Polishing equipment for bathroom accessory machining

The polishing device for bathroom fixtures addresses uneven polishing and space inefficiencies by using a coordinated shaking and rotating mechanism to ensure uniform polishing and efficient material mixing, enhancing polishing quality and efficiency.

CN120307178APending Publication Date: 2025-07-15安徽路达铜业有限公司
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Patent Information

Application Number
CN202510584131.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-07
Publication Date
2025-07-15

AI Technical Summary

Technical Problem

Traditional nail accessories polishing equipment has problems such as uneven polishing effect, large equipment footprint, unreasonable space layout and uneven mixing, which affects the polishing quality and production efficiency.

Method used

The combined design of the working frame, bearing seat, linkage extraction mechanism, swing polishing mechanism, swing driving mechanism and output receiving mechanism is adopted. Through the synergistic effect of the swing driving mechanism and swing polishing mechanism, the efficient mixing contact between the nail blank and the polishing abrasive is achieved, and the raw material delivery and mixing is accurately controlled. The cross-arc plate design of the built-in tank and the external tank increases the mixing time and polishing effect.

Benefits of technology

Improve polishing efficiency and uniformity, ensure smooth surface of the blank, enhance the mixing effect and the accuracy of the polishing process, avoid uneven surface polishing traces, and improve production efficiency and polishing quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the field of polishing machining, and discloses a polishing device for bathroom accessory machining, which comprises a linkage material pumping mechanism located on an overhead frame and used for nailing accessories and inputting polishing abrasive materials, and a swing polishing mechanism located on an operation rack and used for mixed polishing of the nailing accessories and the abrasive materials in cooperation with a feeding pool. The swing driving mechanism is located on the operation rack and matched with the supporting side shaft to be used for generating reciprocating operation force for driving polishing mixed contact, and the output receiving mechanism is located on the operation rack and matched with the external tank and the discharge valve pipe to be used for receiving and outputting the nailing accessories and grinding materials which are polished. Through the synergistic effect of the swing driving mechanism and the swing polishing mechanism in the operation rack, efficient mixed contact between the nailing blank and the polishing abrasive can be achieved. The mixing pipe provides a uniform polishing effect in the swinging process through rotation of the supporting shaft and the bearing seat. By means of the design, the polishing effect and efficiency are effectively improved, and it is guaranteed that the surfaces of blanks are even and smooth.
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Description

Technical Field

[0001] The present invention relates to the technical field of polishing processing, and particularly to a polishing device for processing sanitary ware accessories. Background Art

[0002] With the improvement of consumers' quality requirements for sanitary ware accessories, the market has an increasing demand for surface finish, durability, and environmental protection. Although traditional polishing techniques can meet certain requirements, they have limitations in terms of production efficiency, product consistency, and environmental impact. Therefore, innovative and efficient polishing techniques have become a key trend in the industry's development.

[0003] Traditional polishing equipment for nailed accessories usually only provides a single polishing method, and the polishing effect is prone to unevenness. Especially for blanks with complex shapes, the polishing equipment is usually relatively simple in spatial layout and structural design, and there may be problems such as a large floor area of the equipment and an unreasonable spatial layout. In traditional equipment, raw material mixing may be uneven due to unreasonable design, which in turn affects the polishing effect. Summary of the Invention

[0004] Aiming at the deficiencies of the prior art, the present invention provides a polishing device for processing sanitary ware accessories, which solves the problems that traditional polishing equipment for nailed accessories usually has uneven polishing effect, large equipment floor area, unreasonable spatial layout, and uneven mixing, affecting the polishing quality and production efficiency.

[0005] To achieve the above objectives, the present invention is realized through the following technical solutions: A polishing device for processing sanitary ware accessories, comprising:

[0006] An operation frame for installing the structure of the polishing device for processing sanitary ware accessories, with a top frame and a bottom frame for fixing respectively installed at the top and bottom;

[0007] A bearing seat is located on the operation frame for mounting the polishing abrasive structure for nailed accessories;

[0008] A linkage feeding mechanism is located on the top frame for inputting nailed accessories and polishing abrasives;

[0009] A swing polishing mechanism is located on the operation frame, which is used for mixing and polishing nailed accessories and abrasives in cooperation with the feeding pool;

[0010] A swing drive mechanism is located on the operation frame, which is used to generate a reciprocating operating force for driving polishing and mixing contact in cooperation with the supporting side shaft;

[0011] An output receiving mechanism is located on the operation frame, which is used to receive and output the polished nailed accessories and abrasives in cooperation with an external tank and a discharge valve pipe.

[0012] Preferably, the overhead rack is fixedly connected to the top of the working rack, the bottom rack is fixedly connected to the inner wall of the working rack and is located below the swing polishing mechanism, the bearing seats are fixedly connected to the side walls of the working rack on both sides, the linkage material pumping mechanism is arranged at the top input part of the swing polishing mechanism, the swing polishing mechanism is arranged inside the working rack, the swing driving mechanism is arranged on the side wall of the working rack and is at the height of the rotation axis of the swing polishing mechanism, and the output receiving mechanism is arranged on the bottom rack.

