Metal Stamping & CNC Machining
Our metal stamping production is from a wide spectrum of materials, which include cold-rolled steel, stainless steel, brass, aluminum, copper, iron etc., We manufacture high-quality parts and components for the agricultural, alternative energy, home appliance, automotive, engine components, heavy equipment, furniture, material handling, power transmission and railroad industries.We work with materials that range in thickness from 0.1mm up to 5.0mm , and die configurations that range from the simple to complex in design nature. These factors guide us to determine which punch press will be used for production from our numerous options. Press capacities range from 25-ton to 300-ton stamping machines. Single stamping terminal monthly maximum capacity is 30 million pieces, shrapnel is 5 million pieces. At present, the utilization rate of equipment stamping equipment is 60%.
CNC machining parts are used in a wide range of fields, such as electronics, home appliances, and automotive. Compared with stamping parts, the precision of the product is higher, and the concentricity and roughness have higher requirements. At Dongguan Fortuna Metals Co., Ltd., has 40 sets of 5-axis CNC machines and 2 sets 6-axis CNC machines that imported from Japan. The processing diameter is from 1.0-32MM, the processing precision is 0.005MM, and it can process different materials. The monthly processing capacity of single product is 200,000 pieces. The current equipment utilization rate is 70 %.
Tooling Design Service
Fortuna customizes and optimizes mold design, development, and collaborative testing to meet customer product needs and special functions. We use high-quality materials to ensure mold stability, use 3D software design to predict mold production life and material utilization, and achieve cost reduction and efficiency improvement for customers; we use imported slow wire processing equipment to ensure mold precision and ensure product functionality and precision.
Using high-quality steel and slow wire processing to achieve micron-level accuracy (up to ±0.01mm), reducing processing and maintenance costs.
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