Dust-free high-speed polishing device for crystal hot-fix rhinestone
By designing a dust-free high-speed polishing device for crystal hot-fix rhinestones, a transparent shield is used to block dust and cool the surface with a spray of coolant, thus solving the problems of dust and high temperature during the polishing process and achieving a safe and efficient polishing process.
Patent Information
- Application Number
- CN202520376751.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-05
- Publication Date
- 2026-02-13
- Estimated Expiration
- 2035-03-05
AI Technical Summary
The polishing process of crystal hot-fix rhinestones generates dust and high temperatures, which can lead to health hazards and product damage. Existing technologies are unable to effectively solve this problem.
A dust-free high-speed polishing device for crystal hot-fix rhinestones was designed, which includes a polishing table, a polishing mechanism, a transparent shield, a dust suppression mechanism, and a coolant circulation system. The transparent shield blocks dust, and the coolant sprays to cool down the surface and collect waste, thereby reducing dust and protecting against high temperatures.
It effectively reduces the risk of dust splashing and high-temperature cracking, protects operator health, improves resource utilization, avoids resource waste, and achieves a highly efficient grinding process.
Smart Images

Figure CN223903615U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to crystal hot diamond polishing technical field especially relates to crystal hot diamond dustless high -speed polishing device. BACKGROUND
[0002] Crystal hot diamond is a kind of product on the surface decoration of dress and luggage, crystal diamond is adhered to the surface of clothes by hot melt adhesive layer to increase three-dimensional beauty.Crystal hot diamond is produced by first melting selected raw materials, then injecting the melted raw materials into mold to shape, and then polishing the hot diamond after cooling and solidification, thereby completing the production of crystal hot diamond, but the waste and dust are generated during polishing, and the operator may inhale the dust during operation, which is harmful to the body, and the hot diamond may be cracked and damaged due to high temperature generated by friction during polishing. Therefore, the crystal hot diamond dustless high-speed polishing device is provided. SUMMARY
[0003] The utility model discloses a crystal hot diamond dustless high-speed polishing device aiming at the problems in the background art.
[0004] The utility model discloses a crystal hot diamond dustless high-speed polishing device, including the polishing table, the polishing mechanism is arranged on the upper of polishing table, the polishing mechanism includes the motor, the output of motor is provided with the polishing head, the upper of polishing table is provided with the transparent baffle cover, the lower of polishing table is provided with dust fall mechanism, dust fall mechanism includes the liquid collecting hopper in the lower of polishing table, the one side of liquid collecting hopper is provided with water pump one away from polishing table, the water outlet of water pump one is connected with circulating water pipe, one end of circulating water pipe is located the upper of transparent baffle cover and is provided with cooling liquid tank, one side of cooling liquid tank is provided with spray pipe, the one end of spray pipe is provided with the spray head away from cooling liquid tank, the leakage groove is seted up on the polishing table, the sieve plate is seted up in the leakage groove.
[0005] Preferably, the lower of polishing table is provided with a plurality of supporting legs, the mounting end of sieve plate is installed corresponding to the inner wall of leakage groove, a plurality of leakage holes are opened on the sieve plate, and the upper side of sieve plate is provided in a concave shape.
[0006] Preferably, the mounting end of motor is installed corresponding to the upper side of polishing table, the shaft hole is opened on the transparent baffle cover, the output end of motor is provided with a stable frame through the shaft hole, the mounting end of stable frame is installed corresponding to the upper side of sieve plate, the output end outer ring of motor is installed corresponding to the top inner wall of stable frame, and the mounting end of polishing head is installed corresponding to the top end of output shaft of motor.
[0007] Preferably, the mounting end of the transparent baffle is installed corresponding to the upper side of the grinding table, the inner diameter of the transparent baffle is the same as the diameter of the leakage tank, an operation window is provided on one side of the transparent baffle, and a viewing window is provided on the transparent baffle above the operation window.