[0013] Preferably, the linkage material pumping mechanism includes a feeding pool, the feeding pool is fixedly connected to the top input port of the external tank, a feeding partition bin is fixedly connected to the center of the top of the feeding pool, a partition board is arranged in the center of the feeding partition bin to divide the interior of the feeding partition bin into two areas, raw material pumping pipes are arranged at the positions of the divided areas at the top of the feeding partition bin, relatively arranged center arc plates are fixedly connected to one side of the feeding partition bin facing the center arc plate, and converging inclined plates are fixedly connected to the inner wall of the feeding pool.

[0014] Preferably, the swing polishing mechanism includes an external tank, an internal tank and a relative stirring component, the internal tank is attached and inlaid on the inner wall of the external tank, the supporting side shafts are arranged on both sides of the external tank relatively, the external tank rotates inside the working rack through the supporting side shafts, cross arc plates are arranged on the inner wall of the internal tank in a cross distribution, the relative stirring component is arranged inside the internal tank, and a discharge valve pipe is arranged on the bottom wall of the internal tank.

[0015] Preferably, the swing driving mechanism includes a side fixed frame and an extended transmission component, the side fixed frame is fixedly connected to the side wall of the working rack, a sector gear is rotatably connected above the inside of the side fixed frame, the rotating shaft of the sector gear is fixedly connected to one of the supporting side shafts, a bidirectional rack is slidably connected to the bottom of the inner wall of the side fixed frame, tooth keys are arranged on both the top wall and the bottom wall of the bidirectional rack at equal intervals, the bottom tooth key end of the sector gear is meshed and connected to the top tooth key end of the bidirectional rack, a limiting slideway is fixedly connected to the bottom end of the side fixed frame, a linkage gear is movably connected to the inner side chute of the limiting slideway, a fixed rack is fixedly connected to the bottom end of the limiting slideway, and the tooth key end of the linkage gear is meshed and connected between the bottom tooth key of the bidirectional rack and the tooth key of the fixed rack. The extended transmission component is located at the side of the limiting slideway and is used to drive the linear displacement of the linkage gear.

[0016] Preferably, the output receiving mechanism includes a material receiving pool, which is fixedly connected to the bottom rack and located below the discharge valve pipe. An upper part of the inner wall of the material receiving pool is fixedly connected with a material receiving table. On one side of the material receiving pool and at the position of the material receiving table, an abrasive recovery hose is fixedly connected. One end of the abrasive recovery hose away from the material receiving pool is fixedly connected to an external tank and an internal tank. On one side of the inner wall of the material receiving pool away from the abrasive recovery hose, an arc-shaped guiding plate is fixedly connected. The bottom end of the arc-shaped guiding plate is connected with a secondary guiding table, and the secondary guiding table is fixedly connected to the inner wall of the material receiving pool and located below the material receiving table. On one side of the inner wall of the material receiving pool close to the abrasive recovery hose, an arc-shaped guiding filter screen is fixedly connected.

[0017] Preferably, through grooves are arranged between two sides of the converging inclined plate and the side wall of the feeding pool.

[0018] Preferably, the relative stirring assembly includes an arc-shaped limiting groove and a relative static rack. The arc-shaped limiting groove is relatively distributed on both sides of the inner wall of the internal tank and is distributed up and down at the same time. The relative static rack is of a frame structure, and equidistantly distributed cutting cone strips are fixedly connected inside. The cutting cone strips are embedded between intersecting arc-shaped plates. Guide sliding seats are arranged on both sides of the relative static rack and are embedded and slid into the arc-shaped limiting groove.

[0019] Preferably, the range-increasing transmission assembly includes a first linkage rod, a second linkage rod and a second driving motor. The first linkage rod is rotatably connected to the outer center of the linkage gear. The second linkage rod is rotatably connected to the side wall of the limiting slideway. The second driving motor is fixedly connected to the rear part of the side wall of the limiting slideway. One end of the second linkage rod close to the second driving motor is fixedly connected to the motor shaft of the second driving motor.

[0020] Preferably, the material receiving table extends to the inner arc surface of the arc-shaped guiding plate, and the secondary guiding table extends to the inner arc surface of the arc-shaped guiding filter screen.

[0021] The present invention provides a polishing device for processing bathroom accessories. It has the following beneficial effects:

[0022] 1. The present invention has the advantages of improving polishing efficiency and uniformity: Through the synergistic effect of the swing driving mechanism and the swing polishing mechanism in the operation rack, efficient mixing contact between the nailed blank and the polishing abrasive can be achieved. The mixing pipe rotates through the support shaft and the bearing seat, providing a uniform polishing effect during the swinging process. This design effectively improves the polishing effect and efficiency, ensuring that the surface of the blank is uniformly smooth.

[0023] 2. The present invention has an accurate swing control effect: The swing polishing mechanism enables the mixing tube to swing precisely within a limited angle range through the cooperation of a sector gear and a bidirectional rack. Through the reciprocating movement of the bidirectional rack, the mixing tube can swing to the maximum angle, enhancing the mixing effect and thus improving the efficiency and quality of the polishing process.

[0024] 3. The present invention has an accurate raw material feeding and mixing ability: Through the designs of a feeding tank, a feeding partition bin, and a converging inclined plate, etc., the feeding and mixing of the nail-making blank and the polishing abrasive can be precisely controlled. This process enables the two raw materials to have the best contact and stirring during the polishing process, thereby improving the polishing effect.

