Sintered plate with anti-loose end sockets

By setting a stabilizing component on the end cap of the sintered plate, the problem of tilting and deformation of the sintered plate under high pressure was solved, and the stability of the connection and the efficiency of exhaust gas filtration were improved.

CN223517138UActive Publication Date: 2025-11-07LUOYANG MUSEN NEW MATERIAL CO LTD
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Patent Information

Application Number
CN202422663093.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-01
Publication Date
2025-11-07
Estimated Expiration
2034-11-01

AI Technical Summary

Technical Problem

The existing sintered plates are prone to tilting and deformation under high-pressure air, which can lead to collisions and damage with the filter mounting plate, reducing the efficiency of exhaust gas filtration.

Method used

A stabilizing component is provided on the upper end cap, including positioning holes, bending plates, assist plates, and top pressure plates, which are fixed to the filter mounting plate by studs to enhance connection stability and friction, and keep the sintered plate vertical.

Benefits of technology

This improves the connection stability between the sintered plate and the filter mounting plate, prevents loosening, increases the contact area, and improves the exhaust gas filtration efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an end socket anti-loose type sintered plate, which comprises a sintered plate which is vertically arranged and is used for filtering waste gas, and an upper end socket and a lower end socket which are respectively arranged at the upper end and the lower end of the sintered plate, a positioning hole is formed in the upper end socket, and a stud penetrates through the positioning hole to fix the upper end socket on a filter mounting plate; and stabilizing assemblies are arranged on the two sides of the periphery of the upper sealing head in the width direction and are used for jacking the filter mounting plate and transmitting jacking pressure to extrude the upper sealing head. The problems that in the prior art, a sintered plate inclines and deforms due to high-pressure air, collision damage is caused, and the waste gas treatment efficiency is reduced are solved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to air filter technical field, concretely relates to a seal head anti-loose type sintering plate. BACKGROUND

[0002] Sintering plate is rigid wave type porous structure, for installing sintering plate in air filter to use, then setting up seal head at sintering plate top and bottom, and the upper seal head is communicated with sintering plate inside, to export the air that passes sintering plate filtering.

[0003] The sintering plate with seal head in prior art is placed vertically in use to ensure that gas can pass through sintering plate to complete filtration, and the efficiency of waste gas passing is improved, but the sintering plate is placed vertically, and the sintering plate is set vertically by the filter mounting plate with insertion hole, and the connection area of the upper seal head and the filter mounting plate is small in long-time use, so that the sintering plate is inclined under high-pressure wind, and adjacent sintering plates are damaged by collision, and the amount of high-pressure wind passing through the sintering plate is reduced, that is, the efficiency of waste gas filtration treatment is reduced. SUMMARY

[0004] The utility model discloses a kind of seal head anti-loose type sintering plates to solve the problems of collision damage and waste gas treatment efficiency reduction caused by sintering plate inclination deformation in prior art.

[0005] The utility model discloses a kind of seal head anti-loose type sintering plates to solve the problems of collision damage and waste gas treatment efficiency reduction caused by sintering plate inclination deformation in prior art.

[0006] As a further optimization of the utility model one kind of seal head anti-loose type sintering plate: the two sides of the upper seal head length direction are equipped with another stable component of corresponding size.

[0007] As a further optimization of the utility model one kind of seal head anti-loose type sintering plate: the stable component includes the bent plate of bending and being arranged on the outer periphery of the upper seal head, and the end of bent plate towards the lower seal head is arranged beyond the lower edge of the upper seal head.

[0008] As further optimization of the utility model discloses a head anti-loose type sintering plate, rubber layers are arranged at both ends of the bent plate to reduce damage to the upper head and the surface of the filter mounting plate.

[0009] As further optimization of the utility model discloses a head anti-loose type sintering plate, the stable assembly comprises a booster plate and a top pressing plate, the booster plate is arranged in the groove of the lower edge of the top pressing plate, the booster plate and the top pressing plate rotate coaxially, and a limiting block is arranged at the included angle of the side, away from the sintering plate, of the booster plate and the top pressing plate to enable the booster plate to transmit force to the top pressing plate.

