Novel rhinestone and patent leather separating device
By installing a baffle plate and an elastic connection structure in the rhinestone paint separation device, the problem of rhinestones being adsorbed is solved, the separation efficiency and feeding rate are improved, and the production cost is reduced.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- HUBEI YUXING CRYSTAL JEWELRY CO LTD
- Filing Date
- 2025-03-27
- Publication Date
- 2026-04-17
AI Technical Summary
Existing rhinestone paint separation devices tend to trap rhinestones, affecting separation efficiency and feeding rate.
A novel rhinestone paint separation device was designed, including a base, a sieving tank, a vibration component, and an exhaust fan. By setting a baffle plate to separate the air inlet pipe from the sieve plate, the airflow is guided to flow along the length of the sieving tank to prevent the rhinestone from being sucked up. The base is a rectangular frame formed by four crossbeams, and the sieving tank and the base are connected by elastic elements to reduce vibration transmission. The sieve plate is set at an inclination to facilitate the movement of the rhinestone.
It improves the efficiency of separating rhinestone paint, prevents rhinestones from being adsorbed, ensures the feeding rate, and reduces production costs.
Smart Images

Figure CN224127795U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of rhinestone production technology, specifically a novel rhinestone paint separation device. Background Technology
[0002] Rhinestones are jewelry accessories made by cutting rough beads into diamond facets. They are popular because they are relatively inexpensive and offer a dazzling diamond-like visual effect. During rhinestone production, depending on customer needs, rhinestones sometimes require painting. However, in subsequent processing steps, such as rhinestone removal, paint chips often peel off due to differences in paint adhesion between individual rhinestones. These paint chips continue to be processed with other rhinestones, affecting product quality. Existing technology uses vibrating screens to remove the paint chips. Common vibrating screens include a base, a screen trough mounted on the base via an elastic structure, a vibrating motor at the bottom of the screen trough, and a feed hopper located on the base above and in front of the screen trough. The screen trough is angled downwards from front to back, and a screen plate is installed along its direction inside.
[0003] A high-efficiency paint separation device for rhinestones is disclosed in relevant documents, belonging to the field of rhinestone production technology. It includes a base, a screen groove, a vibrating motor, a feed hopper, an exhaust fan, a lower negative pressure chamber below the front of the screen groove, an upper negative pressure chamber between the feed hopper and the front end of the screen plate, and a connecting pipe between the lower front side of the upper negative pressure chamber and the upper front side of the lower negative pressure chamber. The screen groove is arranged obliquely downwards from front to back and contains a screen plate. Both the upper and lower negative pressure chambers are located on the base. The upper negative pressure chamber has a strip-shaped feed inlet on the rear side of its top along the left and right directions, and its bottom is arranged obliquely downwards from front to back, with a strip-shaped discharge outlet on the rear side of its bottom along the left and right directions. The feed inlet is located directly below the discharge port of the feed hopper, and the discharge outlet is located directly above the front end of the screen plate. The lower front side of the screen groove is open and connected to the top of the lower negative pressure chamber through a pipe. The connecting pipe is located in front of the screen groove, the vibrating motor is located behind the pipe, and the exhaust fan is connected to the front side of the lower negative pressure chamber through a pipe.
[0004] The exhaust fan of this paint separation device can easily suck up the rhinestones. Utility Model Content
[0005] The purpose of this invention is to provide a novel rhinestone paint separation device to solve at least one of the above-mentioned technical problems.
[0006] To achieve the above objectives, the technical solution adopted by this utility model is as follows:
[0007] A novel rhinestone paint separation device includes:
[0008] Base;
[0009] The sieving trough located above the base has a sieve plate inside, which divides the internal space of the sieving trough from top to bottom into a sieving space and a paint receiving cavity.
[0010] A vibration assembly is connected to the sieve plate to drive the sieve plate to vibrate;
[0011] An exhaust fan is provided, with an air inlet connected to an air inlet pipe. The air inlet pipe connects from the bottom of the sieving tank to the paint receiving cavity. A baffle plate is provided inside the paint receiving cavity, and the baffle plate is located between the inlet of the air inlet pipe and the sieve plate.