[0025] 4. The present invention has an improved polishing process control effect: The design of the inner tank and the outer tank, through the cross arc plate and the relative agitation assembly, increases the mixing time of the raw materials in the tank and the polishing effect. This design makes the polishing process more delicate, ensuring that each contact between the blank and the abrasive can effectively promote polishing and avoiding uneven polishing marks on the surface. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] Figure 1 is a three-dimensional schematic diagram of the polishing equipment for processing bathroom accessories according to the present invention Figure 1 ;

[0027] Figure 2 is a three-dimensional schematic diagram of the polishing equipment for processing bathroom accessories according to the present invention Figure 2 ;

[0028] Figure 3 is a three-dimensional schematic diagram of the polishing equipment for processing bathroom accessories according to the present invention Figure 3 ;

[0029] Figure 4 is a three-dimensional schematic diagram of the polishing equipment for processing bathroom accessories according to the present invention Figure 4 ;

[0030] Figure 5 is a combined schematic diagram of the swing polishing mechanism and the linkage pumping mechanism according to the present invention;

[0031] Figure 6 is an internal schematic diagram of the combined swing polishing mechanism and the linkage pumping mechanism according to the present invention;

[0032] Figure 7 is a schematic diagram of the structure of the swing polishing mechanism according to the present invention;

[0033] Figure 8 is a schematic diagram of the structure of the swing drive mechanism according to the present invention;

[0034] Figure 9 is a schematic diagram of the structure of the output receiving mechanism according to the present invention;

[0035] Figure 10 Schematic diagram of the internal structure of the output receiving mechanism of the present invention.

[0036] Among them, 1, working machine frame; 2, overhead frame; 3, bottom frame; 4, bearing seat; 5, linkage material extraction mechanism; 6, swing polishing mechanism; 7, swing drive mechanism; 8, output receiving mechanism; 51, feeding pool; 52, feeding partition bin; 53, raw material pumping pipe; 54, converging inclined plate; 55, central arc plate; 61, external tank; 62, internal tank; 63, support side shaft; 64, cross arc plate; 65, arc limiting groove; 66, relatively static frame; 67, cutting cone bar; 68, guiding slide seat; 69, discharge valve pipe; 71, side fixed frame; 72, sector gear segment; 73, bidirectional rack; 74, limiting slideway; 75, linkage gear; 76, fixed rack; 77, linkage rod one; 78, linkage rod two; 79, drive motor two; 81, material receiving pool; 82, material receiving table; 83, abrasive recovery hose; 84, arc guiding plate; 85, secondary guiding table; 86, arc guiding filter screen. Specific embodiments

[0037] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0038] Please refer to the attached Figure 1 - attached Figure 3, an embodiment of the present invention provides a polishing device for processing sanitary ware accessories, including: an operation frame 1 for installing the structure of the polishing device for processing sanitary ware accessories, with a top-mounted frame 2 and a bottom-mounted frame 3 for fixing respectively installed at the top and bottom; a bearing seat 4 is located on the operation frame 1 for erecting the polishing abrasive structure of the nail-making accessories, the top-mounted frame 2 is fixedly connected to the top of the operation frame 1, the bottom-mounted frame 3 is fixedly connected to the inner wall of the operation frame 1 and is located below the swing polishing mechanism 6, both sides of the bearing seat 4 are fixedly connected to the side wall of the operation frame 1, the linkage material extraction mechanism 5 is arranged at the top input part of the swing polishing mechanism 6, the swing polishing mechanism 6 is arranged inside the operation frame 1, the swing driving mechanism 7 is arranged on the side wall of the operation frame 1 and is located at the height of the rotation axis of the swing polishing mechanism 6 at the same time, and the output receiving mechanism 8 is arranged on the bottom-mounted frame 3. The operation frame 1 serves as the fixed main body support of the polishing device for processing sanitary ware nail-making accessories. Through the mixing force generated by swinging, it drives the abrasive and the workpiece to reciprocally contact and then perform the polishing operation. The top-mounted frame 2 arranged on its top serves as the top cross beam to fixedly install the linkage material extraction mechanism 5 for feeding distribution and the swing polishing mechanism 6 for raw material polishing and mixing contact operation. Then, the bottom-mounted frame 3 arranged at the bottom of the operation frame 1 is used to fix the material receiving structure. The swing driving mechanism 7 located on the side of the operation frame 1 can drive the swing polishing mechanism 6 located inside the operation frame 1 to swing for nail-making workpieces to perform polishing and mixing contact. The mixing pipe included in the swing polishing mechanism 6 rotates inside the operation frame 1 along the bearing seats 4 installed on both sides of the operation frame 1 through the support side shafts 63 added on both sides.

