Craftcloud offers a wide range of materials, including plastics, metals, and a variety of finishes and colors for each.
136 results
Aluminum 6061 is a strong, lightweight alloy with excellent corrosion resistance and good machinability. Ideal for aerospace, automotive, and general-purpose CNC-milled parts.
Aluminum 7075 is a high-strength, heat-treatable alloy with excellent strength-to-weight ratio and fatigue resistance. Ideal for aerospace, motorsports, and high-load structural components.
Stainless steel 316L offers excellent corrosion resistance, especially in marine or chemical settings. It’s strong, weldable, and ideal for medical, food-grade, and industrial CNC-milled parts.
Stainless steel 304 is strong, corrosion-resistant, and ideal for precise CNC-milled parts in automotive, aerospace, and industrial use. It offers excellent durability and dimensional stability.
Acetal (POM-C) is a high-performance copolymer known for its excellent machinability, dimensional stability, and low friction. Ideal for precision parts like gears and bearings, it offers high strength and moisture resistance.
Stainless steel 17-4 PH is a strong, corrosion-resistant alloy ideal for high-stress parts. It’s used in aerospace, medical, and tooling applications, and can be heat-treated for added hardness.
Carbon steel C45 is a medium-carbon, non-alloy steel with moderate strength, higher than that of lower-carbon grades. It is commonly used for shafts, axles, spindles, studs and general engineering components.
Carbon steel 1018 is a versatile, low-carbon steel known for its machinability, weldability, and strength, and is suitable for gears, shafts, and structural parts.
Stainless steel 303 is a corrosion-resistant, machinable alloy used for high-precision components such as gears, shafts, and fasteners in automotive, aerospace, and industrial applications.
Brass H59 is a copper-zinc alloy with good strength, machinability, and corrosion resistance. It’s commonly used for fittings, decorative parts, and precision-machined components.
Brass C360 is a highly machinable alloy with excellent corrosion resistance, ideal for precision parts like connectors, fittings, and gears in automotive, electrical, and industrial applications.
CNC copper 101, also known as Oxygen-Free Electronic (OFE) copper, is a high-purity alloy with 99.99% copper content, providing excellent electrical and thermal conductivity.
Carbon steel A36 is a low-cost, structural steel with good strength and weldability. Ideal for frames, brackets, and general-purpose parts. It offers low corrosion resistance and moderate machinability.
Aluminum 5052 is a strong, corrosion-resistant alloy ideal for CNC machining. It offers high fatigue strength, excellent workability, and is widely used in marine, automotive, and aerospace parts.
Tool steel A2 (annealed) is a machinable, tough, and dimensionally stable steel, ideal for CNC parts, fixtures, dies, and precision tools, with the option for later hardening.
Carbon Steel 1215 produces highly precise parts with excellent machinability and a smooth surface finish. It offers moderate strength and is ideal for high-volume production of detailed components where tight tolerances and cost efficiency are priorities.
Aluminum 6082 is a high-strength, corrosion-resistant alloy used in structural and aerospace applications. It offers good weldability, dimensional stability, and strength-to-weight ratio.
CNC-machined steel S355J2 is a higher-strength European structural steel, offering roughly 50% greater yield strength than S235JR, with guaranteed toughness down to -20 °C for demanding structural and cold-environment applications.
CNC-machined steel S235JR is the most widely used European non-alloy structural steel, valued for excellent weldability, formability, and machinability at a low cost, though with only moderate strength.
Brass C37700 is a leaded brass optimized for hot forging and finish machining, offering good strength and excellent hot formability. It is the workhorse grade for valve bodies and fittings.
CNC-machined aluminum 6026 offers free-machining performance similar to aluminum 2011 but with better corrosion resistance, developed specifically to meet modern automotive and electronics environmental compliance directives.
Aluminum AW-2011 is the reference-standard free-machining aluminum alloy, though it has poor corrosion resistance and almost no weldability.
Zinc alloy produces strong, corrosion-resistant parts with excellent machinability and dimensional stability. It is ideal for precision components, hardware, and mechanical applications requiring durability and fine detail.
Stainless steel 420J2 is a heat-treatable martensitic alloy that offers good machinability as-milled, with the option to harden to 50–55 HRC afterward.
Super-Invar (4J32) is an iron-nickel-cobalt precision alloy with the lowest thermal expansion of the Invar family, ideal for ultra-precision dimensional stability.
Pure Iron DT4 is an electromagnetic-grade pure iron prized for high magnetic permeability and low coercivity in DC electromagnetic components.
Nickel 200 (Pure Nickel N6) is a commercially pure nickel grade that offers excellent alkali corrosion resistance and high electrical and thermal conductivity.