[0008] Preferably, the mounting end of the liquid collecting hopper is installed at the position corresponding to the position of the leakage groove and the lower side of the grinding table. A microfiltration membrane is provided in the middle position inside the liquid collecting hopper. A pipe hole is opened at the bottom of the liquid collecting hopper. The mounting end of the water pump is installed at the lower side of the liquid collecting hopper, and the suction end of the water pump is installed at the pipe hole.
[0009] Preferably, one end of the circulating water pipe is installed corresponding to the outlet end of the first water pump, the other end of the circulating water pipe is installed corresponding to one side of the coolant tank, the installation end of the coolant tank is installed corresponding to the upper side of the transparent cover, a second water pump is installed inside the coolant tank, one end of the spray pipe is installed corresponding to the second water pump, a second pipe hole is opened on the transparent cover, and the outer ring of the spray pipe is installed corresponding to the inner wall of the second pipe hole.
[0010] Preferably, a telescopic tube is provided between the spray pipe and the nozzle, and a universal joint is provided between the telescopic tube and the spray pipe. The mounting end of the nozzle is installed corresponding to the end of the telescopic tube away from the universal joint.
[0011] Compared with the prior art, the present invention has the following beneficial technical effects:
[0012] This utility model has a simple overall structure. The grinding mechanism enables high-speed grinding of crystal rhinestones, while the dust-reducing mechanism cools the rhinestones during grinding, preventing cracking due to high temperatures. It also reduces dust generated during grinding, preventing debris from splashing. Furthermore, the coolant is filtered, collected, and recycled, significantly improving resource utilization and preventing waste. The transparent shield further protects the rhinestones from debris and water droplets, ensuring no debris floats on the surface and protecting the operator's health. Attached Figure Description
[0013] Fig. 1 This is a schematic diagram of the overall structure of this utility model;
[0014] Fig. 2 This is a partial sectional view of the present invention;
[0015] Fig. 3 This is a cross-sectional view of the structure from another perspective in this utility model.
[0016] Mark No. : 1, polishing table; 2, polishing mechanism; 21, motor; 22, polishing head; 3, transparent shield; 4, dust falling mechanism; 41, liquid collecting hopper; 42, water pump I; 43, circulating water pipe; 44, cooling liquid tank; 45, spraying pipe; 46, spray head; 47, microfiltration membrane; 48, telescopic pipe; 49, universal joint; 5, liquid leakage groove; 6, sieve plate; 7, supporting leg; 8, liquid leakage hole; 9, stabilizing frame; 10, operation window; 11, visual window. DETAILED DESCRIPTION
[0017] The technical scheme of the utility model will be further explained in connection with the drawings and specific embodiments.
[0018] EMBODIMENT
[0019] As Figs. 1-3 shown in the utility model discloses a crystal hot diamond dust-free high-speed polishing device, including polishing table 1, the lower part of polishing table 1 is provided with multiple groups of supporting legs 7, the mounting end of supporting leg 7 is fixedly connected with polishing table 1, the setting of supporting leg 7 can stably support polishing table 1, the polishing table 1 is provided with liquid leakage groove 5, the sieve plate 6 is arranged in the liquid leakage groove 5, the mounting end of sieve plate 6 is correspondingly installed with the inner wall of liquid leakage groove 5, the mounting end of sieve plate 6 is fixedly connected with liquid leakage groove 5, a plurality of liquid leakage holes 8 are formed in the sieve plate 6, one side above the sieve plate 6 is provided with a concave shape, the sieve plate 6 and the liquid leakage hole 8 can load the waste generated during the polishing operation of hot diamond, so that the operator can quickly clean the waste after polishing hot diamond;
