Share how to build a library of design elements to improve the productivity of engineers

CAXA Solid Design is the only new generation of 3D CAD solutions that combine innovative design, engineering design and collaborative design. It includes features such as 3D modeling, collaborative work, and analytical simulation. Its unmatched ease of operation and design speed help engineers focus more on the product design itself.

The newly released CAXA Entity Design 2013 is easy to learn and use, and can help beginners quickly master 3D CAD design. In the actual design of the engineer, there are many products that are purchased. Designers don't need to design themselves, but because of the integrity of the entire product, and then have to be reflected in the entire design, it is a thankless task for engineers to draw a lot of complex parts. In CAXA 3D CAD, there are many standard parts such as fasteners, gears, springs, ribs, cold-formed steel, hot-rolled steel, bearings and so on. However, our company or the unit itself has many standard parts that belong to its own industry, and sometimes it needs to be used frequently. So this time I shared with you how to build a library of design elements and use the library of design elements to improve the efficiency of engineers.

First, pick up the "New" button under the "Common" menu bar as shown in Figure 1. When we click on it, a blank design element library will pop up in the design element library on the right side of our original image.

Second, we also need to classify products when designing products. Therefore, we must follow some principles when building a library of design elements. We can build more libraries to avoid finding them or use them to find them. This is a warm reminder. Next, we will enter the next step of our topic. It is to draw the graphics we have drawn, and then drag them into the design element library with the left mouse button and drag them to the best name or to name them in our own company's internal code. The effect of dragging into the new element library is shown in Figure 3. Now we will make a good library of elements through the save under the common menu bar shown in Figure 1 as shown in Figure 4, save it in our designated folder and modify it to a specific name. As shown in Figure 5 below. This element library is not displayed in the design element library when we reopen the software . If we need to use this element library, we will find the folder and file we specified under the "Open" button under the "Common" menu bar. Ready to use.

Through the above simple steps, you can create your own element library in CAXA 3D CAD. It is easy to learn and easy to operate. Come and experience it!

Medical Accessories

CNC medical accessories refer to precision components used in medical devices that have been produced using computer numerical control (CNC) machines. These accessories are precise and accurate, making them an essential part of medical devices that require high-quality equipment.


CNC medical accessories offer several advantages over traditional manufacturing methods. Due to the precision of the CNC machines, they can create complex parts to exact specifications with minimal errors. This ensures that each component is precisely crafted, leading to high-quality medical accessories that offer superior performance and safety.


CNC medical accessories are used in a range of medical devices, including surgical instruments, implants, and diagnostic equipment. They are produced using a range of materials, including stainless steel, titanium, and plastic.


One of the significant advantages of CNC medical accessories is their versatility. The CNC machines used to produce these accessories can create parts in a wide range of shapes and sizes, making them suitable for a variety of medical applications. Additionally, they can produce parts with intricate shapes and features that would be challenging, if not impossible, to create using traditional manufacturing methods.


CNC medical accessories are also durable and can withstand rigorous medical environments, including sterilization procedures. This ensures that these accessories provide consistent and reliable performance throughout their lifetimes.


Finally, CNC medical accessories are also beneficial in the development of new medical technologies. With their ability to produce complex and precise parts, these accessories offer researchers and manufacturers the ability to create innovative medical devices that provide superior performance and patient outcomes.


In summary, CNC medical accessories are vital components of the modern medical industry. Their precision, accuracy, and versatility make them an essential tool for a wide range of medical applications. With their ability to produce complex and precise parts, they offer the potential for the development of innovative medical technologies that offer high performance and safety for patients.

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