Magnesium AZ91D is the most widely used die-cast magnesium alloy, and it offers the best corrosion resistance in the AZ family alongside good strength-to-weight performance.
Magnesium alloy AZ31B is a lightweight, highly machinable wrought alloy that offers good ductility and vibration damping, though it needs surface protection in humid or corrosive environments.
Kovar (4J29) is a nickel-cobalt-iron alloy engineered to match the thermal expansion of hard borosilicate glass and alumina ceramics for reliable, crack-free hermetic seals.
Invar 36 (4J36) is the classic 36% nickel-iron alloy famous for its extremely low thermal expansion up to about 200 °C.
4J50 is a nickel-iron precision alloy with thermal expansion matched for soft-glass and ceramic sealing, plus soft-magnetic characteristics.
Alloy 42 (4J42) is a 42% nickel-iron alloy engineered to match the thermal expansion of hard glass and ceramics for hermetic electronic sealing.
Acetal (Glass-Filled) is a reinforced engineering thermoplastic enhanced with glass fibers. This addition significantly increases the material's stiffness, creep resistance, and dimensional stability compared to standard acetal.
Titanium Grade 7 is a corrosion-resistant, commercially pure titanium-palladium alloy that offers the best chemical resistance of any titanium grade, especially against reducing acids and chlorides.
Grade 23 Ti-6Al-4V is a high-purity medical titanium alloy. It offers low density, extreme biocompatibility, high fracture toughness, and corrosion resistance. It is ideal for medical implants, aerospace, and high-stress functional parts.
Super duplex stainless steel 2507 offers the highest corrosion resistance and strength in the duplex family, as it's built for extreme chloride exposure like offshore and desalination equipment.
Stainless steel 202 is a low-nickel, manganese-strengthened austenitic alloy that performs similarly to 304 in mild, indoor environments at a lower material cost.
Stainless steel 444 is a molybdenum-added ferritic alloy with corrosion resistance approaching 316L, and it's essentially immune to chloride stress corrosion cracking.
Stainless steel 430 is a magnetic, chromium-only ferritic alloy offering a bright, polishable finish at lower cost than nickel-bearing grades.
Stainless steel 201 is a cost-effective, manganese-strengthened austenitic alloy that offers good strength and formability.
Stainless steel 321 is a titanium-stabilized austenitic alloy that is engineered to resist intergranular corrosion during welding and sustained high-temperature service.
Stainless steel 309S is a high-chromium, high-nickel austenitic alloy built for sustained oxidation resistance at elevated temperatures, well beyond standard stainless steel 304 or 316L.
Stainless steel 409 is a low-cost, titanium-stabilized ferritic alloy built for heat and exhaust-gas resistance, not for decorative or highly corrosive applications.
Stainless steel 310S is a high-chromium, high-nickel austenitic alloy that offers the strongest oxidation resistance of this group, suited to continuous service near 1,100 °C.
Stainless steel 301 is an austenitic alloy prized for its high work-hardening rate, and it offers greater achievable strength than 304 at the cost of lower corrosion resistance.
Duplex stainless steel 2205 combines roughly double the yield strength of standard austenitic grades with excellent resistance to chloride pitting, crevice corrosion, and stress corrosion cracking.
Copper CuCr1Zr is a high-performance copper alloy with superior thermal/electrical conductivity, strength, and high-temperature softening resistance. Ideal for welding electrodes, heat sinks, and rocket components.
Laser cutting is a precise manufacturing process that uses a high-powered laser beam to melt, burn, or vaporize material, creating clean and accurate cuts in various wood types.
PEEK GF30 produces extremely strong, stiff, and heat-resistant parts with excellent dimensional stability and chemical resistance, ideal for high-performance structural applications.
Tool steel P20 produces strong, wear-resistant parts with excellent toughness and dimensional stability. It is ideal for molds, tooling, and precision components requiring reliable mechanical performance.
Steel 4340 produces extremely strong, tough parts with excellent fatigue and wear resistance. This nickel-chromium-molybdenum alloy steel is ideal for high-performance and heavily loaded mechanical components.
Titanium Grade 2 produces lightweight, corrosion-resistant parts with excellent strength and durability. It is ideal for precision components exposed to harsh environments and demanding applications.
Alloy steel 4140 (Pre-Hardened) produces high-strength, pre-hardened parts with excellent wear resistance, toughness, and dimensional stability. It is ideal for demanding mechanical components that require durability without additional heat treatment.
CNC machined alloy steel 4130 (1.7218) produces strong, tough parts with excellent fatigue resistance and good weldability. This chromium-molybdenum alloy steel is ideal for structural and high-performance components requiring durability and reliability.
