一种悬挂臂组件柔性制造线成品工装架
By designing a finished product tooling rack for a flexible manufacturing line of cantilever components, and using solenoid valves and V-groove structures, the cantilever components can be precisely positioned and moved flexibly. This solves the problem that traditional tooling racks cannot accurately stop, and improves the efficiency and flexibility of automated production lines.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- CHONGQING TIEMA IND GRP
- Filing Date
- 2025-07-15
- Publication Date
- 2026-07-17
AI Technical Summary
Existing tooling racks cannot accurately dock in designated work areas, making it impossible for robots to precisely place cantilever components during welding operations. Furthermore, traditional tooling rack structures are time-consuming and labor-intensive, making it difficult to meet the needs of automated production lines.
A finished product tooling rack for a flexible manufacturing line of cantilever assembly was designed, comprising a tooling rack body, reinforcing plate, positioning plate and limiting plate. It adopts a solenoid valve and V-groove structure, combined with brake casters, to achieve precise positioning and flexible movement of the tooling rack.
It improves the automation level of the production line, ensures accurate placement of the cantilever assembly, reduces manual operation, lowers labor intensity, and adapts to different working environments.
Smart Images

Figure CN224509655U_ABST
Abstract
Claims
1. A finished product tooling frame for a flexible manufacturing line of cantilever arm components, characterized in that: It includes the tooling frame body, reinforcing plate I (3), positioning plate (4), reinforcing plate IV (12) and limiting plate (13); The tooling frame body includes a base (2), a support (7), and a horizontal frame (8); The base (2) is a frame structure formed by connecting multiple rods in sequence, and a bracket (7) is fixed on the upper surface; the bracket (7) includes several vertical rods, one end of which is fixed to the base (2) at intervals, and the other end is fixedly connected to the horizontal frame (8); A reinforcing plate Ⅳ (12) is fixed on the lower surface of the base (2). The reinforcing plate Ⅳ (12) consists of two parallel rods. A limiting plate (13) is fixed on each of the two rods. The two limiting plates (13) are symmetrically arranged. The reinforcing plate I (3) is a plate-shaped structure and is fixed to the side of the base (2); The positioning plate (4) is an L-shaped component, and its vertical section is fixed on the reinforcing plate I (3); the positioning plate (4) is equipped with a solenoid valve.
2. The flexible manufacturing line of claim 1, wherein: The limiting plate (13) includes a base plate (1301), a side plate (1302), and several connecting plates (1303); The base plate (1301) is fixed on the reinforcing plate IV (12), including a rectangular base plate and a trapezoidal extension plate that shares a side with the short side of the rectangular base plate; the trapezoidal extension plate is located on the side of the positioning plate (4); The side plate (1302) includes side plate I and side plate II; both side plate I and side plate II are rectangular plates; side plate I and side plate II are respectively arranged vertically along the sidewalls of the rectangular base plate and the inclined side of the trapezoidal extension plate; side plate I and side plate II are located on the same side and are away from the direction of the transverse frame (8); The connecting plate (1303) is a trapezoidal plate, with its bottom wall connected to a rectangular base plate and its side wall connected to side plate I.
3. The flexible manufacturing cell of claim 1, wherein: Two parallel reinforcing plates II (5) are installed on the upper surface of the base (2), and several limiting blocks (6) are fixed on the reinforcing plates II (5); The top surface of the limiting block (6) is an inclined surface, and a V-shaped groove is provided on the inclined surface; The shape of the V-groove is adapted to the shape of the cantilever assembly; The reinforcing plate II (5) and the limiting block (6) are both located inside the bracket (7).
4. The flexible manufacturing cell of claim 3, wherein: The limiting block (6) is made of high-temperature resistant plastic.
5. The flexible manufacturing cell of claim 3, wherein: The reinforcing plate Ⅳ (12) is fixed to the bottom of the reinforcing plate Ⅱ (5), and the length of the reinforcing plate Ⅳ (12) is less than the length of the reinforcing plate Ⅱ (5).
6. The flexible manufacturing cell of claim 1, wherein: The transverse frame (8) consists of two parallel transverse bars, with reinforcing plates III (9) fixed on the two transverse bars, and several support blocks (10) are installed at intervals on the two reinforcing plates III (9). The working surface of the support block (10) is provided with a wedge-shaped groove, the shape of which is adapted to the shape of the suspension arm assembly.
7. A flexible manufacturing cell end-of-line assembly station for a suspension arm assembly as claimed in claim 6, wherein: The support block (10) is made of high-temperature resistant plastic.
8. The flexible manufacturing cell of claim 1, wherein: Brake casters (10) are mounted on the lower surface of the base (2).
9. The flexible manufacturing cell finishing rack of claim 1, wherein: The base (2) includes four crossbars, namely crossbar I, crossbar II, crossbar III and crossbar IV; wherein crossbar I and crossbar III are arranged in parallel, crossbar II and crossbar IV are arranged in parallel, and crossbar I and crossbar II are arranged perpendicularly. The bracket (7) includes four vertical rods, namely vertical rod I, vertical rod II, vertical rod III and vertical rod IV; wherein vertical rod I and vertical rod II are vertically arranged on horizontal rod I, and vertical rod III and vertical rod IV are vertically arranged on horizontal rod III; The transverse frame (8) includes two parallel transverse bars, namely transverse bar I and transverse bar II. The two ends of transverse bar I are fixed to vertical bar I and vertical bar III respectively, and the two ends of transverse bar II are fixed to vertical bar II and vertical bar IV respectively.
10. The flexible manufacturing cell of claim 1, wherein: The base (2) has a vertical rod V at each of the two frame corners on the side away from the reinforcing plate I (3), and a handle (11) is installed on the top of the vertical rod V; The grip (11) has a U-shaped structure and is connected to two vertical bars V at both ends; Two parallel horizontal bars V are provided between the two vertical bars V, and the lower horizontal bar V is flush with the horizontal frame (8) and is vertically connected to the horizontal frame (8).