Blogs:Design Guidelines
We have distilled the essence of our extensive experience in the manufacturing sector. Here, we generously share in-depth industry insights, valuable tips and hard-earned knowledge that we have carefully accumulated over the years to help you in this dynamic field.

Lathe Tooling Guide: Types of Metal Lathe Tools and How to Choose
This lathe tooling guide covers cutting inserts, tool holders and boring bars for metal turning. It runs through tool types for external turning, facing, boring, grooving, threading and knurling, alongside tool materials. Follow a practical five-step selection workflow, grasp tool

Sinker EDM Process Selection Guide
Sinker EDM uses spark erosion to machine cavities in hard metals. This guide helps pick the process based on part geometry and tool access. It explores how sinker EDM forms cavities, why electrodes factor into part design, and when this

Peripheral Milling: Process, Types, Applications, and Tool Selection
Peripheral milling relies on cutter peripheral edges to machine part sides and profiles. This guide breaks down its main variants — slab, side, slot, straddle and profile milling — and compares climb versus conventional cutting. It reviews tool selection, contrasts

Tungsten vs Titanium: Properties, Strength, Weight, and Machinability
Compare tungsten and titanium across key engineering properties: density‑weight, strength, hardness, stiffness, thermal performance and corrosion resistance. This guide breaks down each metal’s unique machinability hurdles and alternative manufacturing options.

Multi-Axis Machining: 4-Axis, 3+2, and 5-Axis CNC Explained
Multi‑axis CNC machining demystifies 4‑axis, 3+2 and full 5‑axis operations, explaining linear and rotary axes and the gap between indexed and simultaneous motion. It compares 3‑, 4‑, 3+2‑ and 5‑axis configurations, highlighting parts best served by multi‑axis work: multi‑face features,

What Is CNC Machining? A Practical Guide for Buyers
CNC machining produces tight‑tolerance components and clarifies how it differs from standard CNC work. It walks through the end‑to‑end workflow: CAD file submission, DFM review, in‑process machining controls and final inspection.
