Manufacture of precision mechanical components
In addition to conventional machining, specialised machining techniques also play a significant role in precision manufacturing. Once precision components have been machined, they often require surface treatment to enhance their performance or aesthetic appeal. Deburring is carried out to remove the minute burrs produced during the machining process.
Practical Assessment Guide for the Precision Sheet Metal Fabrication Industry, July 2026
Judging by the current overall demand for supporting components within the domestic manufacturing sector, precision sheet metal fabrication has come to encompass a wide range of fields, including mechanical engineering, automation, medical devices and new energy. User requirements vary considerably across different scenarios, and the criteria for selecting the appropriate solution therefore differ in emphasis.
An Insight into High-Variety CNC Precision Component Machining: The Evolution from Changeover Anxiety to Flexible Delivery
Background to the assessment: As the order structure has shifted from “a single best-seller” to a “mixed basket”, the market for CNC precision component machining in 2026 has seen a complete transformation in its order structure. Take robotic joint modules as an example
CN106964858A_An Automatic Wire-Threading Device and Method for an Electric Discharge Wire-Cut Machining Centre
An Automatic Wire-Threading Device and Method for an Electric Discharge Wire-Cutting Machine — Technical Field: 〇〇〇1^ The present invention relates to an automatic wire-threading device and method for an electric discharge wire-cutting machine
How to Reduce the Cost of CNC-Machined Parts Through Structural Design
CNC-machined parts are components produced using CNC equipment. CNC machining generally refers to a precision machining method controlled by computerised digital systems, and has now become a widely used machining technique. The equipment used for CNC machining is known as a CNC machine tool.
Method for Manufacturing a Semi-Automatic Wire-Threading Device for Wire-Cut Machining Centres
Technical Overview: This patent proposes a semi-automatic wire-threading device to address the issues of time-consuming manual threading and the tendency of molybdenum wire to become jammed in wire-cutting machines. By fitting the threading tube with an air inlet and an air supply tube, the device utilises a stream of air to suspend and propel the molybdenum wire, thereby enabling rapid threading.
Analysis of Operating Modes in the Milling Process of Thin-walled Components and Research into Active Vibration Control Methods
Analysis of Operating Modes in the Milling Process of Thin-walled Parts and Research into Active Vibration Control Methods: Introduction. With the rapid development of the manufacturing sector, the milling of thin-walled parts is playing an increasingly important role in high-end manufacturing sectors such as aerospace and automotive. However,
Methods and Processes for Machining the Rigid Wheel of a High-Precision Harmonic Reducer for Robots
Technical Overview: This invention addresses the issue with existing harmonic reducers, where the transmission ratio is fixed and cannot meet the requirements of intelligent robots. It proposes machining two rows of teeth with different numbers of teeth on the inner circumference of the rigid ring; through the use of a stepped structure and annular grooves, it enables switching between two transmission ratios.
A detailed explanation of the machining centre’s control panel
Today’s topic is a detailed explanation of the machining centre control panel. Anyone working with CNC machining centres needs to operate the machines in practice. So, are you familiar with all the buttons on the control panel? I’ll provide a detailed explanation to help you understand. Let’s take the control panel of a Fanuc machining centre as an example.
The Ultimate Guide to Titanium Alloy Surface Treatment: 4 Key Processes + 5 Coating Reinforcement Solutions – One Article to Solve Industrial Pain Points
Titanium and titanium alloys are widely used in many fields, such as electronics and aerospace, owing to their excellent properties, including high strength, light weight and corrosion resistance. However, they also have certain drawbacks, such as poor wear resistance, susceptibility to adhesive wear and a monotonous surface colour.












