Silver bright material processing and transporting device
By setting drag-reducing units and displacement units on both sides of the travel path of the silver bright material processing and transportation device, and using porous elastomers to guide the drag-reducing agent, the problem of device wear caused by large sliding resistance was solved, and a low-cost and high-efficiency transportation effect was achieved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- NANJING IRON & STEEL GRP METALLURGICAL CASTING CO LTD
- Filing Date
- 2025-08-15
- Publication Date
- 2026-05-29
AI Technical Summary
The existing silver bright material processing and transportation device has high sliding resistance between the sliding seat and the transportation track when transferring the processed silver bright material, which leads to increased device wear and maintenance costs.
The drag-reducing unit is provided on both sides of the travel path of the transport device. It includes a receiving frame, a rotating frame, a frustum, a flat rope and a porous elastomer. The drag-reducing agent is guided through the porous elastomer to reduce the sliding resistance. The drag-reducing agent leakage and foreign matter accumulation are prevented through the displacement unit and dustproof components.
It effectively reduces the sliding resistance between the sliding seat and the travel path, lowers the maintenance cost of the device, improves the smoothness and stability of transportation, and avoids the leakage of drag-reducing agent and the accumulation of foreign matter.
Smart Images

Figure CN120817388B_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of transportation device technology, and specifically relates to a transportation device for processing silver bright material. Background Technology
[0002] Silver-bright steel is round steel obtained by peeling, grinding, and polishing raw materials. During its processing, appropriate transportation equipment is required to transport the processed silver-bright steel to the designated location.
[0003] Existing silver bright material processing and transportation devices place the transport frame on a sliding seat when transferring the processed silver bright material, and then transfer the processed silver bright material to the designated location via the transport path. During this stage, it is inconvenient to reduce the sliding resistance between the sliding seat and the transport path, which can easily lead to device wear and tear and increase maintenance costs. Summary of the Invention
[0004] This invention provides a silver bright material processing and transportation device, which aims to solve the problem that existing silver bright material processing and transportation devices, when transferring processed silver bright materials, place the transport frame on a sliding seat and then transfer the processed silver bright materials to a designated location via a transport path. During this stage, it is inconvenient to reduce the sliding resistance between the sliding seat and the transport path, which easily leads to device wear and tear and increases maintenance costs.
[0005] This invention provides a silver bright material processing and transportation device, including a travel path, drag reduction units on both sides of the travel path, a conveying component inside the drag reduction unit, a displacement unit outside the travel path, a dustproof component on the displacement unit, a receiving frame including a receiving frame, a rotating frame one and a rotating frame two fixedly connected to the inner wall of the receiving frame, the rotating frame one and the rotating frame two being connected to each other, and the displacement unit being mounted on the side wall of the travel path.
[0006] Preferably, the drag reduction unit includes a rotating frame one, a frustum one, a flat rope, a rotating frame two, a frustum two, a clearance opening, a fitting frame, a fitting groove, a stop block, a porous elastic body three, and a porous elastic body one. The frustum one is screwed onto the rotating frame one, and the frustum two is screwed onto the rotating frame two. The frustum one and the frustum two are located on both sides inside the receiving frame.
[0007] The flat rope has a pre-reserved clearance opening, the fitting frame is fixedly connected to the clearance opening, the porous elastic body two is fixedly connected to the inner wall of the fitting frame, the upper part of the porous elastic body two has a pre-reserved fitting groove, the porous elastic body three slides in the fitting groove, the blocking block slides in the fitting frame, the porous elastic body three is fixedly connected to the inner wall of the blocking block, the two sides of the porous elastic body three extend outside the blocking block, and the porous elastic body one is located on the upper part of one side of the porous elastic body three.
[0008] Preferably, the displacement unit includes a protective cover, a pair of connecting blocks, a first bearing block, a configuration frame, a pair of ring tracks, multiple spheres, a guide channel, a receiving box, an injection hole, a second sealing cover, and multiple fourth porous elastomers. The upper part of the protective cover is provided with a support block, and a transport frame is placed on the upper part of the support block. An insertion hole is reserved on the bottom wall of the transport frame. Electric cylinders are provided on both side walls of the support block. A vertical block is provided at the output end of the electric cylinder. An insertion strip is fixedly connected to the vertical block and extends into the insertion hole. A pair of connecting blocks are provided on both sides of the inner wall of the protective cover. The first bearing block is provided at the lower part of the protective cover. Multiple configuration frames are provided at the lower part of the inner wall of the protective cover. The configuration frame extends outside the protective cover and is provided between the first bearing block and the inner wall of the protective cover. The configuration frame is slidably connected to the travel track.
