CNC Aluminum Parts
Steel CNC Machining
Extensive steel options for CNC machining, perfect for prototypes and custom end-use parts in various industries.
- Stainless Steel
- Carbon Steel
- Alloy Steel
- Tool Steel
Steel
Steel is widely used in manufacturing due to its excellent mechanical properties, including high strength, hardness, wear resistance, plasticity, and machinability. It is ideal for CNC machining parts like bearings, gears, molds, and dies in the automotive, aerospace, and machinery manufacturing industries.
Description
Application Industries: Automotive Manufacturing, Aerospace Industry, Machinery Manufacturing, Construction Industry, Energy Sector, etc.
Advantages: High strength, good plasticity and machinability, excellent wear resistance, wide variety of types and specifications.
Weaknesses: Heavy weight, susceptible to temperature effects.
CNC Machining Materials Selection by Features
Metal Material
Aluminum 6061
√ Good machinability, easy to cut and shape, the most widely used aluminum alloy material.
√ Commonly used in aerospace, automotive parts, and consumer electronics housings.
Stainless Steel 304
√ Good machinability, suitable for most conventional machining techniques.
√ Used in food processing equipment, architectural decoration, and medical devices.
Brass C360
√ Easy to machine, provides good machinability with tight tolerances and smooth surfaces.
√ Commonly used in precision instruments, electrical components, and decorative items.
Plastic Material
Polyether Ether Ketone (PEEK)
√ Highly machinable, endures high temperatures and chemicals, perfect for complex shapes.
√ Used in aerospace, medical devices, and automotive industries for high-performance components.
Nylon 6/6
√ Excellent machinability, high friction and chemical resistance, can be machined using various techniques.
√ Used for manufacturing gears, bearings, and other industrial machinery parts.
Polyoxymethylene (POM)
√ Excellent machinability, high mechanical strength, and high dimensional stability.
√ Widely used for manufacturing precision gears, bearings, sliding parts, and moving parts.
Metal Material
Aluminum 6061-T6
√ Good mechanical properties and corrosion resistance, but may be limited in marine environments.
√ Commonly used in aerospace parts, automotive components, structural frames.
Stainless Steel 316L
√ Excellent resistance to pitting and crevice corrosion.
√ Commonly used in chemical equipment, medical devices, marine engineering, and other high-corrosion-resistant environments.
Titanium Alloy Ti-6Al-4V
√ High strength and excellent corrosion resistance. Highly stable in almost all environments.
√ Commonly used in aerospace components, medical implants, marine engineering parts.
Plastic Material
Polyvinylidene Fluoride (PVDF)
√ Excellent chemical corrosion resistance and mechanical properties.
√ Commonly used in chemical processing equipment, piping systems, pumps, and valves.
Polytetrafluoroethylene (PTFE)
√ A modified PTFE material offering higher mechanical strength and high-temperature performance.
√ Commonly used in seals, gaskets, insulation materials, and corrosion-resistant linings.
Polyether Ether Ketone (PEEK)
√ Excellent chemical corrosion resistance, mechanical strength, and high-temperature performance.
√ Commonly used in aerospace components, automotive parts, medical devices, and chemical equipment.
Metal Material
Carbon Steel (AISI 1018)
√ Low carbon steel with good machinability and toughness and low cost.
√ Used for machine parts, gears, shafts, and bolts.
Aluminum Alloy 6061-T6
√ Excellent machinability, corrosion resistance, and relatively low cost.
√ Used in structural components, automotive parts, aerospace parts, and consumer electronics.
Brass (C36000)
√ Free machining brass with excellent machinability and corrosion resistance.
√ Precision instruments, valves, fittings, and electrical components.
Plastic Material
Polyether Ether Ketone (PEEK)
√ Highly machinable, endures high temperatures and chemicals, perfect for complex shapes.
√ Used in aerospace, medical devices, and automotive industries for high-performance components.
Nylon 6/6
√ Excellent machinability, high friction and chemical resistance, can be machined using various techniques.
√ Used for manufacturing gears, bearings, and other industrial machinery parts.
Polyoxymethylene (POM)
√ Excellent machinability, high mechanical strength, and high dimensional stability.
