Customization: | Available |
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Standard: | GB, EN, API650, China GB Code, JIS Code, TEMA, ASME |
Tolerance: | +/-0.01mm |
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OEM Rapid Prototyping Sheet Metal Fabrication for Car
Material available : |
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Process :
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CNC machining: turning, milling, drilling
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Surface treatment :
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Polishing,sandblasting,anodizing,
brushing,powder coating,electroplating,zinc plating, silk-screen |
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Tolerance :
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+/-0.01 mm
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Drawing format :
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PDF/DWG/IGS/STP/STEP.
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Packaging :
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Wood case or carton box,
1,With plastic bag,with pearl-cotton package. 2,To be packed in cartons or wood case. 3,Use glues tape to seal cartons.or pin tight the wood case with nail. 4,Deliver out by DHL,FEDEX,UPS. Or according to customers' requirement. |
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Lead time :
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Normally 3~7 days,but some of them depend on the quantites request.
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Term of Payment :
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T/T,paypal,Escrow,Trade Assurance
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Our advantage :
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Superior in quality,reasonable in price and deliver on time
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In the automotive industry, Original Equipment Manufacturer (OEM) rapid prototyping of sheet metal parts is becoming increasingly important. This article delves into the significance of sheet metal fabrication in the OEM rapid prototyping process, its benefits, and how it contributes to the overall development of automotive components.
Rapid prototyping, by definition, refers to the creation of a physical model or prototype from digital data. In the context of sheet metal fabrication, this involves the use of advanced technologies such as CNC machining, laser cutting, and bending to quickly produce prototypes from sheet metal materials. These prototypes are then used for various purposes, including design validation, fit and function testing, and even early market testing.
One of the key benefits of sheet metal prototyping in the automotive industry is the speed with which prototypes can be made. This is crucial in a fast-paced industry where time to market is often a critical factor. By using sheet metal fabrication techniques, OEMs can rapidly iterate on design changes, test new concepts, and refine their products before committing to full-scale production.
Moreover, sheet metal prototyping offers a high degree of flexibility. Unlike traditional manufacturing methods, which often require expensive tooling and setups, sheet metal fabrication allows for the creation of prototypes with complex geometries and intricate features. This flexibility is essential in the automotive industry, where components often have to meet strict design and performance criteria.
In addition to speed and flexibility, sheet metal prototyping also provides cost-effective solutions. By fabricating prototypes directly from digital data, OEMs can significantly reduce the need for physical tooling and avoid the associated costs. Furthermore, by testing and validating designs early in the development cycle, OEMs can identify and correct potential issues before they become costly production problems.
To illustrate the importance of sheet metal prototyping in the automotive industry, let's consider an example. Suppose an OEM is developing a new automotive component, such as a bracket or chassis part. Using sheet metal prototyping, the OEM can quickly create multiple iterations of the design, test them in real-world conditions, and gather feedback from engineers and potential customers. This feedback can then be used to refine the design, ensuring its fit, function, and performance meet or exceed expectations before full-scale production begins.
In conclusion, OEM rapid prototyping of sheet metal parts plays a crucial role in the automotive industry. It enables OEMs to quickly and cost-effectively develop, test, and refine automotive components, ensuring their performance, quality, and marketability. As the automotive industry continues to evolve and adopt new technologies, the importance of sheet metal prototyping will only increase.
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