An anti-vibration mounting structure for an instrument panel
Patent Information
- Application Number
- CN202522236589.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-22
- Publication Date
- 2026-09-11
- Estimated Expiration
- 2035-10-22
AI Technical Summary
这种安装方式虽然具备结构简单、安装便捷的特点,但在振动环境下存在显著缺陷缓冲减震效果,且针对耐受减震点的定位极其不准确,同时无法清晰获取到抗震方向及内置减震胶条的使用或老化情况,从而导致连接部分出现松动情况,为此我们提出一种带柔性缓冲与锁止机构的仪表抗震安装组件
Smart Images

Figure CN224746775U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of instrument mounting structure technology, and in particular to a shockproof mounting structure for instrument panels. Background Technology
[0002] In scenarios such as industrial control cabinets, vehicle-mounted control consoles, and ship control rooms, the instrument panel serves as the core carrier for various monitoring instruments (such as tachometers, pressure gauges, thermometers, level gauges, and various electronic display instruments). Its stable operation is directly related to the accuracy of equipment operation and the reliability of operational status monitoring, and is a key link in ensuring the safety of production operations, equipment operation, or navigation.
[0003] Existing instrument installation methods mostly employ rigid connection structures, typically fixing instruments directly to equipment brackets or pipe flanges using bolts. While this installation method is simple in structure and convenient in installation, it has significant drawbacks in vibration environments, including poor buffering and shock absorption. Furthermore, the positioning of the shock-absorbing points is extremely inaccurate, and it's impossible to clearly obtain information on the vibration direction and the condition (usage or aging) of the built-in shock-absorbing rubber strips, leading to loosening of the connections. Therefore, we propose an instrument vibration-resistant installation component with a flexible buffering and locking mechanism. Utility Model Content
[0004] In response to the shortcomings of the existing production technology, the applicant provides a shockproof mounting structure for instrument panels, which incorporates a flexible buffer and locking mechanism to effectively prevent loosening of the connection parts, greatly improve the reliability of the components, and ensure product quality and service life.
[0005] The technical solution adopted in this utility model is as follows:
[0006] An anti-vibration mounting structure for an instrument panel includes an instrument panel base. The top surface of the instrument panel base is provided with an annular groove. A sealing mating disc assembly is installed in the annular groove. The top surface of the sealing mating disc assembly is fitted with the main body structure of the instrument panel through the sealing assembly. The main body structure of the instrument panel and the outer ring of the instrument panel base are locked together by fasteners.
[0007] The sealing assembly has the following structure: a raised structure is provided at the inner ring position of the sealing assembly, and an annular protrusion is provided at the outer side position of the raised structure;
[0008] The structure of the sealing mating disc assembly is as follows: a mating groove matching the protruding structure is provided on the top inner side of the sealing mating disc assembly, and an annular slot for cooperating with the annular protrusion is provided on the sealing mating disc assembly.
[0009] A first misalignment groove is formed in a ring at the top of the sealing mating disc assembly, and a second misalignment groove is formed on the sealing assembly at the position corresponding to the first misalignment groove, which is mutually engaged.
[0010] As a further improvement to the above technical solution:
[0011] Multiple reset plate rings are distributed laterally on the inner side of the sealing mating disc assembly.
[0012] An oil reservoir is located on the inner side of the sealing mating disc assembly, directly below the reset plate ring. The inner side of the oil reservoir is filled with sealing oil, and multiple filter nozzles are evenly distributed through the bottom of the oil reservoir and through the sealing mating disc assembly.
[0013] The cross-section of the oil outlet inside a single filter nozzle adopts a gourd-shaped structure.
[0014] A sealing hole structure for the filter nozzle to pass through is fixedly installed at the bottom of the instrument panel base.
[0015] A locking block is provided at the top of the sealing mating disc assembly, and a locking groove is provided on the sealing mating disc assembly for the locking block to be inserted and locked.
[0016] A main reset ring is filled at the top inner edge of the sealing mating disc assembly, and a reset metal ring is fixedly filled inside the sealing assembly.
[0017] Both the sealing assembly and the sealing mating disc assembly adopt a flexible structure.