[0010] As further optimization of the utility model discloses a head anti-loose type sintering plate, the limiting block is larger than the gap at the connection position of the top pressing plate and the booster plate, and the limiting block is made of elastic rubber material to enable the booster plate to stably transmit the top pressing force to the top pressing plate.

[0011] As further optimization of the utility model discloses a head anti-loose type sintering plate, the stable assembly comprises an expansion block arranged at the outer periphery of the upper head, and a push plate is fixedly arranged at the side, away from the upper head, of the expansion block, and the lower edge of the push plate is arranged to be beyond the lower edge of the upper head.

[0012] As further optimization of the utility model discloses a head anti-loose type sintering plate, the push plate is provided with a counterbore groove at the side, away from the upper head, to enable a screw to pass through the positioning push plate and be arranged on the filter mounting plate.

[0013] Compared with the prior art, the utility model has the following beneficial effects:

[0014] The utility model discloses a head anti-loose type sintering plate, which is characterized in that the upper head is arranged to be connected with the horizontal filter mounting plate of the filter, and the positioning hole in the upper head passes through the stud to vertically and stably arrange the upper head and the sintering plate on the horizontal filter mounting plate to bear high-pressure waste gas and filter the waste gas.

[0015] Further, the stable assembly is arranged on the upper head to press the horizontal filter mounting plate when the upper head is fixed on the horizontal filter mounting plate, and the stable assembly transmits the reaction force of the pressing to the outer periphery of the upper head, thereby increasing the friction force at the connection position of the upper head and the sintering plate, improving the connection stability of the upper head and the sintering plate, and increasing the contact area of the upper head and the horizontal filter mounting plate, thereby improving the stability of the vertical arrangement of the sintering plate driven by the upper head. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 It is a structural schematic view of the utility model embodiment 1.

[0017] Figure 2 It is a structural schematic view of the utility model embodiment 2.

[0018] Figure 3 This is a schematic diagram of the structure of Embodiment 3 of this utility model;

[0019] The markings in the diagram are: 1. Lower head; 2. Sintered plate; 3. Stabilizing component; 301. Assist plate; 302. Limiting block; 303. Top pressure plate; 304. Bending plate; 305. Countersunk groove; 306. Push plate; 307. Extension block; 4. Upper head; 401. Positioning hole. Detailed Implementation

[0020] To better understand this utility model, the following embodiments further illustrate the content of this utility model, but the content of this utility model is not limited to the following embodiments.

[0021] <Example 1>

[0022] like Figure 1 As shown, a type of sintered plate with anti-loosening end caps, similar to the prior art, includes a vertically arranged sintered plate 2 and an upper end cap 4 and a lower end cap 1 respectively located at the upper and lower ends of the sintered plate 2. The lower end cap 1 and the sintered plate 2 pass through through holes in the horizontal filter mounting plate of the filter equipment, so that the side of the upper end cap 4 facing the lower end cap 1 is connected to the horizontal filter mounting plate, thereby allowing the sintered plate 2 to be vertically positioned in a suitable position in the filter equipment, so that the filter equipment guides high-pressure exhaust gas to impact the sintered plate 2 for exhaust gas filtration.

[0023] Furthermore, both ends of the upper side of the upper end cap 4 along the length direction are provided with positioning holes 401. The positioning holes 401 can be used with studs to fix the upper end cap 4 to the horizontal filter mounting plate in order to maintain the vertical state of the sintering plate 2.

