A convenient dismountable instrument connecting assembly
Patent Information
- Application Number
- CN202521939041.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-09
- Publication Date
- 2026-09-04
- Estimated Expiration
- 2035-09-09
AI Technical Summary
[0003]常规的仪表连接组件往往采用螺栓固定或焊接等方式进行连接,这样的连接方式在安装和拆卸过程中较为繁琐,不仅耗时耗力,而且在需要更换或维修仪表时,往往需要将整个连接组件进行拆解,增加了操作难度和成本
[0014]1. This utility model, through the structural arrangement of the first connecting frame assembly and the second connecting frame member, can achieve clamping and fixing of the front and rear sides of the instrument. Combined with the structural arrangement of the combined components, it can simultaneously clamp and fix the instrument while making appropriate structural adjustments according to the instrument's own thickness, thereby improving the stability and adaptability of the instrument during use. This avoids the limitations of traditional instrument connecting assemblies in fixing instruments, improving the practicality of the instrument connecting assembly. Furthermore, the first and second connecting frame assemblies can be used independently to meet the usage requirements of the instrument on different mounting surfaces. In addition, the inner and outer frames use the same material and are both constructed using a polyurethane and aluminum alloy composite material, giving the overall structure excellent strength and corrosion resistance, extending the lifespan of the instrument connecting assembly. The polyurethane material has excellent elasticity and cushioning properties, effectively absorbing and dispersing the vibration and impact generated during instrument operation, protecting the instrument from damage. Meanwhile, the aluminum alloy material is lightweight and high-strength, reducing the overall weight of the structure, facilitating installation and disassembly, and improving work efficiency. Furthermore, the outer surfaces of the inner and outer frames are coated with a protective coating made of silicon carbide, which features high hardness, high wear resistance, and high corrosion resistance, further enhancing the durability and protective performance of the instrument connection components. Additionally, the gasket structure effectively increases the friction between the first and second connecting frame components and the instrument, preventing slippage or displacement during installation and ensuring the stability and safety of the instrument connection.
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Figure CN224722091U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of industrial instrumentation technology, specifically to a convenient detachable instrument connection component. Background Technology
[0002] Industrial instruments are a general term for equipment used to measure and control parameters such as flow rate, pressure, temperature, and level in industrial production processes. They are widely used in industries such as petroleum, chemical, and power. According to their functions, they can be divided into three main categories: detection instruments, control instruments, and actuators.
[0003] Conventional instrument connection assemblies often use bolts or welding for connection. These methods are cumbersome to install and disassemble, time-consuming and labor-intensive. Furthermore, when replacing or repairing instruments, the entire connection assembly often needs to be disassembled, increasing operational difficulty and cost. In addition, traditional instrument connection assemblies lack structural flexibility, making it difficult to adapt to instruments of different thicknesses or models, thus limiting their applicability. Utility Model Content
[0004] The purpose of this invention is to provide a convenient detachable instrument connection component to solve the problems mentioned in the background art.
[0005] To achieve the above objectives, this utility model provides the following technical solution: a convenient detachable instrument connection assembly, comprising a first connecting frame assembly and a combination component. The combination component is horizontally and movably installed at each of the four opposite corners on one side of the first connecting frame assembly, and a second connecting frame component is movably connected to the end of the combination component away from the first connecting frame assembly. Adjustment frame components are symmetrically and movably installed at the lower ends of the sides of the first and second connecting frame components away from the combination component. The first connecting frame assembly comprises an inner frame, mounting holes, an outer frame, gasket components, and a protective coating. Mounting holes are horizontally opened at each of the four opposite corners of the inner frame, and an outer frame is provided on the outer surface of the inner frame. A gasket component is installed on the surface of the outer frame near the combination component. At the same time, the outer surfaces of both the inner and outer frames are coated with a protective coating.
[0006] Furthermore, the inner frame and the outer frame are made of the same material and are both constructed using a composite material structure of polyurethane and aluminum alloy. The protective coating is made of silicon carbide paint and covers the outer surface of the inner frame and the outer frame.