[0039] Please refer to the attached Figure 1 - attached Figure 5, The linkage material extraction mechanism 5 is located on the overhead rack 2 and is used for the input of nailing accessories and polishing abrasives. The linkage material extraction mechanism 5 includes a material inlet pool 51. The material inlet pool 51 is fixedly connected to the top input port of the external tank 61. At the center of the top of the material inlet pool 51, a material inlet partition bin 52 is fixedly connected. A partition is provided at the center of the material inlet partition bin 52 to divide the interior of the material inlet partition bin 52 into two areas. At the positions of the top of the material inlet partition bin 52 that are simultaneously located in the divided areas, there are raw material extraction and delivery pipes 53. On the side of the material inlet partition bin 52 facing the center arc plate 55, relatively arranged center arc plates 55 are fixedly connected. On the inner wall of the material inlet pool 51, a concentrating inclined plate 54 is fixedly connected. There are through grooves between both sides of the concentrating inclined plate 54 and the side wall of the material inlet pool 51. The material inlet pool 51 included in the linkage material extraction mechanism 5 installed on the swing polishing mechanism 6 is installed at the top input port of the external tank 61. Above the material inlet pool 51, a material inlet partition bin 52 for nailing blanks and polishing abrasives is erected. The interior of the material inlet partition bin 52 is divided into two areas according to the nailing blanks and polishing abrasives, and are respectively filled into the interior of the material inlet partition bin 52 along 53 by an external filling device, and simultaneously fall on the concentrating inclined plate 54 installed at the bottom of the material inlet partition bin 52. While the linkage material extraction mechanism 5 swings following the swing polishing mechanism 6, the nailing blanks and polishing abrasives are stirred and concentrated along the concentrating inclined plate 54, and are mixed into the material inlet pool 51 along the gaps between the concentrating inclined plates 54, and finally fall onto the center arc plate 55 installed inside the material inlet pool 51. Along with the swing of the material inlet pool 51, the two raw materials are further mixed on the raw material extraction and delivery pipe 53. While 53 is swinging, the raw materials will enter the swing polishing mechanism 6 along the through grooves on both sides of the raw material extraction and delivery pipe 53.

[0040] Please refer to the appendix Figure 1 - appendix Figure 7, the swing polishing mechanism 6 is located on the working frame 1 and is used in cooperation with the feeding tank 51 for the mixed polishing of nailed accessories and abrasives. The swing polishing mechanism 6 includes an external tank 61, an internal tank 62, and a relative stirring assembly. The internal tank 62 is attached and inlaid on the inner wall of the external tank 61. The supporting side shafts 63 are arranged oppositely on both sides of the outer wall of the external tank 61. The external tank 61 rotates inside the working frame 1 through the supporting side shafts 63. The inner wall of the internal tank 62 is provided with cross-arc plates 64 distributed crosswise. The relative stirring assembly is arranged inside the internal tank 62. The bottom wall of the internal tank 62 is provided with a discharge valve pipe 69. The relative stirring assembly includes an arc-shaped limiting groove 65 and a relative static frame 66. The arc-shaped limiting grooves 65 are distributed oppositely on both sides of the inner wall of the internal tank 62 and are also distributed vertically and horizontally. The relative static frame 66 is of a frame structure and is fixedly connected with equally spaced cutting cone strips 67 inside. The cutting cone strips 67 are embedded between the cross-arc plates 64 of the cross. Guide sliding seats 68 are arranged on both sides of the relative static frame 66 and are embedded and slid into the arc-shaped limiting groove 65. The swing polishing mechanism 6 includes the external tank 61 and the internal tank 62. The internal tank 62 is embedded inside the external tank 61. The nailed accessories and polishing abrasives enter the internal tank 62 along the raw material pumping pipe 53 and the feeding tank 51. The inside of the internal tank 62 forms multiple reciprocating guiding spaces through multiple groups of cross-arranged cross-arc plates 64. The raw materials entering the internal tank 62 will be driven by the swinging force of the internal tank 62 to mix and contact in the cross area between the cross-arc plates 64 and be polished. The relative stirring assembly installed inside the internal tank 62 forms a relative motion state with the internal tank 62 while the internal tank 62 is swinging. The arc-shaped limiting groove 65 included in the relative stirring assembly is opened on the inner wall of the internal tank 62, and the relative static frame 66 included is embedded and slid into the arc-shaped limiting groove 65 through the guide sliding seats 68 installed on both sides. As the internal tank 62 swings, the arc-shaped limiting groove 65 follows the internal tank 62 to swing, and at the same time, it drives the relative static frame 66 to rest inside the internal tank 62 along the guide sliding seats 68. With multiple groups of cutting cone strips 67 installed on itself, it forms a stirring force following the swinging internal tank 62 to stir the nailed blanks and polishing abrasives between the cross-arc plates 64 of the cross. At the same time, the two displace and contact in turn between multiple groups of cross-arc plates 64 arranged crosswise, so as to increase the mixing time of the two for polishing and mixing inside the internal tank 62, drive the blanks to fully contact the abrasives until they reach the bottom of the internal tank 62, and after forming the final polishing state, they are discharged into the output receiving mechanism 8 installed on the bottom frame 3 along the discharge valve pipe 69 installed at the bottom of the internal tank 62.