[0009] The configuration frame has a pair of channels, which are arranged longitudinally within the frame and connected to the outside of the frame. Multiple spheres are located within the channels. A guide channel is provided at the bottom of the frame, located on one side of each channel and connected to the corresponding channel. A receiving box is located on the inner wall of the protective cover. An injection hole is fixed to one side of the receiving box. Multiple porous elastomers are fixed to the bottom of the receiving box, with the upper part of each elastomer extending into the receiving box and the lower part extending into the bottom of the first support block. A second sealing cover is located on one side of the injection hole.
[0010] Preferably, the upper part of the protective cover has multiple configuration openings II, the upper part of the connecting block has multiple spiral grooves II, the configuration openings II correspond to the spiral grooves II, both sides of the connecting block have spiral grooves I, the configuration frame is connected to the bearing block I, the sphere is disposed on the side wall of the travel path, and the protective cover is slidably connected to the travel path via the configuration frame and the sphere.
[0011] Preferably, the blocking block is fixed to the lower part of the inner wall of the guide channel, the lower part of the blocking block extends outside the guide channel, the upper part of the porous elastomer three and the porous elastomer one are disposed inside the guide channel, and the porous elastomer one is disposed between the porous elastomer three and the plurality of spheres.
[0012] Preferably, the delivery assembly includes a sealing frame, a liquid pump, a first liquid guide channel, a ring cover, and a second liquid guide channel. The sealing frame is fixedly connected to one side of the fitting frame and is disposed inside the receiving frame. The liquid pump is fixedly connected to the inner wall of the sealing frame, and both sides of the liquid pump extend outside the two sides of the sealing frame. The first liquid guide channel is fixedly connected to the inlet of the liquid pump, and one side of the first liquid guide channel extends to the lower part of the inner wall of the receiving frame. The ring cover is fixedly connected to the outlet of the liquid pump and extends into the second porous elastomer. Multiple second liquid guide channels are fixedly connected to the ring cover. Multiple fitting cavities are reserved in the second porous elastomer. The second liquid guide channel is fixedly connected to the fitting cavity. A partition block is fixedly connected to one side of the upper part of the fitting frame.
[0013] Preferably, the upper part of the receiving frame is reserved with a limiting channel, the fitting frame is slidably connected to the limiting channel, a plurality of elastic barrier bands are fixedly connected to the side wall of the flat rope, a plurality of elastic barrier bands are fixedly connected to the upper part of the inner wall of the receiving frame, the elastic barrier bands are provided on both sides of the limiting channel, and the elastic barrier bands are slidably connected to one side of the elastic barrier bands.
[0014] Preferably, a plurality of support frames are fixedly connected to the upper part of the receiving frame. The support frames are disposed on both sides of the limiting channel. A support block three is fixedly connected to the inner wall of the support frame. A connecting block is screwed to one side of the support block three. One side of the connecting block extends outside the support frame. A barrier module is fixedly connected to the part of the connecting block that extends outside the support frame. The barrier module is disposed on the flat rope and the upper part of the receiving frame. An elastic barrier band two is disposed on both sides of the barrier module. An elastic element one is fixedly connected to the lower part of the inner wall of the support frame. One side of the elastic element one is fixedly connected to the connecting block.
[0015] Preferably, the upper part of the travel path is provided with a plurality of configuration openings, and the upper part of the inner wall of each configuration opening is provided with a sealing cover.
[0016] Preferably, the dustproof component includes a support block one, a linkage block one, a bearing block two, a support block two, and multiple elastic elements two. The support block one is disposed on both sides of the protective cover and fixedly connected to one side of the connecting block. The linkage block one is fixedly connected to the support block one. The bearing block two is fixedly connected to the linkage block one. The support block two is fixedly connected to the bearing block two. The linkage block two is fixedly connected to the support block two. The linkage block two is disposed at the upper part of the travel path. The multiple elastic elements two are fixedly connected between the support block two and the linkage block two.