[0007] Furthermore, the second connecting frame component and the first connecting frame assembly adopt the same structural configuration, the inner frame and the outer frame are integrally configured, and the gasket component is embedded and installed on one side surface of the inner frame.
[0008] Furthermore, the combined component includes a first assembly, a second assembly, and a fixing bolt. One end of the first assembly is horizontally connected to and installed with the second assembly, and fixing bolts are installed on both the end of the first assembly away from the second assembly and the end of the second assembly away from the first assembly.
[0009] Furthermore, the end of the first assembly away from the fixing bolt has the same surface structure as the end of the fixing bolt and is threadedly connected to the end of the second assembly away from the fixing bolt, and the end of the fixing bolt is threadedly connected to the end of the second assembly away from the first assembly.
[0010] Furthermore, one end of the fixing bolt is threadedly connected to the interior of the mounting hole, and the first assembly, the second assembly, and the fixing bolt are all made of damping alloy material.
[0011] Furthermore, the adjustment structure includes a support member, a first connecting seat, and a second connecting seat. The top end of the support member is connected to and installed with the first connecting seat via a damping hinge structure, and the bottom end of the support member is connected to and installed with the second connecting seat via a damping hinge structure.
[0012] Furthermore, the support member, the first connecting seat and the second connecting seat are all made of damping alloy material, and the surfaces of the first connecting seat and the second connecting seat are each provided with holes of different specifications for bolt installation. Moreover, the lower front section of the inner frame is provided with mounting holes that match the hole structure on the surface of the first connecting seat.
[0013] This utility model provides a conveniently detachable instrument connection component, which has the following advantages:
[0014] 1. This utility model, through the structural arrangement of the first connecting frame assembly and the second connecting frame member, can achieve clamping and fixing of the front and rear sides of the instrument. Combined with the structural arrangement of the combined components, it can simultaneously clamp and fix the instrument while making appropriate structural adjustments according to the instrument's own thickness, thereby improving the stability and adaptability of the instrument during use. This avoids the limitations of traditional instrument connecting assemblies in fixing instruments, improving the practicality of the instrument connecting assembly. Furthermore, the first and second connecting frame assemblies can be used independently to meet the usage requirements of the instrument on different mounting surfaces. In addition, the inner and outer frames use the same material and are both constructed using a polyurethane and aluminum alloy composite material, giving the overall structure excellent strength and corrosion resistance, extending the lifespan of the instrument connecting assembly. The polyurethane material has excellent elasticity and cushioning properties, effectively absorbing and dispersing the vibration and impact generated during instrument operation, protecting the instrument from damage. Meanwhile, the aluminum alloy material is lightweight and high-strength, reducing the overall weight of the structure, facilitating installation and disassembly, and improving work efficiency. Furthermore, the outer surfaces of the inner and outer frames are coated with a protective coating made of silicon carbide, which features high hardness, high wear resistance, and high corrosion resistance, further enhancing the durability and protective performance of the instrument connection components. Additionally, the gasket structure effectively increases the friction between the first and second connecting frame components and the instrument, preventing slippage or displacement during installation and ensuring the stability and safety of the instrument connection.
[0015] 2. This utility model, through the inclusion of combined components, offers greater flexibility in its structural design, making the installation and disassembly of the instrument simpler and faster. The first and second components are connected by threads, which not only enhances the stability of the connection but also facilitates quick assembly and disassembly according to actual needs. The use of fixing bolts provides double protection for the connection, ensuring the structural stability of the combination of the first connecting frame assembly, combined components, and second connecting frame components. In addition, the first and second components and fixing bolts are all made of damping alloy material, which has excellent vibration reduction performance and can effectively reduce the vibration generated by the instrument during operation, improving the accuracy and stability of the instrument. At the same time, the design of the combined components also takes into account the fine-tuning needs during the instrument installation process. By adjusting the tightness of the fixing bolts, the instrument can be fine-tuned to ensure that the instrument's installation position is accurate.