[0041] Please refer to the appendix Figure 1 - appendix Figure 8, the swing drive mechanism 7 is located on the working frame 1 and is used to generate a reciprocating operating force for driving polishing and mixing contact in cooperation with the support side shaft 63. The swing drive mechanism 7 includes a side fixed frame 71 and an extended transmission component. The side fixed frame 71 is fixedly connected to the side wall of the working frame 1. A sector gear 72 is rotatably connected above the interior of the side fixed frame 71. The rotating shaft of the sector gear 72 is fixedly connected to one side support side shaft 63. A bidirectional rack 73 is slidably connected to the bottom of the inner wall of the side fixed frame 71. Tooth keys are arranged at equal intervals on both the top and bottom walls of the bidirectional rack 73. The bottom tooth key end of the sector gear 72 is meshed with the top tooth key end of the bidirectional rack 73. A limiting slideway 74 is fixedly connected to the bottom end of the side fixed frame 71. A linkage gear 75 is movably connected to the inner slideway of the limiting slideway 74. A fixed rack 76 is fixedly connected to the bottom end of the limiting slideway 74. The tooth key end of the linkage gear 75 is meshed between the bottom tooth key of the bidirectional rack 73 and the tooth key of the fixed rack 76. The extended transmission component is located on the side of the limiting slideway 74 and is used to drive the linear displacement of the linkage gear 75. The extended transmission component includes a linkage rod one 77, a linkage rod two 78, and a driving motor two 79. The linkage rod one 77 is rotatably connected to the outer axis of the linkage gear 75. The linkage rod two 78 is rotatably connected to the side wall of the limiting slideway 74. The driving motor two 79 is fixedly connected to the rear part of the side wall of the limiting slideway 74. One end of the linkage rod two 78 close to the driving motor two 79 is fixedly connected to the motor shaft of the driving motor two 79. By turning on the swing drive mechanism 7 located on the side wall of the working frame 1, the side fixed frame 71 included in the swing drive mechanism 7 is fixed to the side wall of the working frame 1. A sector gear 72 that can guide the swing of the mixing pipe is rotatably installed inside the side fixed frame 71. The angular structure of its sector limits the maximum swing angle of the mixing pipe. At the same time, a bidirectional rack 73 is slidably installed at the bottom end of the side fixed frame 71. Tooth key structures are evenly distributed on the upper and lower surfaces of it. The top tooth key end is meshed with the arc tooth key end of the sector gear 72. The limiting slideway 74 installed at the bottom of the side fixed frame 71 limits the linear displacement of the linkage gear 75 on the limiting slideway 74 and is meshed with the bottom tooth key end of the bidirectional rack 73 at the same time. And a stationary limiting slideway 74 is installed at the bottom of the limiting slideway 74. The linkage gear 75 is synchronously meshed with the top tooth key end of the limiting slideway 74. When turning on the extended transmission component included in the swing drive mechanism 7, the driving motor two 79 included in it generates rotational torque and guides it to the included linkage rod two 78 and linkage rod one 77. After the linkage rod two 78 is driven by the driving motor two 79 to rotate, a centrifugal force is generated at its outer end and drags the linkage rod one 77 to perform circular displacement along the outer end of the linkage rod two 78. A reciprocating dragging force is also generated at the other end of the linkage rod one 77 at the same time, dragging the linkage gear 75 to perform linear reciprocating displacement along the limiting slideway 74. And because the stationary fixed rack 76 is meshed with the linkage gear 75, the linkage gear 75 rotates while performing linear reciprocating displacement. The linear reciprocating displacement of the linkage gear 75 will synchronously drive the linear reciprocating displacement of the bidirectional rack 73,While the linkage gear 75 rotates during displacement, the meshing double-sided rack 73 will reciprocate a longer distance. The linkage gear 75 can be meshed in the two end directions of the double-sided rack 73 in sequence, driving the double-sided rack 73 to drive the sector gear 72 and the mixing pipe to swing reciprocally to the maximum angle with the smallest installation space utilized. While the mixing pipe rotates along the bearing seat 4 through the support side shaft 63 installed on the side wall, the built-in tank 62 installed on its top wall swings accordingly.

[0042] Please refer to the appendix Figure 1 - appendix Figure 10 The output receiving mechanism 8 is located on the working rack 1 and is used to receive and output the polished nail-making fittings and abrasives in cooperation with the external tank 61 and the discharge valve pipe 69. The output receiving mechanism 8 includes a material receiving pool 81. The material receiving pool 81 is fixedly connected to the bottom rack 3 and is located below the discharge valve pipe 69. An upper part of the inner wall of the material receiving pool 81 is fixedly connected with a material receiving platform 82. On one side of the material receiving pool 81 and at the position of the material receiving platform 82, a grinding abrasive recovery hose 83 is fixedly connected. One end of the grinding abrasive recovery hose 83 away from the material receiving pool 81 is fixedly connected to the external tank 61 and the built-in tank 62. On one side of the inner wall of the material receiving pool 81 away from the grinding abrasive recovery hose 83, an arc-shaped guiding plate 84 is fixedly connected. The bottom end of the arc-shaped guiding plate 84 is connected to a secondary guiding platform 85. The secondary guiding platform 85 is fixedly connected to the inner wall of the material receiving pool 81 and is located below the material receiving platform 82. On one side of the inner wall of the material receiving pool 81 close to the grinding abrasive recovery hose 83, an arc-shaped guiding filter screen 86 is fixedly connected. The material receiving platform 82 extends to the inner arc surface of the arc-shaped guiding plate 84, and the secondary guiding platform 85 extends to the inner arc surface of the arc-shaped guiding filter screen 86. The material receiving pool 81 included in the output receiving mechanism 8 is fixed on the bottom rack 3 and is located at the bottom of the equipment at the same time. The material receiving platform 82 opened above the material receiving pool 81 directly receives and temporarily bears the nail-making polished products discharged from the discharge valve pipe 69. The other end of the grinding abrasive recovery hose 83 installed on one side of the material receiving pool 81 receives the bottom surfaces of the built-in tank 62 and the external tank 61, guiding the grinding abrasives that have completed contact polishing inside the built-in tank 62 and the external tank 61 to the surface of the material receiving platform 82. The nail-making polished products generated by the circulation displace on the material receiving platform 82, and at the same time, the products are cooled by air. The products are driven to turn along the arc-shaped guiding plate 84 to reach the surface of the secondary guiding platform 85. The wind generated by the conveying continuously blows the finished product raw materials along the secondary guiding platform 85 to the arc-shaped guiding filter screen 86. Then, the wind will be discharged outside the material receiving pool 81 along the sieve holes of the arc-shaped guiding filter screen 86, while the finished products are guided to the lower part inside the material receiving pool 81 along the arc-shaped structure of the arc-shaped guiding filter screen 86. At the same time, the material receiving pool 81 and the secondary guiding platform 85 arranged inside the material receiving pool 81 form an in-line channel structure driven by air cooling, and by using the arc-shaped guiding plate 84 and the arc-shaped guiding filter screen 86 for turning and guiding, the nail-making polished products are recovered inside the material receiving pool 81.

