Novel console frame structure
Patent Information
- Application Number
- CN202521920715.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-08
- Publication Date
- 2026-09-15
- Estimated Expiration
- 2035-09-08
AI Technical Summary
但目前市场上的框架绝大部分承载性能差,安装、拆卸不方便,费时费力,施工周期长
[0012] This utility model boasts higher load-bearing capacity, a simpler structure, and easier installation, reducing installation difficulty and labor costs, as well as minimizing installation errors. It employs a steel pipe profile welding and integral forming process, which improves load-bearing capacity by 30% compared to ordinary sheet metal bending and forming processes, allowing frame modules of the same specifications to withstand heavier loads. A novel structural design, utilizing a clamping and positioning mechanism, enables convenient and rapid frame installation, reducing installation difficulty and labor costs, and shortening the project construction cycle. During installation, the clamping and positioning mechanism ensures overall installation accuracy, reducing installation errors caused by manual handling.
Smart Images

Figure CN224760451U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of console technology, and in particular relates to a novel console frame structure. Background Technology
[0002] In the field of console equipment, the frame is a key component, serving as a high-load-bearing and important main structure to ensure optimal performance in various storage environments. However, most frames on the market currently have poor load-bearing capacity, are inconvenient to install and disassemble, and are time-consuming, labor-intensive, and have long construction cycles. Utility Model Content
[0003] The present invention aims to provide a novel console frame structure with high load-bearing capacity, easy installation, reduced installation and disassembly difficulty and labor costs, and shortened construction period. The specific technical solution of the present invention is as follows: The novel console frame structure includes two sets of side windows, each set of which is integrally formed by welding steel pipe profiles. At least three main crossbeams connect and fix the side windows on both sides into a whole. The two ends of each main crossbeam are connected to the corresponding side window by a snap-fit positioning structure. The snap-fit positioning structure includes: the end of the main crossbeam is integrally formed into an end panel by welding or bending, and the end panel has a snap-fit notch. The end of the main crossbeam is also fixed with an embedding protrusion. The inner side of the side window is provided with snap-fit screws and embedding holes that match the snap-fit notch and the embedding protrusion, respectively. The snap-fit screws are threaded to the inner side of the side window. The shank of the snap-fit screw is embedded in the snap-fit notch, and the embedding protrusion is aligned with the embedding hole of the side window. The snap-fit screw is tightened to press and fix the end panel of the main crossbeam to the side window. The embedding protrusion and the embedding hole cooperate to position and prevent detachment.
[0004] Furthermore, the end panels of the main crossbeam are integrally formed by welding or bending the ends of the main crossbeam.
[0005] Furthermore, the embedded protrusion is located at the upper end of the end panel, the protrusion direction of the embedded protrusion is parallel to the length direction of the main crossbeam, and the embedded protrusion protrudes from the outer side of the end panel.
[0006] Furthermore, the embedded protrusion is strip-shaped, and its strip-shaped extension direction is parallel to the opening extension direction of the locking notch.
[0007] Furthermore, the screwing direction of the locking screw on the side window is parallel to the protrusion direction of the embedded protrusion.
[0008] Furthermore, each side window is fixedly supported by a support arm, and the front ends of the two support arms 5 are fixedly connected by a straightening beam.
[0009] Furthermore, the side window has an upwardly protruding rear longitudinal beam and a front longitudinal beam, with the rear longitudinal beam being higher than the front longitudinal beam. The side of the rear longitudinal beam facing the front longitudinal beam forms a top-limiting surface against the rear end face of the support arm. Two support arm positioning pin holes are also provided on this top-limiting surface. The rear end face of the support arm is screwed and fixed with end face positioning pins that correspond one-to-one with the support arm positioning pin holes. The two end face positioning pins on the rear end face of the support arm are inserted into the support arm positioning pin holes on the top-limiting surface of the rear longitudinal beam of the side window, and the rear end face of the support arm abuts and limits the top-limiting surface of the side window. The top surface of the front longitudinal beam abuts against the middle of the support arm, and the support arm and the front longitudinal beam are screwed and fixed together by fastening screws.
[0010] Furthermore, the front end of each support arm forms a stepped body composed of a horizontal support surface and a vertical limiting surface. The stepped body overlaps to accommodate the corresponding end of the straightening beam, and the end of the straightening beam is fixed to the front end of the support arm by fastening screws.
