Teach you to choose the right 3D printing material for your application - Database & Sql Blog Articles

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Beijing 3D printer reports: Many consumer-grade 3D printer companies often provide a wide range of materials available when introducing products, but do not introduce the specific properties of these materials - this gives users nowhere to know what materials are suitable Your own specific application.

But for the user, sometimes they want to print more flexible objects, or can bend, and even withstand repeated use. Simply put, every 3D printing project has its own characteristics, and the requirements for materials vary.
To help consumers find the most suitable material for themselves. CAPINC, a 3D design solutions provider, SolidWorks and Stratasys product distributor, has produced an infographic of suitable materials for various 3D printing applications.

They also introduced the difference between "strength" and "toughness" between different 3D printed materials. For example, a hammer is cast with tempered glass and 3003 aluminum, respectively. The hammer made of technically tempered glass is stronger, but it cannot be used repeatedly like a softer aluminum hammer.

“Some things are “high-intensity” but not necessarily “tough”, while some things are “tough” but not necessarily “strong”,” CAPINC said. “That’s why we don’t have glass hammers or high carbon steel.”

In addition, for some wires used on FDM (Fused Deposition Modeling) 3D printers, the melting temperature can significantly affect their performance. Some materials may warp if exposed to high temperatures, or become softer and less tough. In comparison, materials with higher melting temperatures such as nickel or ceramics are suitable for more demanding work.

An example of how CAPINC gives a proper selection of the right 3D printed material is a medical device. In order to prevent infection between patients, all medical devices need to be sterilized, including high temperature steam sterilization. So when you print some similar medical tools in 3D, you need to consider the high temperature resistance of the material. In addition, some 3D printed components may require special attention, such as when they are needed for MRI scanning, or when placed with some objects that are sensitive to static electricity, such as a circuit board.

So how do you know which types of wires are best for your application? Whether your industry is electronics, military, consumer, or you are an amateur, CAPINC's free infographics give you an idea of ​​the best strength, toughness, precision and temperature requirements for each material. (Beijing 3D printer report)

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