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low volume tooling

Product Description

 

https://www.wintech-t.com/products/auto-parts-low-volume-production.html

 

The biggest advantage of low-volume manufacturing is that the practice of small batch manufacturing can be more efficient, increasing the flexibility of the design process, minimizing the occurrence of risk, and shortening the time to market.

 

Low Volume Tooling

Low volume tooling refers to the process of creating tooling or molds for the production of a relatively small number of parts or components. This is in contrast to high volume tooling, which is used for the mass production of large quantities of parts.

 

Low volume tooling is often used in situations where the cost of high volume tooling is prohibitive, or where the production volume is not high enough to justify the cost of high volume tooling. Low volume tooling can also be used to quickly produce small quantities of parts for prototyping or testing purposes.

 

There are a number of different low volume tooling techniques that can be used, depending on the specific requirements of the project. Some common techniques include:

 

3D Printing: 3D printing can be used to create molds or tooling for small production runs. This is particularly useful for creating complex shapes or designs that would be difficult or expensive to produce using traditional machining techniques.

 

Soft Tooling: Soft tooling refers to the use of molds or tooling made from materials such as silicone or urethane. Soft tooling is typically less expensive than hard tooling and can be produced more quickly, making it a good option for low volume production runs.

 

Rapid Tooling: Rapid tooling involves the use of rapid prototyping techniques to quickly create tooling or molds for low volume production runs. This is a good option for situations where time is a critical factor and quick production is required.

 

CNC Machining: CNC machining can be used to create low volume tooling for the production of small quantities of parts. This is a good option for situations where the parts require a high degree of accuracy and precision.

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