[0011] Furthermore, the horizontal support surface and the vertical limiting surface respectively support and abut against the corresponding side walls at the end of the straightening beam. The horizontal support surface is provided with a screw hole. The two side walls facing each other at the end of the straightening beam are respectively used for the large through hole of the whole fastening screw and the small through hole for the threaded rod of the fastening screw to pass through. After the threaded rod of the fastening screw passes through the small through hole, it is screwed and fixed to the screw hole.
[0012] This utility model boasts higher load-bearing capacity, a simpler structure, and easier installation, reducing installation difficulty and labor costs, as well as minimizing installation errors. It employs a steel pipe profile welding and integral forming process, which improves load-bearing capacity by 30% compared to ordinary sheet metal bending and forming processes, allowing frame modules of the same specifications to withstand heavier loads. A novel structural design, utilizing a clamping and positioning mechanism, enables convenient and rapid frame installation, reducing installation difficulty and labor costs, and shortening the project construction cycle. During installation, the clamping and positioning mechanism ensures overall installation accuracy, reducing installation errors caused by manual handling. Attached Figure Description
[0013] The accompanying drawings, which form part of this utility model, are used to provide a further understanding of this utility model. The illustrative embodiments of this utility model and their descriptions are used to explain this utility model and do not constitute an improper limitation of this utility model. For those skilled in the art, other related drawings can be obtained from these drawings without creative effort.
[0014] Figure 1 This is a three-dimensional schematic diagram of the present invention; Figure 2 This is an exploded view of the present invention; Figure 3 This is a side view of the present invention; Figure 4 for Figure 1 A schematic diagram of the assembly of the nodes shown in Part A; Figure 5 for Figure 1 A schematic diagram of the assembly of the nodes shown in Part B; Figure 6 for Figure 1 A schematic diagram of the assembly of the nodes shown in section C; Figure 7 for Figure 1 A schematic diagram of the assembly of the nodes shown in section D.
[0015] The main reference numerals in the diagram are: 1. Side window; 2. Main beam; 3. Correcting beam; 4. Rear beam; 5. Support arm. Detailed Implementation
[0016] It should be noted that, unless otherwise specified, the embodiments and features described in these embodiments of the present invention can be combined with each other.
[0017] In the description of the embodiments of this utility model, it should be noted that the indicated orientation or positional relationship is based on the orientation or positional relationship shown in the accompanying drawings, or the orientation or positional relationship that the product is usually placed in when in use, or the orientation or positional relationship that is commonly understood by those skilled in the art. It is only for the convenience of describing this utility model or simplifying the description, and does not indicate or imply that the device or element referred to must have a specific orientation, be constructed or operated in a specific orientation, and therefore should not be construed as a limitation of this utility model.
[0018] In this invention, "multiple" refers to two or more (including two). The terms "first," "second," etc., are used only for distinguishing descriptions and should not be construed as indicating or implying relative importance.
[0019] Unless otherwise explicitly stated and limited, the terms “set up,” “install,” and “connect” should be interpreted broadly, for example, as a fixed connection, a detachable connection, or an integral connection; it can be a direct connection or an indirect connection through an intermediate medium.
[0020] The present invention will now be described in detail with reference to the accompanying drawings and embodiments.
[0021] This utility model provides a novel console frame structure with high load-bearing capacity, easy installation, time and labor saving, and shortened construction period, comprising: The two sets of side windows 1 are manufactured using a one-piece welding process with steel pipe profiles. The steel pipe profiles are made of high-quality carbon steel, which improves the load-bearing capacity by 30% compared to ordinary sheet metal bending and forming processes. At least three main crossbeams 2 are used to connect and fix the side windows 1 on both sides into a whole; Each main crossbeam 2 is connected to the corresponding side window 1 at both ends using a snap-fit positioning structure. Figure 1 and Figure 4 As shown, the end of the main crossbeam 2 (in the length direction) is integrally formed with an end panel 21 by welding or bending. The end panel 21 has a locking notch 211. The end of the main crossbeam 2 is also fixed with an embedded protrusion 22. The embedded protrusion 22 is located at the upper end of the end panel 21. The protrusion direction of the embedded protrusion 22 is parallel to the length direction of the main crossbeam, and the embedded protrusion 22 protrudes out of the outer side of the end panel 21. The mounting side (inner side) of the side window 1, which is directly opposite to the end of the main crossbeam 2 and faces the other side window, is screwed and fixed with a locking screw 14 that matches the locking notch 211 and an embedded hole 13 that matches the embedded protrusion 22. The installation method and structure of this node are as follows: First, screw the locking screw 14 into the corresponding threaded hole on the inner side of the side window 1, leaving enough space for the head of the locking screw 14 to be greater than the sum of the thickness of the end panel 21 and the protrusion height of the embedded protrusion 22. Then, push the main crossbeam 2 in so that the rod of the locking screw 14 is embedded in the locking notch 211 on the end panel 21. Next, align the embedded protrusion 22 with the embedded hole 13 on the inner side of the side window 1. Then, tighten the locking screw 14 to quickly press and fix the end panel 21 of the main crossbeam to the side window. The embedded protrusion and the embedded hole 13 cooperate to position and prevent detachment.