[0043] Working principle: The working rack 1 serves as the fixed main bracket of the polishing equipment for processing bathroom nail-making accessories. Through the combined force generated by swinging, it drives the abrasive and the workpiece to reciprocally contact and then perform the polishing operation. The overhead rack 2 installed on its top serves as the crossbeam at the top to fixedly install the linkage material extraction mechanism 5 for feeding and distribution and the swinging polishing mechanism 6 for raw material polishing and mixing contact operation. Then, the bottom rack 3 installed at the bottom of the working rack 1 is used to fix the material receiving structure. The swinging drive mechanism 7 located on the side of the working rack 1 can drive the swinging polishing mechanism 6 inside the working rack 1 to swing for polishing and mixing contact with the nail-making workpiece. The mixing pipe included in the swinging polishing mechanism 6 rotates inside the working rack 1 along the bearing seats 4 installed on both sides of the working rack 1 through the support side shafts 63 installed on both sides. By turning on the swinging drive mechanism 7 on the side wall of the working rack 1, the side fixed frame 71 included in the swinging drive mechanism 7 is fixed on the side wall of the working rack 1. A sector gear 72 that can guide the swinging of the mixing pipe is rotatably installed inside the side fixed frame 71. The angle of its sector structure limits the maximum swinging angle of the mixing pipe. At the same time, a bidirectional rack 73 is slidably installed at the bottom end of the side fixed frame 71. Tooth key structures are evenly distributed on the upper and lower surfaces of its two ends. The tooth key end at the top meshes with the arc tooth key end of the sector gear 72. The limiting slideway 74 installed at the bottom of the side fixed frame 71 limits the linear displacement of the linkage gear 75 on the limiting slideway 74 and at the same time meshes with the bottom tooth key end of the bidirectional rack 73. And a stationary limiting slideway 74 is installed at the bottom of the limiting slideway 74. The linkage gear 75 is synchronously meshed with the top tooth key end of the limiting slideway 74. When the extended transmission component included in the swinging drive mechanism 7 is turned on, the drive motor two 79 included in it generates rotational torque and guides it to the included linkage rod two 78 and linkage rod one 77. After the linkage rod two 78 is driven by the drive motor two 79 to rotate, a centrifugal force is generated at its outer end, and it drags the linkage rod one 77 to perform circular displacement along the outer end of the linkage rod two 78. A reciprocating dragging force is also generated at the other end of the linkage rod one 77, dragging the linkage gear 75 to perform linear reciprocating displacement along the limiting slideway 74. And because the stationary fixed rack 76 meshes with the linkage gear 75, the linkage gear 75 rotates while performing linear reciprocating displacement. The linear reciprocating displacement of the linkage gear 75 will synchronously drive the bidirectional rack 73 to perform linear reciprocating displacement. And the rotation of the linkage gear 75 while displacing will make the meshed bidirectional rack 73 reciprocate a longer distance. The linkage gear 75 can be sequentially meshed in the two end directions of the bidirectional rack 73, driving the bidirectional rack 73 to drive the sector gear 72 and the mixing pipe to reciprocally swing to the maximum angle with the smallest installation space utilized. While the mixing pipe rotates along the bearing seat 4 through the support side shaft 63 installed on the side wall, the built-in tank 62 installed on its top wall swings accordingly. And the feeding pool 51 included in the linkage material extraction mechanism 5 installed on the swinging polishing mechanism 6 is installed at the top input port of the external tank 61. And a feeding partition bin 52 for nail-making workpieces and polishing abrasives is erected above the feeding pool 51.The inside of the feeding partition bin 52 is divided into two areas according to the nailed blanks and polishing abrasives, and are respectively filled into the inside of the feeding partition bin 52 along 53 by an external filling device, and at the same time fall on the centralizing inclined plate 54 installed at the bottom of the feeding partition bin 52. While the linkage material extraction mechanism 5 swings following the swing polishing mechanism 6, the nailed blanks and polishing abrasives are centralized and mixed along the centralizing inclined plate 54, and enter the feeding pool 51 through the gaps between the centralizing inclined plates 54, and finally fall on the central arc plate 55 installed inside the feeding pool 51. Along with the swing of the feeding pool 51, the two raw materials are further mixed on the raw material delivery pipe 53. While 53 is swinging, the raw materials will enter the swing polishing mechanism 6 through the through grooves on both sides of the raw material delivery pipe 53. The swing polishing mechanism 6 includes an external tank 61 and an internal tank 62, and the internal tank 62 is embedded inside the external tank 61. The nailed fittings and polishing abrasives enter the internal tank 62 along the raw material delivery pipe 53 and the feeding pool 51. Inside the internal tank 62, multiple reciprocating guiding spaces are formed by multiple groups of cross-arranged cross arc plates 64. The raw materials entering the internal tank 62 will be driven by the swinging force of the internal tank 62 to mix and contact in the cross areas between the cross arc plates 64 and be polished. While the relative stirring assembly installed inside the internal tank 62 forms a relative motion state with the internal tank 62 while the internal tank 62 is swinging. The arc-shaped limiting groove 65 included in the relative stirring assembly is opened on the inner wall of the internal tank 62, and the included relative static rack 66 is slidably embedded into the arc-shaped limiting groove 65 through the guiding sliding seats 68 installed on both sides. Along with the swing of the internal tank 62, the arc-shaped limiting groove 65 swings following the internal tank 62, and at the same time drives the relative static rack 66 to be static inside the internal tank 62 along the guiding sliding seats 68, and cooperates with the multiple groups of cutting cone strips 67 installed on itself to form a stirring force following the swinging internal tank 62, stirring the nailed blanks and polishing abrasives between the cross arc plates 64 of the cross. At the same time, the two move and contact in sequence between the multiple groups of cross-arranged cross arc plates 64, so as to increase the mixing time of the two for polishing and contact inside the internal tank 62, driving the blanks to fully contact the abrasives until reaching the bottom of the internal tank 62, and after forming the final polishing state, they are discharged into the output receiving mechanism 8 installed on the bottom rack 3 along the discharge valve pipe 69 installed at the bottom of the internal tank 62. The output receiving mechanism 8 includes a material receiving pool 81 fixed on the bottom rack 3 and located at the bottom of the equipment. The material receiving platform 82 opened above the material receiving pool 81 will directly receive and temporarily carry the nailed and polished finished products discharged from the discharge valve pipe 69. The other end of the abrasive recovery hose 83 installed on one side of the material receiving pool 81 receives the bottom surfaces of the internal tank 62 and the external tank 61, guiding the abrasives that have completed contact polishing inside the internal tank 62 and the external tank 61 to the surface of the material receiving platform 82. Using the flow of the nailed and polished finished products to displace on the material receiving platform 82, and at the same time air-cooling and cooling the finished products, driving the finished products to turn along the arc-shaped guiding plate 84 to reach the surface of the secondary guiding platform 85.After the wind generated by the conveying continuously blows the finished raw materials along the secondary guiding table 85 to reach the arc guiding filter screen 86, the wind will be discharged outside the material receiving pool 81 along the sieve holes of the arc guiding filter screen 86, while the finished products will be guided to the lower part inside the material receiving pool 81 along the arc structure of the arc guiding filter screen 86. At the same time, the material receiving pool 81 and the secondary guiding table 85 arranged inside the material receiving pool 81 form an in-line channel structure driven by air cooling, and the arc guiding plate 84 and the arc guiding filter screen 86 for steering and guiding are used to drive the nailing and polishing finished products to complete the recovery in the material receiving pool 81.,