√ Widely used for manufacturing precision gears, bearings, sliding parts, and moving parts.
Metal Material
Titanium Alloy (Ti-6Al-4V)
√ Excellent fatigue resistance, lightweight, high strength, and corrosion resistance.
√ Aerospace components, medical implants, marine engineering parts.
Stainless Steel (17-4PH)
√ Good fatigue resistance, high strength, and corrosion resistance.
√ Aerospace components, chemical processing equipment, medical instruments.
Aluminum Alloy (7075-T6)
√ Excellent fatigue resistance, high strength, and good machinability.
√ Aerospace structural components, racing parts, bicycle frames.
Plastic Material
Polyether Ether Ketone (PEEK)
√ Extremely high fatigue resistance, high-temperature resistance, and chemical corrosion resistance.
√ Aerospace components, automotive parts, medical devices.
Polyamide (PA) Nylon 6/6
√ Good fatigue resistance, high strength, and wear resistance.
√ Gears, pulleys, mechanical parts, and bearings.
Polycarbonate (PC)
√ Good fatigue resistance, high impact strength, and transparency.
√ Safety protective equipment, optical lenses, electronic housings.
Metal Material
Aluminum Alloy (6061-T6)
√ Excellent dimensional stability, good machinability, and corrosion resistance.
√ Aerospace structural components, automotive parts, mechanical components.
Stainless Steel (303)
√ Good dimensional stability, high strength, and corrosion resistance.
√ Precision instrument parts, bolts, nuts, and bearings.
Carbon Steel (AISI 1045)
√ Good dimensional stability, high strength, easy to machine and heat treat.
√ Shafts, gears, connecting rods, and mechanical parts.
Plastic Material
Polycarbonate (PC)
√ Good dimensional stability, high impact strength, and transparency.
√ Optical lenses, safety protective equipment, electronic housings.
Polyoxymethylene (POM)
√ Excellent dimensional stability, mechanical strength, and wear resistance.
Applications: Precision parts, gears, bearings, and automotive components.
Nylon (PA) Nylon 6/6
√ Good dimensional stability, high strength, and wear resistance.
√ Gears, pulleys, mechanical parts, and bearings.
Metal Material
Aluminum Alloy (6061-T6)
√ Good ductility, excellent machinability, and corrosion resistance.
√ Aerospace structural components, automotive parts, construction materials.
Brass (C26000)
√ Excellent ductility and good machinability, easy to form.
√ Precision instruments, valves, fittings, and electrical components.
Copper (C11000)
√ Extremely high ductility and electrical conductivity, easy to process and form.
√ Electrical components, piping, radiators.
Metal Material
Copper (C11000)
√ Extremely high electrical and thermal conductivity, good ductility, and corrosion resistance.
√ Electrical components, conductive tracks, distribution equipment.
Brass (C36000)
√ Good electrical conductivity, corrosion resistance, and excellent machinability.
√ Precision instruments, connectors, valves, fittings, and electrical components.
Aluminum Alloy (6063-T5)
√ Good electrical conductivity, lightweight, and high corrosion resistance.
√ Conductive busbars, cables, electronic heat sinks.
Plastic Material
Polytetrafluoroethylene (PTFE)
√ Excellent electrical insulation properties, high-temperature resistance, and chemical corrosion resistance.
√ Electrical insulation materials, seals, chemical equipment linings.
Polyoxymethylene (POM)
√ Good electrical insulation properties, mechanical strength, and wear resistance.
√ Precision parts, gears, bearings, and electrical insulation components.
Polyamide (PA) Nylon 6/6
√ Good electrical insulation properties, high strength, and wear resistance.
√ Gears, pulleys, mechanical parts, and electrical insulation components.
Metal Material
Stainless Steel (304)
√ Excellent high-temperature resistance and corrosion resistance, non-combustible, high mechanical strength.
√ Building structural components, kitchen equipment, chemical processing equipment.
Titanium Alloy (Ti-6Al-4V)
√ Excellent high-temperature resistance and mechanical strength, lightweight, non-combustible.
√ Aerospace components, medical implants, high-temperature environment applications.
Aluminum Alloy (6061-T6)
√ Good mechanical properties and high-temperature resistance, non-combustible.
