Structure of novel material rack appliance vehicle
Through aluminum profile components and adjustable connecting structure, the existing rack and equipment vehicle are solved, and the existing rack and equipment vehicle is bulky, inflexible, high cost and single applicability are achieved, and the effect of flexible adjustment and reduction of transportation costs is achieved.
Patent Information
- Application Number
- CN202422440109.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-09
- Publication Date
- 2025-08-05
- Estimated Expiration
- 2034-10-09
AI Technical Summary
The frame of the existing material rack appliance car adopts a steel pipe welded structure, which leads to bulky, inflexible transportation, high cost, easy appearance to be damaged, single applicability, and easy to waste resources after production suspension.
The aluminum profile assembly and adjustable connecting structure are adopted, including X-, Y- and Z-direction aluminum profiles, and are connected by cylindrical hexagon screws and aluminum profile fixing corner pieces. Combined with the extended bag support beam and roller assembly, the frame can be adjusted and flexible.
It realizes flexible adjustment and expansion of the framework, reduces transportation costs, improves applicability, avoids waste of resources, and has good appearance and durability.
Smart Images

Figure CN223187519U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of rack tool carts, and particularly to the structure of a novel rack tool cart. Background Technique
[0002] Rack tool carts are usually used for turnover and transportation of relatively expensive products and parts to avoid or reduce damage caused during transportation, such as for turnover and transportation of automotive parts, fitness equipment, medical devices, aerospace parts, etc.
[0003] In the prior art, the main frame of most rack tool carts is welded with steel pipes. The first problem with this structural method is that the overall quality is relatively heavy, making it inflexible during turnover and transportation and resulting in relatively high transportation costs. The second problem is that since steel pipes need to be welded together to form a frame, slag and burrs need to be removed after welding, so the manufacturing cost is relatively high. The third problem is that for aesthetics and rust prevention, the outer surface generally uses a painting process, and the paint coating on the outer surface is prone to being damaged and falling off during transportation, prone to rusting, affecting aesthetics and service life. The fourth problem is that once the steel pipes are welded and fixed, the distance between the cloth bag support crossbeams and the external dimensions will be fixed. Such a rack tool cart can generally only package one corresponding model of product. Once the product is discontinued, it is easy to cause the rack tool carts of this model to become stagnant, occupy and pile up factory space, and be scrapped, etc. Therefore, designing a novel structure of a rack tool cart has become a technical problem that needs to be solved urgently. Content of the Utility Model
[0004] Based on this, the purpose of the present utility model is to provide the structure of a novel rack tool cart to solve the technical problems that the rack tool carts of this model are prone to becoming stagnant, occupying and piling up factory space, and being scrapped after the product is discontinued.
[0005] To achieve the above purpose, the present utility model provides the following technical solution: The structure of a novel rack tool cart includes an X-direction aluminum profile assembly. The X-direction aluminum profile assembly includes X-direction aluminum profiles, socket head cap screws, spring washers, flat washers, aluminum profile fixing angle pieces, and T-nuts. Aluminum profile fixing angle pieces are provided at the bottom end of the X-direction aluminum profiles. Multiple groups of the X-direction aluminum profiles and the aluminum profile fixing angle pieces are connected and fixed by multiple groups of socket head cap screws. T-nuts that cooperate with the socket head cap screws are provided inside multiple groups of the X-direction aluminum profiles. A spring washer is provided between each group of the socket head cap screws and the T-nuts, and a flat washer is provided at the bottom end of the spring washer.
[0006] By adopting the above technical solution, a structure of arranging T-shaped nuts inside the X-direction aluminum profiles is adopted, so as to facilitate the connection and fixation of the X-direction aluminum profiles with the aluminum profile fixing corner pieces through hexagon socket head cap screws, and at the same time, a structure of arranging spring washers and flat washers between the X-direction aluminum profiles and the aluminum profile fixing corner pieces is adopted, so as to achieve the effect of protecting the X-direction aluminum profiles.
[0007] Further, the two ends of the two groups of X-direction aluminum profiles are fixedly connected with Z-direction aluminum profiles through hexagon socket head cap screws and aluminum profile fixing corner pieces, and the two groups of Z-direction aluminum profiles are fixedly connected with Y-direction aluminum profiles through hexagon socket head cap screws and aluminum profile fixing corner pieces.
