Working frame for titanium alloy workpiece machining
By designing a work frame that includes a chassis, support components, operating table plates and suction mechanism, the problem of low processing efficiency of titanium alloy workpieces is solved, efficient processing and health protection is achieved, and factory efficiency is improved.
Patent Information
- Application Number
- CN202422551405.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-22
- Publication Date
- 2025-08-12
- Estimated Expiration
- 2034-10-22
AI Technical Summary
The processing efficiency of existing titanium alloy workpieces is low, which affects the economic benefits of the factory.
A work frame including a chassis, vertical support assembly, operating table, suction mechanism and transverse transmission mechanism is designed for processing of titanium alloy workpieces, and efficient processing is achieved by transmitting and suctioning dust.
It improves the processing efficiency of titanium alloy workpieces, protects the health of operators, and improves the economic benefits of the factory.
Smart Images

Figure CN223211336U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the field of titanium alloy processing, in particular to a working stand for processing titanium alloy workpieces. Background Art
[0002] Titanium is a metal that maintains a high strength-to-weight ratio even at high temperatures and exhibits excellent corrosion resistance. Titanium's primary application is in the aerospace industry, including airframe and engine components. Non-aerospace applications primarily utilize its exceptional strength, such as steam turbine blades and superconductors, or its corrosion resistance, such as in marine services, the chemical, petrochemical, electronics, and biomedical instrumentation industries. Currently, titanium alloy workpieces are machined piece by piece on conventional workbenches for welding, grinding, and other processes. This drawback is that this piece-by-piece machining process is inefficient, impacting the economics of the factory. Utility Model Content
[0003] The purpose of the utility model is to provide a work stand for processing titanium alloy workpieces, which can improve the processing efficiency of the titanium alloy workpieces, is more convenient to operate, and improves the economic benefits of the factory.
[0004] The purpose of the utility model is achieved as follows: a workbench for processing titanium alloy workpieces, including a base frame, on which a plurality of groups of vertical support components are arranged at intervals along the length direction, and an operating table is provided on the top of each support component, and a top bracket is provided on the base frame corresponding to each operating table, and a suction mechanism is provided on the top bracket, and a horizontal transmission mechanism is provided below each of the operating tables.
[0005] As a further improvement of the present invention, the base frame includes a rectangular outer frame, a plurality of longitudinal reinforcing rods are arranged in parallel inside the outer frame, and a plurality of supporting legs are provided at the bottom of the outer frame.
[0006] As a further improvement to the present invention, the support assemblies are provided in three groups. The middle support assembly includes four vertical uprights in a rectangular shape. The left support assembly includes a left top rod and three uprights in a rectangular shape. The right support assembly includes a right top rod and three uprights in a rectangular shape. The left and right top rods are of equal height, with the left top rod being taller than the uprights. Each support assembly is secured with a reinforcement plate located below each operating table, perpendicular to the uprights. The reinforcement plate enhances the strength of the support assembly and can be used to place items such as processing tools, making it more convenient to use.
[0007] As a further improvement of the present invention, the transverse transport mechanism includes a conveyor frame, which is provided with a conveyor belt or a row of conveyor rollers that passes transversely through each support assembly. The conveyor belt or the row of conveyor rollers is located below each operating table and above each reinforcement plate. The conveyor frame is also provided through each support assembly, and at least two support legs are provided at each front and rear end of the conveyor frame. The conveyor frame includes two side panels, a row of conveyor rollers mounted between the two side panels, or two conveyor rollers are provided between the two side panels, and a conveyor belt is provided between the two conveyor rollers.