[0018] The beneficial effects of this utility model are as follows:
[0019] This utility model has a compact and reasonable structure and is easy to operate. By setting the sealing components and sealing mating disc components at the connection positions of the main structure of the instrument panel and the instrument panel base, a sealing buffer is achieved between the two. Furthermore, by utilizing the oil storage tank opened on the sealing mating disc component and the detection mechanism that uses extrusion to determine deformation and stress points, the aging and usage status of the rubber strip can be effectively obtained, allowing for timely replacement and maintenance, and ensuring the safety and stability of the equipment.
[0020] This utility model effectively ensures the sealing of the connection position by using a sealing structure correspondingly set at the contact position of the sealing component and the sealing mating disc component. The inclined annular protrusion effectively ensures the stability of the contact surface during outward deformation.
[0021] This invention effectively prevents the oil tank from shrinking when the positioning oil inside the oil storage tank overflows by using a reset structure correspondingly set on the sealing component and the sealing mating plate component, thus ensuring the sealing performance of the sealing component and the sealing mating plate component. Attached Figure Description
[0022] Figure 1 This is an exploded view of the present invention.
[0023] Figure 2 This is a schematic diagram of the main structure of the instrument panel of this utility model.
[0024] Figure 3 This is a schematic diagram of the installation of the sealing ring and sealing mating disc assembly of this utility model.
[0025] Figure 4 This is a schematic diagram of the structure of the instrument panel base of this utility model.
[0026] Figure 5 This is a cross-sectional structural diagram of the sealing ring and sealing mating disc assembly of this utility model.
[0027] Figure 6 for Figure 5 A magnified view of part A in the middle.
[0028] Among them: 100, sealing assembly; 200, sealing mating disc assembly; 300, instrument panel main structure; 400, instrument panel base;
[0029] 101. Reset metal ring; 102. Protruding structure; 103. Annular protrusion; 104. Second misalignment groove; 105. Locking groove;
[0030] 201. Filter tip; 202. Docking groove; 203. Annular slot; 204. No. 1 misalignment groove; 205. Locking block; 206. Reset plate ring; 207. Main reset ring; 208. Oil reservoir. Detailed Implementation
[0031] The specific embodiments of this utility model are described below with reference to the accompanying drawings.
[0032] The anti-vibration mounting structure for the instrument panel in this embodiment includes an instrument panel base 400. The top surface of the instrument panel base 400 is provided with an annular groove. A sealing mating disc assembly 200 is installed in the annular groove. The top surface of the sealing mating disc assembly 200 is installed with the instrument panel main body structure 300 through the sealing assembly 100. The outer ring of the instrument panel main body structure 300 and the instrument panel base 400 are locked together by fasteners.
[0033] The sealing assembly 100 has the following structure: a protruding structure 102 is provided at the inner ring position of the sealing assembly 100, and an annular protrusion 103 is provided at the outer side position of the protruding structure 102.
[0034] The structure of the sealing mating disc assembly 200 is as follows: a mating groove 202 matching the protrusion structure 102 is provided on the top inner side of the sealing mating disc assembly 200, and an annular slot 203 that is used to cooperate with the annular protrusion 103 is provided on the sealing mating disc assembly 200.
[0035] A first misalignment groove 204 is formed in a ring at the top position of the sealing mating disc assembly 200, and a second misalignment groove 104 is formed on the sealing assembly 100 at the position corresponding to the first misalignment groove 204, which is mutually engaged.
[0036] Multiple reset plate rings 206 are distributed laterally on the inner side of the sealing mating disc assembly 200.
[0037] An oil reservoir 208 is located on the inner side of the sealing mating disc assembly 200, directly below the reset plate ring 206. The inner side of the oil reservoir 208 is filled with sealing oil, and multiple filter nozzles 201 are evenly distributed through the sealing mating disc assembly 200 at the bottom of the oil reservoir 208.
[0038] The cross-section of the oil outlet inside a single filter nozzle 201 adopts a gourd-shaped structure.
[0039] A sealing hole structure for the filter nozzle 201 to pass through is fixedly installed at the bottom of the instrument panel base 400.
[0040] A locking block 205 is provided at the top of the sealing mating disc assembly 200, and a locking groove 105 is provided on the sealing mating disc assembly 200 for the locking block 205 to be inserted and locked.