√ Aerospace structural components, automotive parts, construction materials.
Plastic Material
Polycarbonate (PC)
√ Excellent flame resistance, high impact strength, and transparency.
√ Safety protective equipment, optical lenses, electronic housings.
Polyether Ether Ketone (PEEK)
√ Excellent flame resistance, high-temperature resistance, and mechanical strength.
√ Aerospace components, automotive parts, medical devices.
Polyvinylidene Fluoride (PVDF)
√ Excellent flame resistance, chemical corrosion resistance, and mechanical strength.
√ Chemical processing equipment, electrical insulation, piping systems.
Metal Material
Stainless Steel (310S)
√ Excellent high-temperature resistance, withstanding up to 1150°C, and good corrosion resistance.
√ High-temperature furnace components, combustion chambers, heat exchangers.
Titanium Alloy (Ti-6Al-4V)
√ Excellent high-temperature resistance and mechanical strength, lightweight, withstanding up to 700°C.
√ Aerospace components, engine parts, high-temperature environment applications.
Nickel Alloy (Inconel 718)
√ Exceptional high-temperature resistance and oxidation resistance, withstanding up to 700°C, and excellent mechanical strength.
√ Turbine engine parts, nuclear reactor components, aerospace structural components.
Plastic Material
Polyether Ether Ketone (PEEK)
√ Excellent high-temperature resistance, capable of long-term use at temperatures up to 260°C, along with high mechanical strength and chemical corrosion resistance.
√ Aerospace components, automotive parts, medical devices.
Polyimide (PI)
√ Outstanding high-temperature resistance, usable at temperatures up to 400°C, with good electrical insulation properties.
√ Electronic insulation materials, high-temperature seals, aerospace applications.
Metal Material
D2 Tool Steel
√ High-carbon, high-chromium alloy tool steel with excellent wear resistance and high hardness.
√ Molds, cutting tools, knives, bearing components.
Alloy Steel 42CrMo
√ High strength, high toughness, good hardenability, and excellent wear resistance.
√ Gears, shafts, connectors, fasteners, and other high-strength parts.
440C Stainless Steel
√ High-carbon stainless steel with very high hardness and wear resistance, along with good corrosion resistance.
√ Bearings, knives, valve components, molds.
Plastic Material
Polyoxymethylene (POM)
√ Excellent wear resistance, high mechanical strength, low friction coefficient, and chemical resistance.
√ Precision parts, gears, bearings, sliding components.
Polyamide (PA) Nylon 6/6
√ Good wear resistance and mechanical strength, chemical resistance, and low water absorption.
√ Gears, pulleys, mechanical parts, bearings, bushings.
Polyether Ether Ketone (PEEK)
√ Outstanding wear resistance, high mechanical strength, high-temperature resistance, and chemical resistance.
√ Aerospace components, automotive parts, medical devices, sliding components, valve seats.
Metal Material
Aluminum Alloy (6061-T6)
√ Good mechanical properties, corrosion resistance, lightweight, and easy to machine.
√ Aerospace structural components, automotive parts, construction materials.
Density: 2.70 g/cm³
Magnesium Alloy (AZ91D)
√ Extremely lightweight, good mechanical properties, and corrosion resistance.
√ Automotive parts, electronic product housings, aerospace components.
Density: 1.81 g/cm³
Titanium Alloy (Ti-6Al-4V)
√ High strength, lightweight, excellent corrosion resistance, and good high-temperature performance.
√ Aerospace components, medical implants, sports equipment.
Density: 4.43 g/cm³
Plastic Material
Polyethylene (PE)
√ Lightweight, high flexibility, chemical corrosion resistance, and impact resistance.
√ Soft packaging, films, containers, pipes.
Density: 0.91 – 0.94 g/cm³
Polypropylene (PP)
√ Lightweight, good mechanical properties, and chemical corrosion resistance.
√ Packaging materials, containers, fibers, automotive parts.
Density: 0.89 – 0.92 g/cm³
Polycarbonate (PC)
√ Good mechanical properties, high impact strength, transparency, and lightweight.
√ Safety protective equipment, optical lenses, electronic housings.