[0020] The polishing mechanism 2 is arranged above the polishing table 1, the polishing mechanism 2 includes a motor 21, the mounting end of the motor 21 is correspondingly installed with the upper side of the polishing table 1, the motor 21 is fixedly connected with the polishing table 1, the shaft hole is formed in the transparent shield 3, the output end of the motor 21 is provided with the stabilizing frame 9 through the shaft hole, the mounting end of the stabilizing frame 9 is correspondingly installed with the upper side of the sieve plate 6, the stabilizing frame 9 is fixedly connected with the sieve plate 6, the top end inner wall of the stabilizing frame 9 is correspondingly installed with the outer circle of the output end of the motor 21, the output end of the motor 21 is rotatably connected with the stabilizing frame 9, the stabilizing frame 9 can support and limit the output end of the motor 21, so that the motor 21 can be more stable in the working state, the output end of the motor 21 is provided with the polishing head 22, the mounting end of the polishing head 22 is correspondingly installed with the top end of the output shaft of the motor 21, the polishing head 22 is fixedly connected with the output end of the motor 21, the polishing head 22 is provided with a conical shape, the conical setting of the polishing head 22 can adapt to the polishing operation of the crystal hot diamond in different directions;
[0021] The transparent cover 3 is arranged above the polishing table 1, the mounting end of the transparent cover 3 is arranged in correspondence with the upper side of the polishing table 1, the mounting end of the transparent cover 3 is fixedly connected with the polishing table 1, the inner diameter of the transparent cover 3 is same with the diameter of the liquid leakage groove 5, an operation window 10 is arranged on one side of the transparent cover 3, the operation window 10 is arranged to facilitate the operator to put his hand into the inside of the transparent cover 3, to meet the demand of polishing the hot drill, a visual window 11 is arranged above the operation window 10 on the transparent cover 3, the visual window 11 is arranged in an inclined manner, the mounting end of the visual window 11 is fixedly connected with the transparent cover 3, the visual window 11 is arranged to facilitate the operator to check the polishing condition of the hot drill in the inside of the transparent cover 3, the transparent cover 3 is arranged to shield the waste generated by the hot drill during the polishing operation, so as to avoid the waste to be randomly splashed due to high-speed polishing, and meanwhile, the operator is prevented from inhaling the floating waste and dust when breathing, to protect the health of the operator;
[0022] The dust falling mechanism 4 is arranged below the polishing table 1, and the dust falling mechanism 4 comprises a liquid collecting hopper 41 arranged below the polishing table 1, the mounting end of the liquid collecting hopper 41 is arranged in correspondence with the position of the liquid leakage groove 5 on the lower side of the polishing table 1, the mounting end of the liquid collecting hopper 41 is fixedly connected with the polishing table 1, the liquid collecting hopper 41 is arranged to collect and recycle the cooling liquid, a microfiltration membrane 47 is arranged at the middle position in the liquid collecting hopper 41, the outer periphery of the microfiltration membrane 47 is fixedly connected with the inner wall of the liquid collecting hopper 41, the microfiltration membrane 47 is arranged to filter the fine waste in the cooling liquid again, so that the cooling liquid meets the requirement of secondary recycling, a water pump one 42 is arranged on the side of the liquid collecting hopper 41 away from the polishing table 1, a pipe hole one is arranged below the liquid collecting hopper 41, the mounting end of the water pump one 42 is arranged in correspondence with the side below the liquid collecting hopper 41, the mounting end of the water pump one 42 is fixedly connected with the liquid collecting hopper 41, the water suction end of the water pump one 42 is arranged in correspondence with the pipe hole one, the water suction end of the water pump one 42 is inserted into the liquid collecting hopper 41 and is fixedly connected with the pipe hole one, the water outlet end of the water pump one 42 is connected with a circulating water pipe 43, one end of the circulating water pipe 43 is arranged in correspondence with the water outlet end of the water pump one 42, the one end of the circulating water pipe 43 is fixedly connected with the water outlet end of the water pump one 42, the one end of the circulating water pipe 43 is arranged above the transparent cover 3 and is provided with a cooling liquid tank 44, the mounting end of the cooling liquid tank 44 is arranged in correspondence with the side above the transparent cover 3, the mounting end of the cooling liquid tank 44 is fixedly connected with the side above the transparent cover 