[0017] The beneficial effects of this invention are:
[0018] 1. This invention places the receiving frame on the travel path, increasing the reserve amount of drag-reducing agent. The drag-reducing agent within the receiving frame is guided upwards into the sphere via porous elastomers two, three, and one, reducing the sliding resistance between the sliding seat and the travel path during the processing and transportation of the bright silver material. The drag-reducing unit guides the drag-reducing agent via porous elastomer two. When configuring the protective cover and the receiving frame, the receiving frame is fixed to both sides of the travel path. The displacement unit is slidably configured on the travel path, and the lower blocking block of the displacement unit is slidably configured in the notch at the upper part of the fitting frame. Here, the lower part of porous elastomer three extends into the fitting groove at the upper part of porous elastomer two, then contacts porous elastomer two, and then the spacer is configured... On one side of the fitting frame, the opening at the top of the fitting frame is sealed, sealing the connection between the stop block and the fitting frame. The drag-reducing agent in the receiving frame is sequentially transported through porous elastomer two, porous elastomer three, and porous elastomer one to porous elastomer one. The drag-reducing agent is then introduced into the side wall of the sphere and the channel through porous elastomer one. As the sphere rotates in the channel, the drag-reducing agent is introduced into the travel path and the space between the mounting frame. During the stage of the protective cover shifting, the stop block and the fitting frame drive the flat rope to shift on truncated cone one and truncated cone two. The mounting frame is sealed by the configured flat rope, elastic barrier band one, and elastic barrier band two, so as to prevent the leakage of the drag-reducing agent in the receiving frame without restricting the shift of porous elastomer two.
[0019] 2. In this invention, a support block is inserted into the protective cover and positioned at the top of the mounting frame. The mounting frame and the support block are fixedly connected. A connecting block is inserted into the top of the support block. A receiving box is positioned between a pair of connecting blocks. Then, a support block is positioned on both sides of the connecting block to seal the inner cavity of the protective cover, thus realizing the configuration of the displacement unit. A drag-reducing agent is injected into the receiving box through the injection hole. The drag-reducing agent is guided to the upper part of the travel path through the porous elastomer four at the bottom of the receiving box. The installation of the transport frame facilitates the transport of the silver bright material. The insert is inserted into the insertion hole, which facilitates the clamping of transport frames of different specifications and improves the stability of the transport of the silver bright material.
[0020] 3. The conveying component of the present invention guides the drag-reducing agent to the upper part of the porous elastomer II via the second liquid guide channel. The configured liquid pump guides the drag-reducing agent in the lower part of the receiving frame to the upper part of the porous elastomer II via the second liquid guide channel, promoting the uniform distribution of the drag-reducing agent. The two sides of the upper limit channel of the receiving frame are sealed by the first and second elastic barrier bands. The connecting block is rotated downward by the first elastic element. The barrier module is pressed against the two sides of the upper limit channel of the receiving frame. When the displacement unit is running, the first linkage block is displaced at the same time, pushing the drag-reducing agent and impurities in front of the displacement unit to the side to prevent foreign objects from entering the sliding seat. The second linkage block on the first linkage block has a three-sided wedge structure so as to squeeze foreign objects and dust to both ends, preventing the accumulation of foreign objects on the travel path and facilitating the smooth progress of silver bright material processing and transportation.
[0021] Other features and advantages of the invention will be set forth in the following description, and will be apparent in part from the description, or may be learned by practicing the invention. The objects and other advantages of the invention may be realized and obtained by means of the structures particularly pointed out in the description and the drawings. Attached Figure Description
[0022] The accompanying drawings are provided to further illustrate the invention and form part of the specification. They are used together with the embodiments of the invention to explain the invention and do not constitute a limitation thereof. In the drawings:
[0023] Figure 1 This is an overall structural diagram of the present invention;
[0024] Figure 2 This is a structural diagram of the travel path in this invention;
[0025] Figure 3 This is a structural diagram of the housing frame in this invention;
[0026] Figure 4 This is a structural diagram of the second truncated cone in this invention;
[0027] Figure 5 This is a structural diagram of the support frame in this invention;
[0028] Figure 6 This is a structural diagram of the interlocking frame in this invention;
[0029] Figure 7 This is a structural diagram of the sealing frame in this invention;
[0030] Figure 8 This is a structural diagram of the protective cover in this invention;
[0031] Figure 9 This is a structural diagram of the housing box in this invention;
[0032] Figure 10 This is a structural diagram of the second support block in this invention;
[0033] Figure 11 For the present invention Figure 3 Structural diagram at point M;
[0034] Figure 12 For the present invention Figure 8 The structure diagram at point N.