Density: 1.20 – 1.22 g/cm³
Metal Material
Stainless Steel (316L)
√ Excellent UV resistance, corrosion resistance, and high strength. Suitable for long-term outdoor use without UV damage.
√ Precision mechanical parts, marine equipment, outdoor construction components, chemical equipment parts.
Aluminum Alloy (6061-T6)
√ Good UV resistance, corrosion resistance, and lightweight. Suitable for outdoor applications, maintaining performance under prolonged sunlight exposure.
√ Precision instrument housings, aerospace structural components, automotive parts, construction materials.
Titanium Alloy (Ti-6Al-4V)
√ High strength, excellent UV resistance, and good corrosion resistance. Ideal for long-term outdoor exposure.
√ Precision aerospace components, outdoor sports equipment, medical devices, building facades.
Plastic Material
Polyoxymethylene (POM) Delrin® UV
√ Excellent UV resistance, high mechanical strength, low friction coefficient, and chemical resistance. Designed for outdoor use, it withstands prolonged UV exposure without degradation.
√ Precision gears, sliding components, bearings, outdoor instrument parts.
Polyether Ether Ketone (PEEK UV)
√ Excellent UV resistance, high mechanical strength, high temperature resistance, and chemical resistance. Maintains performance under high UV exposure.
√ Precision instrument parts, automotive components, medical devices, outdoor application parts.
Polyamide (PA) Nylon 6/6 UV Stabilized
√ Good UV resistance, wear resistance, and mechanical strength. Enhanced with UV stabilizers to withstand prolonged UV exposure without degradation.
√ Precision gears, sliding components, mechanical parts, outdoor equipment parts.
Metal Material
Aluminum Alloy (5052-H32)
√ Good noise reduction and corrosion resistance, lightweight, suitable for manufacturing soundproofing and vibration-damping components.
√ Car body panels, machinery equipment housings, soundproof walls.
Stainless Steel (304)
√ Good noise reduction and corrosion resistance, high mechanical strength, suitable for manufacturing high-strength soundproof components.
√ Machinery equipment housings, pipe soundproof sleeves, building soundproof materials.
Nickel Alloy (Inconel 625)
√ Excellent noise reduction, high-temperature resistance, and corrosion resistance, suitable for soundproofing applications in extreme environments.
√ Turbine engine soundproof covers, high-temperature soundproof components, aerospace noise reduction parts.
Plastic Material
Polyurethane (PU)
√ Excellent noise reduction and vibration absorption properties, with good flexibility and wear resistance. Suitable for manufacturing soundproofing and vibration-damping parts.
√ Soundproof panels, seals, vibration-damping pads, precision mechanical components.
Polyethylene (PE)
√ Good noise reduction properties, impact resistance, and chemical resistance. Lightweight and flexible, suitable for manufacturing various noise reduction parts.
√ Soundproof mats, pipe soundproof sleeves, noise-reduction components for machinery.
Polyester Fiber (PET Fiber)
√ Excellent sound absorption and noise reduction properties, with good wear resistance and chemical resistance. Suitable for manufacturing high-efficiency sound-absorbing materials.
√ Sound-absorbing panels, soundproof materials, precision mechanical components, automotive interiors.
Metal Material
Stainless Steel (304)
√ Excellent compressive strength, corrosion resistance, and high strength. Suitable for applications in high-strength and high-pressure environments.
√ High-pressure vessels, structural components, pump and valve parts, building components.
Aluminum Alloy (7075-T6)
√ Extremely high compressive strength, strength, and hardness, while being lightweight. Suitable for high-strength and high-load applications.
√ Aerospace structural components, automotive parts, high-pressure vessels.
Titanium Alloy (Ti-6Al-4V)
√ High strength, excellent compressive strength, and corrosion resistance, while being lightweight. Suitable for high-pressure and high-strength applications.
√ High-pressure vessels, aerospace components, medical devices, structural components.
Plastic Material
Polyether Ether Ketone (PEEK)
√ Excellent compressive strength, high mechanical strength, high-temperature resistance, and chemical resistance. Capable of long-term use in high-pressure environments without deformation.
√ High-pressure seals, aerospace components, automotive parts, medical devices.
