Assembly structure of magnesium alloy part

By designing the assembly structure of magnesium alloy parts and utilizing the synergistic effect of multiple components, the problems of low production efficiency, high cost, and difficulty in quality control of magnesium alloy parts were solved, achieving an efficient and low-cost assembly process and reducing the scrap rate.

CN224182978UActive Publication Date: 2026-05-01山西银光华盛镁业股份有限公司
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
山西银光华盛镁业股份有限公司
Filing Date
2025-06-03
Publication Date
2026-05-01

AI Technical Summary

Technical Problem

Existing technologies for magnesium alloy parts suffer from low production efficiency, high costs, difficulty in controlling assembly quality, and poor consistency, resulting in high scrap rates and wasted resources.

Method used

An assembly structure for magnesium alloy parts was designed, including a base, mounting components, support components, pressure components, assembly components, moving components, and lifting components. Through the synergistic effect of these components, the magnesium alloy parts can be quickly positioned, assembled, and disassembled, thereby improving assembly efficiency.

Benefits of technology

It improves the assembly efficiency of magnesium alloy parts, reduces production costs, ensures consistent assembly quality, and reduces scrap rate and resource waste.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224182978U_ABST
    Figure CN224182978U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field, in particular to a magnesium alloy part assembling structure which comprises a base, a mounting assembly, a supporting assembly, a material pressing assembly, an assembling assembly, a moving assembly and a jacking assembly. The mounting assembly comprises mounting strips, a mounting seat, mounting bolts and a positioning column, the two mounting strips are in sliding connection with the base, penetrate through the base and the mounting seat to be fixedly connected with the mounting strips and are located at the top of the base, and the multiple mounting bolts are in threaded connection with the base and penetrate through the base, the mounting seat and the positioning column to be fixedly connected with the mounting seat; and the supporting assembly, the moving assembly and the jacking assembly are connected with the base, and the pressing assembly and the assembling assembly are connected with the supporting assembly, so that the problems that the production efficiency is very low, the production cost is high, the assembling quality cannot be effectively controlled, the consistency is too poor, the rejection rate in the machining and assembling process is extremely high, and the production cost is low are solved. And a lot of manpower and material resources are wasted.
Need to check novelty before this filing date? Find Prior Art

Description

An assembly structure for a magnesium alloy part Technical Field

[0001] This utility model relates to the field of magnesium alloy assembly technology, and in particular to an assembly structure for magnesium alloy parts. Background Technology

[0002] Magnesium alloys have been widely used in many fields. However, the equipment for processing and assembly is not yet complete and perfect. It is being continuously developed and researched and gradually promoted. But so far, there is no special equipment for the installation and assembly of magnesium alloy parts, nor is there a mature processing and assembly process. There are still some problems that need to be further researched and developed.

[0003] For magnesium alloy parts with special structures and requirements, rapid assembly of magnesium alloy parts is a major bottleneck in the production process. There are no good methods and equipment to process and assemble magnesium alloy parts. Using existing manual assembly, it takes 60 seconds to assemble one piece, which is extremely inefficient, costly, and the assembly quality cannot be effectively controlled. The poor consistency leads to a very high scrap rate in the processing and assembly process, and also wastes a lot of human and material resources. Summary of the Invention

[0004] The purpose of this utility model is to provide an assembly structure for magnesium alloy parts, which solves the problems of extremely low production efficiency, high production cost, ineffective control of assembly quality, poor consistency, extremely high scrap rate during processing and assembly, and waste of a lot of human and material resources.

[0005] To achieve the above objectives, this utility model provides an assembly structure for magnesium alloy parts, including a base, a mounting assembly, a support assembly, a pressing assembly, an assembly assembly, a moving assembly, and a lifting assembly. The mounting assembly includes mounting strips, mounting seats, mounting bolts, and positioning pins. There are two mounting strips, each slidably connected to and passing through the base. The mounting seat is fixedly connected to the mounting strips and located at the top of the base. There are multiple mounting bolts, each threadedly connected to the base and passing through both the base and the mounting seat. The positioning pin is fixedly connected to the mounting seat and located at the top of the mounting seat. The support assembly, the moving assembly, and the lifting assembly are all connected to the base. The pressing assembly and the assembly assembly are all connected to the support assembly.

[0006] The support assembly includes support columns and a top seat. There are multiple support columns, each of which is fixedly connected to the base and located on top of the base. The top seat is fixedly connected to the support columns and located on top of the base.

[0007] The pressing assembly includes a pressing telescopic rod and a lifting plate. The pressing telescopic rod is fixedly connected to the top seat and passes through the top seat. The lifting plate is fixedly connected to the pressing telescopic rod and is located at the bottom of the pressing telescopic rod.