[0035] Reference numerals: 1. Receiving frame; 10. Rotating frame one; 11. Frustum one; 12. Flat rope; 13. Rotating frame two; 14. Frustum two; 15. Elastic barrier belt one; 16. Elastic barrier belt two; 17. Fitting frame; 18. Porous elastomer two; 19. Spacer block; 110. Fitting groove; 2. Protective cover; 20. Configuration port two; 21. Connecting block; 22. Spiral groove two; 23. Spiral groove one; 24. Bearing block one; 25. Configuration frame; 26. Ring track; 27. Sphere; 28. Guide track; 29. Block; 210. Porous elastomer three; 211. Porous elastomer one; 3 1. Receiving box; 30. Injection hole; 31. Enclosure II; 32. Porous elastomer IV; 4. Support block I; 40. Linkage block I; 41. Bearing block II; 42. Support block II; 43. Linkage block II; 44. Elastic element II; 5. Sealing frame; 50. Liquid pump; 51. Liquid guide channel I; 52. Ring cover; 53. Liquid guide channel II; 6. Bearing frame; 60. Bearing block III; 61. Connecting block; 62. Barrier module; 63. Elastic element I; 7. Traveling path; 70. Configuration port I; 71. Enclosure I; 8. Support block; 80. Transport frame; 81. Electric cylinder; 82. Vertical block; 83. Insert strip. Detailed Implementation
[0036] To make the objectives, technical solutions, and advantages of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. The same reference numerals in the drawings represent the same components. It should be noted that the described embodiments are only some, not all, of the embodiments of the present invention. All other embodiments obtained by those skilled in the art based on the described embodiments of the present invention without creative effort are within the scope of protection of the present invention.
[0037] Reference Figures 1-12 This invention provides a silver bright material processing and transportation device, including a travel channel 7, on which a drag reduction unit is provided. A receiving frame 1 is placed on the travel channel 7, increasing the reserve amount of drag reduction agent. The drag reduction agent in the receiving frame 1 is guided upward to the sphere 27 through porous elastomer 2 18, porous elastomer 3 210 and porous elastomer 1 211, so as to reduce the sliding resistance between the sliding seat and the travel channel 7 during the silver bright material processing and transportation stage. The drag reduction unit guides the drag reduction agent through porous elastomer 2 18.
[0038] The drag reduction unit includes a receiving frame 1, a rotating frame 10, a frustum 11, a flat rope 12, a rotating frame 2 13, a frustum 2 14, a clearance opening, a fitting frame 17, a fitting groove 110, a stop block 29, a porous elastic body 3 210, and a porous elastic body 1 211. The receiving frame 1 is fixed to both sides of the travel path 7. The rotating frame 10 and the rotating frame 2 13 are fixed to the inner wall of the receiving frame 1. The frustum 11 is screwed onto the rotating frame 10, and the frustum 2 14 is screwed onto the rotating frame 2 13. The frustum 11 and the frustum 2 14 are located on both sides inside the receiving frame 1. The flat rope 12 is located on both sides of the frustum 11 and the frustum 2 14. A clearance opening is reserved on the flat rope 12. The fitting frame 17 is fixed to the clearance opening. The porous elastic body 2 18 is fixed to the inner wall of the fitting frame 17.
[0039] The upper part of the porous elastomer 210 has a pre-reserved fitting groove 110. The porous elastomer 3210 is slidably connected in the fitting groove 110. The block 29 is slidably connected in the fitting frame 17. The porous elastomer 3210 is fixed to the inner wall of the block 29. Both sides of the porous elastomer 3210 extend out of the block 29. The porous elastomer 1211 is located on the upper part of one side of the porous elastomer 3210. The block 29 is fixed to the lower part of the inner wall of the guide channel 28. The lower part of the block 29 extends out of the guide channel 28. The upper part of the porous elastomer 3210 and the porous elastomer 1211 are located in the guide channel 28. The porous elastomer 1211 is located between the porous elastomer 3210 and the multiple spheres 27.