[0008] As a further improvement of the present invention, a connecting rod is transversely disposed between the left and right top rods, a top bracket is fixed to the tops of the left and right top rods, the top bracket is horizontally disposed, the top bracket is rectangular, and a plurality of longitudinal reinforcing ribs are disposed inside the top bracket. The suction mechanism includes a plurality of mounting brackets disposed inside the top bracket, an inclined suction box is disposed on the mounting bracket, a suction cylinder is connected to the front side of the suction box, a plurality of suction holes are formed at the front end of the suction cylinder, and the rear end of the suction box is connected to the negative pressure device via a hose. The connecting rod serves as a reinforcement, and the negative pressure hose sucks dust and particles generated during welding and grinding of titanium alloy workpieces through the suction box and the suction cylinder.
[0009] During operation, the present invention places a titanium alloy workpiece on a conveyor mechanism for transport. Processing tools are placed on each reinforcement plate. When the workpiece is transported to the bottom of the operating table, the conveyor belt or rollers pause, and the worker then takes the workpiece to the operating table for welding or polishing. Dust and particles generated during welding and polishing of the titanium alloy workpiece are extracted using a suction box and a suction cylinder, protecting the health of the workers. Compared to existing technologies, the present invention has the beneficial effects of improving the processing efficiency of titanium alloy workpieces, making operation more convenient, and improving the economic benefits of the factory. BRIEF DESCRIPTION OF THE DRAWINGS
[0010] Figure 1 It is the main view of the utility model.
[0011] Figure 2 It is a three-dimensional structural diagram of the utility model.
[0012] Figure 3 It is a side view of the present utility model.
[0013] Figure 4 A top view of each conveyor roller.
[0014] Among them, 1 base frame, 1a outer frame, 1b reinforcement rod, 1c support leg, 2 support assembly, 3 operating table, 4 top bracket, 5 vertical pole, 6 left top rod, 7 right top rod, 8 reinforcement plate, 9 conveyor frame, 10 conveyor belt, 11 conveyor roller, 12 connecting rod, 13 reinforcement rib, 14 mounting frame, 15 suction box, 16 suction cylinder, 17 hose. DETAILED DESCRIPTION
[0015] like Figure 1-4 As shown, a workbench for processing titanium alloy workpieces includes a base frame 1, which includes a rectangular outer frame 1a, a plurality of longitudinal reinforcing rods 1b arranged parallel to each other in the outer frame 1a, and a plurality of supporting legs 1c arranged at the bottom of the outer frame 1a; a plurality of groups of vertical support assemblies 2 are arranged at intervals along the length direction on the base frame 1, and the support assemblies 2 are provided in three groups. The middle support assembly 2 includes four vertical uprights 5 in a rectangular shape, the left support assembly 2 includes a left top rod 6 in a rectangular shape and three uprights 5, and the right support assembly 2 includes a right top rod 7 in a rectangular shape and three uprights 5 The left top rod 6 and the right top rod 7 are at the same height, and the left top rod 6 is higher than the height of the vertical rod 5; each support assembly 2 is fixed with a reinforcement plate 8 located below each operating table 3, and the reinforcement plate 8 is perpendicular to the vertical rod 5; the reinforcement plate 8 can improve the strength of the support assembly 2, and the reinforcement plate 8 can be used to place processing tools and other items, which is more convenient to use; an operating table 3 is provided on the top of each support assembly 2, and a top bracket 4 is provided on the base frame 1 corresponding to each operating table 3, and a suction mechanism is provided on the top bracket 4, and a horizontal transmission mechanism is provided correspondingly below each operating table 3.
[0016] The transverse transmission mechanism includes a conveyor frame 9, which is provided with a conveyor belt 10 or a row of conveyor rollers 11 that passes transversely through each support assembly 2. The conveyor belt 10 or the row of conveyor rollers 11 are located below each operating table 3 and above each reinforcement plate 8. The conveyor frame 9 is also provided through each support assembly 2. The front and rear ends of the conveyor frame 9 are each provided with at least two support legs. The conveyor frame 9 includes two side panels, and a row of conveyor rollers 11 is installed between the two side panels, or two conveyor rollers 11 are provided between the two side panels, and a transmission conveyor belt 10 is provided between the two conveyor rollers 11.