[0024] Unlike existing technologies, the upper end cap 4 is equipped with a stabilizing component 3 in its width direction. When the upper end cap 4 is positioned on the horizontal filter mounting plate using a positioning hole 401 and corresponding screws, the stabilizing component 3 is pushed by the horizontal filter mounting plate, causing it to press against one side of the upper end cap 4 in its width direction. This ensures a stable connection between the upper end cap 4 and the sintering plate 2. Simultaneously, it helps maintain the relative position of the sintering plate 2 and the upper end cap 4, keeping the sintering plate 2 vertical. This allows the sintering plate 2 to stably withstand the impact of high-pressure exhaust gas, achieving exhaust gas filtration. Furthermore, it reduces the axial pressure on the screws caused by the high-pressure blowing of exhaust gas on the upper end cap 4 and the sintering plate 2, thus reducing the probability of screw loosening and maintaining the stability of the upper end cap 4 connected to the horizontal filter mounting plate.

[0025] Another stabilizing component 3 is provided along the length of the upper end cap 4. Similarly, the other stabilizing component 3 can press against the upper end cap 4 along its length to further stabilize the connection stability between the upper end cap 4 and the sintering plate 2, maintain the vertical setting of the sintering plate 2, and further reduce the axial pressure on the screws.

[0026] The stabilizing component 3 includes a bent plate 304 of a corresponding length disposed in the width direction of the upper end cap 4. The bent portion of the bent plate 304 is rotatably connected to the corresponding position of the upper end cap 4. The end of the bent plate 304 facing the lower end cap 1 can press against the horizontal filter mounting plate. At the same time, the longer torque of the bent plate 304 facing the lower end cap 1 increases the force of the horizontal plate pushing the bent plate 304 against the upper end cap 4, thereby maintaining the stability of the upper end cap 4 connected to the sintering plate 2 and keeping the sintering plate 2 stably in a vertical state.

[0027] The bending plate 304 is L-shaped, and both ends of the bending plate 304 are provided with rubber layers. The rubber layers can reduce the damage of the bending plate 304 to the horizontal filter mounting plate and the surface of the upper end cap 4 while transmitting power to compress the upper end cap 4.

[0028] The stabilizing component 3 located in the width direction of the upper end cap 4 also includes a bending plate 304 of a corresponding length located in the length direction of the upper end cap 4, so as to increase the force in the width direction of the upper end cap 4, maintain the connection stability between the upper end cap 4 and the sintering plate 2, and keep the sintering plate 2 vertically positioned.

[0029] <Example 2>

[0030] like Figure 2 As shown, this embodiment has the same basic structure as Embodiment 1. The difference is that the stabilizing component 3 includes an assist plate 301 and a top pressure plate 303, which are rotatably disposed on the upper end cap 4 at a corresponding length in the width direction. The assist plate 301 faces the upper end cap 4, and the top pressure plate 303 has a groove facing the lower end cap 1. The groove corresponds to the assist plate 301, and a limiting block 302 is provided at the angle between the top pressure plate 303 and the assist plate 301 on the side away from the upper end cap 4. The assist plate 301 can be pressed down by the horizontal filter mounting plate, and then the torque is transmitted to the top pressure plate 303 via the limiting block 302. The top pressure plate 303 then presses down on the upper end cap 4, thereby maintaining the connection stability between the upper end cap 4 and the sintering plate 2, while maintaining the vertical state of the sintering plate 2 and the upper end cap 4. The corresponding rotational arrangement of the assist plate 301 and the top pressure plate 303 can also keep the assist plate 301 and the top pressure plate 303 horizontal when the sintering plate 2 is stored and placed, so as to facilitate the stacking of multiple sintering plates 2.

[0031] The limiting block 302 is larger than the gap between the top pressure plate 303 and the assist plate 301, which rotates coaxially. This allows the assist plate 301 to transfer the reaction force of the top pressure to the top pressure plate 303 when it presses against the horizontal filter mounting plate. This ensures the connection between the upper end cap 4 and the sintering plate 2, as well as the positional stability of both. Simultaneously, it provides a certain degree of buffering to reduce damage to the surface of the horizontal filter mounting plate or the upper end cap 4 caused by the assist plate 301 and the top pressure plate 303.

[0032] The stabilizing component 3 located in the width direction of the upper head 4 also includes an assist plate 301 and a top pressure plate 303 that are rotatably located in the length direction of the upper head 4 to maintain the top pressure on the upper head 4 in the width direction.

