A molded mold filter device
By using a molded filter device with rigid plate material and multi-format granular plate structure, the problems of poor support and limited filtration effect of traditional molded filter devices are solved, achieving stable support and efficient filtration, and reducing maintenance costs.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- CHANGSHU MYERS MASCH CO LTD
- Filing Date
- 2025-08-22
- Publication Date
- 2026-07-31
AI Technical Summary
Traditional molded filter structures have poor support, and single-layer filtration affects the filtration effect.
The main support plate is made of rigid plate material, combined with a matching inner lining plate and isolation plate with multi-format granular plate structure. The installation stability is enhanced by the snap-fit block structure, and multi-layer filtration is achieved through through holes and edge grooves to improve filtration accuracy and efficiency.
It provides solid support, reduces device deformation, improves filtration accuracy and efficiency, reduces maintenance costs, and ensures stable operation of the device.
Smart Images

Figure CN224575868U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of molding die technology, specifically to a molding die filter device. Background Technology
[0002] A molding die, also known as a mold, is a mold made according to the shape and structure of a real object in proportion. It is a tool that uses methods such as pressing or casting to shape the material into a certain shape.
[0003] When using current molding dies, a filter screen structure is required. Traditional filter screens are simply a single filter plate placed in a designated position on the mold, which results in poor support and the single-layer filtration also affects the filtration effect. Utility Model Content
[0004] The purpose of this utility model is to provide a mold filter screen device to solve the problem mentioned in the background art that when using current molds, a filter screen structure is required. Traditional filter screens are simply a single filter plate placed at a designated position in the mold, which results in poor support and the single-layer filtration also affects the filtration effect.
[0005] To achieve the above objectives, this utility model provides the following technical solution: a molded filter screen device, comprising a main support plate, side mating grooves symmetrically and evenly formed on both sides of the main support plate, an inner snap-fit groove formed on the inner side of the side mating groove, a placement top groove horizontally formed on the top surface of the main support plate, a mating inner liner plate fixedly arranged on the inner side of the placement top groove, an isolation plate horizontally snapped onto the inner side of the placement top groove, through holes evenly formed on the top surface of the isolation plate, a main filter plate horizontally fastened to the top surface of the isolation plate, edge slots evenly formed on the edge of the mating inner liner plate, mating filter blocks evenly fixedly snapped onto the top surface of the mating inner liner plate, and edge blocks horizontally and evenly fixedly arranged on the inner side of the placement top groove.
[0006] Preferably, the main support plate is made of a rigid plate material, and there are multiple side mating grooves. The multiple side mating grooves are divided into two groups and are symmetrically and equidistantly arranged on both sides of the main support plate. The side mating grooves are arranged in a horizontal line at the bottom of the side of the main support plate, and the bottom of the side mating groove extends through the bottom surface of the main support plate to the outside in an open shape.
[0007] Preferably, the inner locking groove and the side mating groove are connected internally, and the inner side of the inner locking groove is provided with a snap-fit block structure, and the top groove is horizontally opened through the center of the top surface of the main support plate.
[0008] Preferably, the mating liner plate adopts a multi-format granular plate structure, and the edge of the mating liner plate and the opening end of the top groove are provided with a specified distance between them.
[0009] Preferably, the isolation plate is horizontally positioned on the top surface of the mating liner plate, and the edge of the isolation plate is snapped onto the inner side of the placement top groove. There are multiple through holes, and all through holes are opened through the entire surface. The bottom end of each through hole is connected to the granular top of the mating liner plate.
[0010] Preferably, the bottom edge of the main filter plate is snapped into the inner side of the edge slot, and the filter block is evenly fixed at the center of the particle top of the inner liner plate. The side of the edge block is snapped into the side of the isolation plate.