[0040] When configuring the protective cover 2 and the receiving frame 1, the receiving frame 1 is fixed to both sides of the travel path 7. The displacement unit is slidably positioned on the travel path 7, and the lower blocking block 29 of the displacement unit is slidably positioned in the notch at the upper part of the fitting frame 17. Here, the lower part of the porous elastomer 3 210 extends into the fitting groove 110 at the upper part of the porous elastomer 2 18, and then contacts the porous elastomer 2 18. Then, the spacer 19 is positioned on one side of the fitting frame 17, sealing the notch at the upper part of the fitting frame 17 and sealing the contact position between the blocking block 29 and the fitting frame 17. The drag-reducing agent in the receiving frame 1 passes sequentially through the porous elastomer 2 18, the porous elastomer 3 210, and the porous elastomer 17. The drag-reducing agent is guided into the porous elastomer 211. The porous elastomer 211 guides the drag-reducing agent into the side wall of the sphere 27 and the channel 26. When the sphere 27 rotates in the channel 26, the drag-reducing agent is guided between the travel channel 7 and the mounting frame 25. During the displacement of the protective cover 2, the block 29 and the fitting frame 17 drive the flat rope 12 to shift on the frustum 11 and frustum 24. The mounting flat rope 12, elastic barrier band 15 and elastic barrier band 26 seal the receiving frame 1, so as to prevent the drag-reducing agent in the receiving frame 1 from leaking without restricting the displacement of the porous elastomer 218.
[0041] The size of the container 1 can be set according to the specifications of the travel channel 7. One side of the container 1 is provided with a liquid guide channel 3, and one side of the liquid guide channel 3 is connected to the sealing cover.
[0042] A displacement unit is provided outside the travel path 7. The displacement unit includes a protective cover 2, a pair of connecting blocks 21, a first bearing block 24, a mounting frame 25, a pair of circular tracks 26, multiple spheres 27, a guide channel 28, a receiving box 3, an injection hole 30, a second sealing cover 31, and multiple fourth porous elastomers 32. A support block 8 is provided on the upper part of the protective cover 2, and a transport frame 80 is placed on the upper part of the support block 8. An insertion hole is reserved on the bottom wall of the transport frame 80. Electric cylinders 81 are provided on the two side walls of the support block 8. A vertical block 82 is provided at the output end of the electric cylinder 81. An insertion strip 83 is fixedly connected to the vertical block 82 and extends into the insertion hole. Connecting blocks 21 are located on both sides of the inner wall of the protective cover 2. Bearing block 1 24 is located at the lower part of the protective cover 2. Multiple mounting brackets 25 are located at the lower part of the inner wall of the protective cover 2. The mounting brackets 25 extend outside the protective cover 2. The mounting brackets 25 are located between the bearing block 1 24 and the inner wall of the protective cover 2. The mounting brackets 25 are slidably connected to the travel path 7. A pair of circular channels 26 are reserved in the mounting brackets 25. The pair of circular channels 26 are arranged longitudinally in the mounting brackets 25. The circular channels 26 are connected to the outside of the mounting brackets 25. Multiple spheres 27 are located inside the circular channels 26. A guide channel 28 is reserved at the lower part of the mounting brackets 25. The guide channel 28 is located on one side of the circular channel 26.
[0043] The guide channel 28 is connected to the corresponding ring channel 26. The receiving box 3 is located on the inner wall of the protective cover 2. The injection hole 30 is fixed to one side of the receiving box 3. Multiple porous elastomers 32 are fixed to the lower part of the receiving box 3. The upper part of the porous elastomers 32 extends into the receiving box 3, and the lower part of the porous elastomers 32 extends to the lower part of the bearing block 24. The sealing cover 31 is located on one side of the injection hole 30. Multiple configuration ports 20 are reserved on the upper part of the protective cover 2. Multiple screws are reserved on the upper part of the connecting block 21. Spiral groove 22, configuration port 20 corresponding to spiral groove 22, spiral groove 23 reserved on both sides of connecting block 21, configuration frame 25 connected to bearing block 24, ball 27 set on the side wall of travel channel 7, protective cover 2 slidably connected to travel channel 7 via configuration frame 25 and ball 27, installation of transport frame 80 facilitates the carrying and transport of silver bright material, insert strip 83 extends into the insertion hole, which is conducive to clamping transport frames 80 of different specifications, and improves the stability of silver bright material transport.
