage, and the storage tank 242 can deliver multiple different additives into the trapezoidal box 241, so as to prepare the additives on site, thereby affecting the spinning product state of the spinning raw material under different additive conditions, and providing higher flexibility for different product state tests.
[0035] Brief use process: first, the spinning machine body 1 and the deployment mechanism 2 are powered on and started after being connected with the remote control terminal, then the user controls the spinning machine body 1 and the deployment mechanism 2 by operating the remote control terminal, then the feeding pump 243 is connected with different additive delivery devices, at this time the feeding pump 243 will deliver the additive to each storage tank 242 for storage, when the additive needs to be deployed on site, the feeding pump 243 on the corresponding storage tank 242 is started, the additive in the storage tank 242 will enter the trapezoidal box 241, and after the required amount of additive is loaded in the trapezoidal box 241, the additive will flow into the assembled top frame 222 through the mixing pipe 231, when the additive flows through the hole spiral plate rotating rod 233, it will drive the hole spiral plate rotating rod 233 to rotate, the hole spiral plate rotating rod 233 will mix and stir the additive when rotating along the mixing pipe 231 with the limiting rod 232, then the additive will flow into the drainage arc plate 221 for temporary storage, after contacting and mixing with the raw material, it is delivered to the spinning machine body 1 through the positioning plate 212, then the spinning machine body 1 will process the raw material through the self-contained processing structure for electrospinning, at this time the self-contained detection equipment in the spinning machine body 1 will detect the spinning for multiple detections until the detection is completed.
[0036] Embodiment 2: Reference Figures 7-11 A portable melt electrospinning test device with intelligent feeding function, comprising a deployment mechanism 2 and a processing mechanism 3, the processing mechanism 3 is arranged inside the deployment mechanism 2, the processing mechanism 3 comprises a dehumidification assembly 31, a recovery assembly 32, a storage assembly 33, a guide assembly 34 and a conveying assembly 35, the dehumidification assembly 31 is arranged at the top inside the conveying assembly 22, the recovery assembly 32 is arranged at the front side of the conveying assembly 22, the storage assembly 33 is arranged at the bottom of the recovery assembly 32, the guide assembly 34 is arranged inside the storage assembly 33, and the conveying assembly 35 is arranged inside the guide assembly 34, by arranging the processing mechanism 3, the dehumidification assembly 31 can cooperate with the recovery assembly 32, the storage assembly 33, the guide assembly 34 and the conveying assembly 35, the spinning raw material can be delivered to the conveying assembly 35 by connecting the recovery assembly 32 with the spinning raw material delivery equipment, the air heated by the dehumidification assembly 31 can be delivered to the guide assembly 34 to provide power for the rotation of the guide assembly 34, the guide assembly 34 can drive the conveying assembly 35 to deliver the raw material to the deployment mechanism 2 when rotating, and can remove the impurities in the raw material by centrifugal force, and can also exhaust the moisture with hot air, the recovery assembly 32 can pump the moisture and impurities to the storage assembly 33 for storage, the storage assembly 33 can store the impurities and moisture, and can also sterilize the air with negative ions, improving the efficiency of delivering the processed raw material to the test device immediately.
[0037] AsFigure 8 As shown in the figure, the dehumidifying assembly 31 includes a flow fan 311, an electric heater 312 and a heat conducting coil 313, the flow fan 311 is fixedly connected to the front side of the assembly top frame 222, the electric heater 312 is fixedly connected to the front side of the right side of the flow fan 311, and the heat conducting coil 313 is fixedly connected to the output end of the right side of the electric heater 312. The top of the heat conducting coil 313 is close to the output end of the bottom of the flow fan 311. By setting the dehumidifying assembly 31, the flow fan 311 can be combined with the electric heater 312 and the heat conducting coil 313. The flow fan 311 can blow the external air to the heat conducting coil 313, and then send the air flowing through the heat conducting coil 313 to the conveying assembly 35. By heating the heat conducting coil 313 by the electric heater 312, the air flowing through can be heated to dehumidify the raw materials in the conveying assembly 35.
[0038] As shown in the figure, Figure 9 The recycling assembly 32 includes a connecting plate 321, a material pump 322 and an air fan 323. The connecting plate 321 is connected to the input end of the right side of the front side of the conveying pipe 223, and the rear side of the connecting plate 321 is fixedly connected to the bottom of the assembly top frame 222. The material pump 322 is connected to the right side of the connecting plate 321, and the air fan 323 is fixedly connected to the bottom of the connecting plate 321. By setting the recycling assembly 32, the connecting plate 321 can be combined with the material pump 322 and the air fan 323. By limiting the material pump 322 and the air fan 323 through the connecting plate 321, the material pump 322 can pump the spinning raw materials into the conveying assembly 35, thereby providing raw materials for the conveying assembly 35. The air fan 323 can exhaust the air in the conveying assembly 35, thereby transporting the impurities and moisture in the separation to the storage assembly 33 for recycling.