[0022] Preferably, the embedded protrusion 22 is a strip-shaped body, and its strip-shaped extension direction is parallel to the opening extension direction of the locking notch 211.
[0023] Preferably, the screwing direction of the locking screw 14 to the mounting side of the side window 1 is parallel to the protrusion direction of the embedded protrusion 22.
[0024] Each side window 1 is fixedly supported by a support arm 5: specifically, in conjunction with Figure 5 and Figure 6 As shown, each side window 1 has an upwardly protruding rear longitudinal beam 11 and a front longitudinal beam 12. The rear longitudinal beam 11 is higher than the front longitudinal beam 12. The side of the rear longitudinal beam 11 facing the front longitudinal beam 12 forms a top-limiting surface for the end face of one end (rear end) of the support arm. At the same time, two support arm positioning pin holes 110 are also provided on the top-limiting surface. The end face positioning pins 51 corresponding to the support arm positioning pin holes 110 are screwed and fixed on the end face of the support arm 5 at the corresponding end (rear end). The top surface of the front longitudinal beam 12 forms a horizontal support surface for the middle support of the support arm 5. Two screw holes 120 are provided on the horizontal support surface. Two sets of through holes corresponding to the screw holes 120 are provided on the two side walls facing each other in the middle of the support arm 5. Each set of through holes includes a large through hole 52 for the entire fastening screw 54 to pass through and a small through hole for the threaded rod of the fastening screw 54 to pass through.
[0025] The installation method and structure of the support arm 5 and the side window 1: Two end face positioning pins 51 on one end (rear end) of the support arm 5 are inserted into the support arm positioning pin holes 110 on the abutment limiting surface of the rear longitudinal beam 11 of the side window 1. The end face of the support arm 5 at this end (rear end) abuts and limits the abutment on the abutment limiting surface of the rear longitudinal beam 11 of the side window 1. The middle part of the support arm 5 is supported by the top surface of the front longitudinal beam 12. Two fastening screws 54 pass through the large through hole 52 and then through the small through hole to be screwed and fixed to the screw hole 120 on the front longitudinal beam 12. The support arm 5 and the side window 1 are connected by the thread and snap-fit positioning of the fastening screws 54 and the end face positioning pins 51, realizing a connection structure for quick positioning, quick installation and disassembly.
[0026] The front ends of the two support arms 5 are fixedly connected by a straightening beam 3; specifically, in conjunction with Figure 7 As shown, the front end of each support arm 5 forms a stepped body 55 composed of a horizontal support surface 551 and a vertical limiting surface 552. The stepped body 55 overlaps and accommodates the corresponding end of the straightening beam 3, and the end of the straightening beam 3 is fixed to the front end of the support arm 5 by fastening screws 34. More specifically, the horizontal support surface 551 and the vertical limiting surface 552 respectively support and abut against the corresponding sidewalls of the end of the straightening beam 3. The horizontal support surface 551 is provided with a screw hole 5510. The two sidewalls facing each other at the end of the straightening beam 3 are respectively used for the large through hole 32 of the entire straightening screw 34 and the small through hole 31 for the threaded rod of the straightening screw 34 to pass through. After the threaded rod of the straightening screw 34 passes through the small through hole 31, it is screwed and fixed to the screw hole 5510. The connection structure of this node can also realize the functions of quick positioning and disassembly.