[0033] <Example 3>

[0034] like Figure 3 As shown, this embodiment has the same basic structure as Embodiment 1. The difference is that the stabilizing component 3 includes extension blocks 307 disposed in the width direction of the upper end cap 4 to increase the compression range of the upper end cap 4, thereby enabling the upper end cap 4 to be stably connected to the sintering plate 2. Each extension block 307 has a push plate 306 on the side facing away from the upper end cap 4. The push plate 306 can be pushed by the horizontal filter mounting plate to apply top pressure to the multiple extension blocks 307, thereby stabilizing the connection stability between the upper end cap 4 and the sintering plate 2, and cooperating with the horizontal filter mounting plate to stabilize the vertical arrangement of the sintering plate 2 and the upper end cap 4.

[0035] Furthermore, a countersunk groove 305 is provided at one end of the sintered plate 2 facing the horizontal filter mounting plate. The countersunk groove 305 can be connected to the horizontal filter mounting plate with screws, so that the extension block 307 can be stably pressed against the upper end cap 4 by the push plate 306, thereby making the sintered plate 2 and the upper end cap 4 stably connected and making the sintered plate 2 and the upper end cap 4 stably vertically distributed to achieve the purpose of filtering exhaust gas.

[0036] The specific embodiments of this utility model have been described above. It should be understood that this utility model is not limited to the specific embodiments described above, and those skilled in the art can make various modifications or variations within the scope of the claims, which do not affect the substantive content of this utility model.

Claims

1. A sintering plate of a head anti-loose type, comprising a sintering plate (2) arranged vertically for filtering exhaust gas, and an upper head (4) and a lower head (1) respectively arranged at the upper and lower ends of the sintering plate (2), characterized in that: The upper head (4) is provided with a positioning hole (401) for the stud to pass through to fix the upper head (4) on the filter mounting plate, and the upper head (4) is provided with a stabilizing assembly (3) on both sides in the width direction of the outer periphery, which is used to press the filter mounting plate and transmit the pressing force to extrude the upper head (4).

2. The sintered plate according to claim 1, wherein: The upper head (4) is provided with another stabilizing assembly (3) of corresponding size on both sides in the length direction.

3. The sintering plate of claim 1 or 2, wherein: The stabilizing assembly (3) includes a bent plate (304) rotatably arranged on the outer periphery of the upper head (4), and one end of the bent plate (304) towards the lower head (1) is arranged beyond the lower edge of the upper head (4).

4. The sintered plate according to claim 3, wherein: The bent plate (304) is provided with a rubber layer at both ends to reduce damage to the surface of the upper head (4) and the filter mounting plate.

5. The sintered plate according to claim 1 or 2, wherein: the head is a hexagonal head. The stabilizing assembly (3) includes a booster plate (301) and a pressing plate (303) rotatably arranged on the outer periphery of the upper head (4), the booster plate (301) is arranged in the groove of the lower edge of the pressing plate (303), and the booster plate (301) and the pressing plate (303) rotate on the same axis, a limiting block (302) is arranged at the angle between the booster plate (301) and the side of the pressing plate (303) away from the sintering plate (2), so that the booster plate (301) transmits force to the pressing plate (303).

6. The sintered plate according to claim 5, wherein: The limiting block (302) is larger than the gap at the connection between the pressing plate (303) and the booster plate (301), and the limiting block (302) is made of elastic rubber material, so that the booster plate (301) stably transmits the pressing force to the pressing plate (303).

7. The sintering plate of claim 1 or 2, wherein: The stabilizing assembly (3) includes an expansion block (307) arranged on the outer periphery of the upper head (4), and a push plate (306) is fixedly arranged on the side of the expansion block (307) away from the upper head (4), and the lower edge of the push plate (306) is arranged beyond the lower edge of the upper head (4).

8. The sintered plate according to claim 7, wherein: The push plate (306) is provided with a countersunk groove (305) on the side away from the upper head (4), so that the screw passes through the positioning push plate (306) on the filter mounting plate.