[0011] Compared with the prior art, the beneficial effects of this utility model are: This molded mold filter device features a main support plate made of rigid plate material, providing a solid and stable foundation for the entire device during daily use. This ensures that the device will not deform or be damaged under stress during mold operation, extending its service life. The main support plate allows for precise installation with other mold components, and the snap-fit structure enhances installation stability, reducing vibration and loosening during mold operation and improving the accuracy and stability of mold operation. The top groove provides a neat space for the installation of internal components, and the multi-format granular plate structure of the inner lining plate increases the contact area and friction with components such as the isolation plate, resulting in a tighter connection between components, reducing relative movement and ensuring stable filtration performance. It can allow suitable materials to pass through according to their size and filtration requirements, while effectively blocking larger particles and impurities, thus achieving the function of preliminary filtration. This reduces the filtration burden on the main filter plate and improves the overall filtration efficiency. The main filter plate and the matching inner liner plate are installed by snap-fitting with edge slots, making it easy to install and disassemble the main filter plate. This facilitates cleaning, replacement, or maintenance when needed, reducing the maintenance and time costs of the equipment. The matching filter blocks are evenly arranged on the top surface of the matching inner liner plate for further fine filtration of the materials, improving the filtration accuracy. Attached Figure Description
[0012] Figure 1 This is a three-dimensional view showing the entire utility model separated and connected. Figure 2 This is a perspective view of the main support plate of this utility model; Figure 3 This is an enlarged detail view of part A of this utility model.
[0013] In the diagram: 1. Main support plate; 2. Side mating groove; 3. Inner snap-fit groove; 4. Placement top groove; 5. Mating inner lining plate; 6. Isolation plate; 7. Through hole; 8. Main filter plate; 9. Edge groove; 10. Mating filter block; 11. Edge snap-fit block. Detailed Implementation
[0014] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model. Example 1
[0015] like Figure 1-3 As shown, this utility model provides a technical solution: a molded filter screen device, including a main support plate 1. Side mating grooves 2 are symmetrically and evenly provided on both sides of the main support plate 1. The main support plate 1 is made of a rigid plate material. There are multiple side mating grooves 2, arranged in two groups symmetrically and equidistantly on both sides of the main support plate 1. The side mating grooves 2 are arranged horizontally in a straight line at the bottom of the side of the main support plate 1. The bottom end of the side mating groove 2 extends through the bottom surface of the main support plate 1 to the outside, forming an opening. The inner... An inner snap-fit groove 3 is provided on the side, and a placement top groove 4 is horizontally provided on the top surface of the main support plate 1. The inner snap-fit groove 3 is connected to the inside of the side mating groove 2, and a snap-fit block structure is provided on the inner side of the inner snap-fit groove 3. The placement top groove 4 is horizontally opened through the center of the top surface of the main support plate 1. A mating inner lining plate 5 is fixedly provided on the inner side of the placement top groove 4. The mating inner lining plate 5 adopts a multi-format particle plate structure, and a specified distance is left between the edge of the mating inner lining plate 5 and the opening end of the placement top groove 4. An isolation plate 6 is horizontally snapped on the inner side of the placement top groove 4.
[0016] The inner locking groove 3, opened on the inner side of the side mating groove 2, has a locking block structure on its inner side that can interlock with the locking parts of the corresponding components during installation, further enhancing the stability of the installation. The horizontally opened placement groove 4 on the top surface of the main support plate 1, horizontally penetrating the center of the top surface, provides space for the installation of subsequent components. The mating inner lining plate 5, fixed inside the placement groove 4, adopts a multi-format granular plate structure. This structure increases the contact area and friction with subsequent components, and the edge of the mating inner lining plate 5 has a specified distance from the opening end of the placement groove 4, reserving operating space for the installation of other components. Example 2
[0017] like Figure 1-3As shown, this utility model provides a technical solution: a molded filter screen device, including a main support plate 1. Side mating grooves 2 are symmetrically and evenly provided on both sides of the main support plate 1. The main support plate 1 is made of a rigid plate material. Multiple side mating grooves 2 are arranged in two groups, symmetrically and equidistantly on both sides of the main support plate 1. The side mating grooves 2 are arranged horizontally in a straight line at the bottom of the side of the main support plate 1. The bottom of the side mating groove 2 extends through the bottom surface of the main support plate 1 to the outside, forming an opening. An inner locking groove 3 is provided on the inner side of the side mating groove 2. A top placement groove 4 is horizontally provided on the top surface of the main support plate 1. The inner locking groove 3 is in communication with the interior of the side mating groove 2, and a snap-fit block structure is provided on the inner side of the inner locking groove 3. The top placement groove 4 is horizontally through-hole. A matching inner lining plate 5 is fixedly installed on the inner side of the top groove 4 at the center of the top surface of the main support plate 1. The matching inner lining plate 5 adopts a multi-format granular plate structure, and the edge of the matching inner lining plate 5 and the opening end of the top groove 4 are left with a specified distance. An isolation plate 6 is horizontally snapped onto the inner side of the top groove 4. The top surface of the isolation plate 6 is evenly provided with through holes 7. The isolation plate 6 is horizontally positioned on the top surface of the matching inner lining plate 5, and the edge of the isolation plate 6 is snapped onto the inner side of the top groove 4. There are multiple through holes 7, and all of the through holes 7 are opened through. The bottom end of the through holes 7 is connected to the granular top of the matching inner lining plate 5. The top surface of the isolation plate 6 is horizontally snapped onto the main filter plate 8, and the edge grooves 9 are evenly provided on the edge of the matching inner lining plate 5.
