Machining process and technology
fine machining can be divided into upper and lower die methods, which can be completed through comprehensive processes such as planing
fine machining can be divided into upper and lower die methods, which can be completed through comprehensive processes such as planing, milling, etching, turning, and EDM. The size and pit shape of the fine machining are consistent with the edge of the product, mainly because the wax die is mainly used for industrial wax forming, so its melting point is not high and the hardness is not high when selecting, and the aluminum alloy material with relatively cheap and light weight is used as a mold.
After the first two sandblasting and natural air drying, the third sandblasting, the fourth sandblasting, the fifth sandblasting and so on are carried out in turn. Then adjust the number of sandblasting according to the size of its volume, surface requirements and self-weight, etc., generally the number of sandblasting times is 3-7 times.
meticulous machining will coat multiple wax patterns on the fixed die with industrial glue and evenly spray a layer of fine sand, which is very small and fine, so that the surface of the blank can be as smooth as possible. After the fine machining is completed and naturally air-dried, the industrial glue will continue to be applied to the surface of the wax model in the process of use, and then a layer of sand will be sprayed, the particle size is larger and coarser than the previous layer of sand, and the wax model will be naturally air-dried at a set constant temperature after spraying.
Previous
Previous
Recommended Blogs
Understanding Hypoid Gear Cutting Machines: A Key to Precision in Gear Manufacturing
Hypoid gear cutting machines are specialized tools designed for the production of hypoid gears, which are a type of bevel gear that features a unique design allowing for smoother operation and greater load capacity. These gears are increasingly utilized in various applications, particularly in automotive and aerospace industries, where precision and reliability are paramount. The cutting process e
new Gear shaping process automation
The gear shaping process automation is a modern manufacturing solution designed to enhance the precision, speed, and efficiency of gear production. By integrating advanced control systems and robotics, the gear shaping process automation ensures consistent accuracy in creating high-quality gear teeth profiles for automotive
newest External gear cutting machines
The External gear cutting machines are precision-engineered tools designed to manufacture high-quality external gears with exceptional accuracy and efficiency. Built with advanced technology, these machines ensure precise tooth profiles and smooth finishes, meeting the rigorous demands of automotive