[0008] The pressing assembly further includes pressing guide rods, and there are multiple pressing guide rods. Each of the multiple pressing guide rods is fixedly connected to the lifting plate and passes through the top seat.

[0009] The bottom of the lifting plate and the top of the base are respectively provided with two sliding grooves.

[0010] The assembly component includes an assembly strip and a pressure seat. There are two assembly strips, which are slidably connected to the lifting plate and located inside the slide groove. The pressure seat is fixedly connected to the assembly strip and located at the bottom of the assembly strip.

[0011] The assembly assembly further includes an assembly base and assembly bolts. There are two assembly bases, which are fixedly connected to the pressure base and located on both sides of the pressure base. There are also two assembly bolts, which are threadedly connected to the pressure base and pass through the assembly base.

[0012] The movable component includes a movable base and casters. There are multiple movable bases, each fixedly connected to the base and passing through the base. There are multiple casters, each rotatably connected to the movable base and located at the bottom of the movable base.

[0013] The lifting assembly includes two lifting telescopic rods and two lifting plates. The two lifting telescopic rods are fixedly connected to the base and pass through the base respectively. The two lifting plates are fixedly connected to the lifting telescopic rods and are located at the bottom of the lifting telescopic rods respectively.

[0014] The lifting assembly further includes multiple lifting guide rods, which are fixedly connected to the lifting plate and pass through the base.

[0015] The present invention discloses an assembly structure for magnesium alloy parts. The base provides support for the device. The mounting strip cooperates with the sliding groove to guide the mounting seat. The mounting seat supports the magnesium alloy parts to be assembled. The mounting bolts facilitate fixing the mounting seat to the top of the base. The positioning pins position the magnesium alloy parts. In use, the magnesium alloy parts to be assembled are placed on the surface of the mounting seat, positioned by the positioning pins, and then the assembly assembly is pressed down by the pressure assembly, facilitating assembly and improving assembly efficiency. When assembling different magnesium alloy parts, the mounting seat and the pressure seat are disassembled along the mounting strip and assembly strip, respectively, and then the corresponding mounting seat and pressure seat are respectively installed into the base and the top seat, facilitating the assembly of different magnesium alloy parts. This invention solves the problems of extremely low production efficiency, high production costs, ineffective quality control, poor consistency, high scrap rate during processing and assembly, and significant waste of human and material resources. Attached Figure Description

[0016] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the accompanying drawings used in the description of the embodiments or the prior art will be briefly introduced below.

[0017] Figure 1 is a schematic diagram of the overall structure of the magnesium alloy part assembly structure according to the first embodiment of this utility model.

[0018] Figure 2 is a structural schematic diagram of the installation component and assembly component of the first embodiment of this utility model.

[0019] Figure 3 is a structural schematic diagram of the moving component and the lifting component of the first embodiment of this utility model.

[0020] Figure 4 is a structural schematic diagram of the support component and the pressing component of the first embodiment of this utility model.

[0021] In the diagram: 101-base, 102-mounting strip, 103-mounting seat, 104-mounting bolt, 105-positioning column, 106-support column, 107-top seat, 108-pressing telescopic rod, 109-lifting plate, 110-pressing guide rod, 111-slide groove, 112-assembly strip, 113-pressing seat, 114-assembly seat, 115-assembly bolt, 116-moving seat, 117-caster wheel, 118-lifting telescopic rod, 119-lifting plate, 120-lifting guide rod. Detailed Implementation

[0022] The embodiments of the present invention are described in detail below. Examples of the embodiments are shown in the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain the present invention, but should not be construed as limiting the present invention.

[0023] The first embodiment of this application is as follows:

[0024] Please refer to Figures 1 to 4. Figure 1 is a schematic diagram of the overall structure of the magnesium alloy part assembly according to the first embodiment of this utility model. Figure 2 is a schematic diagram of the installation component and assembly component according to the first embodiment of this utility model. Figure 3 is a schematic diagram of the moving component and lifting component according to the first embodiment of this utility model. Figure 4 is a schematic diagram of the support component and pressure component according to the first embodiment of this utility model. This utility model provides an assembly structure for a magnesium alloy part, including a base 101, an installation component, a support component, a pressure component, an assembly component, a moving component, and a lifting component. The installation component includes an installation strip 102, an installation seat 103, and installation bolts 104. The positioning column 105, the support assembly including the support column 106 and the top seat 107, the pressing assembly including the pressing telescopic rod 108, the lifting plate 109 and the pressing guide rod 110, the assembly assembly including the assembly strip 112, the pressing seat 113, the assembly seat 114 and the assembly bolt 115, the moving assembly including the moving seat 116 and the universal wheel 117, and the lifting assembly including the lifting telescopic rod 118, the lifting plate 119 and the lifting guide rod 120; the aforementioned solution solves the problems of extremely low production efficiency, high production cost, ineffective control of assembly quality, poor consistency, extremely high scrap rate in the processing and assembly process, and a large amount of wasted human and material resources.