[0012] This utility model features a base for mounting a sieving trough, which, in conjunction with a sieve plate, separates paint residue from rhinestones. Above the sieve plate is a sieving space for separating rhinestones and paint residue, and below the sieve plate is a paint residue receiving cavity for holding the separated paint residue. A vibration component is used to vibrate the sieve plate, and an exhaust fan is used to suck away the paint residue.
[0013] This invention uses a baffle plate to separate the inlet of the air inlet pipe from the sieve plate, guiding the airflow along the length of the sieve groove to the inlet of the air inlet pipe. This prevents the water drills directly opposite the air inlet pipe from being sucked onto the sieve plate. Without the baffle plate, because the water drills are lightweight, those directly opposite the inlet of the air inlet pipe would be directly sucked into the air inlet pipe, causing them to be adsorbed onto the sieve plate. This would affect the paint separation efficiency of the water drills and also affect the feeding rate of the water drills.
[0014] Specifically, the base includes four crossbeams, which are connected end to end to form a rectangular frame. The base is a rectangular frame, and the crossbeams are used to assemble the base, which has a low cost.
[0015] Furthermore, the base and the screening trough are connected by multiple elastic elements. Each elastic element includes a compression spring and an upper connecting post and a lower connecting post inserted within the compression spring. The top end of the compression spring is fixed to the upper connecting post, and the bottom end of the compression spring is fixed to the lower connecting post. The top end of the upper connecting post is fixed to the bottom of the screening trough, and the bottom end of the lower connecting post is fixed to the top of the base. A compression space is provided between the upper and lower connecting posts. The elastic elements are used to connect the screening trough and the base, reducing vibration transmitted from the screening trough to the base. The compression spring reduces vibration transmitted from the screening trough to the base. The upper connecting post connects the compression spring to the screening trough, and the lower connecting post connects the compression spring to the base. The upper and lower connecting posts also guide the compression spring. The compression space prevents the upper connecting post from contacting the lower connecting post when the compression spring is compressed, ensuring that the upper and lower connecting posts do not affect the compression of the spring.
[0016] Furthermore, the screening space includes an inlet end and an outlet end. The screen plate is inclined downward along the direction from the inlet end to the outlet end. The water drill enters the screening space from the inlet end and leaves the screening space from the outlet end. By inclining the screen plate, it is convenient for the water drill to move from the inlet end to the outlet end during vibration.
[0017] Furthermore, the screening trough is a rectangular trough with an opening on its top surface. By making the screening trough rectangular, it is easier to process and manufacture the screening trough. The opening on the top surface of the screening trough also facilitates the processing and manufacturing of the screening trough and can save materials used for processing and manufacturing the screening trough.
[0018] Furthermore, the bottom surface of the sieving trough is arranged parallel to the sieve plate, which facilitates the movement of the paint that falls into the paint receiving cavity to the air inlet pipe.
[0019] Furthermore, a feeding hopper is provided above the feeding end, and the feeding hopper is connected to the screening space. The feeding hopper is used for water drilling feeding, making feeding more convenient.
[0020] Furthermore, a discharge trough is provided at the discharge end, and the discharge trough is connected to the screening space. The discharge trough facilitates the discharge of the water drill with paint separation.
[0021] Specifically, the vibration assembly includes a vibration motor, which is fixed to the bottom surface of the screening trough. The screening trough is fixedly connected to the screen plate. The vibration motor is used to vibrate the screen plate, thereby sifting the paint skin from the screen plate to the area below the screen plate, that is, sifting the paint skin from the screening space into the paint skin receiving cavity. The vibration motor is fixed to the screening trough, and the screen plate is set inside the screening trough. The screen plate and the screening trough are also fixedly connected, so that the vibration motor can drive the screen plate to vibrate together.