[0008] By adopting the above technical solution, multiple groups of X-direction aluminum profiles cooperate with each other through hexagon socket head cap screws and aluminum profile fixing corner pieces, so as to achieve the effect of forming a frame main body by multiple groups of X-direction aluminum profiles, Z-direction aluminum profiles and Y-direction aluminum profiles.
[0009] Further, multiple groups of cloth bag support beam assemblies are arranged between the two groups of X-direction aluminum profiles. The cloth bag support beam assemblies include cloth bag support beam steel pipes and cloth bag support beam fixing connectors. The X-direction aluminum profiles are fixedly connected with the cloth bag support beam fixing connectors through hexagon socket head cap screws, and the cloth bag support beam steel pipes are movably connected between the two groups of cloth bag support beam fixing connectors.
[0010] By adopting the above technical solution, by arranging multiple groups of cloth bag support beam assemblies between the two groups of X-direction aluminum profiles, the effect of facilitating the placement of appliances is achieved.
[0011] Further, an X-direction extendable aluminum profile assembly is arranged between the two groups of Z-direction aluminum profiles. The X-direction extendable aluminum profile assembly includes an X-direction extendable aluminum profile and an extendable aluminum profile connector. Extendable aluminum profile connectors are arranged on both sides of the two groups of X-direction extendable aluminum profiles, and the X-direction extendable aluminum profile is fixedly connected with the extendable aluminum profile connector through hexagon socket head cap screws and T-shaped nuts.
[0012] By adopting the above technical solution, by arranging an X-direction extendable aluminum profile assembly between the two groups of Z-direction aluminum profiles, the function of stretching and expanding the whole frame is achieved, so as to play the role of increasing the storage area.
[0013] Further, multiple groups of X-direction aluminum profiles and Y-direction aluminum profiles are arranged at the bottom ends of the four groups of Z-direction aluminum profiles, and multiple groups of X-direction base aluminum profiles are arranged between the two groups of Y-direction aluminum profiles. The X-direction base aluminum profiles are fixedly connected through hexagon socket head cap screws, aluminum profile fixing corner pieces and T-shaped nuts.
[0014] By adopting the above technical solution, a structure is provided in which multiple groups of X-direction base aluminum profiles are arranged between the Y-direction aluminum profiles at the bottom end of the overall frame, so as to achieve the effect of increasing the storage area while strengthening and supporting the overall frame.
[0015] Furthermore, forklift foot assemblies are provided at the bottom ends of multiple groups of the X-direction aluminum profiles. The forklift foot assemblies include forklift feet and second T-shaped nut bars. A second T-shaped nut bar is arranged between the forklift feet and the X-direction aluminum profiles, and the forklift feet and the second T-shaped nut bars are fixedly connected to the X-direction aluminum profiles through socket head cap screws.
[0016] By adopting the above technical solution, a structure in which forklift foot assemblies are provided at the bottom ends of the X-direction aluminum profiles is adopted, so as to achieve the function of facilitating the forklift to move and transport the overall frame.
[0017] Furthermore, multiple groups of roller assemblies are provided on the bases of multiple groups of the Y-direction aluminum profiles. The roller assemblies include rollers and first T-shaped nut bars. A first T-shaped nut bar is arranged between the Y-direction aluminum profiles and the rollers, and the rollers and the first T-shaped nut bars are fixedly connected to the Y-direction aluminum profiles through socket head cap screws.
[0018] By adopting the above technical solution, a structure in which multiple groups of roller assemblies are provided on the bases of the Y-direction aluminum profiles is adopted, so as to achieve the function of facilitating the user to move the overall frame.
[0019] Furthermore, an X-direction extendable aluminum profile assembly is arranged between two groups of the Z-direction aluminum profiles. The X-direction extendable aluminum profile assembly includes an X-direction extendable aluminum profile and an extendable aluminum profile connecting piece. Extendable aluminum profile connecting pieces are arranged on both sides of the two groups of the X-direction extendable aluminum profiles, and the X-direction extendable aluminum profile and the extendable aluminum profile connecting pieces are fixedly connected through socket head cap screws and T-shaped nuts.
[0020] By adopting the above technical solution, a structure in which an X-direction extendable aluminum profile assembly is arranged between two groups of the Z-direction aluminum profiles is adopted, achieving the function of facilitating the stretching of the overall frame, thereby achieving the effect of increasing the overall width and being applicable to different appliances.