[0025] In this specific embodiment, there are two mounting strips 102, each slidably connected to and passing through the base 101. The mounting seat 103 is fixedly connected to the mounting strips 102 and located at the top of the base 101. Multiple mounting bolts 104 are threadedly connected to the base 101 and pass through both the base 101 and the mounting seat 103. A positioning post 105 is fixedly connected to the mounting seat 103 and located at its top. The support assembly, the moving assembly, and the lifting assembly are connected to the base 101. The pressing assembly and the assembly assembly are connected to the support assembly. The base 101 provides support for the device. The mounting strips 102 cooperate with the sliding groove 111 for mounting... The mounting base 103 provides a guiding function and supports the magnesium alloy parts to be assembled. The mounting bolts 104 facilitate fixing the mounting base 103 to the top of the base 101. The positioning pins 105 provide positioning for the magnesium alloy parts. In use, the magnesium alloy parts to be assembled are placed on the surface of the mounting base 103, positioned by the positioning pins 105, and then the assembly assembly is pressed down by the pressing assembly, which facilitates the assembly of the magnesium alloy parts and improves the assembly efficiency. When assembling different magnesium alloy parts, the mounting base 103 and the pressing pin 113 are disassembled along the mounting strip 102 and the assembly strip 112, respectively, and then the corresponding mounting base 103 and pressing pin 113 are respectively installed into the base 101 and the top seat 107, which facilitates the assembly of different magnesium alloy parts.

[0026] The support columns 106 are multiple, and each support column 106 is fixedly connected to the base 101 and located on the top of the base 101. The top seat 107 is fixedly connected to the support columns 106 and located on the top of the base 101. The support columns 106 provide support for the top seat 107, and the top seat 107 provides support for the pressing assembly and the assembly assembly.

[0027] The material pressing telescopic rod 108 is fixedly connected to the top seat 107 and passes through the top seat 107. The lifting plate 109 is fixedly connected to the material pressing telescopic rod 108 and is located at the bottom of the material pressing telescopic rod 108. The material pressing telescopic rod 108 is used to provide control over the material pressing assembly and the assembly assembly. The lifting plate 109 provides support for the assembly assembly.

[0028] The number of the pressing guide rods 110 is multiple, and the multiple pressing guide rods 110 are fixedly connected to the lifting plate 109 and pass through the top seat 107 respectively. The pressing guide rods 110 are used to provide guidance for the lifting plate 109 and prevent the lifting plate 109 from deviating when the lifting plate 109 is raised and lowered.

[0029] The bottom of the lifting plate 109 and the top of the base 101 are respectively provided with two sliding grooves 111. The sliding grooves 111 provide guidance and limiting function for the mounting strip 102 and the assembly strip 112, which facilitates the replacement of the mounting seat 103 and the pressure seat 113.

[0030] The assembly strip 112 consists of two parts, which are slidably connected to the lifting plate 109 and located inside the slide groove 111. The pressure seat 113 is fixedly connected to the assembly strip 112 and located at the bottom of the assembly strip 112. The assembly strip 112 provides guidance for the pressure seat 113, facilitating its installation. The pressure seat 113 engages with the top of the magnesium alloy part to be assembled, pressing the magnesium alloy part together.

[0031] Secondly, there are two mounting bases 114, which are fixedly connected to the pressure base 113 and located on both sides of the pressure base 113. There are also two mounting bolts 115, which are threadedly connected to the pressure base 113 and pass through the mounting bases 114. The mounting bases 114 provide a limiting function for the mounting bolts 115, and the mounting bolts 115 facilitate the installation of the mounting bases 114 and the pressure base 113.

[0032] Furthermore, there are multiple movable seats 116, each fixedly connected to and passing through the base 101. There are also multiple casters 117, each rotatably connected to the movable seat 116 and located at the bottom of the movable seat 116. The movable seat 116 provides guidance for the casters 117, and the rolling of the casters 117 facilitates the overall transport of the device.

[0033] Furthermore, there are two lifting telescopic rods 118, which are fixedly connected to the base 101 and pass through the base 101 respectively. There are also two lifting plates 119, which are fixedly connected to the lifting telescopic rods 118 and located at the bottom of the lifting telescopic rods 118 respectively. The lifting telescopic rods 118 are used to control the lifting plates 119, and the lifting plates 119 are used to support the device.

[0034] Finally, there are multiple lifting guide rods 120, each fixedly connected to the lifting plate 119 and passing through the base 101. The lifting guide rods 120 provide guidance for the lifting plate 119. After the device is moved to the required position by the moving assembly, the lifting telescopic rod 118 extends, pushing the lifting plate 119 down along the lifting guide rod 120, so that the device can be lifted by the lifting plate 119, so that the caster wheel 117 is off the ground, and the device is prevented from shifting during use.