[0039] As shown in the figure, Figure 10 The storage assembly 33 includes an assembly pipe 331, a filter bag 332 and a negative ion generator 333. The assembly pipe 331 is connected to the output end of the bottom of the air fan 323, the filter bag 332 is fixedly connected to the bottom of the assembly pipe 331, and the negative ion generator 333 is connected to the bottom of the filter bag 332. By setting the storage assembly 33, the assembly pipe 331 can be combined with the filter bag 332 and the negative ion generator 333. By temporarily fixing the filter bag 332 and the negative ion generator 333 on the bottom of the air fan 323 through the assembly pipe 331, the impurities and moisture in the air transported by the air fan 323 can be guided into the filter bag 332. The filter bag 332 can intercept the impurities and moisture in the air, and the negative ion generator 333 can transport negative ions into the filter bag 332, thereby achieving the effect of sterilization and disinfection through negative ions. In addition, the filter bag 332 can be replaced by disassembling and assembling the assembly pipe 331.
[0040] As shown in the figure, Figure 11As shown, the guide assembly 34 includes a positioning rod 341, a guide ring 342, and a guide fan blade 343. The positioning rod 341 is rotatably connected to both sides of the inner side of the connecting plate 321. The guide ring 342 is fixedly connected to both sides of the inner side of the positioning rod 341. The guide fan blade 343 is fixedly connected to the inner side of the guide ring 342. By setting the guide assembly 34, the positioning rod 341 can cooperate with the guide ring 342 and the guide fan blade 343. The positioning rod 341 limits the guide ring 342. When the guide fan blade 343 is pushed by the downward flowing air, it can drive the guide ring 342 to rotate along the positioning rod 341, thereby achieving the effect of driving the conveying assembly 35 to rotate and providing the centrifugal force required for impurity removal for the conveying assembly 35.
[0041] like Figure 11 As shown, the conveying assembly 35 includes an intercepting mesh tube 351, a guide rod 352, and a spiral conveying blade 353. The intercepting mesh tube 351 is fixedly connected to the inner side of the guide ring 342, and the guide rod 352 is fixedly connected to both sides of the inner side of the positioning rod 341. The spiral conveying blade 353 is welded to the surface of the guide rod 352, and the surface of the spiral conveying blade 353 contacts the inner side of the intercepting mesh tube 351. By setting the conveying assembly 35, the intercepting mesh tube 351 can cooperate with the guide rod 352 and the spiral conveying blade 353 to intercept the raw material. When the intercepting mesh tube 351 rotates with the guide assembly 34, driving the guide rod 352 and the spiral conveying blade 353, impurities in the raw material are moved out from the holes of the intercepting mesh tube 351 by centrifugal force and intercepted by its own holes. The spiral conveying blade 353 can gradually convey the raw material from the pump 322 to the conveying pipe 223 as the guide rod 352 rotates, achieving the effect of removing impurities from the raw material.
[0042] Brief description of using process: first, the processing mechanism 3 is powered on and started after connecting the remote control terminal, then the user operates the remote control terminal to control the processing mechanism 3, then the material pump 322 is connected to the raw material conveying device, the material pump 322 will pump the raw material into the interception net pipe 351, then the air flow fan 311 will blow the air outside to the heating coil 313, the electric heater 312 will heat the heating coil 313 at this time, the air will be heated when passing through the heating coil 313, then the air will push the guide fan blade 343 to rotate when passing through the guide fan blade 343, the guide fan blade 343 will drive the guide ring 342 to rotate along the positioning rod 341, at the same time, it will drive the interception net pipe 351 and the guide rotating rod 352 to rotate, the spiral conveying blade 353 will rotate with the guide rod, and at the same time, it will convey the raw material to the adjusting mechanism 2, at the same time, due to the centrifugal force generated by the rotation of the interception net pipe 351, the impurities in the raw material can be removed from the interception net pipe 351, and the hot air can take out the moisture in the raw material, at this time, the air suction fan 323 will pump the air in the interception net pipe 351 to the assembled pipe 331, the impurities and moisture in the air will enter the filter bag 332 with the air suction fan 323, and be intercepted by the filter bag 332, the negative ion generator 333 will release negative ions in the filter bag 332, so as to disinfect and sterilize the air in the filter bag 332, until the interception net pipe 351 conveys the required amount of raw material to the adjusting mechanism 2.
[0043] The specific embodiment is only an explanation of the application, not a limitation of the application, and those skilled in the art can make modifications to the embodiment without creative contribution according to the needs after reading the specification, but as long as it is within the scope of the claims of the application, it is protected by the patent law.