[0041] A main reset ring 207 is filled at the top inner edge of the sealing mating disc assembly 200, and a reset metal ring 101 is fixedly filled inside the sealing assembly 100.
[0042] Both the sealing assembly 100 and the sealing mating disc assembly 200 adopt a flexible structure.
[0043] like Figures 1-6 As shown, the specific structure and function of the instrument anti-vibration mounting assembly with flexible buffer and locking mechanism described in this utility model are as follows:
[0044] The instrument panel mainly includes a main instrument panel structure 300 and an instrument panel base 400, which are connected by a flange structure. It also includes a sealing component 100 and a sealing mating disc assembly 200. The sealing component 100 and the sealing mating disc assembly 200 are fixedly installed in the interlayer position between the main instrument panel structure 300 and the instrument panel base 400. A locking block 205 is provided at the top of the sealing mating disc assembly 200, and a locking groove 105 is provided on the sealing mating disc assembly 200 for the locking block 205 to be inserted and locked. The inner ring of the sealing component 100 is provided with a protruding structure 102, and a mating groove 202 for cooperating with the protruding structure 102 is provided on the top inner side of the sealing mating disc assembly 200. Multiple reset plate rings 206 are distributed laterally on the inner side of the sealing mating disc assembly 200.
[0045] An oil reservoir 208 is located on the inner side of the sealing mating disc assembly 200, directly below the reset plate ring 206. The inner side of the oil reservoir 208 is filled with sealing oil, and multiple filter nozzles 201 are evenly distributed through the bottom of the oil reservoir 208 and through the sealing mating disc assembly 200.
[0046] In this embodiment, the sealing component 100 and the sealing mating disc component 200, which are respectively set at the connection position of the instrument panel main structure 300 and the instrument panel base 400, realize the sealing buffer between the two. Furthermore, by utilizing the oil storage tank 208 correspondingly opened on the sealing mating disc component 200, and by using the detection mechanism of determining deformation and stress points by extrusion, the aging and usage status of the rubber strip can be effectively obtained, and timely replacement and maintenance can be carried out to ensure the safety and stability of the equipment.
[0047] The cross-section of the inner oil outlet of filter nozzle 201 is gourd-shaped.
[0048] A first misalignment groove 204 is formed in a ring at the top position of the sealing mating disc assembly 200, and a second misalignment groove 104 is formed on the sealing assembly 100 at the position corresponding to the first misalignment groove 204, which is mutually engaged.
[0049] The sealing assembly 100 has annular protrusions 103 distributed at the outer position of the protrusion structure 102, and the sealing mating disc assembly 200 has annular slots 203 that cooperate with the annular protrusions 103.
[0050] In this embodiment, a sealing hole structure for the filter nozzle 201 to pass through is fixedly installed at the bottom of the instrument panel base 400, a main reset ring 207 is filled at the top edge of the inner side of the sealing mating disc assembly 200, and a reset metal ring 101 is fixedly filled inside the sealing assembly 100.
[0051] The working principle and usage process of this utility model are as follows:
[0052] In use, this type of instrument vibration-damping mounting assembly with flexible buffering and locking mechanisms involves fixing the sealing mating disc assembly 200 to the instrument panel base 400, allowing the filter nozzle 201 to pass through the opening in the instrument panel base 400. The sealing assembly 100 is then added to the bottom of the instrument panel main structure 300, and flange bolts are used to fix the instrument panel main structure 300 and the instrument panel base 400 together, achieving a close fit between the sealing assembly 100 and the sealing mating disc assembly 200. When vibration occurs on the sealing mating disc assembly 200, the flexible structure of the sealing assembly 100 and the sealing mating disc assembly 200 effectively provides vibration damping protection. When the sealing mating disc assembly 200 is subjected to force and offset, it will correspondingly squeeze the oil storage tank 208, causing the lubricating oil to flow into the interior of the filter nozzle 201. It should be noted that the gourd-shaped cavity inside the filter nozzle 201 can effectively protect the oil and prevent it from overflowing. Only when it is squeezed and deformed will the gourd opening of the final stage expand outward, causing the lubricating oil to overflow. It should be added that when the annular protrusion 103 is inserted into the annular slot 203, it can greatly ensure the sealing of the mating part, achieving double-layer sealing protection. When the oil storage tank 208 is low on oil, the extensibility of the reset plate ring 206 is used to ensure the stability of the mating part and complete its use.