[0018] Multiple through holes 7 are evenly opened on the top surface of the isolation plate 6, and the bottom end is connected to the granular top position of the inner liner plate 5. These through holes 7 play the role of filtering and circulating materials, allowing qualified materials to pass through, while blocking larger particles or impurities. Example 3
[0019] like Figure 1-3As shown, this utility model provides a technical solution: a molded filter screen device, including a main support plate 1. Side mating grooves 2 are symmetrically and evenly provided on both sides of the main support plate 1. The main support plate 1 is made of a rigid plate material. There are multiple side mating grooves 2, arranged in two groups symmetrically and equidistantly on both sides of the main support plate 1. The side mating grooves 2 are arranged horizontally in a straight line at the bottom of the side of the main support plate 1. The bottom of the side mating grooves 2 penetrates the main support plate. The bottom surface of the support plate 1 extends outward in an open shape. An inner locking groove 3 is provided on the inner side of the side fitting groove 2. A placement top groove 4 is horizontally provided on the top surface of the main support plate 1. The inner locking groove 3 is connected to the interior of the side fitting groove 2, and a snap-fit block structure is provided on the inner side of the inner locking groove 3. The placement top groove 4 is horizontally and through-hole located at the center of the top surface of the main support plate 1. A mating inner lining plate 5 is fixedly provided on the inner side of the placement top groove 4. The mating inner lining plate 5 adopts a multi-format particle board structure. A specified distance is left between the edge of the top groove 4 and the opening end of the top groove 4. An isolation plate 6 is horizontally engaged with the inner side of the top groove 4. Through holes 7 are evenly distributed on the top surface of the isolation plate 6. The isolation plate 6 is horizontally positioned on the top surface of the inner liner 5, and the edge of the isolation plate 6 is engaged with the inner side of the top groove 4. There are multiple through holes 7, and all of them are through holes. The bottom end of the through holes 7 is aligned with the granular top of the inner liner 5. The top surface of the card plate 6 is horizontally fastened with the main filter plate 8. The edge grooves 9 are evenly opened at the edge position of the inner liner plate 5. The top surface of the inner liner plate 5 is evenly fixedly fastened with the matching filter block 10. The inner side of the top groove 4 is horizontally and evenly fixedly set with the edge block 11. The bottom edge of the main filter plate 8 is fastened to the inner side of the edge groove 9. The matching filter block 10 is evenly fixedly set at the center position of the particle top of the inner liner plate 5. The side of the edge block 11 is fastened to the side of the isolation card plate 6.
[0020] The filter blocks 10, which are evenly fixed and snapped onto the top surface of the inner liner plate 5, are evenly arranged at the center of the top of the particles, further enhancing the filtration effect and providing more detailed filtration of the materials. The edge blocks 11, which are evenly fixed horizontally on the inner side of the top groove 4, are also evenly fixed and snapped onto the side of the isolation plate 6, which reinforces the internal structure of the entire device and prevents the components from loosening or shifting due to stress during the mold operation, ensuring the stable and reliable operation of the entire molding mold filter screen device.