Claims
1. A portable melt electrospinning test device with intelligent feeding function, comprising a spinning machine body (1), a matching mechanism (2) and a processing mechanism (3), characterized in that: The deployment mechanism (2) is arranged on the front side of the spinning machine body (1), and the processing mechanism (3) is arranged on the inner side of the deployment mechanism (2). The deployment mechanism (2) comprises a concentration assembly (21), a conveying assembly (22), a mixing assembly (23) and an adjusting assembly (24). The concentration assembly (21) is arranged on the front side of the spinning machine body (1). The conveying assembly (22) is arranged on the front side of the concentration assembly (21). The mixing assembly (23) is arranged on the top of the conveying assembly (22). The adjusting assembly (24) is arranged on the top of the mixing assembly (23). The processing mechanism (3) comprises a dehumidification assembly (31), a recovery assembly (32), a storage assembly (33), a guiding assembly (34) and a conveying assembly (35). The dehumidification assembly (31) is arranged on the top of the inner side of the conveying assembly (22). The recovery assembly (32) is arranged on the front side of the conveying assembly (22). The storage assembly (33) is arranged on the bottom of the recovery assembly (32). The guiding assembly (34) is arranged on the inner side of the storage assembly (33). The conveying assembly (35) is arranged on the inner side of the guiding assembly (34). 2.The portable melt electrospinning test device with intelligent feeding function according to claim 1, characterized in that: The concentration assembly (21) comprises a positioning frame (211), a positioning plate (212) and a combination frame (213). The positioning frame (211) is fixedly connected to the input end of the front side of the melt electrospinning machine body (1). The positioning plate (212) is fixedly connected to the top of the positioning frame (211). The combination frame (213) is fixedly connected to the top of the positioning plate (212). The rear side of the positioning plate (212) is fixedly connected to the front side of the melt electrospinning machine body (1). 3.The portable melt electrospinning test device with intelligent feeding function according to claim 2, characterized in that: The conveying assembly (22) comprises a drainage arc plate (221), an assembled top frame (222) and a conveying pipe (223). The drainage arc plate (221) is fixedly connected to the front side of the positioning frame (211). The assembled top frame (222) is clamped to the top of the combination frame (213). The conveying pipe (223) is fixedly connected to the left side of the combination frame (213). 4.The portable melt electrospinning test device with intelligent feeding function according to claim 3, characterized in that: The mixing assembly (23) comprises a mixing pipe (231), a limiting rod (232) and a hole-spiral plate rotating rod (233). The mixing pipe (231) is communicated to the top of the assembled top frame (222). The limiting rod (232) is fixedly connected to the top of the inner side and the bottom of the inner side of the mixing pipe (231). The hole-spiral plate rotating rod (233) is rotatably connected to the inner side of the limiting rod (232). 5.The portable melt electrospinning test device with intelligent feeding function according to claim 4, characterized in that: The adjusting assembly (24) comprises a trapezoidal box (241), a storage tank (242) and a feeding pump (243). The trapezoidal box (241) is communicated to the top of the mixing pipe (231). Three storage tanks (242) are respectively communicated to the two sides and the top of the trapezoidal box (241). The feeding pump (243) is communicated to the top of the storage tank (242). 6.The portable melt electrospinning test device with intelligent feeding function according to claim 3, characterized in that: The dehumidification assembly (31) comprises a flow sending fan (311), an electric heater (312) and a heat conducting coil (313), the flow sending fan (311) is fixedly connected to the front side of the assembly top frame (222), the electric heater (312) is fixedly connected to the front side of the right side of the flow sending fan (311), the heat conducting coil (313) is fixedly connected to the output end of the right side of the electric heater (312), and the top of the heat conducting coil (313) is close to the output end of the bottom of the flow sending fan (311). 7.The portable melt electrospinning device with intelligent feeding function according to claim 6, characterized in that: The recycling assembly (32) comprises a connecting plate (321), a material pumping pump (322) and an air pumping fan (323), the connecting plate (321) is communicated to the input end of the right side of the front side of the conveying pipe (223), the rear side of the connecting plate (321) is fixedly connected to the bottom of the assembly top frame (222), the material pumping pump (322) is communicated to the right side of the connecting plate (321), and the air pumping fan (323) is fixedly connected to the bottom of the connecting plate (321). 8.The portable melt electrospinning test device with intelligent feeding function according to claim 7, characterized in that: The storage assembly (33) comprises an assembly pipe (331), a filter bag (332) and a negative ion generator (333), the assembly pipe (331) is clamped to the output end of the bottom of the air pumping fan (323), the filter bag (332) is fixedly connected to the bottom of the assembly pipe (331), and the negative ion generator (333) is clamped to the bottom of the filter bag (332). 9.The portable melt electrospinning test device with intelligent feeding function according to claim 7, characterized in that: The guiding assembly (34) comprises a positioning rod (341), a guide ring (342) and a flow guiding fan blade (343), the positioning rod (341) is rotatably connected to the two sides of the inner side of the connecting plate (321), the guide ring (342) is fixedly connected to the two sides of the inner side of the positioning rod (341), and the flow guiding fan blade (343) is fixedly connected to the inner side of the guide ring (342). 10.The portable melt electrospinning device with intelligent feeding function according to claim 9, characterized in that: The conveying assembly (35) comprises an intercepting mesh pipe (351), a guide rotating rod (352) and a spiral conveying blade (353), the intercepting mesh pipe (351) is fixedly connected to the inner side of the guide ring (342), the guide rotating rod (352) is fixedly connected to the two sides of the inner side of the positioning rod (341), the spiral conveying blade (353) is welded to the surface of the guide rotating rod (352), and the surface of the spiral conveying blade (353) is in contact with the inner side of the intercepting mesh pipe (351).
Citation Information
Patent Citations
A melt electrostatic spinning device and method thereof
CN110629298B