[0053] As can be seen from the above working process, the sealing structure set at the contact position of the sealing component 100 and the sealing mating disc component 200 effectively ensures the multiple locking structure and the sealing performance of the connection position. The inclined annular protrusion 103 effectively ensures the stability of the outward deformation and the mating surface.
[0054] By using the reset structures correspondingly set on the sealing assembly 100 and the sealing mating disc assembly 200, the shrinkage situation when the positioning oil inside the oil storage tank 208 overflows is effectively avoided, ensuring the sealing performance of the sealing assembly 100 and the sealing mating disc assembly 200.
[0055] By using the sealing component 100 and sealing mating plate component 200 respectively set at the connection position between the instrument panel main structure 300 and the instrument panel base 400, a sealing buffer is achieved between the two. Furthermore, by utilizing the oil storage tank 208 correspondingly opened on the sealing mating plate component 200, and by using the detection mechanism that determines the deformation and stress point by extrusion, the aging and usage status of the rubber strip can be effectively obtained, allowing for timely replacement and maintenance, and ensuring the safety and stability of the equipment.
[0056] The above description is an explanation of the present utility model and not a limitation thereof. The scope of the present utility model is defined by the claims. Within the protection scope of the present utility model, any form of modification may be made.
Claims
1. A shockproof mounting structure for instrument panels, characterized in that: The instrument panel includes a base (400), the top surface of which is provided with an annular groove. A sealing mating disc assembly (200) is installed in the annular groove. The top surface of the sealing mating disc assembly (200) is fitted with an instrument panel main body structure (300) through a sealing assembly (100). The instrument panel main body structure (300) and the outer ring of the instrument panel base (400) are locked together by fasteners. The structure of the sealing assembly (100) is as follows: a protruding structure (102) is provided at the inner ring position of the sealing assembly (100), and an annular protrusion (103) is provided at the outer side position of the protruding structure (102); The structure of the sealing mating disc assembly (200) is as follows: a mating groove (202) matching the protruding structure (102) is provided on the top inner side of the sealing mating disc assembly (200), and an annular slot (203) that is used to cooperate with the annular protrusion (103) is provided on the sealing mating disc assembly (200). A first misalignment groove (204) is formed in a ring at the top of the sealing mating disc assembly (200), and a second misalignment groove (104) is formed on the sealing assembly (100) at the position corresponding to the first misalignment groove (204) and engages with each other.
2. An anti-vibration mounting structure for an instrument panel as defined in claim 1, characterized by: The inner side of the sealing mating disc assembly (200) has multiple reset plate rings (206) distributed laterally.
3. An anti-vibration mounting structure for an instrument panel as defined in claim 2, wherein: An oil reservoir (208) is located on the inner side of the sealing mating disc assembly (200) directly below the reset plate ring (206). The inner side of the oil reservoir (208) is filled with sealing oil. Multiple filter nozzles (201) are evenly distributed through the sealing mating disc assembly (200) at the bottom of the oil reservoir (208).
4. The anti-vibration mounting structure for an instrument panel as described in claim 3, characterized in that: The cross-section of the oil outlet inside a single filter nozzle (201) adopts a gourd-shaped structure.
5. The anti-vibration mounting structure for an instrument panel as described in claim 1, characterized in that: The bottom of the instrument panel base (400) is fixedly equipped with a sealing hole structure for the filter nozzle (201) to pass through.
6. The anti-vibration mounting structure for an instrument panel as described in claim 1, characterized in that: A locking block (205) is provided at the top of the sealing mating disc assembly (200), and a locking groove (105) is provided on the sealing mating disc assembly (200) for the locking block (205) to be inserted and locked.
7. The anti-vibration mounting structure for an instrument panel as described in claim 1, characterized in that: The inner top edge of the sealing mating disc assembly (200) is filled with a main reset ring (207), and the inner side of the sealing assembly (100) is fixedly filled with a reset metal ring (101).
8. The anti-vibration mounting structure for an instrument panel as described in claim 1, characterized in that: Both the sealing assembly (100) and the sealing mating disc assembly (200) adopt a flexible structure.