[0021] To sum up, the present invention mainly has the following beneficial effects: the present invention is composed of a plurality of groups of X-direction aluminum profile components, Y-direction aluminum profiles and Z-direction aluminum profiles to form a frame as a whole, wherein the X-direction aluminum profile components are provided with a structure of an X-direction extendable aluminum profile component and a structure of an extendable cloth bag support beam component, so that the X-direction aluminum profile components can be telescopically placed, thereby increasing the placement area, and further, by providing a structure of a roller component at the bottom end of the plurality of groups of Y-direction aluminum profiles, the frame as a whole can be easily moved, and at the same time, by providing a structure of a plurality of groups of forklift foot components at the bottom end of the X-direction aluminum profile components, the frame as a whole can be easily transported and moved by a forklift. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] Figure 1 This is a schematic diagram of the assembly of the main frame of the material rack equipment vehicle structure of the present utility model;
[0023] Figure 2 This is an exploded diagram of the X-axis aluminum profile assembly of part 1 of the present invention;
[0024] Figure 3 This is an exploded schematic diagram of the bag support beam assembly of part 2 of the present invention;
[0025] Figure 4 This is an exploded schematic diagram of the X-axis extendable aluminum profile assembly of part 4 of the present invention;
[0026] Figure 5 This is an exploded schematic diagram of the roller assembly of part 6 of the present invention;
[0027] Figure 6 This is an exploded schematic diagram of the forklift foot assembly of part 7 of the present invention;
[0028] Figure 7 This is an exploded diagram of the X-axis base aluminum profile assembly of part 8 of the present invention;
[0029] Figure 8 This is an exploded diagram of the extendable cloth bag support beam assembly of part 9 of the present invention.
[0030] In the figure: 1. X-direction aluminum profile assembly; 101. X-direction aluminum profile; 102. Hexagon socket head cap screw; 103. Spring washer; 104. Flat washer; 105. Aluminum profile fixing angle piece; 106. T-nut; 2. Cloth bag support beam assembly; 201. Cloth bag support beam steel pipe; 202. Cloth bag support beam fixing connecting piece; 3. Z-direction aluminum profile; 4. X-direction extendable aluminum profile assembly; 401. X-direction extendable aluminum profile; 402. Extendable aluminum profile connecting piece; 5. Y-direction aluminum profile; 6. Roller assembly; 601. Roller; 602. First T-nut strip; 7. Forklift foot assembly; 701. Forklift foot; 702. Second T-nut strip; 8. X-direction base aluminum profile; 9. Extendable cloth bag support beam assembly; 901. Extendable cloth bag support beam steel pipe; 902. Extendable cloth bag support beam connecting piece; 903. Oval head screw; 904. Oval head nut sleeve. Detailed implementation mode
[0031] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. The embodiments described below by referring to the accompanying drawings are exemplary and are only used to explain the present invention and should not be construed as a limitation to the present invention.
[0032] Next, the embodiments of the present invention will be described according to the overall structure of the present invention.
[0033] The structure of a new type of rack appliance vehicle is as Figure 1-8 shown, including an X-direction aluminum profile assembly 1. The X-direction aluminum profile assembly 1 includes an X-direction aluminum profile 101, a hexagon socket head cap screw 102, a spring washer 103, a flat washer 104, an aluminum profile fixing angle piece 105 and a T-nut 106. An aluminum profile fixing angle piece 105 is provided at the end of the X-direction aluminum profile 101. Multiple groups of X-direction aluminum profiles 101 and the aluminum profile fixing angle pieces 105 are connected and fixed by multiple groups of hexagon socket head cap screws 102. T-nuts 106 matching the hexagon socket head cap screws 102 are provided inside multiple groups of X-direction aluminum profiles 101. A spring washer 103 is provided between each group of hexagon socket head cap screws 102 and T-nuts 106, and a flat washer 104 is provided at the bottom of the spring washer 103. The structure of arranging the T-nut 106 inside the X-direction aluminum profile 101 facilitates the connection and fixation of the X-direction aluminum profile 101 and the aluminum profile fixing angle piece 105 through the hexagon socket head cap screw 102. At the same time, the structure of arranging the spring washer 103 and the flat washer 104 between the X-direction aluminum profile 101 and the aluminum profile fixing angle piece 105 plays a role in protecting the X-direction aluminum profile 101 during connection.
