machining Page 8
联动5轴加工与3+2轴加工的区别-大连富泓机械有限公司

Difference between linked 5-axis machining and 3+2-axis machining

What is 3+2 axis CNC machining? Both vertical and horizontal milling machines are capable of three machining axes as standard. However, a rotary table and tilting swivel trunnions have been fitted to provide rotary movement along the other two axes. Basically, this is a 3+2 axis machining process.
精密钢管零件加工工艺创新研究-大连富泓机械有限公司

Precision steel tube parts machining process innovation research

Precision steel tube parts machining process innovation research, steel tube, cold drawing, tooling, billet, processing technology
基于金属3D打印技术成形嵌套零件工艺研究-大连富泓机械有限公司

Study on the process of forming nested parts based on metal 3D printing technology

Study on the process of forming nested parts based on metal 3D printing technology Study on the process of forming nested parts based on metal 3D printing technology Abstract: The emergence of metal 3D printing technology has greatly promoted the development of the manufacturing industry. This paper takes metal 3D printing technology as...
快速精密零件加工-大连富泓机械有限公司

Rapid precision parts machining

In modern industrial production, rapid precision parts machining has gradually become an indispensable part of various industries. With the continuous progress of science and technology and the diversification of market demand, especially in the aerospace, medical equipment, automotive manufacturing and other high-precision fields.
2026如何找寻靠谱的CNC加工厂?五轴加工与钛合金件加工怎么选?-大连富泓机械有限公司

2026 How to find a reliable CNC machining factory? How to choose between 5-axis machining and titanium parts machining?

When looking for a CNC machining factory, do you often feel dazzled? Especially when it comes to the specialised fields of 5-axis machining, titanium parts machining and non-standard parts machining, it is especially important to choose a reliable CNC machining factory. With the upgrading of manufacturing
新材料异形件定制加工:创新引领未来制造业-大连富泓机械有限公司

Customised processing of new material shaped parts: innovation leads the future manufacturing industry

With the continuous progress of science and technology and the rapid development of the manufacturing industry, the custom processing of new material shaped parts is gradually becoming a hot topic in the industry. In 2025, the application of new materials continues to expand, and their unique properties and advantages provide more possibilities for the processing of shaped parts.
高精密零件加工的技术难点与解决方案-大连富泓机械有限公司

Technical difficulties and solutions for the machining of high-precision parts

High-precision parts machining technical difficulties and solutions High-precision parts machining is an important technical link in the modern manufacturing industry, widely used in aerospace, automotive manufacturing, machinery and equipment, as well as electronic products and other fields. With the development of industrial automation and intelligent manufacturing
数控加工中刀具-大连富泓机械有限公司

Tooling in CNC machining

CNC machining in the tool selection and cutting amount of determination of tool selection and cutting amount of determination of CNC machining 360 Q&A process in the important content, it not only affects the processing efficiency of CNC machine tools, but also has a direct impact on the quality of machining. the development of CAD / CAM technology
五金制品有限公司:非标加工定制如何解决制造业痛点-大连富泓机械有限公司

Hardware products limited company: non-standard processing custom how to solve manufacturing pain points

Orders are surging, but the production line is stuck in the delivery of a shaped part; new product development sprint, but the prototype has repeatedly failed due to insufficient machining precision; equipment is in urgent need of upgrading, but the standard parts can not be matched - these moments, are you also in the past year, the most unwilling to face the anxiety?
qh数控加工:3招提精度!-大连富泓机械有限公司

qh cnc machining: 3 tricks to improve accuracy!

Kui Liang Hardware's technical team will intervene within 24 hours after customers provide 3D drawings to carry out DFM (Design for Manufacturing) analysis, pointing out the precision risk points in the design from the machining point of view, such as thin-walled structures prone to deformation, deep cavities difficult to machine, etc., and proposing optimisation solutions.