[0044] The mounting bracket 25 extends into the lower part of the inner wall of the protective cover 2. The bearing block 24 is extended into the protective cover 2 and positioned above the mounting bracket 25. The mounting bracket 25 and the bearing block 24 are fixed together. The connecting block 21 is extended into the upper part of the bearing block 24. The receiving box 3 is positioned between a pair of connecting blocks 21. Then, the support block 4 is positioned on both sides of the connecting block 21 to seal the inner cavity of the protective cover 2, thus realizing the configuration of the displacement unit. One side of the support block 4 and the linkage block 40 has a pre-reserved connection port. The injection hole 30 on the receiving box 3 extends out of the connection port and out of the protective cover 2.
[0045] A drag-reducing agent is injected into the receiving box 3 through the injection hole 30. The drag-reducing agent is then transported to the upper part of the travel channel 7 via the porous elastomer 32 at the bottom of the receiving box 3.
[0046] The drag reduction unit is equipped with a delivery component. The delivery component guides the drag reduction agent to the upper part of the porous elastomer 18 via the second liquid guide channel 53. The delivery component includes a sealing frame 5, a liquid pump 50, a first liquid guide channel 51, a ring cover 52, and a second liquid guide channel 53. The sealing frame 5 is fixed to one side of the fitting frame 17 and is located in the receiving frame 1. The liquid pump 50 is fixed to the inner wall of the sealing frame 5 and extends to the outside of the two sides of the sealing frame 5. The first liquid guide channel 51 is fixed to the inlet of the liquid pump 50 and one side of the first liquid guide channel 51 extends to the lower part of the inner wall of the receiving frame 1. The ring cover 52 is fixed to the outlet of the liquid pump 50 and extends into the porous elastomer 18. Multiple second liquid guide channels 53 are fixed to the ring cover 52.
[0047] The porous elastomer 18 has multiple pre-reserved fitting cavities. The liquid guide channel 53 is fixedly connected to the fitting cavity. A partition block 19 is fixedly connected to one side of the upper part of the fitting frame 17. A limiting channel is pre-reserved in the upper part of the receiving frame 1. The fitting frame 17 slides within the limiting channel. Multiple elastic barrier bands 15 are fixedly connected to the sidewall of the flat rope 12. Multiple elastic barrier bands 16 are fixedly connected to the upper part of the inner wall of the receiving frame 1. The elastic barrier bands 16 are located on both sides of the limiting channel. The elastic barrier bands 15 slide onto one side of the elastic barrier bands 16. Multiple support frames 6 are fixedly connected to the upper part of the receiving frame 1. The support frames 6 are located on both sides of the limiting channel. The inner wall of the support frames 6... A bearing block 3 60 is fixedly connected, and a connecting block 61 is screwed to one side of the bearing block 3 60. One side of the connecting block 61 extends outside the bearing frame 6. A barrier module 62 is fixedly connected to the part of the connecting block 61 that extends outside the bearing frame 6. The barrier module 62 is located on the upper part of the flat rope 12 and the receiving frame 1. An elastic barrier band 2 16 is located on both sides of the barrier module 62. An elastic element 1 63 is fixedly connected to the lower part of the inner wall of the bearing frame 6. One side of the elastic element 1 63 is fixedly connected to the connecting block 61. The drag-reducing agent at the lower part of the receiving frame 1 is guided to the upper part of the porous elastic body 2 18 through the liquid guide channel 2 53 via the configured liquid pump 50, so as to promote the uniform distribution of the drag-reducing agent.
[0048] The upper limit channel of the receiving frame 1 is sealed by the elastic barrier band 15 and the elastic barrier band 2 16. The connecting block 61 is rotated downward by the elastic element 1 63, and the barrier module 62 is pressed against the upper limit channel of the receiving frame 1.
[0049] The displacement unit is equipped with a dustproof component, which is descaled by the linkage block 43. Multiple configuration ports 70 are pre-reserved at the upper part of the travel channel 7. A sealing cover 71 is provided on the upper part of the inner wall of each configuration port 70. The dustproof component includes a support block 4, a linkage block 40, a bearing block 41, a support block 42, and multiple elastic elements 44. The support block 4 is located on both sides of the protective cover 2 and is fixedly connected to one side of the connecting block 21. The linkage block 40 is fixedly connected to the support block 4. The bearing block 41 is fixedly connected to the linkage block 40. The support block 42 is fixedly connected to the bearing block 41. The linkage block 43 is fixedly connected to the support block 44. Connected to support block 2 42, linkage block 2 43 is located on the upper part of travel channel 7, and multiple elastic elements 2 44 are fixed between support block 2 42 and linkage block 2 43. When the displacement unit is running, linkage block 1 40 displaces together, pushing the drag reducing agent and impurities in front of the displacement unit to the side to prevent foreign objects from entering the sliding seat. The sliding seat is electrically connected to the transport travel channel to transfer the processed silver bright material. Linkage block 2 43 on linkage block 1 40 has a three-sided wedge structure to squeeze foreign dust to both ends, prevent foreign objects from accumulating on the travel channel 7, and facilitate the smooth progress of silver bright material processing and transportation.