[0022] Furthermore, the inner wall of the screening tank is provided with a support portion, the support portion is provided with a first buffer portion, the first buffer portion is provided with the screen plate, the screen plate is provided with a second buffer portion, the second buffer portion is provided with a fixing member, and several mounting plates are fixed to the inner wall of the screening tank. The mounting plates have threaded holes, and screws are screwed into the threaded holes. One end of the screw abuts against the fixing member to press the screen plate against the support portion. The support portion is used to support the mounted screen plate, the first buffer portion is used to provide cushioning between the support portion and the screen plate, so that the screen plate can be fixed more firmly and tightly to the support portion, and the fixing member is used to fix the screen plate to the support portion. The second buffer section provides cushioning between the screen plate and the fixing component, making the fixation between the screen plate and the fixing component more stable and tighter. The mounting plate, in conjunction with the screw, can press the fixing component against the second buffer section, which in turn presses against the screen plate. The screen plate presses against the first buffer section, which in turn presses against the support section. The support section is fixed on the screening groove, thus fixing the screen plate on the screening groove. Specifically, turning the screw can move the screw closer to or away from the screen plate. If the fixing component is not provided and the screw is directly pressed against the screen plate, the contact area between the screw and the screen plate is small. Moreover, because the screen plate is thin, it is easy to warp and deform after long-term use, resulting in gaps between the screen plate and the screening groove that can be drilled through.
[0023] Compared with the prior art, the beneficial effects of this utility model are:
[0024] This invention uses a baffle plate to separate the inlet of the air inlet pipe from the sieve plate, guiding the airflow along the length of the sieve groove to the inlet of the air inlet pipe. This prevents the water drills directly opposite the air inlet pipe from being sucked onto the sieve plate. Without the baffle plate, because the water drills are lightweight, those directly opposite the inlet of the air inlet pipe would be directly sucked into the air inlet pipe, causing them to be adsorbed onto the sieve plate. This would affect the paint separation efficiency of the water drills and also affect the feeding rate of the water drills. Attached Figure Description
[0025] Figure 1 This is a schematic diagram of the structure of a novel rhinestone paint separation device in this embodiment;
[0026] Figure 2 This is a schematic diagram of a novel rhinestone paint separation device without a sieve plate in this embodiment;
[0027] Figure 3 This is a cross-sectional view of the connection between the sieve plate and the sieve trough in this embodiment;
[0028] Figure 4 This is a schematic diagram of the elastic element in this embodiment;
[0029] In the diagram: 1. Base; 101. Crossbeam; 2. Screening trough; 3. Screen plate; 4. Exhaust fan; 5. Elastic component; 501. Compression spring; 502. Upper connecting column; 503. Lower connecting column; 6. Baffle plate; 7. Feed hopper; 8. Discharge trough; 9. Vibration motor; 10. Support part; 11. First buffer part; 12. Second buffer part; 13. Fixing component; 14. Mounting plate; 15. Screw; 16. Air inlet pipe. Detailed Implementation
[0030] The technical solution of this utility model will now be clearly and completely described with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this utility model, and not all of them. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.
[0031] like Figure 1 and Figure 2 As shown, this embodiment provides a novel rhinestone paint separation device, including: a base 1, a sieving tank 2, a sieve plate 3, a vibration assembly, and an exhaust fan 4.
[0032] The base 1 includes four crossbeams 101, which are connected end to end to form a rectangular frame. The crossbeams 101 can be made of metal, for example, steel. In this embodiment, the base 1 can be a rectangular base 1.
[0033] The sieving trough 2 is located above the base 1, and a sieve plate 3 is installed inside it to divide the internal space of the sieving trough 2 into a sieving space and a paint receiving cavity from top to bottom. In this embodiment, the sieving space includes an inlet end and an outlet end. The sieve plate 3 is inclined downward along the direction from the inlet end to the outlet end. That is, the sieve plate 3 is inclined, with the higher end of the sieve plate 3 being the inlet end and the lower end of the sieve plate 3 being the outlet end.
[0034] In this embodiment, the sieving trough 2 is a rectangular trough with an opening on its top surface. Specifically, the sieving trough 2 can be a rectangular trough, that is, the sieving trough 2 can be a rectangular box with an opening on its top surface.
[0035] Furthermore, the bottom surface of the sieve 2 is set parallel to the sieve plate 3.