Polyoxymethylene (POM)
√ Good compressive strength, high mechanical strength, and wear resistance. Ideal for applications demanding exceptional strength and rigidity.
√ Precision gears, bearings, valve components, sliding parts.
Polyamide (PA) Nylon 6/6
√ Good compressive strength, mechanical strength, and wear resistance. Suitable for high-stress and high-load applications.
√ Gears, pulleys, mechanical parts, bearings, structural components.
Plastic Material
Polycarbonate (PC)
√ Excellent transparency, high impact strength, and heat resistance. Suitable for applications requiring high clarity and strength.
√ Optical lenses, safety protective equipment, electronic housings, automotive lamp covers.
Acrylic (PMMA)
√ Exceptional transparency, optical properties, and weather resistance. Lighter and more impact-resistant than glass.
√ Transparent covers, displays, protective shields, optical components.
Polyester (PET)
√ Good transparency and high mechanical strength, with excellent chemical resistance.
√ Optical films, electronic displays, packaging materials, optical elements.
Metal Material
Stainless Steel (304)
√ Excellent weldability and corrosion resistance, with minimal risk of cracking and deformation after welding.
√ Building structural components, kitchen equipment, medical devices, chemical processing equipment.
Aluminum Alloy (6061-T6)
√ Good weldability, corrosion resistance, and high strength, retaining good mechanical properties after welding.
√ Aerospace structural components, automotive parts, construction materials, sports equipment.
Low Carbon Steel (AISI 1018)
√ Good weldability and machinability, with minimal risk of cracking after welding, and excellent mechanical properties.
√ Mechanical parts, structural components, automotive parts, piping systems.
CNC Machining Materials Selection by Application Area
Metal Material
Stainless Steel (316L)
√ Excellent corrosion resistance and mechanical strength, compliant with food contact safety standards. Extensively utilized in the food processing and pharmaceutical sectors.
√ Food processing equipment, storage tanks, piping, valves, tableware.
Aluminum Alloy (6061-T6) (Food Grade)
√ Good mechanical properties, corrosion resistance, lightweight, and compliant with food contact safety standards.
√ Food processing equipment, tableware, storage tanks, packaging materials.
Stainless Steel (304)
√ Good corrosion resistance and mechanical strength, compliant with food contact safety standards. Commonly employed in the food processing and pharmaceutical industries.
√ Food processing equipment, storage tanks, piping, valves, tableware.
Plastic Material
High-Density Polyethylene (HDPE, Food Grade)
√ Good chemical resistance, high strength, and excellent food contact safety. Compliant with FDA standards, suitable for food processing and packaging.
√ Food processing equipment parts, conveyor parts, bearings, sliding components.
Polypropylene (PP, Food Grade)
√ Good chemical resistance, high rigidity, and high-temperature resistance. Compliant with FDA standards, suitable for food contact applications.
√ Food processing equipment parts, piping, valves, bushings, seals.
Polyoxymethylene (POM) Delrin® FG (Food Grade)
√ Excellent mechanical strength, wear resistance, and low friction coefficient, compliant with food contact safety standards.
√ Food processing equipment parts, gears, sliding components, bearings.
CNC Machining Manufacturer
Steel Selection Guide
Our team of skilled engineers is here to help you select the most suitable material for your project, ensuring optimal performance and cost-effectiveness. Contact us today to discuss your requirements and see how our machining expertise can bring your ideas to life.
| Steel Classification | Feature | Application | |||||||||
| Low Carbon Steel | Easy to weld and process | Structural parts, general machinery | |||||||||
| Medium Carbon Steel | High strength and hardness | Transmission shafts, axles, mechanical parts | |||||||||
| High Carbon Steel | High hardness and wear resistance, brittle | Tools, springs, bearings | |||||||||
| Alloy Steel | High strength, toughness, suitable for heavy load applications | Automotive manufacturing, gears, bearings | |||||||||
| Stainless Steel | High-Temperature resistance, good corrosion resistance | Food manufacturing, medical industry, household items | |||||||||
| Tool Steel | Good wear resistance and cutting performance | Machinery manufacturing, mold making, aerospace industry | |||||||||
Industries We Can Mill For
Precision CNC Auto Parts Manufacturing for the Automotive Industry

Aerospace
Cabin and exterior, lighting and vents components. jigsand fixtures in the aviation industry

Automotive
Interior and exterior parts, under-the-hood componentsin the automotive and EV industry

Electronic
Casing. housing and components of cellphones,headphones, game controllers, cameras in theconsumerarea

Medical
Medical items and healthcare devices, shells andsurgical instruments in the medical and healthcareindustry
Stainles Steel Typical Materials
Strength: Resistance to deformation and failure; “High” means it withstands significant force without breaking.