Delrin® AF is a unique thermoplastic composite of PTFE fibers uniformly dispersed in Delrin acetal resin. It combines the high strength of POM-H with the exceptional self-lubricating properties of PTFE for ultimate low-friction performance.
Stainless steel 440C produces extremely hard, wear-resistant parts with excellent strength and moderate corrosion resistance. It is ideal for precision components requiring high durability and long service life.
Stainless steel 416 produces precise parts with excellent machinability, good strength, and moderate corrosion resistance. It is ideal for high-volume production of detailed components requiring tight tolerances and clean surface finishes.
Stainless steel 410 produces strong, wear-resistant parts with good machinability and moderate corrosion resistance. It is well suited for structural and mechanical components requiring hardness and durability.
Stainless Steel 15-5 produces strong, corrosion-resistant parts with excellent dimensional accuracy and a clean machined surface. It is well suited for high-strength structural and industrial components.
CNC machined PVC produces lightweight, corrosion-resistant parts with excellent chemical resistance, electrical insulation, and reliable dimensional stability for industrial and technical applications.
Nylon 6/6 produces strong, wear-resistant parts with excellent toughness, low friction, and good chemical resistance. It is ideal for durable mechanical components and precision applications.
Stainless Steel 18-8 produces corrosion-resistant, durable parts with good strength and a clean machined surface. It is widely used for general-purpose components requiring reliability in humid or mildly corrosive environments.
Stainless steel 420 produces high-strength, hardened parts with excellent wear resistance and moderate corrosion resistance. It is ideal for components requiring durability, sharp edges, and long service life.
Tool steel O1 produces high-strength, wear-resistant parts with excellent hardness potential and dimensional stability. It is ideal for precision tooling and durable mechanical components.
Aluminum 2017A is a high-strength, heat-treatable alloy with excellent machinability, ideal for aerospace, automotive, and precision components requiring a strong, lightweight material.
PEEK is a high-strength, heat-resistant thermoplastic with exceptional chemical resistance, wear resistance, and dimensional stability. Ideal for high-performance components in aerospace, automotive, and medical industries.
Alloy steel 4140 produces high-strength, wear-resistant parts with excellent toughness and fatigue resistance. This alloy steel is ideal for demanding mechanical and structural applications requiring durability and precision.
CNC machined Aluminum MIC-6 produces dimensionally stable, flat, and precise parts with a clean machined surface. It is ideal for tooling plates, fixtures, and structural components where accuracy and stability are critical.
Polycarbonate (PC) is a tough, transparent thermoplastic ideal for impact-resistant parts like lenses, covers, and housings in automotive, electronics, and protective applications.
PTFE (Teflon) is a high-strength, chemically resistant material with excellent low friction, ideal for seals, bearings, gaskets, and components in food, pharmaceutical, and industrial applications.
CNC machined aluminum 2024 produces high-strength, lightweight parts with excellent dimensional accuracy and a clean machined surface. It is well suited for structural and performance components where strength-to-weight ratio matters most.
High-strength titanium alloy with excellent corrosion resistance and low weight. Used in aerospace, medical, and high-performance mechanical components.
Delrin® (POM-H) is a high-strength acetal homopolymer known for superior stiffness, hardness, and creep resistance. It is the go-to material for high-load mechanical parts like heavy-duty gears, bearings, and precision fasteners.
Nylon PA6 is a durable, wear-resistant thermoplastic with excellent impact strength, low friction, and good machinability. Ideal for precision mechanical components like gears, bushings, and automotive parts.
HDPE is a lightweight, impact-resistant thermoplastic, ideal for high-performance components like gears, bushings, seals, and marine or automotive parts due to its low friction and chemical resistance.
CNC-milled ABS is strong, impact-resistant, and ideal for prototypes and housings. It machines well, has a matte finish, and is widely used in engineering, electronics, and product design.
Sheet metal forming shapes metal sheets using techniques like bending and stamping. It's used in automotive, aerospace, and electronics for precise, durable parts.
Copper C110 produces highly conductive, corrosion-resistant parts with excellent thermal and electrical performance. It is ideal for electrical, thermal, and precision components requiring reliable conductivity.
Copper 360 produces precise, durable parts with excellent machinability, corrosion resistance, and a gold-colored metallic finish. It is ideal for high-volume production of fittings, fasteners, and precision components.
Bronze C932 produces durable, wear-resistant parts with excellent machinability and good corrosion resistance. It is ideal for bushings, bearings, and components requiring low friction and long service life.
Brass C260 produces strong, corrosion-resistant parts with excellent formability and an attractive gold-colored finish. It is ideal for precision components, decorative hardware, and electrical applications.