[0016] 3. This utility model, by incorporating an adjustable frame component, allows for flexible adjustment of the instrument's installation angle and position to adapt to different working environments and installation requirements. The support component connects the first and second connecting seats via a damping hinge structure. This design not only enhances the stability of the connection but also provides the adjustable frame component with excellent flexibility and stability during use. The use of the damping hinge structure allows the adjustable frame component to be adjusted within a certain range, thereby meeting the installation requirements of the instrument at different tilt angles. Furthermore, the support component, the first connecting seat, and the second connecting seat are all made of a damping alloy material, which possesses… Excellent vibration reduction performance can effectively reduce the error caused by vibration during instrument operation, and improve the measurement accuracy and stability of the instrument. In addition, the surfaces of the first and second connecting seats are each provided with holes of different specifications for bolt installation. This design allows the adjustment frame components to be connected to mounting surfaces of different specifications and types, further enhancing the applicability and flexibility of the instrument connection components. The lower front section of the inner frame is provided with mounting holes that match the hole structure on the surface of the first connecting seat. This design simplifies the installation process, improves installation efficiency, and thus ensures the flexibility and stability of the structural components. Attached Figure Description
[0017] Figure 1 This is a side-view structural diagram of the main body of a conveniently detachable instrument connection assembly according to the present invention.
[0018] Figure 2 This is a schematic diagram of the first connecting frame component of a conveniently detachable instrument connecting assembly according to this utility model;
[0019] Figure 3 This is a three-dimensional structural diagram of a conveniently detachable instrument connection assembly according to the present invention.
[0020] Figure 4 This is a three-dimensional structural diagram of the adjustment frame component of a conveniently detachable instrument connection assembly according to the present invention.
[0021] In the figure: 1. First connecting frame assembly; 101. Inner frame; 102. Assembly hole; 103. Outer frame; 104. Washer component; 105. Protective coating; 2. Combined component; 201. First assembly; 202. Second assembly; 203. Fixing bolt; 3. Second connecting frame component; 4. Adjustable frame component; 401. Support component; 402. First connecting seat; 403. Second connecting seat. Detailed Implementation
[0022] The embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples. The following examples are for illustrative purposes only and should not be construed as limiting the scope of this utility model.
[0023] like Figures 1 to 4 As shown, a convenient detachable instrument connection assembly includes a first connecting frame assembly 1 and a combination component 2. The combination component 2 is horizontally and movably installed at each of the four opposite corners of one side of the first connecting frame assembly 1. A second connecting frame component 3 is movably connected to the end of the combination component 2 away from the first connecting frame assembly 1. Adjustment frame components 4 are symmetrically and movably installed at the lower ends of the sides of the first connecting frame assembly 1 and the second connecting frame component 3 away from the combination component 2. The first connecting frame assembly 1 includes an inner frame 101, mounting holes 102, an outer frame 103, a gasket component 104, and a protective coating 105. Mounting holes 102 are horizontally provided at each of the four opposite corners of the inner frame 101. The outer frame 103 is provided on the outer surface of the inner frame 101, and a gasket component 104 is installed on the surface of the outer frame 103 near the combination component 2. The inner frame 101 and the outer frame 103 are connected... The outer surfaces of all three are coated with a protective coating 105. The inner frame 101 and the outer frame 103 are made of the same material and are both constructed using a composite material of polyurethane and aluminum alloy. The protective coating 105 is made of silicon carbide coating and covers the outer surfaces of the inner frame 101 and the outer frame 103. The second connecting frame component 3 and the first connecting frame assembly 1 have the same structure. The inner frame 101 and the outer frame 103 are integrally formed. The gasket component 104 is embedded and installed on one side of the inner frame 101. Through the structural arrangement of the first connecting frame assembly 1 and the second connecting frame component 3, the instrument can be clamped and fixed on both sides. With the structural arrangement of the combined component 2, while clamping and fixing the instrument, appropriate structural adjustments can be made according to the thickness of the instrument itself, thereby improving the stability and adaptability of the instrument during use.