3, the other end of the circulating water pipe 43 is arranged in correspondence with the side of the cooling liquid tank 44, the one end of the circulating water pipe 43 away from the water pump one 42 is fixedly connected with the cooling liquid tank 44, the circulating water pipe 43 is arranged to pump the filtered cooling liquid in the liquid collecting hopper 41 to the cooling liquid tank 44 through the water pump one 42, a spraying pipe 45 is arranged on the side of the cooling liquid tank 44, a water pump two is arranged in the cooling liquid tank 44, the mounting end of the water pump two is fixedly connected with the inner wall of the cooling liquid tank 44, one end of the spraying pipe 45 is arranged in correspondence with the water pump two, the one end of the spraying pipe 45 is fixedly connected with the water outlet end of the water pump two, a pipe hole two is arranged on the transparent cover 3, the outer circle of the spraying pipe 45 is arranged in correspondence with the inner wall of the pipe hole two, the outer circle of the spraying pipe 45 is fixedly connected with the transparent cover 3 through the pipe hole two, a spray head 46 is arranged on the one end of the spraying pipe 45 away from the cooling liquid tank 44, a telescopic pipe 48 is arranged between the spraying pipe 45 and the spray head 46, one end of the telescopic pipe 48 is fixedly connected with the one end of the spraying pipe 45, a universal joint 49 is arranged between the telescopic pipe 48 and the spraying pipe 45, the mounting end of the universal joint 49 is fixedly connected with the outer circle of the one end of the telescopic pipe 48, the universal joint 49 is arranged to adjust the rotation angle of the spray head 46, the mounting end of the spray head 46 is arranged in correspondence with the one end of the telescopic pipe 48 away from the universal joint 49, the mounting end of the spray head 46 is fixedly connected with the one end of the telescopic pipe 48, the telescopic pipe 48 is arranged to adjust the position of the telescopic pipe 48, so that the cooling operation at different angles and positions can be adapted when the diamond is polished, the dust falling mechanism 4 is arranged to cool the crystal diamond during the polishing operation,Thus, the cracking of the crystal hot-fix diamond due to high temperature during grinding is avoided, the dust generated during grinding of the crystal hot-fix diamond is treated, the random flying of the dust is avoided, the cooling liquid is filtered, collected and recycled, the resource utilization is greatly improved, and the waste of resources is avoided.
[0023] In the embodiment, when the operator needs to perform the grinding operation on the crystal hot-fix diamond after shaping and curing, the operator first powers on the motor 21, the water pump one 42 and the water pump two in the cooling liquid tank 44, the motor 21 drives the grinding head 22 to rotate, the water pump two in the cooling liquid tank 44 pumps the cooling liquid in the cooling liquid tank 44, the cooling liquid is transmitted to the telescopic pipe 48 through the spray pipe 45, and then sprayed through the spray head 46, the operator slowly contacts the position to be ground of the crystal hot-fix diamond with the surface of the grinding head 22 through the handheld tool, the cooling liquid sprayed by the spray head 46 cools the crystal hot-fix diamond during grinding, and the dust generated during grinding is sprayed to avoid random flying, the sprayed cooling liquid flows into the liquid collecting hopper 41 through the liquid leakage hole 8 on the sieve plate 6, the liquid leakage hole 8 on the sieve plate 6 blocks the dust, the cooling liquid accumulated in the liquid collecting hopper 41 is filtered again through the microfiltration membrane 47 to screen the small dust in the cooling liquid, the cooling liquid flows to the bottom of the liquid collecting hopper 41, the small dust is blocked by the microfiltration membrane 47, the water pump one 42 pumps the filtered cooling liquid at the bottom of the liquid collecting hopper 41, and then the cooling liquid is transported to the cooling liquid tank 44 through the circulating water pipe 43 to form a circulation until the grinding operation of the crystal hot-fix diamond is completed.
[0024] The above specific embodiments are only preferred embodiments of the present application, and based on the technical solutions of the present application and the related inspiration of the above embodiments, those skilled in the art can make various alternative improvements and combinations on the above specific embodiments.