CNC machined aluminum 7050 produces very high-strength, lightweight parts with excellent dimensional accuracy and a clean machined surface. It is suited for demanding structural and aerospace applications where maximum performance is required.
CNC-milled acrylic offers high clarity, smooth edges, and a glass-like finish. Ideal for displays, covers, and enclosures, it’s precise, weather-resistant, and suited for low-impact uses.
Alloy steel 8620H (1.6523) is a low-carbon alloy steel ideal for case hardening. It combines high surface wear resistance with a tough, ductile core, making it well-suited for gears, shafts, and high-stress parts.
9-4 Aluminum Bronze is a strong, wear-resistant copper alloy with excellent corrosion resistance. Ideal for bushings, bearings, gears, and valve components in demanding environments.
Laser cutting is a precise manufacturing process that uses a high-powered laser beam to melt, burn, or vaporize material, creating clean and accurate cuts in various metal types.
Aluminum 6063 is a medium-strength, heat-treatable alloy with excellent corrosion resistance and good formability. It's ideal for precision parts in architectural, structural, and electronic applications.
Vacuum casting is a manufacturing process used to create detailed and precise prototypes or small production runs of plastic and rubber parts.
Polypropylene (PP) is a lightweight, durable thermoplastic ideal for CNC machined parts requiring chemical resistance, low friction, and fatigue resistance, often used in automotive, medical, and consumer applications.
Aluminum 5083 is a corrosion-resistant, high-strength alloy ideal for CNC machined parts in marine, automotive, and aerospace applications.
Injection molding involves injecting molten plastic into a mold, where it cools and solidifies into a precise shape. Ideal for high-volume production, it ensures consistent quality, detailed designs, and material flexibility across various industries.
Commercially pure iron offers excellent machinability, magnetic properties, and ductility. Ideal for magnetic, scientific, or precision parts requiring minimal alloy content.
Laser cutting is a precise manufacturing process that uses a high-powered laser beam to melt, burn, or vaporize plastics, producing clean edges and accurate cuts across a variety of materials.
Titanium Grade 1 (Ti-3.7025) is a lightweight, highly corrosion-resistant material, ideal for aerospace, medical, and marine applications, offering excellent formability and biocompatibility.
Solid oak is a durable hardwood ideal for CNC machining. It offers excellent strength, good stability, and a fine finish, making it perfect for furniture, signage, and decorative parts that require both precision and visual appeal.
Copper C15000 is a zirconium copper alloy that retains nearly all of pure copper's exceptional electrical conductivity while offering improved strength and resistance to softening at elevated temperatures.
Copper C17200 (Beryllium Copper) is the strongest copper alloy commercially available, reaching tensile strength comparable to steel while retaining useful electrical conductivity, though machining requires strict beryllium dust controls.
Copper C17510 (Nickel-Beryllium Copper) trades some of C17200's extreme strength for substantially better electrical conductivity. This makes it the better choice when both performance and conductivity matter more than peak strength alone.
Copper C18000 is a beryllium-free alternative to the nickel-beryllium copper family. It offers strong mechanical properties and moderate conductivity.
Copper C18200 (Chromium Copper) combines high electrical conductivity with good strength retention at elevated temperatures. This makes it a strong choice for resistance welding equipment and high-current electrical components.
Tool steel M2 ships in a soft, machinable annealed state and can be hardened and tempered afterward to become the industry-standard high-speed steel, balancing wear resistance, toughness, and red-hardness.
Tool Steel W1 ships annealed and highly machinable, and is the simplest and most economical tool steel, water-hardened afterward for applications without demanding heat or wear requirements.
Tool steel S7 ships annealed for easy machining and is hardened afterward into a shock-resisting tool steel built for impact toughness rather than maximum hardness, suited to tools and dies under repeated impact.
Tool steel M42 ships annealed for machining and is hardened afterward into a cobalt-enhanced high-speed steel reaching higher hardness than standard M2, suited to the most demanding cutting applications despite being more brittle and costly.
Stainless steel 316 is arguably the classic marine-grade stainless, adding molybdenum over 304 for superior resistance to chlorides and reducing acids.
Zamak 2 is the strongest, hardest, and most wear-resistant grade in the Zamak family, thanks to its high copper content, although this comes at the cost of lower ductility than other Zamak grades.
Stainless steel 302 is a higher-carbon variant of 304; it offers slightly greater strength and hardness – especially after cold working – while retaining 304's same corrosion resistance.
Stainless steel 304L is a low-carbon variant of 304, engineered to resist sensitization during welding at a slight cost to strength. This makes it the preferred choice for welded assemblies and processing equipment.