[0050] Linkage block 2 43 is made of elastomeric material.
[0051] The foregoing has shown and described the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of the invention. Various changes and modifications can be made to the invention without departing from its spirit and scope, and all such changes and modifications fall within the scope of the present invention as claimed. The scope of protection of this invention is defined by the appended claims and their equivalents.
Claims
1. A silver bright material processing and transportation device, comprising a travel path (7), characterized in that, The travel path (7) is provided with drag reduction units on both sides, and a conveying component is provided inside the drag reduction unit. The travel path (7) is provided with a displacement unit outside, and a dustproof component is provided on the displacement unit. The drag reduction unit includes a receiving frame (1). A rotating frame one (10) and a rotating frame two (13) are fixedly connected to the inner wall of the receiving frame (1). The rotating frame one (10) and the rotating frame two (13) are connected to each other. The displacement unit is provided on the side wall of the travel path (7) via a configuration frame (25). The drag reduction unit includes a rotating frame one (10), a frustum one (11), a flat rope (12), a rotating frame two (13), a frustum two (14), a clearance opening, a fitting frame (17), a fitting groove (110), a stop block (29), a porous elastomer three (210), and a porous elastomer one (211). The frustum one (11) is screwed onto the rotating frame one (10), and the frustum two (14) is screwed onto the rotating frame two (13). The frustum one (11) and the frustum two (14) are located on both sides inside the receiving frame (1). The flat rope (12) has a reserved clearance opening. The fitting frame (17) is fixedly connected to the reserved clearance opening. The porous elastic body two (18) is fixedly connected to the inner wall of the fitting frame (17). The upper part of the porous elastic body two (18) has a reserved fitting groove (110). The porous elastic body three (210) slides in the fitting groove (110). The block (29) slides in the fitting frame (17). The porous elastic body three (210) is fixedly connected to the inner wall of the block (29). The two sides of the porous elastic body three (210) extend outside the block (29). The porous elastic body one (211) is located on the upper part of one side of the porous elastic body three (210). The delivery assembly includes a sealing frame (5), a liquid pump (50), a first liquid guide channel (51), a ring cover (52), and a second liquid guide channel (53). The sealing frame (5) is fixed to one side of the fitting frame (17) and is located inside the receiving frame (1). The liquid pump (50) is fixed to the inner wall of the sealing frame (5) and extends to both sides of the sealing frame (5). The first liquid guide channel (51) is fixed to the inlet of the liquid pump (50). One side of the first liquid guide channel (51) extends to the lower part of the inner wall of the receiving frame (1). The ring cover (52) is fixed to the drain hole of the liquid pump (50). The ring cover (52) extends into the second porous elastomer (18). Multiple second liquid guide channels (53) are fixed to the ring cover (52). Multiple fitting cavities are reserved in the second porous elastomer (18). The second liquid guide channel (53) is fixed to the fitting cavity. A partition block (19) is fixed to one side of the upper part of the fitting frame (17).