[0036] Furthermore, a feed hopper 7 is provided above the feed end, and the feed hopper 7 is connected to the screening space. Specifically, the bottom of the feed hopper 7 is connected to the powder screening space. After the water drill is poured into the feed hopper 7, it falls from the bottom of the feed hopper 7 onto the screen plate 3.
[0037] Furthermore, a discharge trough 8 is provided at the discharge end, and the discharge trough 8 is connected to the screening space. In this embodiment, the discharge trough 8 is fixedly connected to the screen plate 3 and the screening trough 2 to achieve communication with the powder screening space. The discharge trough 8 has an opening on one side near the discharge end. The bottom surface of the discharge trough 8 is fixedly and sealed to the screen plate 3. The two sides of the discharge trough 8 adjacent to its opening are fixedly and sealed to the sides of the corresponding screening trough 2. A portion of the side of the screening trough 2 corresponding to the discharge trough 8 is opened, that is, the part of the side of the screening trough 2 corresponding to the discharge trough 8 located above the screen plate 3 is opened. The discharge trough 8, the screening trough 2, and the screen plate 3 can be fixedly connected by welding.
[0038] A vibration assembly is connected to the sieve plate 3 to drive the sieve plate 3 to vibrate.
[0039] Specifically, the vibration assembly includes a vibration motor 9, which is fixed to the bottom surface of the screening trough 2. The screening trough 2 is fixedly connected to the sieve plate 3. In this embodiment, the vibration motor 9 can be fixed to the screening trough 2 by welding, and the vibration motor 9 can be fixed at the center of the outer bottom surface of the screening trough 2.
[0040] The exhaust fan 4 has an air inlet connected to an air inlet pipe 16. The air inlet pipe 16 connects from the bottom of the sieve 2 to the paint receiving cavity. The paint receiving cavity is equipped with a baffle plate 6, which is located between the inlet of the air inlet pipe 16 and the sieve plate 3.
[0041] In this embodiment, a dust collection bag can be installed at the air outlet of the exhaust fan 4 to collect the separated paint skin.
[0042] Furthermore, such as Figure 1 and Figure 4 As shown, the base 1 and the screening trough 2 are connected by multiple elastic elements 5. The elastic element 5 includes a compression spring 501 and an upper connecting post 502 and a lower connecting post 503 inserted in the compression spring 501. The top end of the compression spring 501 is fixed to the upper connecting post 502, and the bottom end of the compression spring 501 is fixed to the lower connecting post 503. The top end of the upper connecting post 502 is fixed to the bottom of the screening trough 2, and the bottom end of the lower connecting post 503 is fixed to the top of the base 1. A compression space is provided between the upper connecting post 502 and the lower connecting post 503.
[0043] In this embodiment, the number of elastic elements 5 can be four, and the four elastic elements 5 are respectively fixed to the four corners of the base 1.
[0044] In this embodiment, the upper connecting column 502 is fixed to the screening groove 2 by welding, and the lower connecting column 503 is fixed to the base 1 by welding. That is, the lower connecting column 503 is fixed to the crossbeam 101 by welding.
[0045] Furthermore, such as Figure 3As shown, the inner wall of the screening tank 2 is provided with a support part 10, the support part 10 is provided with a first buffer part 11, the first buffer part 11 is provided with a screen plate 3, the screen plate 3 is provided with a second buffer part 12, the second buffer part 12 is provided with a fixing member 13, and several mounting plates 14 are fixed on the inner wall of the screening tank 2. The mounting plates 14 are provided with threaded holes, and screws 15 are screwed into the threaded holes. One end of the screw 15 abuts against the fixing member 13 to press the screen plate 3 against the support part 10.
[0046] In this embodiment, the support part 10 can be a rectangular frame formed by connecting four angle steels end to end. The four angle steels are fixed to the four sides of the screening groove 2 respectively, and the angle steels are fixed to the sides of the screening groove 2 by welding.
[0047] In this embodiment, the first buffer part 11 is also rectangular. The first buffer part 11 can be a rubber layer set on the upper surface of the angle steel, or it can be a rectangular frame formed by four long strips of wooden boards.