Claims
1. A dust-free high-speed polishing device for crystal hot-fixing diamonds, comprising a polishing table (1), characterized in that: The polishing table (1) is provided with a polishing mechanism (2) above it, the polishing mechanism (2) comprises a motor (21), the output end of the motor (21) is provided with a polishing head (22), the upper side of the polishing table (1) is provided with a transparent cover (3), the lower side of the polishing table (1) is provided with a dust falling mechanism (4), the dust falling mechanism (4) comprises a liquid collecting hopper (41) below the polishing table (1), the side of the liquid collecting hopper (41) away from the polishing table (1) is provided with a water pump (42), the water outlet end of the water pump (42) is connected with a circulating water pipe (43), one end of the circulating water pipe (43) is provided with a cooling liquid tank (44) above the transparent cover (3), the side of the cooling liquid tank (44) is provided with a spray pipe (45), the end of the spray pipe (45) away from the cooling liquid tank (44) is provided with a spray head (46), the polishing table (1) is provided with a liquid leakage groove (5), the liquid leakage groove (5) is provided with a sieve plate (6).
2. The device for dust-free high-speed polishing of water crystal hot-fix diamonds according to claim 1, characterized in that, The lower side of the polishing table (1) is provided with a plurality of supporting legs (7), the mounting end of the sieve plate (6) is correspondingly mounted with the inner wall of the liquid leakage groove (5), a plurality of liquid leakage holes (8) are formed in the sieve plate (6), and the upper side of the sieve plate (6) is provided in a concave shape.
3. The device for dustless high-speed polishing of water crystal hot-fix diamonds according to claim 1, characterized in that, The mounting end of the motor (21) is correspondingly mounted with the upper side of the polishing table (1), the transparent cover (3) is provided with a shaft hole, the output end of the motor (21) is provided with a stable frame (9) penetrating through the shaft hole, the mounting end of the stable frame (9) is correspondingly mounted with the upper side of the sieve plate (6), the output end outer ring of the motor (21) is correspondingly mounted with the top end inner wall of the stable frame (9), and the mounting end of the polishing head (22) is correspondingly mounted with the output shaft top end of the motor (21).
4. The device for dustless high-speed polishing of water crystal hot-fix diamonds according to claim 1, characterized in that, The mounting end of the transparent cover (3) is correspondingly mounted with the upper side of the polishing table (1), the inner diameter of the transparent cover (3) is the same as the diameter of the liquid leakage groove (5), the transparent cover (3) is provided with an operation window (10) on one side, and the transparent cover (3) is provided with a visual window (11) at a position above the operation window (10).
5. The device for dustless high-speed polishing of water crystal hot-fix diamonds according to claim 1, characterized in that, The mounting end of the liquid collecting hopper (41) is correspondingly mounted with the lower side of the polishing table (1) at the position of the liquid leakage groove (5), a microfiltration membrane (47) is arranged in the middle position of the liquid collecting hopper (41), a pipe hole one is formed in the lower side of the liquid collecting hopper (41), the mounting end of the water pump (42) is correspondingly mounted with the lower side of the liquid collecting hopper (41), and the water suction end of the water pump (42) is correspondingly mounted with the pipe hole one.
6. The device for dustless high-speed polishing of water crystal hot-fix diamonds according to claim 1, characterized in that, One end of the circulating water pipe (43) is correspondingly mounted with the water outlet end of the water pump (42), the other end of the circulating water pipe (43) is correspondingly mounted with one side of the cooling liquid tank (44), the mounting end of the cooling liquid tank (44) is correspondingly mounted with the upper side of the transparent cover (3), the cooling liquid tank (44) is provided with a water pump (2), one end of the spray pipe (45) is correspondingly mounted with the water pump (2), the transparent cover (3) is provided with a pipe hole two, and the outer ring of the spray pipe (45) is correspondingly mounted with the inner wall of the pipe hole two.
7. The device for dustless high-speed polishing of water crystal hot-fix diamonds according to claim 1, characterized in that, The telescopic pipe (48) is provided between the spray pipe (45) and the spray head (46), and a universal joint (49) is provided between the telescopic pipe (48) and the spray pipe (45), and the mounting end of the spray head (46) is correspondingly mounted with the end of the telescopic pipe (48) away from the universal joint (49).