Vibration mechanism of brick making equipment
By setting a vibration box in the middle of the bottom surface of the vibrating plate and using vibration damping components in the brick-making equipment, the problem of excessive vibration causing the frame to shake was solved, thus improving the brick-making effect.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- QUANZHOU YIXIN MASCH TECH CO LTD
- Filing Date
- 2025-05-06
- Publication Date
- 2026-05-01
AI Technical Summary
When producing bricks for large water conservancy projects, the existing brick-making machine has excessive vibration force due to the vibration box being locked to the frame. This causes the frame to shake, affecting the normal operation of the feeding mechanism, the material distribution mechanism, and the brick-making pressure head, resulting in poor brick-making quality.
The vibration box is placed in the middle of the bottom surface of the vibration plate, and a vibration damping component is installed between the vibration plate and the base. The vibration damping component consists of vibration damping rubber gaskets surrounding the vibration box to reduce the transmission of vibration force to the frame.
It effectively reduces the impact of vibration on the frame, prevents the frame from shaking, ensures the normal operation of equipment such as the feeding mechanism, the material distribution mechanism, and the brick-making press head, and improves the brick-making effect.
Smart Images

Figure CN224183322U_ABST
Abstract
Description
A vibration mechanism for brick making equipment Technical Field
[0001] This utility model relates to the field of brick-making equipment technology, and in particular to a vibration mechanism for brick-making equipment. Background Technology
[0002] A brick-making machine is a mechanical device used to produce masonry bricks. It typically uses stone powder, fly ash, slag, mineral slag, crushed stone, sand, and water as raw materials. The process involves mixing, extruding the brick blanks, drying, baking, and sintering to produce masonry bricks. Existing brick-making machines include a feeding mechanism, a material placing trolley, brick-making molds, a brick-making press head, and a vibrating box. The feeding mechanism feeds the mixed concrete raw materials into the material placing trolley, which then transports and evenly distributes the concrete raw materials into the brick-making mold. The vibrating box vibrates the concrete raw materials within the mold to ensure uniform and dense compaction. Finally, the bricks are demolded and cured to form masonry bricks. When producing bricks for large-scale water conservancy projects, a large amount of concrete raw material is fed into the brick-making mold, requiring significant vibration force and a relatively long vibration time to ensure uniform and dense compaction. However, existing vibrating boxes are locked to the frame, and the large vibration force can cause the frame to shake, which in turn affects the normal operation of the feeding mechanism, material placing mechanism, and brick-making press head, resulting in poor brick-making quality.
[0003] In view of this, the applicant has deeply conceived and actively researched and tested improvements to address the numerous deficiencies and inconveniences caused by the imperfect structure of the vibration mechanism of the aforementioned brick-making equipment, and thus developed and designed this project. Summary of the Invention
[0004] The purpose of this utility model is to provide a vibration mechanism for brick-making equipment. The vibration box is set in the middle of the bottom surface of the vibration plate, and the vibration box is not directly locked to the base. A vibration damping component is provided between the vibration plate and the base. The vibration damping rubber gasket of the vibration damping component surrounds the vibration box, which can reduce the transmission of vibration force from the vibration box to the frame, and prevent the frame from shaking and affecting the normal operation of the feeding mechanism, the material feeding mechanism, the brick-making press head and other equipment on the frame, resulting in better brick-making effect.
[0005] To achieve the above objectives, the solution of this utility model is:
[0006] A vibration mechanism for a brick-making device includes a base, a support platform, a vibration table, a vibration box, and a vibration damping assembly mounted on a frame. The support platform has two support columns respectively located at the front and rear ends of the base and multiple support members parallel to the two support columns. The vibration table has a vibrating plate mounted above the base and multiple vibrating members parallel to the top surface of the vibrating plate. The base has a rectangular frame located below the vibrating plate. The top surface of the vibration box is locked to the center of the bottom surface of the vibrating plate, and the bottom surface of the vibration box passes through the rectangular frame and is supported on a support plate at the bottom of the frame. The vibration damping assembly has multiple damping rubber gaskets disposed between the bottom surface of the vibrating plate and the top surface of the rectangular frame and surrounding the vibrating box.
[0007] The vibration damping assembly has two sets of laterally distributed transverse groups and two sets of longitudinally distributed longitudinal groups. The transverse groups are arranged on the side of the vibrating plate parallel to the support column, and the longitudinal groups are arranged on the side of the vibrating plate perpendicular to the support column. The transverse groups are provided with two rows of vibration damping rubber washers, and the longitudinal groups are provided with one row of vibration damping rubber washers.