[0027] This frame structure enhances load-bearing capacity while fulfilling functional requirements. The side windows utilize a one-piece welding process with steel pipe profiles. The frame structure employs a novel design, cleverly utilizing sheet metal technology to create a snap-fit positioning structure, enabling convenient and rapid frame installation. This reduces the difficulty and labor costs of installation and disassembly, shortening the project's on-site construction cycle. During installation, the snap-fit positioning structure improves installation accuracy and reduces installation errors.
[0028] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A novel console frame structure, characterized in that, It includes two sets of side windows (1), each set of side windows (1) is integrally formed by welding steel pipe profiles; at least three main crossbeams (2) connect and fix the side windows (1) on both sides into a whole; Each main beam (2) is connected to the corresponding side window (1) at both ends by a snap-fit positioning structure. The snap-fit positioning structure includes: the end of the main beam is integrally formed with an end panel (21) by welding or bending, and the end panel (21) is provided with a snap-fit notch (211). The end of the main beam (2) is also fixed with an embedded protrusion (22). The inner side of the side window is provided with a snap-fit screw (14) and an embedded hole (13) that match the snap-fit notch and the embedded protrusion respectively. The snap-fit screw (14) is threaded to the inner side of the side window. The rod of the snap-fit screw (14) is embedded in the snap-fit notch (211), and the embedded protrusion (22) is aligned with the embedded hole (13) of the side window. The snap-fit screw (14) is tightened to press and fix the end panel (21) of the main beam to the side window. The embedded protrusion and the embedded hole cooperate to position and prevent detachment.
2. The novel console frame structure as described in claim 1, characterized in that, The end panel (21) of the main crossbeam is formed integrally by welding or bending the end of the main crossbeam.
3. The novel console frame structure as described in claim 1, characterized in that, The embedded protrusion (22) is located at the upper end of the end panel (21). The protrusion direction of the embedded protrusion (22) is parallel to the length direction of the main crossbeam, and the embedded protrusion (22) protrudes from the outer side of the end panel (21).
4. The novel console frame structure as described in claim 1, characterized in that, The embedded protrusion (22) is a strip-shaped body, and its strip-shaped extension direction is parallel to the opening extension direction of the locking notch (211).
5. The novel console frame structure as described in claim 1, characterized in that, The screwing direction of the locking screw (14) on the side window is parallel to the protrusion direction of the embedded protrusion (22).
6. The novel console frame structure as described in claim 1, characterized in that, Each side window is fixedly supported by a support arm, and the two support arms (5) are fixedly connected at their front ends by a straightening beam.
7. The novel console frame structure as described in claim 6, characterized in that, The side window (1) has an upwardly protruding rear longitudinal beam (11) and a front longitudinal beam (12). The rear longitudinal beam is higher than the front longitudinal beam. The side of the rear longitudinal beam facing the front longitudinal beam forms a top-limiting surface against the rear end face of the support arm. Two support arm positioning pin holes (110) are also provided on the top-limiting surface. The rear end face of the support arm (5) is screwed and fixed with end face positioning pins (51) corresponding to the support arm positioning pin holes. The two end face positioning pins on the rear end face of the support arm are inserted into the support arm positioning pin holes on the top-limiting surface of the rear longitudinal beam of the side window. The rear end face of the support arm abuts and limits the top-limiting surface of the side window. The top surface of the front longitudinal beam (12) abuts against the middle of the support arm. The support arm and the front longitudinal beam are screwed and fixed together by fastening screws.
8. The novel console frame structure as described in claim 6, characterized in that, The front end of each support arm (5) forms a step body (55) consisting of a horizontal support surface (551) and a vertical limiting surface (552). The step body (55) overlaps to accommodate the corresponding end of the straightening beam (3), and the end of the straightening beam is fixed to the front end of the support arm by fastening screws.
9. The novel console frame structure as described in claim 8, characterized in that, The horizontal support surface and the vertical limiting surface support and abut against the corresponding side walls at the end of the straightening beam, respectively. The horizontal support surface is provided with a screw hole. The two side walls facing each other at the end of the straightening beam are respectively used for the large through hole of the whole fastening screw and the small through hole for the threaded rod of the fastening screw to pass through. After the threaded rod of the fastening screw passes through the small through hole, it is screwed and fixed to the screw hole.