[0021] Working principle: The main support plate 1 plays a crucial role as the basic support structure of the entire device. It is made of rigid plate material, which ensures the stability and durability of the device. Multiple side mating grooves 2 are symmetrically and evenly opened on both sides of the main support plate 1, and are arranged in two groups at equal intervals at the bottom of both sides. The bottom ends extend through the bottom surface of the main support plate 1 to the outside in an open shape. These side mating grooves 2 are used to mate with other mold components and ensure the accurate position of the main support plate 1 in the mold. The inner locking groove 3, opened on the inner side of the side fitting groove 2, has a locking block structure on its inner side that can interlock with the locking part of the corresponding component during installation. The mating liner 5, fixed inside the top groove 4, adopts a multi-format granular plate structure. This structure increases the contact area and friction with subsequent components, and the edge of the mating liner 5 has a specified distance from the opening end of the top groove 4. Multiple through holes 7 are evenly opened on the top surface of the isolation plate 6, and the bottom end is set at the granular tip of the mating liner 5. These through holes 7 serve to filter and allow materials to flow, allowing qualified materials to pass through. The bottom edge of the main filter plate 8 is locked inside the edge locking groove 9 evenly opened on the edge of the mating liner 5. This design makes the main filter plate 8 firmly installed and not easy to move. The mating filter blocks 10, evenly fixed and locked on the top surface of the mating liner 5, are evenly arranged at the center of the granular tip, further enhancing the filtration effect.
[0022] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A forming die filter screen device comprising a main support plate (1), characterised in that: The main support plate (1) has symmetrical and uniformly provided side mating grooves (2) on both sides. The inner side of the side mating groove (2) has an inner snap-fit groove (3). The top surface of the main support plate (1) has a horizontally provided placement top groove (4). The inner side of the placement top groove (4) is fixedly provided with a mating inner lining plate (5). The inner side of the placement top groove (4) is horizontally snapped with an isolation plate (6). The top surface of the isolation plate (6) has uniformly provided through holes (7). The top surface of the isolation plate (6) is horizontally snapped with a main filter plate (8). The edge of the mating inner lining plate (5) has uniformly provided edge snap-fit grooves (9). The top surface of the mating inner lining plate (5) is uniformly fixedly snapped with a mating filter block (10). The inner side of the placement top groove (4) is horizontally and uniformly provided with an edge snap-fit block (11).
2. A forming die filter screen apparatus according to claim 1, wherein: The main support plate (1) is made of hard plate material. There are multiple side mating grooves (2), and the multiple side mating grooves (2) are divided into two groups and arranged symmetrically and equally at both sides of the main support plate (1). The side mating grooves (2) are arranged horizontally in a straight line at the bottom of the side of the main support plate (1). The bottom of the side mating grooves (2) extends through the bottom surface of the main support plate (1) to the outside in an open shape.
3. A forming die filter screen apparatus as defined in claim 1, wherein: The inner locking groove (3) and the side mating groove (2) are connected internally, and the inner side of the inner locking groove (3) is provided with a buckle block structure, and the top groove (4) is horizontally opened through the center of the top surface of the main support plate (1).
4. A forming die screen apparatus as claimed in claim 1, wherein: The inner lining plate (5) adopts a multi-format granular plate structure, and the edge of the inner lining plate (5) and the opening end of the top groove (4) are spaced at a specified distance from each other.
5. The molding die filter device according to claim 1, characterized in that: The isolation plate (6) is horizontally positioned on the top surface of the inner liner plate (5), and the edge of the isolation plate (6) is snapped onto the inner side of the top groove (4). There are multiple through holes (7), and all through holes (7) are opened through the liner plate (5). The bottom end of the through hole (7) is connected to the granular top end of the inner liner plate (5).
6. The molding die filter device according to claim 1, characterized in that: The bottom edge of the main filter plate (8) is snapped into the inner side of the edge slot (9), and the filter block (10) is evenly fixed at the center of the particle top of the inner liner plate (5). The side of the edge slot (11) is snapped into the side of the isolation plate (6).