[0024] like Figures 1 to 4As shown, the composite component 2 includes a first assembly 201, a second assembly 202, and a fixing bolt 203. One end of the first assembly 201 is horizontally connected to the second assembly 202. Fixing bolts 203 are installed on both the end of the first assembly 201 away from the second assembly 202 and the end of the second assembly 202 away from the first assembly 201. The surface structure of the end of the first assembly 201 away from the fixing bolt 203 is the same as that of the end of the fixing bolt 203, and they are threadedly connected to the end of the second assembly 202 away from the fixing bolt 203. One end of the fixing bolt 203 is connected to the end of the second assembly 202 away from the first assembly 201. One end of 01 is threadedly connected to the other end, and one end of the fixing bolt 203 is threadedly connected to the interior of the assembly hole 102. The first assembly 201, the second assembly 202 and the fixing bolt 203 are all made of damping alloy material. By setting the combination component 2, the first assembly 201 and the second assembly 202 are threadedly connected, which not only enhances the stability of the connection, but also facilitates quick assembly and disassembly according to actual needs. The screwing structure of the fixing bolt 203 provides double protection for the connection, ensuring the structural stability of the combination of the first connecting frame component 1, the combination component 2 and the second connecting frame component 3.
[0025] like Figures 1 to 4 As shown, the adjusting frame component 4 includes a support component 401, a first connecting seat 402, and a second connecting seat 403. The top end of the support component 401 is connected to and installed with the first connecting seat 402 via a damping hinge structure, and the bottom end of the support component 401 is connected to and installed with the second connecting seat 403 via a damping hinge structure. The support component 401, the first connecting seat 402, and the second connecting seat 403 are all made of damping alloy material. The surfaces of the first connecting seat 402 and the second connecting seat 403 are each provided with holes of different specifications for bolt installation. Furthermore, the lower front section of the inner frame 101 is provided with mounting holes that match the hole structure on the surface of the first connecting seat 402. By providing the adjusting frame component 4, the installation angle and position of the instrument can be flexibly adjusted to adapt to different working environments and installation requirements. The support component 401 is connected to the first connecting seat 402 and the second connecting seat 403 via a damping hinge structure. The use of the damping hinge structure allows the adjusting frame component 4 to be adjusted within a certain range, thereby meeting the installation requirements of the instrument at different tilt angles.
[0026] In summary, as Figures 1 to 4 As shown, when using this easy-to-disassemble instrument connection assembly, the instrument is first placed between the first connecting frame assembly 1 and the second connecting frame member 3. Through the structural setting of the combination member 2, the screw fixing bolt 203 is used to tightly combine one end of the screw-combined first assembly 201 and the second assembly 202 to the side of the first connecting frame assembly 1 and the second connecting frame member 3 near the assembly hole 102, thereby achieving initial fixation.
[0027] At the same time, the relative positions between the first connecting frame assembly 1 and the second connecting frame component 3 can be adjusted appropriately according to the actual thickness of the instrument. At the same time, the structural expansion and adaptation can be carried out by utilizing the structural settings of the first assembly 201 and the second assembly 202 as needed, so as to ensure that the instrument is securely and appropriately clamped and fixed. During this process, the gasket component 104 can effectively increase the friction force, prevent the instrument from sliding or displacing during installation, and ensure the stability and safety of the connection.
[0028] Next, utilizing the flexibility of the adjustment frame component 4, the installation angle and position of the instrument can be adjusted according to the specific working environment and installation requirements. Through the damping hinge structure, the support component 401 can drive the first connecting seat 402 and the second connecting seat 403 to adjust their angles within a certain range until the ideal installation state is achieved. At the same time, utilizing the different specifications of the hole structure on the surface of the first connecting seat 402 and the second connecting seat 403, as well as the matching mounting hole structure on the inner frame 101, the adjustment frame component 4 is firmly connected to the lower side of the first connecting frame assembly 1 and the second connecting frame component 3 by bolts, while being fastened to the mounting surface, further enhancing the stability and reliability of the instrument connection assembly.
