CNC Cutting

Precision CNC cutting with laser, plasma, and waterjet blanking methods. We match the process to material, thickness, and accuracy requirements for stable sheet cutting quality, from single prototypes to low-volume batches.

Prototype & Low Volume Materials & Finishing Drawing Review & Quote
CNC Cutting

Process Overview

CNC Cutting

Cutting is the first step in sheet processing — cut quality directly affects downstream bending, welding, and assembly. Xinda is equipped with laser, plasma, and waterjet cutting systems, selected by material and thickness: laser for high-precision thin-sheet blanking, plasma for medium-thick carbon steel and stainless steel, and cold waterjet cutting for composites and heat-sensitive materials.

  • Automatic nesting per drawing optimizes material usage and reduces waste
  • Clean laser cuts with minimal burrs, standard accuracy up to ±0.1mm
  • Cutting flows directly into bending, welding, and surface finishing for one-stop delivery
Service TypeCNC Machining
Project StagePrototype / Low Volume
FinishingMatched by Material
Quote FilesSTEP / IGES / PDF

CNC Cutting Part Cases

CNC Cutting Products

CNC Cutting Products

CNC Cutting Products

CNC Cutting Products

CNC Cutting Products

CNC Cutting Products

Why Choose Us

  • Multiple Cutting Methods Equipped with plasma, laser, and waterjet cutting machines to select the best method for each material and thickness.
  • High-Precision Cutting Cutting accuracy up to ±0.1mm with clean edges and minimal burrs.
  • Wide Material Range Can cut aluminum, steel, stainless steel, plastic sheets, composites, and more.
  • Integrated Services Post-cutting services include bending, welding, and surface finishing for complete delivery.
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Why Choose Us

How To Choose Between The Three Cutting Methods

  • Laser Cutting High-precision blanking for thin and medium plates with clean edges and small heat impact — ideal for aluminum, stainless steel, and carbon steel sheets.
  • Plasma Cutting Cost-effective for medium-thick carbon steel and stainless steel with fast cutting speeds, suited to batch blanking of structural parts.
  • Waterjet Cutting Cold cutting with no heat-affected zone for composites, plastics, and thick plates — material properties stay unchanged.

We optimize sheet layouts according to CAD drawings, minimizing waste. Clean cut edges ensure parts move straight into subsequent bending, welding, or machining.

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How To Choose Between The Three Cutting Methods

Quality Assurance & Inspection

All cut parts undergo dimensional and visual inspection before delivery. We use calipers, height gauges, projectors, and other measuring tools to ensure cutting accuracy meets requirements.

For batch orders, we provide first-article confirmation and sampling inspection to ensure consistent dimensions and quality across the entire batch.

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Quality Assurance & Inspection

Materials

Materials Matched To Part Requirements

Common material options are evaluated according to geometry, performance requirements, and finishing needs.

Carbon Steel
Carbon Steel Optimized for mechanical strength, tight dimensional tolerances, and high-quality finishing matching part specifications.
Stainless Steel
Stainless Steel High strength, excellent corrosion & heat resistance, suitable for medical, food, and marine applications.
Aluminum Sheet
Aluminum Sheet High strength, excellent corrosion & heat resistance, suitable for medical, food, and marine applications.
Engineering Grade Material
Engineering Grade Material Superior thermal and electrical conductivity, wear-resistant and easy to machine, used for valves, connectors, and terminals.
Brass Alloy
Brass Alloy Optimized for mechanical strength, tight dimensional tolerances, and high-quality finishing matching part specifications.
Galvanized Sheet
Galvanized Sheet Optimized for mechanical strength, tight dimensional tolerances, and high-quality finishing matching part specifications.
Polycarbonate (PC)
Polycarbonate (PC) Optimized for mechanical strength, tight dimensional tolerances, and high-quality finishing matching part specifications.
ABS Plastic
ABS Plastic Optimized for mechanical strength, tight dimensional tolerances, and high-quality finishing matching part specifications.
Polypropylene (PP)
Polypropylene (PP) Optimized for mechanical strength, tight dimensional tolerances, and high-quality finishing matching part specifications.
HDPE
HDPE Optimized for mechanical strength, tight dimensional tolerances, and high-quality finishing matching part specifications.
Nylon (PA6 / PA12)
Nylon (PA6 / PA12) Optimized for mechanical strength, tight dimensional tolerances, and high-quality finishing matching part specifications.
PTFE (Teflon)
PTFE (Teflon) Optimized for mechanical strength, tight dimensional tolerances, and high-quality finishing matching part specifications.
PVC Plastic
PVC Plastic High strength, excellent corrosion & heat resistance, suitable for medical, food, and marine applications.
Engineering Grade Material
Engineering Grade Material Optimized for mechanical strength, tight dimensional tolerances, and high-quality finishing matching part specifications.
FR4
FR4 Optimized for mechanical strength, tight dimensional tolerances, and high-quality finishing matching part specifications.

FAQ

CNC Cutting FAQ

What projects are suitable for CNC Cutting?

It is suitable for structural validation, appearance prototypes, functional parts, and low-volume production. The final plan depends on drawings, materials, quantity, and tolerance requirements.

What is the typical lead time?

Typical prototype lead time is 3-7 business days. Batch lead time depends on quantity, complexity, and finishing processes.

What finishing options are available?

Available finishing options include sandblasting, polishing, painting, anodizing, plating, brushing, and silk screening depending on material and application.

What is needed for the quotation?

Please provide 3D CAD files, 2D drawings with tolerances, material, quantity, finishing, and target lead time for an accurate quote.

Online Inquiry

Request A Quote

Submit drawings, material, quantity, and lead time requirements for engineering review.