[0035] Using the assembly structure of the magnesium alloy parts in this embodiment, the base 101 provides support for the device, the mounting strip 102 cooperates with the slide groove 111 to provide guidance for the mounting seat 103, the mounting seat 103 provides support for the magnesium alloy parts to be assembled, and the mounting bolts 104 facilitate fixing the mounting seat 103 to the top of the base 101, the positioning pins 105 provide positioning for the magnesium alloy parts. In use, the magnesium alloy parts to be assembled are placed on the surface of the mounting seat 103, the positioning pins 105 position the magnesium alloy parts, and then the pressing assembly controls the positioning. The assembly components are pressed down to facilitate the assembly of magnesium alloy parts, improving the assembly efficiency. When assembling different magnesium alloy parts, the mounting base 103 and the pressure base 113 are disassembled along the mounting strip 102 and the assembly strip 112, respectively, and then the corresponding mounting base 103 and pressure base 113 are respectively installed into the base 101 and the top seat 107. This facilitates the assembly of different magnesium alloy parts and solves the problems of extremely low production efficiency, high production costs, ineffective control of assembly quality, poor consistency, extremely high scrap rate during processing and assembly, and a large amount of wasted human and material resources.

[0036] The above-disclosed embodiments are merely one or more preferred embodiments of this application and should not be construed as limiting the scope of this application. Those skilled in the art can understand that all or part of the processes for implementing the above embodiments and equivalent changes made in accordance with the claims of this application still fall within the scope of this application.

Claims

1. An assembly structure for a magnesium alloy part, comprising a base, characterized in that, It also includes an installation component, a support component, a pressure component, an assembly component, a moving component, and a lifting component; the installation component includes an installation strip, an installation seat, installation bolts, and a positioning post. There are two installation strips, each slidably connected to the base and passing through the base. The installation seat is fixedly connected to the installation strip and located at the top of the base. There are multiple installation bolts, each threadedly connected to the base and passing through both the base and the installation seat. The positioning post is fixedly connected to the installation seat and located at the top of the installation seat. The support component, the moving component, and the lifting component are all connected to the base. The pressure component and the assembly component are all connected to the support component.

2. The assembly structure of the magnesium alloy part as described in claim 1, characterized in that, The support assembly includes support columns and a top seat. There are multiple support columns, each of which is fixedly connected to the base and located on top of the base. The top seat is fixedly connected to the support columns and located on top of the base.

3. The assembly structure of the magnesium alloy part as described in claim 2, characterized in that, The pressing assembly includes a pressing telescopic rod and a lifting plate. The pressing telescopic rod is fixedly connected to the top seat and passes through the top seat. The lifting plate is fixedly connected to the pressing telescopic rod and is located at the bottom of the pressing telescopic rod.

4. The assembly structure of the magnesium alloy part as described in claim 3, characterized in that, The pressing assembly also includes pressing guide rods, and there are multiple pressing guide rods. The multiple pressing guide rods are respectively fixedly connected to the lifting plate and pass through the top seat.

5. The assembly structure of the magnesium alloy part as described in claim 3, characterized in that, The bottom of the lifting plate and the top of the base are respectively provided with two sliding grooves.

6. The assembly structure of the magnesium alloy part as described in claim 5, characterized in that, The assembly assembly includes an assembly strip and a pressure seat. There are two assembly strips, which are slidably connected to the lifting plate and located inside the slide groove. The pressure seat is fixedly connected to the assembly strip and located at the bottom of the assembly strip.

7. The assembly structure of the magnesium alloy part as described in claim 6, characterized in that, The assembly assembly also includes an assembly base and assembly bolts. There are two assembly bases, which are fixedly connected to the pressure base and located on both sides of the pressure base. There are two assembly bolts, which are threadedly connected to the pressure base and pass through the assembly base.

8. The assembly structure of the magnesium alloy part as described in claim 1, characterized in that, The movable component includes a movable base and casters. There are multiple movable bases, each fixedly connected to the base and passing through the base. There are multiple casters, each rotatably connected to the movable base and located at the bottom of the movable base.

9. The assembly structure of the magnesium alloy part as described in claim 1, characterized in that, The lifting assembly includes two lifting telescopic rods and two lifting plates. The two lifting telescopic rods are fixedly connected to the base and pass through the base respectively. The two lifting plates are fixedly connected to the lifting telescopic rods and are located at the bottom of the lifting telescopic rods respectively.

10. The assembly structure of the magnesium alloy part as described in claim 9, characterized in that, The lifting assembly also includes multiple lifting guide rods, each of which is fixedly connected to the lifting plate and passes through the base.