Hardness: Resistance to scratches, indentations, and wear; “High” means better protection against physical impacts.
Mechanical Properties: Includes the material’s toughness, ductility, etc.
Machinability: Ease of cutting and performance during machining.
| Materials | Corrosion Resistance | Strength | Hardness | Machinability | Application |
| 304 | ★★★★ | ★★ | ★★ | ★★★ | Food Processing, Kitchenware, General Chemical Equipment |
| 304F | ★★★★ | ★★ | ★★ | ★★★ | Automated Turning, Precision Parts |
| 304L | ★★★★ | ★★ | ★ | ★★★ | Welding Structures, Chemical Processing Equipment |
| 303 | ★★★ | ★★ | ★★ | ★★★ | Precision Parts, Fasteners, Electronic Equipment |
| 316 | ★★★★ | ★★ | ★★ | ★★★ | Medical Equipment, Marine Environment Equipment |
| 316F | ★★★★ | ★★ | ★★ | ★★★ | Precision Machinery Processing |
| 316L | ★★★★ | ★★ | ★ | ★★★ | Medical Equipment, Food Processing |
| 316Ti | ★★★★ | ★★ | ★★ | ★★★ | High-Temperature Chemical Processing Equipment |
| 201 | ★★★ | ★ | ★ | ★ | Low-cost Consumer Goods |
| 310S | ★★★★ | ★★★ | ★★★ | ★★★★ | High-Temperature Applications, Furnace Components |
| 440C | ★★★ | ★★★ | ★★★ | ★★★★ | Knives, Bearings |
| 410 | ★★ | ★★ | ★★★ | ★★ | Pumps, Valves, Knives |
| 416 | ★★ | ★★ | ★★ | ★★ | Gears, Shafts, Fasteners |
| 420 | ★★★ | ★★★ | ★★★ | ★★★★ | Knives, Medical Instruments |
| 440F | ★★★ | ★★★ | ★★★ | ★★★★ | Precision Parts, High Wear Applications |
| 440 | ★★★ | ★★★ | ★★★ | ★★★★ | Knives, Bearings |
| 430 | ★★★ | ★★ | ★★ | ★★ | Household Appliances, Decorative Components |
| 630 | ★★★★ | ★★★ | ★★★ | ★★★★ | Aerospace Structures, Nuclear Reactor Components |
| 17-4 PH | ★★★ | ★★★ | ★★★ | ★★★★ | Aerospace, Chemical, Food Processing, Nuclear Industry |
| 13-8 Mo | ★★★ | ★★★ | ★★★ | ★★★★ | Aerospace Parts, Nuclear Facilities, Chemical Processing |
Advantages of Metal machining



1
Unmatched Precision
Maintains tolerances within +/- 0.002 inches, so even the most demanding designs receive the accurate, high-quality parts they require.
2
Material Versatility
Aluminum, steel, titanium, or one of many exotic alloys-the machine accepts whatever stock your application demands without special tooling delays.
3
Scalable Production
Whether you need a handful of prototypes or thousands of finished units, the equipment adjusts easily and cost-effectively to changing order sizes.
CNC Machining Parts Case Study













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Unlocking the Potential of CNC Metal Machining: Precision and Efficiency
Precision and Efficiency
With CNC machining, custom metal parts are made faster and more accurately, meeting a wide range of project demands.
How CNC Machines Work
Each machine follows CAD instructions that control every cut, so finished pieces look the same from the first item to the last.