[0034] Please refer to Figure 1, at both ends of two groups of X-direction aluminum profiles 101, a Z-direction aluminum profile 3 is fixedly connected through hexagon socket head cap screws 102 and aluminum profile fixing angle pieces 105. Between two groups of Z-direction aluminum profiles 3, a Y-direction aluminum profile 5 is fixedly connected through hexagon socket head cap screws 102 and aluminum profile fixing angle pieces 105. Further, multiple groups of X-direction aluminum profiles 101 cooperate with each other through hexagon socket head cap screws 102 and aluminum profile fixing angle pieces 105, so as to form a frame body composed of multiple groups of X-direction aluminum profiles 101, Z-direction aluminum profiles 3 and Y-direction aluminum profiles 5.
[0035] Please refer to Figure 1 and Figure 3 , between two groups of X-direction aluminum profiles 101, multiple groups of cloth bag support beam assemblies 2 are provided. The cloth bag support beam assembly 2 includes a cloth bag support beam steel pipe 201 and a cloth bag support beam fixing connecting piece 202. The X-direction aluminum profile 101 is fixedly connected to the cloth bag support beam fixing connecting piece 202 through a hexagon socket head cap screw 102. A cloth bag support beam steel pipe 201 is movably connected between two groups of cloth bag support beam fixing connecting pieces 202. By adjusting the hexagon socket head cap screw 102 and the T-shaped nut 106, the height position of multiple groups of X-direction aluminum profiles 101 is adjusted. At the same time, when multiple groups of X-direction aluminum profiles 101 are adjusted, multiple groups of cloth bag support beam steel pipes 201 are driven to move, so as to facilitate the adjustment of the height of the storage area.
[0036] Please refer to Figure 1 and Figure 8 , between two groups of X-direction aluminum profiles 101, an extendable cloth bag support beam assembly 9 is provided. The extendable cloth bag support beam assembly 9 includes an extendable cloth bag support beam steel pipe 901, an extendable cloth bag support beam connecting piece 902, an oval head screw 903 and an oval head nut sleeve 904. Two groups of extendable cloth bag support beam steel pipes 901 are movably connected through an extendable cloth bag support beam connecting piece 902. The extendable cloth bag support beam steel pipe 901 and the extendable cloth bag support beam connecting piece 902 are fixedly connected through multiple groups of oval head screws 903 and oval head nut sleeves 904. The user adjusts the oval head screw 903 inside the extendable cloth bag support beam assembly 9, so as to release the two groups of extendable cloth bag support beam steel pipes 901 and the extendable cloth bag support beam connecting piece 902, thereby increasing the storage area.
[0037] The working principle of the present utility model is as follows: during use, the user adjusts the oval head screw 903 inside the extendable cloth bag support beam assembly 9, so as to release the two groups of extendable cloth bag support beam steel pipes 901 and the extendable cloth bag support beam connecting piece 902, thereby increasing the storage area;
[0038] During use, the operator adjusts the socket head cap screw 102 and the T-nut 106 to adjust the height position of multiple groups of X-direction aluminum profiles 101. At the same time, when adjusting multiple groups of X-direction aluminum profiles 101, it drives multiple groups of cloth bag support beam steel pipes 201 to move, so as to achieve the function of facilitating the adjustment of the height of the storage area;
[0039] During use, an X-direction extendable aluminum profile assembly 4 is arranged between two groups of Z-direction aluminum profiles 3. The operator loosens the socket head cap screw 102 to facilitate the stretching of two groups of X-direction extendable aluminum profiles 401, thereby increasing the overall width distance of the frame;
[0040] During use, after the appliances are completely placed on the frame, the operator can move it through the roller assembly 6 at this time. Further, the operator can use a forklift to move and transport the whole through the forklift foot assembly 7 arranged at the bottom end of the frame.
[0041] Although the embodiments of the present invention have been shown and described, the specific embodiments are only explanations of the present invention and not limitations thereof. The specific features, structures, materials or characteristics described can be combined in a suitable manner in any one or more embodiments or examples. After reading this specification, those skilled in the art can make modifications, substitutions and variations that do not contribute creatively to the embodiments according to needs, but as long as they are within the scope of the claims of the present invention, they are protected by the patent law.
Claims
1. A novel structure of a material rack equipment vehicle, comprising an X-direction aluminum profile assembly (1), characterized in that: The X-direction aluminum profile assembly (1) comprises an X-direction aluminum profile (101), a cylindrical head hexagon socket screw (102), a spring washer (103), a flat washer (104), an aluminum profile fixing angle piece (105) and a T-shaped nut (106). The bottom end of the X-direction aluminum profile (101) is provided with the aluminum profile fixing angle piece (105). Multiple groups of the X-direction aluminum profiles (101) are connected and fixed to the aluminum profile fixing angle piece (105) through multiple groups of cylindrical head hexagon socket screws (102). T-shaped nuts (106) matching the cylindrical head hexagon socket screws (102) are provided inside the multiple groups of the X-direction aluminum profiles (101). A spring washer (103) is provided between each group of the cylindrical head hexagon socket screws (102) and the T-shaped nut (106). The bottom end of the spring washer (103) is provided with a flat washer (104).