[0008] The vibration damping rubber gasket is composed of an upper gasket, a middle gasket, and a lower gasket, wherein the outer diameters of the upper and lower gaskets are larger than the outer diameter of the middle gasket.
[0009] The two support columns are located on the front and rear sides of the vibrating plate, and the two ends of the support extend out of the two ends of the vibrating plate, respectively.
[0010] The number of support members is six, the number of vibration members is eleven, the vibration members are arranged in parallel at equal intervals, the support members are arranged symmetrically with respect to the vibration member located in the middle position, and the support members are spaced apart by one or two vibration members.
[0011] In the non-vibrating state, the top end of the support member is flush with the top end of the vibrating member.
[0012] The base is provided with two baffles that are perpendicular to the support column, and the two baffles are located outside the two outermost vibrating members, and the top of the baffles is higher than the top of the support member.
[0013] With the above structure, the vibration mechanism of the brick-making equipment of this utility model sets the vibration box in the middle of the bottom surface of the vibration plate, and the vibration box is not directly locked to the base; and a vibration damping component is provided between the vibration plate and the base. The vibration damping rubber gasket of the vibration damping component surrounds the vibration box, which can reduce the vibration force of the vibration box transmitted to the frame, and prevent the frame from shaking and affecting the normal operation of the feeding mechanism, the material feeding mechanism, the brick-making press head and other equipment on the frame, resulting in better brick-making effect. Attached Figure Description
[0014] Figure 1 is a top view of the vibration mechanism of the brick-making equipment of this utility model;
[0015] Figure 2 is a cross-sectional view of the vibration mechanism of the brick-making equipment of this utility model along the AA direction.
[0016] Figure 3 is a schematic cross-sectional view of the vibration mechanism of the brick-making equipment of this utility model along the BB direction.
[0017] Figure 4 is a front view schematic diagram of the brick-making equipment of this utility model;
[0018] Figure 5 is a side view of the brick-making equipment of this utility model.
[0019] Symbol Explanation
[0020] Frame 10; base 1; support table 2; vibration table 3; vibration box 4; vibration damping assembly 5; support column 21; support component 22; vibration plate 31; vibration component 32; rectangular frame 11; support plate 101; vibration damping rubber gasket 51; transverse group 52; longitudinal group 53; upper washer 511; middle washer 512; lower washer 513; baffle 12. Detailed Implementation
[0021] To further explain the technical solution of this utility model, the following detailed description is provided through specific embodiments.
[0022] Please refer to Figures 1 to 5. This utility model discloses a vibration mechanism for a brick-making device. The vibration mechanism has a base 1, a support platform 2, a vibration table 3, a vibration box 4, and a vibration damping component 5 mounted on a frame 10. The support platform 2 has two support columns 21 respectively mounted at the front and rear ends of the base 1 and multiple support members 22 parallel to the two support columns 21. The vibration table 3 has a vibration plate 31 mounted above the base 1 and multiple vibration members 32 parallel to the top surface of the vibration plate 31. The base 1 has a rectangular frame 11 located below the vibration plate 31. The top surface of the vibration box 4 is locked to the middle of the bottom surface of the vibration plate 31, and the bottom surface of the vibration box 4 passes through the rectangular frame 11 and is supported on a support plate 101 at the bottom of the frame 10. The vibration damping component 5 has multiple vibration damping rubber gaskets 51 mounted between the bottom surface of the vibration plate 31 and the top surface of the rectangular frame 11 and surrounding the vibration box 4.
[0023] The vibration mechanism of this brick-making equipment places the vibration box 4 in the middle of the bottom surface of the vibration plate 31, without directly locking the vibration box 4 to the base 1. A vibration damping component 5 is provided between the vibration plate 31 and the base 1. The vibration damping rubber gasket 51 of the vibration damping component 5 surrounds the vibration box 4, reducing the transmission of vibration force from the vibration box 4 to the frame 10. This prevents the frame 10 from shaking and affecting the normal operation of the feeding mechanism, material distribution mechanism, brick-making press head, and other equipment on the frame 10, resulting in better brick-making performance. Furthermore, the support member 21 and the vibrating member 31 are respectively supported on the bottom surface of the brick-making mold. The support member 21 firmly supports the brick-making mold, and the vibrating member 31 drives the brick-making mold to vibrate through the vibration force of the vibration box 4, thereby compacting the concrete material inside the brick-making mold and achieving a good vibration effect.