2. The silver bright material processing and transportation device according to claim 1, characterized in that, The displacement unit includes a protective cover (2), a pair of connecting blocks (21), a first bearing block (24), a mounting frame (25), a pair of ring tracks (26), multiple spheres (27), a guide channel (28), a receiving box (3), an injection hole (30), a second sealing cover (31), and multiple fourth porous elastomers (32). The upper part of the protective cover (2) is provided with a support block (8), and a transport frame (80) is placed on the upper part of the support block (8). The bottom wall of the transport frame (80) has a reserved insertion hole. Electric cylinders (81) are provided on both sides of the support block (8). The output of the electric cylinders (81) A vertical block (82) is provided at the end, and an insert (83) is fixedly connected to the vertical block (82). The insert (83) extends into the insertion hole. A pair of connecting blocks (21) are provided on both sides of the inner wall of the protective cover (2). A first bearing block (24) is provided at the lower part of the protective cover (2). A plurality of configuration frames (25) are provided at the lower part of the inner wall of the protective cover (2). The configuration frames (25) extend outside the protective cover (2). The configuration frames (25) are provided between the first bearing block (24) and the inner wall of the protective cover (2). The configuration frames (25) slide on the travel path (7). The configuration frame (25) has a pair of channels (26) reserved inside, which are arranged longitudinally within the configuration frame (25) and are connected to the outside of the configuration frame (25). Multiple spheres (27) are disposed within the channels (26). A guide channel (28) is reserved at the lower part of the configuration frame (25) and is located on one side of the channels (26). The guide channel (28) is connected to the corresponding channel (26). When connected, the receiving box (3) is located on the inner wall of the protective cover (2), the injection hole (30) is fixed to one side of the receiving box (3), a plurality of porous elastomers (32) are fixed to the lower part of the receiving box (3), the upper part of the porous elastomers (32) extends into the receiving box (3), the lower part of the porous elastomers (32) extends to the lower part of the first bearing block (24), and the second sealing cover (31) is located on one side of the injection hole (30).
3. The silver bright material processing and transportation device according to claim 2, characterized in that, The upper part of the protective cover (2) is reserved with multiple configuration ports (20), the upper part of the connecting block (21) is reserved with multiple spiral grooves (22), the configuration ports (20) correspond to the spiral grooves (22), both sides of the connecting block (21) are reserved with spiral grooves (23), the configuration frame (25) is connected to the bearing block (24), the sphere (27) is provided on the side wall of the travel path (7), and the protective cover (2) slides on the travel path (7) via the configuration frame (25) and the sphere (27).
4. The silver bright material processing and transportation device according to claim 2, characterized in that, The block (29) is fixed to the lower part of the inner wall of the guide channel (28), the lower part of the block (29) extends outside the guide channel (28), the upper part of the porous elastomer three (210) and the porous elastomer one (211) are disposed inside the guide channel (28), and the porous elastomer one (211) is disposed between the porous elastomer three (210) and the plurality of spheres (27).
5. The silver bright material processing and transportation device according to claim 1, characterized in that, The upper part of the receiving frame (1) is reserved with a limiting channel. The fitting frame (17) is slidably connected to the limiting channel. Multiple elastic barrier bands (15) are fixed to the side wall of the flat rope (12). Multiple elastic barrier bands (16) are fixed to the upper part of the inner wall of the receiving frame (1). The elastic barrier bands (16) are located on both sides of the limiting channel. The elastic barrier bands (15) are slidably connected to one side of the elastic barrier bands (16).
6. The silver bright material processing and transportation device according to claim 5, characterized in that, The upper part of the receiving frame (1) is fixedly connected to a plurality of bearing frames (6). The bearing frames (6) are located on both sides of the limiting channel. The inner wall of the bearing frame (6) is fixedly connected to a bearing block three (60). One side of the bearing block three (60) is screwed to a connecting block (61). One side of the connecting block (61) extends out of the bearing frame (6). The part of the connecting block (61) extending out of the bearing frame (6) is fixedly connected to a barrier module (62). The barrier module (62) is located on the upper part of the flat rope (12) and the receiving frame (1). The elastic barrier band two (16) is located on both sides of the barrier module (62). The lower part of the inner wall of the bearing frame (6) is fixedly connected to an elastic element one (63). One side of the elastic element one (63) is fixedly connected to the connecting block (61).
7. The silver bright material processing and transportation device according to claim 1, characterized in that, The upper part of the travel path (7) is reserved with multiple configuration ports (70), and the upper part of the inner wall of the configuration port (70) is provided with a closed cover (71).
8. The silver bright material processing and transportation device according to claim 2, characterized in that, The dustproof assembly includes a support block 1 (4), a linkage block 1 (40), a bearing block 2 (41), a support block 2 (42), and multiple elastic elements 2 (44). The support block 1 (4) is located on both sides of the protective cover (2). The support block 1 (4) is fixed to one side of the connecting block (21). The linkage block 1 (40) is fixed to the support block 1 (4). The bearing block 2 (41) is fixed to the linkage block 1 (40). The support block 2 (42) is fixed to the bearing block 2 (41). The linkage block 2 (43) is fixed to the support block 2 (42). The linkage block 2 (43) is located on the upper part of the travel path (7). Multiple elastic elements 2 (44) are fixed between the support block 2 (42) and the linkage block 2 (43).