[0044] Although the embodiments of the present invention have been shown and described, it will be understood by those of ordinary skill in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A polishing device for processing bathroom accessories, characterized in that, Including: An operation rack (1) for installing the structure of a polishing device for sanitary ware accessories, with a top rack (2) and a bottom rack (3) both for fixing installed at the top and bottom respectively; A bearing seat (4) is located on the operation rack (1) for erecting a polishing abrasive structure for nailed accessories; A linkage feeding mechanism (5) is located on the top rack (2) for inputting nailed accessories and polishing abrasives; A swing polishing mechanism (6) is located on the operation rack (1) and is used for mixing and polishing nailed accessories and abrasives in cooperation with a feeding pool (51); A swing driving mechanism (7) is located on the operation rack (1) and is used for generating a reciprocating operating force for driving polishing and mixing contact in cooperation with a supporting side shaft (63); An output receiving mechanism (8) is located on the operation rack (1) and is used for receiving and outputting the polished nailed accessories and abrasives in cooperation with an external tank (61) and a discharge valve pipe (69).

2. A polishing device for processing bathroom accessories according to claim 1, characterized in that, The top rack (2) is fixedly connected to the top end of the operation rack (1), the bottom rack (3) is fixedly connected to the inner wall of the operation rack (1) and is located below the swing polishing mechanism (6), both sides of the bearing seat (4) are fixedly connected to the side wall of the operation rack (1), the linkage feeding mechanism (5) is arranged at the top input part of the swing polishing mechanism (6), the swing polishing mechanism (6) is arranged inside the operation rack (1), the swing driving mechanism (7) is arranged on the side wall of the operation rack (1) and is at the same height as the rotation axis of the swing polishing mechanism (6), and the output receiving mechanism (8) is arranged on the bottom rack (3).