[0017] A connecting rod 12 is transversely disposed between the left and right top rods 6 and 7. The top bracket 4 is fixed to the tops of the left and right top rods 6 and 7. The top bracket 4 is horizontally disposed and rectangular. A plurality of longitudinal reinforcing ribs 13 are disposed inside the top bracket 4. The suction mechanism includes a plurality of mounting brackets 14 disposed inside the top bracket 4. An inclined suction box 15 is disposed on the mounting bracket 14. A suction cylinder 16 is connected to the front side of the suction box 15. The front end of the suction cylinder 16 is covered with a plurality of suction holes. The rear end of the suction box 15 is connected to the negative pressure device via a hose 17. The connecting rod 12 serves as a reinforcement. The negative pressure hose 17 is sucked through the suction box 15 and the suction cylinder 16 to suck dust and particles generated during welding and grinding of titanium alloy workpieces.
[0018] During operation, the present invention places a titanium alloy workpiece on a conveyor mechanism for transport, with processing tools placed on each reinforcement plate 8. When the workpiece is transported below the operating table 3, the conveyor belt 10 or conveyor roller 11 pauses, and a worker then takes the workpiece to the operating table 3 for welding or polishing. Dust and particles generated during welding or polishing of the titanium alloy workpiece are suctioned by a suction box 15 and a suction cylinder 16, thereby protecting the health of the workers. The present invention has the advantages of improving the processing efficiency of titanium alloy workpieces, making operation more convenient, and improving the economic benefits of the factory.
[0019] The present invention is not limited to the above-mentioned embodiments. On the basis of the technical solutions disclosed in the present invention, technicians in this field can make some substitutions and deformations of some technical features therein according to the disclosed technical content without creative labor, and these substitutions and deformations are all within the protection scope of the present invention.
Claims
1. A workbench for processing titanium alloy workpieces, characterized in that: It includes a base frame, on which several groups of vertical support components are arranged at intervals along the length direction, and an operating table is provided on the top of each support component. A top bracket is provided on the base frame corresponding to each operating table, and a suction mechanism is provided on the top bracket. A horizontal transmission mechanism is provided below each operating table.
2. A work stand for processing titanium alloy workpieces according to claim 1, characterized in that: The base frame comprises a rectangular outer frame, a plurality of longitudinal reinforcing rods are arranged in parallel in the outer frame, and a plurality of supporting legs are arranged at the bottom of the outer frame.
3. A work stand for processing titanium alloy workpieces according to claim 2, characterized in that: The support components are provided in three groups, the middle support component includes four vertical poles in a rectangular shape, the left support component includes a left top rod and three vertical poles in a rectangular shape, and the right support component includes a right top rod and three vertical poles in a rectangular shape. The left top rod and the right top rod are of the same height, and the left top rod is higher than the height of the vertical poles; each support component is fixed with a reinforcement plate located under each operating table, and the reinforcement plate is perpendicular to the vertical poles.
4. A work stand for processing titanium alloy workpieces according to claim 3, characterized in that: The transverse transmission mechanism includes a conveyor frame, on which a conveyor belt or a row of conveyor rollers is provided that passes through each supporting assembly transversely. The conveyor belt or the row of conveyor rollers is located below each operating table and above each reinforcement plate.
5. A work stand for processing titanium alloy workpieces according to claim 3, characterized in that: A connecting rod is laterally provided between the left top rod and the right top rod, the top bracket is fixed on the top of the left top rod and the right top rod, the top bracket is horizontally arranged, the top bracket is rectangular, and a plurality of longitudinal reinforcement ribs are provided inside the top bracket. The suction mechanism includes a plurality of mounting brackets arranged inside the top bracket, and an inclined suction box is provided on the mounting bracket. A suction cylinder is connected to the front side of the suction box, and a plurality of suction holes are provided at the front end of the suction cylinder. The rear end of the suction box is connected to the negative pressure device through a hose.