[0029] The embodiments of this utility model are given for illustrative and descriptive purposes only, and are not intended to be exhaustive or to limit the utility model to the forms disclosed. Many modifications and variations will be apparent to those skilled in the art. The embodiments were chosen and described in order to better illustrate the principles and practical applications of this utility model, and to enable those skilled in the art to understand this utility model and design various embodiments with various modifications suitable for a particular purpose.
Claims
1. A conveniently detachable instrument connection assembly, comprising a first connecting frame assembly (1) and a combined component (2), characterized in that: The first connecting frame assembly (1) has four horizontally movable assembly members (2) installed at the four opposite corners on one side. The end of the assembly member (2) away from the first connecting frame assembly (1) is movably connected to the second connecting frame member (3). Adjustment frame members (4) are symmetrically and movably installed on the lower ends of the side away from the assembly member (2) of the first connecting frame assembly (1) and the second connecting frame member (3). The first connecting frame assembly (1) includes an inner frame (101) and assembly holes (10). 2) Outer frame (103), gasket component (104) and protective coating (105), the inner frame (101) has horizontally opened assembly holes (102) at the four opposite corners, and the outer frame (103) is provided on the outer surface of the inner frame (101), and the gasket component (104) is installed on the side surface of the outer frame (103) close to the combined component (2), and the outer surfaces of the inner frame (101) and the outer frame (103) are sprayed with protective coating (105).
2. The conveniently detachable instrument connection assembly according to claim 1, characterized in that, The inner frame (101) and the outer frame (103) are made of the same material and are both constructed using a composite material structure of polyurethane and aluminum alloy. The protective coating (105) is made of silicon carbide coating and covers the outer surface of the inner frame (101) and the outer frame (103).
3. The conveniently detachable instrument connection assembly according to claim 1, characterized in that, The second connecting frame component (3) and the first connecting frame assembly (1) adopt the same structural configuration. The inner frame (101) and the outer frame (103) are integrally configured with each other, and the gasket component (104) is installed on one side surface of the inner frame (101) with an embedded structure.
4. The conveniently detachable instrument connection assembly according to claim 1, characterized in that, The combined component (2) includes a first assembly (201), a second assembly (202), and a fixing bolt (203). One end of the first assembly (201) is horizontally connected to the second assembly (202), and fixing bolts (203) are installed on both the end of the first assembly (201) away from the second assembly (202) and the end of the second assembly (202) away from the first assembly (201).
5. A conveniently detachable instrument connection assembly according to claim 4, characterized in that, The end of the first assembly (201) away from the fixing bolt (203) has the same surface structure as the end of the fixing bolt (203) and is threadedly connected to the end of the second assembly (202) away from the fixing bolt (203), and the end of the fixing bolt (203) is threadedly connected to the end of the second assembly (202) away from the first assembly (201).
6. The easily detachable instrument connection assembly according to claim 4, characterized in that, One end of the fixing bolt (203) is threadedly connected to the interior of the assembly hole (102), and the first assembly (201), the second assembly (202) and the fixing bolt (203) are all made of damping alloy material.
7. The conveniently detachable instrument connection assembly according to claim 1, characterized in that, The adjustment structure component (4) includes a support (401), a first connecting seat (402), and a second connecting seat (403). The top end of the support (401) is connected to the first connecting seat (402) via a damping hinge structure, and the bottom end of the support (401) is connected to the second connecting seat (403) via a damping hinge structure.
8. A conveniently detachable instrument connection assembly according to claim 7, characterized in that, The support (401), the first connecting seat (402), and the second connecting seat (403) are all made of damping alloy material. The surfaces of the first connecting seat (402) and the second connecting seat (403) are each provided with holes of different specifications for bolt installation. The lower front section of the inner frame (101) is provided with mounting holes that match the hole structure on the surface of the first connecting seat (402).