The Machining Process
Digital plans guide durable cutting tools that shape raw stock into tight-tolerance components for nearly any application.
our partners trust us






Michael Anderson
Industrial Equipment Manufacturer
“Boraco consistently delivers high-quality machined steel parts with exceptional dimensional accuracy. Their engineering team quickly optimized our design, reducing machining costs while maintaining tight tolerances. Communication was excellent from prototype to production.”
Sarah Thompson
Automotive Components Supplier
“We’ve sourced custom carbon steel and stainless steel components from Boraco for over a year. Their lead times are consistently faster than expected, quality is reliable, and every shipment arrives exactly to specification. They’re a dependable long-term manufacturing partner.”
David Wilson
Robotics Technology Company
“Our project required complex alloy steel components with multiple precision features. Boraco’s 5-axis CNC machining capabilities exceeded our expectations. The parts fit perfectly on first assembly, helping us accelerate product development and reduce overall manufacturing costs.”
ready to reach new heights? Let's get there, together.
Trust Boraco CNC Machining Service for exceeding accuracy and speed at cost-effective pricing. Reach out to us right now for your tailored quote and usher in a new episode of manufacturing greatness with Baetro.
Frequently Asked Questions
Most frequent questions and answers
What types of steel can you machine?
We machine a wide range of steel materials to meet different engineering requirements, including carbon steel, mild steel, alloy steel, tool steel (such as O1 tool steel), and stainless steel. Our engineering team can recommend the most suitable material based on your application’s strength, wear resistance, corrosion resistance, and budget.
Can you manufacture custom steel CNC parts from my drawings?
Yes. We specialize in custom steel CNC machining and manufacture parts directly from your CAD files, technical drawings, or physical samples. Whether you need a single prototype or high-volume production, we can produce precision steel components tailored to your exact specifications.
Do you provide custom-cut steel plates and steel sheets?
Absolutely. We offer custom cut steel plate and custom cut steel sheet services using CNC machining and laser cutting technologies. Parts are manufactured to your required dimensions, tolerances, and surface finish, helping reduce secondary processing and assembly time.
What steel fabrication services do you offer?
Beyond CNC machining, we provide comprehensive steel fabrication solutions, including:
- CNC milling and turning
- Laser cutting
- Steel plate and sheet fabrication
- Precision drilling and tapping
- Surface finishing
- Assembly support
Our one-stop manufacturing service simplifies sourcing and ensures consistent quality throughout production.
Can you machine complex steel parts with tight tolerances?
Yes. Our advanced 3-axis, 4-axis, and 5-axis CNC machining centers can produce highly complex steel components with tolerances up to ±0.005 mm, depending on the material and design requirements.
We regularly manufacture precision parts for aerospace, automotive, industrial equipment, robotics, and medical applications.
What surface finishes are available for machined steel parts?
We offer a variety of finishing options depending on the steel grade and application, including:
- Bead blasting
- Sandblasting
- Black oxide
- Zinc plating
- Nickel plating
- Chrome plating
- Powder coating
- Electropolishing (for stainless steel)
- Passivation
- Brushed and polished finishes
Our engineers can recommend the best finish based on corrosion resistance, appearance, and functional requirements.
How do you choose the best steel for CNC machining?
The ideal steel depends on your application’s mechanical and environmental requirements.
- Mild steel offers excellent machinability and cost efficiency.
- Carbon steel provides higher strength for structural components.
- Alloy steel delivers improved toughness and wear resistance.
- O1 tool steel is ideal for cutting tools, dies, and molds.
- Stainless steel offers outstanding corrosion resistance for demanding environments.
If you’re unsure which material to choose, our engineering team will help you select the most cost-effective option.
Why choose Boraco for steel CNC machining services?
Boraco combines experienced engineers, advanced CNC equipment, and strict quality control to deliver reliable steel machining solutions.
Our advantages include:
- Custom steel parts with no MOQ
- Precision tolerances up to ±0.005 mm
- CNC milling, turning, and laser cutting
- Rapid prototyping and mass production
- Support for carbon steel, alloy steel, tool steel, and stainless steel
- Fast quotations and global delivery
Whether you need a single prototype or large-scale production, we provide dependable manufacturing solutions tailored to your project.