[0024] The vibration damping component 5 of this utility model has two sets of transversely distributed transverse groups 52 and two sets of longitudinally distributed longitudinal groups 53. The transverse groups 52 are arranged on the side of the vibrating plate 31 parallel to the support column 21, and the longitudinal groups 53 are arranged on the side of the vibrating plate 31 perpendicular to the support column 21. The transverse groups 52 are provided with two rows of vibration damping rubber washers 51, and the longitudinal groups 53 are provided with one row of vibration damping rubber washers 51. The vibration damping rubber washers 51 surround the vibrating box 4, which can effectively buffer the vibration force of the vibrating box 4 and reduce the vibration force transmitted to the base 1, resulting in better vibration damping effect.
[0025] The vibration-damping rubber washer 51 of this utility model is composed of an upper washer 511, a middle washer 512 and a lower washer 513. The outer diameters of the upper washer 511 and the lower washer 513 are larger than the outer diameter of the middle washer 512. The vibration-damping rubber washer 51 has a three-layer structure, which provides better vibration damping effect.
[0026] The two support columns 21 of this utility model are located on the front and rear sides of the vibrating plate 31, and the two ends of the support member 22 extend out of the two ends of the vibrating member 32 respectively. During the vibration process, the brick mold will vibrate and shift. The two ends of the support member 22 extend beyond the two ends of the vibrating member 32, leaving space for the brick mold to shift, which can stably support the brick mold.
[0027] The present invention has six support members 22 and eleven vibrating members 32. The vibrating members 32 are arranged in parallel at equal intervals. The support members 22 are arranged symmetrically about the vibrating member 32 located in the middle position. The support members 21 are arranged with one or two vibrating members 32 between them. While the support members 22 stably support the brick making mold, the vibrating members 32 can efficiently drive the brick making mold to vibrate, resulting in good brick making effect.
[0028] In the non-vibrating state, the top end of the support member 22 is flush with the top end of the vibrating member 32, thus improving the support effect of the brick-making mold.
[0029] The base 1 of this utility model is provided with two baffles 12 that are perpendicular to the support column 21, and the two baffles 12 are located outside the two outermost vibrating members 32, and the top of the baffles 12 is higher than the top of the support member 22; the baffles 12 can prevent the brick mold from leaving the vibration position during vibration, and the vibration effect is better.
[0030] The above embodiments and accompanying drawings are not intended to limit the product form and style of this utility model. Any appropriate changes or modifications made by those skilled in the art should be considered as not departing from the patent scope of this utility model.
Claims
1. A vibration mechanism for brick-making equipment, characterized in that: The vibration mechanism has a base, a support platform, a vibration table, a vibration box, and a vibration damping assembly mounted on a frame. The vibration table has a vibrating plate mounted above the base and multiple vibrating elements arranged parallel to the top surface of the vibrating plate. The base has a rectangular frame located below the vibrating plate. The top surface of the vibration box is locked to the middle of the bottom surface of the vibrating plate, and the bottom surface of the vibration box passes through the rectangular frame and is supported on a support plate at the bottom of the frame. The vibration damping assembly has multiple damping rubber gaskets disposed between the bottom surface of the vibrating plate and the top surface of the rectangular frame and surrounding the vibrating box.
2. The vibration mechanism of a brick-making device as described in claim 1, characterized in that: The vibration damping assembly has two sets of laterally distributed transverse groups and two sets of longitudinally distributed longitudinal groups. The transverse groups are arranged on the side of the vibrating plate parallel to the support column, and the longitudinal groups are arranged on the side of the vibrating plate perpendicular to the support column. The transverse groups are provided with two rows of vibration damping rubber washers, and the longitudinal groups are provided with one row of vibration damping rubber washers.
3. The vibration mechanism of a brick-making device as described in claim 1, characterized in that: The vibration damping rubber gasket is composed of an upper gasket, a middle gasket, and a lower gasket, wherein the outer diameters of the upper and lower gaskets are larger than the outer diameter of the middle gasket.
4. The vibrating mechanism of a brick making apparatus as claimed in claim 1, wherein: The two support columns are located on the front and rear sides of the vibrating plate, and the two ends of the support extend out of the two ends of the vibrating plate, respectively.
5. The vibrating mechanism of a brick making apparatus as claimed in claim 4, wherein: The number of support members is six, the number of vibration members is eleven, the vibration members are arranged in parallel at equal intervals, the support members are arranged symmetrically with respect to the vibration member located in the middle position, and the support members are spaced apart by one or two vibration members.
6. The vibration mechanism of a brick-making device as described in claim 1, characterized in that: In the non-vibrating state, the top end of the support member is flush with the top end of the vibrating member.
7. The vibrating mechanism of a brick making apparatus as claimed in claim 1, wherein: The base is provided with two baffles that are perpendicular to the support column, and the two baffles are located outside the two outermost vibrating members, and the top of the baffles is higher than the top of the support member.