2. The structure of a new material rack equipment vehicle according to claim 1 is characterized in that: The two ends of the two groups of X-direction aluminum profiles (101) are fixedly connected to the Z-direction aluminum profiles (3) via cylindrical head hexagon socket screws (102) and aluminum profile fixing angle pieces (105), and the two groups of Z-direction aluminum profiles (3) are fixedly connected to the Y-direction aluminum profiles (5) via cylindrical head hexagon socket screws (102) and aluminum profile fixing angle pieces (105).
3. The structure of the new material rack tool vehicle according to claim 2 is characterized in that: A plurality of groups of cloth bag support beam assemblies (2) are arranged between the two groups of X-direction aluminum profiles (101), the cloth bag support beam assemblies (2) comprising cloth bag support beam steel pipes (201) and cloth bag support beam fixing connectors (202), the X-direction aluminum profiles (101) are fixedly connected to the cloth bag support beam fixing connectors (202) via cylindrical head hexagon socket screws (102), and the cloth bag support beam steel pipes (201) are movably connected between the two groups of the cloth bag support beam fixing connectors (202).
4. The structure of the new material rack trolley according to claim 1 is characterized in that: An extendable bag support beam assembly (9) is provided between the two groups of X-direction aluminum profiles (101). The extendable bag support beam assembly (9) comprises an extendable bag support beam steel pipe (901), an extendable bag support beam connector (902), a flat round head screw (903) and a flat round head nut sleeve (904). The two groups of extendable bag support beam steel pipes (901) are movably connected via the extendable bag support beam connector (902). The extendable bag support beam steel pipe (901) and the extendable bag support beam connector (902) are fixedly connected via multiple groups of flat round head screws (903) and flat round head nut sleeves (904).
5. The structure of the new material rack tool vehicle according to claim 2 is characterized in that: An X-direction extendable aluminum profile assembly (4) is provided between the two groups of the Z-direction aluminum profiles (3), the X-direction extendable aluminum profile assembly (4) comprising an X-direction extendable aluminum profile (401) and an extendable aluminum profile connector (402), both sides of the two groups of the X-direction extendable aluminum profiles (401) are provided with an extendable aluminum profile connector (402), and the X-direction extendable aluminum profile (401) and the extendable aluminum profile connector (402) are fixedly connected by a cylindrical head hexagon socket screw (102) and a T-nut (106).
6. The structure of the new material rack tool vehicle according to claim 2 is characterized in that: The bottom ends of the four groups of Z-direction aluminum profiles (3) are provided with multiple groups of X-direction aluminum profiles (101) and Y-direction aluminum profiles (5); multiple groups of X-direction base aluminum profiles (8) are provided between two groups of Y-direction aluminum profiles (5); the X-direction base aluminum profiles (8) are fixedly connected by cylindrical head hexagon socket screws (102), aluminum profile fixing angle pieces (105) and T-nuts (106).
7. The structure of the new material rack tool vehicle according to claim 1 is characterized in that: The bottom ends of the plurality of groups of X-direction aluminum profiles (101) are all provided with a forklift foot assembly (7), the forklift foot assembly (7) comprising a forklift foot (701) and a second T-shaped nut strip (702), the second T-shaped nut strip (702) being provided between the forklift foot (701) and the X-direction aluminum profile (101), the forklift foot (701) and the second T-shaped nut strip (702) being fixedly connected to the X-direction aluminum profile (101) via a cylindrical head hexagon socket screw (102).
8. The structure of the new material rack tool vehicle according to claim 2 is characterized in that: Multiple groups of Y-direction aluminum profile (5) bases are provided with multiple groups of roller assemblies (6), the roller assemblies (6) comprising rollers (601) and first T-shaped nut strips (602), the first T-shaped nut strips (602) being provided between the X-direction aluminum profile (101) and the rollers (601), the rollers (601) and the first T-shaped nut strips (602) being fixedly connected to the X-direction aluminum profile (101) via cylindrical head hexagon socket screws (102).