[0048] In this embodiment, the second buffer part 12 can be a rectangular frame with a notch, the notch of the second buffer part 12 corresponds to the position of the discharge trough 8, and the second buffer part 12 can be a rectangular frame with a notch formed by connecting three long strips of wooden boards, the positions of these three wooden boards correspond to the three sides of the screening trough 2.
[0049] In this embodiment, the fixing member 13 can also be a rectangular frame with a notch. The notch of the fixing member 13 corresponds to the position of the discharge trough 8. The fixing member 13 can be a rectangular frame with a notch formed by connecting three rigid square rods. The positions of these three square rods correspond to the three sides of the screening trough 2. The square rods can be square steel pipes.
[0050] In this embodiment, the number of mounting plates 14 can be four. The four mounting plates 14 are located above the sieve plate 3. The mounting plates 14 can be arranged parallel to the sieve plate 3. The four mounting plates 14 can be arranged in pairs on two opposite sides of the sieve trough 2. The mounting plates 14 can be fixed to the sieve trough 2 by welding.
[0051] It should be noted that although the present invention has been disclosed above with specific embodiments, the above embodiments are not intended to limit the present invention. Those skilled in the art can make various modifications and refinements without departing from the spirit and scope of the present invention. Therefore, the scope of protection of the present invention shall be determined by the scope defined in the claims.
Claims
1. A novel water bortz leather separating device characterized in that, include: Base; The sieving trough located above the base has a sieve plate inside, which divides the internal space of the sieving trough from top to bottom into a sieving space and a paint receiving cavity. A vibration assembly is connected to the sieve plate to drive the sieve plate to vibrate; An exhaust fan is provided, with an air inlet connected to an air inlet pipe. The air inlet pipe connects from the bottom of the sieving tank to the paint receiving cavity. A baffle plate is provided inside the paint receiving cavity, and the baffle plate is located between the inlet of the air inlet pipe and the sieve plate.
2. A new type of water diamond paint leather separation device according to claim 1, characterized in that, The base includes four crossbeams, which are connected end to end to form a rectangular frame.
3. A new type of water diamond paint leather separation device according to claim 1, characterized in that, The base and the screening trough are connected by multiple elastic elements. Each elastic element includes a compression spring and an upper connecting column and a lower connecting column inserted into the compression spring. The top end of the compression spring is fixed to the upper connecting column, and the bottom end of the compression spring is fixed to the lower connecting column. The top end of the upper connecting column is fixed to the bottom of the screening trough, and the bottom end of the lower connecting column is fixed to the top of the base. A compression space is provided between the upper connecting column and the lower connecting column.
4. A new type of water diamond paint leather separation device according to claim 1, characterized in that, The screening space includes an inlet end and an outlet end, and the screen plate is inclined downward along the direction from the inlet end to the outlet end.
5. A new type of water diamond paint leather separation device according to claim 4, characterized in that, The sieving trough is a rectangular trough with an opening on its top surface.
6. A new type of water diamond paint leather separation device according to claim 5, characterized in that, The bottom surface of the sieving trough is arranged parallel to the sieve plate.
7. A novel rhinestone paint separation device as described in claim 4, characterized in that, A feeding hopper is provided above the feeding end, and the feeding hopper is connected to the screening space.
8. A new type of water diamond paint leather separation device according to claim 4, characterized in that, The discharge end is provided with a discharge trough, which is connected to the screening space.
9. A new type of water diamond paint leather separation device according to claim 1, characterized in that, The vibration assembly includes a vibration motor, which is fixed to the bottom surface of the sieving trough, and the sieving trough is fixedly connected to the sieve plate.
10. A new type of water diamond paint leather separation device according to claim 1, characterized in that, The inner wall of the sieving tank is provided with a support portion, the support portion is provided with a first buffer portion, the first buffer portion is provided with the sieve plate, the sieve plate is provided with a second buffer portion, the second buffer portion is provided with a fixing member, and several mounting plates are fixed to the inner wall of the sieving tank. The mounting plates are provided with threaded holes, and screws are screwed into the threaded holes. One end of the screw abuts against the fixing member to press the sieve plate against the support portion.