3. A polishing device for processing bathroom fittings according to claim 1, characterized in that, The linkage feeding mechanism (5) includes a feeding pool (51), the feeding pool (51) is fixedly connected to the top input port of the external tank (61), a feeding partition bin (52) is fixedly connected to the center of the top of the feeding pool (51), a partition is arranged in the center of the feeding partition bin (52) to divide the interior of the feeding partition bin (52) into two areas, raw material pumping pipes (53) are arranged at the positions of the divided areas at the top of the feeding partition bin (52), opposite center arc plates (55) are fixedly connected to one side of the feeding partition bin (52) facing the center arc plate (55), and a concentrating inclined plate (54) is fixedly connected to the inner wall of the feeding pool (51).

4. A polishing device for processing sanitary ware accessories according to claim 1, characterized in that, The swing polishing mechanism (6) includes an external tank (61), an internal tank (62) and a relative stirring assembly. The internal tank (62) is attached and inlaid on the inner wall of the external tank (61), both sides of the supporting side shaft (63) are relatively arranged on the outer side wall of the external tank (61), the external tank (61) rotates inside the operation rack (1) through the supporting side shaft (63), cross arc plates (64) are arranged in a cross distribution on the inner wall of the internal tank (62), the relative stirring assembly is arranged inside the internal tank (62), and a discharge valve pipe (69) is arranged on the bottom wall of the internal tank (62).

5. A polishing device for processing sanitary ware accessories according to claim 1, characterized in that, The swing drive mechanism (7) includes a side fixing frame (71) and an extended transmission assembly. The side fixing frame (71) is fixedly connected to the side wall of the working machine frame (1). A sector gear piece (72) is rotatably connected above the interior of the side fixing frame (71). The rotating shaft of the sector gear piece (72) is fixedly connected to a side support side shaft (63). A bidirectional rack (73) is slidably connected to the bottom of the inner wall of the side fixing frame (71). Tooth keys are arranged at equal intervals on both the top wall and the bottom wall of the bidirectional rack (73). The bottom tooth key end of the sector gear piece (72) is meshed with the top tooth key end of the bidirectional rack (73). A limiting slideway (74) is fixedly connected to the bottom end of the side fixing frame (71). A linkage gear (75) is movably connected to the inner slideway of the limiting slideway (74). A fixed rack (76) is fixedly connected to the bottom end of the limiting slideway (74). The tooth key end of the linkage gear (75) is meshed between the bottom tooth key of the bidirectional rack (73) and the tooth key of the fixed rack (76). The extended transmission assembly is located on the side of the limiting slideway (74) for driving the linear displacement of the linkage gear (75).

6. A polishing device for processing bathroom fittings according to claim 1, characterized in that, The output receiving mechanism (8) includes a material receiving tank (81). The material receiving tank (81) is fixedly connected to the bottom frame (3) and is located below the discharge valve pipe (69). A material receiving table (82) is fixedly connected to the upper part of the inner wall of the material receiving tank (81). A grinding material recovery hose (83) is fixedly connected to one side of the material receiving tank (81) at the position of the material receiving table (82). One end of the grinding material recovery hose (83) far from the material receiving tank (81) is fixedly connected to the external tank (61) and the internal tank (62). An arc guiding plate (84) is fixedly connected to one side of the inner wall of the material receiving tank (81) far from the grinding material recovery hose (83). The bottom end of the arc guiding plate (84) is connected to a secondary guiding table (85). The secondary guiding table (85) is fixedly connected to the inner wall of the material receiving tank (81) and is located below the material receiving table (82). An arc guiding filter screen (86) is fixedly connected to one side of the inner wall of the material receiving tank (81) close to the grinding material recovery hose (83).

7. A polishing device for processing bathroom accessories according to claim 3, characterized in that, There are through grooves between both sides of the converging inclined plate (54) and the side wall of the feeding tank (51).

8. A polishing device for processing sanitary ware accessories according to claim 4, characterized in that, The relative stirring assembly includes an arc limiting groove (65) and a relative static frame (66). The arc limiting groove (65) is distributed oppositely on both sides of the inner wall of the internal tank (62) and is distributed vertically. The relative static frame (66) is of a frame structure and is fixedly connected with equally spaced cutting cone strips (67) inside. The cutting cone strips (67) are embedded between the intersecting arc plates (64). Guide sliding seats (68) are arranged on both sides of the relative static frame (66) and are slidably embedded into the arc limiting groove (65).

9. A polishing device for processing bathroom accessories according to claim 5, wherein, The range extender drive assembly includes a first linkage rod (77), a second linkage rod (78), and a second drive motor (79). The first linkage rod (77) is rotatably connected to the outer axis of the linkage gear (75). The second linkage rod (78) is rotatably connected to the side wall of the limiting slideway (74). The second drive motor (79) is fixedly connected to the rear part of the side wall of the limiting slideway (74). One end of the second linkage rod (78) close to the second drive motor (79) is fixedly connected to the motor shaft of the second drive motor (79).

10. A polishing device for processing bathroom accessories according to claim 6, characterized in that, The material receiving table (82) extends to the inner arc surface of the arc-shaped guiding plate (84), and the secondary guiding table (85) extends to the inner arc surface of the arc-shaped guiding filter screen (86).