Brass C46400, also known as naval brass, is a copper-zinc alloy with a small tin addition. The tin improves its corrosion resistance in seawater, including against dezincification, which can affect plain 60/40 brass.
Brass C48500, also known as high-leaded naval brass, is a tin-bearing brass with added lead. The tin gives it seawater corrosion resistance comparable to brass C46400, while the lead makes it a common choice for machined parts.
Nickel silver C77000 is a copper-nickel-zinc alloy with a white, silver-like appearance. Despite its name, it contains no silver. It is tarnish resistant and has better corrosion resistance than standard brass.
Copper C14500, also known as tellurium copper, is copper with a small tellurium addition. It offers high electrical and thermal conductivity with mechanical properties similar to pure copper, and is a common choice for machined copper parts.
Aluminum 3003 is a non-heat-treatable, manganese-strengthened alloy prized for excellent corrosion resistance and formability, though it offers lower strength than heat-treatable grades like 6061.
Aluminum 1100 is a commercially pure (99% min) aluminum grade offering the best corrosion resistance and electrical/thermal conductivity of the wrought aluminum family, at the cost of lower strength than alloyed grades.
Aluminum 5005 is a non-heat-treatable aluminum-magnesium alloy best known for producing an exceptionally consistent anodized finish, though it machines less readily than 3003 or 6061
Garolite G10 FR4 produces strong, lightweight, and electrically insulating parts with excellent dimensional stability, moisture resistance, and flame retardancy.
Garolite G10 produces strong, lightweight composite parts with excellent dimensional stability, mechanical strength, and electrical insulation.
Garolite G11 produces high-strength, flame-retardant composite parts with excellent thermal stability, electrical insulation, and dimensional accuracy.
ULTEM 2300 produces high-strength, heat-resistant parts with excellent stiffness, dimensional stability, and flame resistance. It is ideal for structural and high-performance engineering applications.
Sheet metal joining connects metal sheets using welding, riveting, adhesives, or fasteners, essential for creating durable assemblies across industries.
PEI ULTEM 1000 is a high-strength, heat-resistant thermoplastic ideal for aerospace, automotive, and industrial applications. It offers excellent flame resistance, mechanical properties, and dimensional stability.
UHMW-PE is a highly durable thermoplastic with exceptional wear resistance, low friction, and chemical resistance, ideal for high-performance parts in machinery, food processing, and industrial applications.
Tool steel O2 ships annealed and machinable, then oil-hardens into a general-purpose cold-work tool steel similar to O1 but with added manganese for improved hardenability.
Tool steel 6F7 (1.2767) is a high-nickel alloy tool steel valued for exceptional toughness even at high hardness, which makes it a strong choice for applications needing impact resistance alongside wear resistance.
Tool steel S1 ships annealed and machinable, and can be hardened into a shock-resisting tool steel combining tungsten's toughness and wear resistance with chromium's dimensional stability.
Tool Steel D6 ships annealed and machinable, and can then be hardened into a high-chromium cold-work steel with added tungsten for better through-hardening.
Tool steel D2 ships annealed and machinable, and can then be hardened into one of the most widely used cold-work tool steels, prized for exceptional wear resistance, high compressive strength, and excellent dimensional stability.
Tool steel H13 ships annealed and machinable, and can then be air-hardened into a chromium-molybdenum hot-work tool steel valued for strength at elevated temperature, good toughness, and resistance to heat-cracking and thermal fatigue.
Stainless mold steel 420 ships annealed and machinable, and can then be hardened into a corrosion-resistant plastic mold steel, combining genuine stainless properties with good polishability.
Tool steel D3 ships annealed and machinable, and can then be hardened into a high-carbon, high-chromium cold-work steel with excellent wear resistance.
Zinc alloy Zamak 3 is the most widely used Zamak grade, offering a balanced mix of strength, ductility, and impact resistance, with better dimensional stability than higher-copper Zamak 2.
Zinc alloy Zamak 5 adds about 1% copper to Zamak 3 for roughly 10% more strength and higher hardness, with reduced ductility, a good fit where more tensile performance is needed.
Zinc alloy Zamak 8 (ZA-8) is a higher-aluminum zinc alloy with high strength, hardness, and creep resistance. It is well suited to decorative parts and components under sustained load.
Copper C102 is oxygen-free copper (99.95% minimum) with the same high conductivity as standard copper. It is chosen where purity matters, such as vacuum use and brazed or welded assemblies.
Carbon steel C45E is a medium-carbon steel with a specified low sulfur limit. It offers higher strength and hardness than low-carbon mild steel, with good machinability and the option of heat treatment.