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    98 Products

    Casting Compounds

    Image of ProductInUse. Front orientation. Casting Compounds.
    Capture intricate details when creating prototypes, molds, and linings with these easy-to-mix two-part compounds. This urethane rubber is water and abrasion resistant.
    View our selection of release agents.
    Hardness
    Time to Harden,
    min.
    Time to
    Cure, hr.
    Time to
    Demold, hr.
    Cure Temp.,
    ° F
    Max. Temp.,
    ° F
    Shrinkage
    Color
    Mixing
    Req.
    Volume,
    cu. in.
    Wt.,
    lb.
    Each
    Urethane Rubber
     
    Soft
    Durometer 20A151685771800.1%BlackYes2510000000000000
    Durometer 20A151685771800.1%BlackYes250100000000000000
     
    Medium
    Durometer 40A151685771800.1%BlackYes251000000000000
    Durometer 40A151685771800.1%BlackYes250100000000000000
    Durometer 60A151682771800.1%BlackYes251000000000000
    Durometer 60A151682771800.1%BlackYes250100000000000000
    Durometer 60D151682771800.1%BlackYes251000000000000
    Durometer 60D151682771800.1%BlackYes250100000000000000
     
    Hard
    Durometer 80A151683771800.1%BlackYes251000000000000
    Durometer 80A151683771800.1%BlackYes250100000000000000
    Durometer 94A151682771800.1%BlackYes251000000000000
    Durometer 94A151682771800.1%BlackYes250100000000000000
    Durometer 75D151682771800.1%BlackYes2510000000000000
    Durometer 75D151682771800.1%BlackYes2501000000000000000
    Durometer 85D521.5771800.1%GreenYes80500000000000
    Durometer 85D521.5771800.1%GreenYes32020000000000000
     

    Quick-Set Casting Compounds

    Image of ProductInUse. Front orientation. Casting Compounds.
    Create detailed rubber shapes that are ready to use in fifteen minutes or less. Unlike traditional casting compounds, which can take up to 24 hours to set, these compounds harden after two minutes, and can be removed from molds within fifteen. Use them to make your own prototypes, molds, and linings.
    Casting Compounds
    Image of ProductInUse. Front orientation. Casting Compounds. Casting Compounds, Acrylic Plastic.

    Acrylic Plastic

    Image of ProductInUse. Front orientation. Casting Compounds. Casting Compounds, Silicone Rubber.

    Silicone Rubber

    Soft—Soft silicone rubber is more flexible and easier to peel off of molds than medium silicone rubber, especially when making complex shapes.
    Medium—Medium silicone rubber holds its shape better than soft silicone rubber, so small ridges and channels are less likely to collapse or deform while making molds.
    69° F Cure Temperature—Combine acrylic plastic or silicone rubber with a 69° cure temperature compounds in different ratios to adjust the consistency from thin to thick. Thin mixtures are easier to pour and better for filling small crevices.
    70° F Cure Temperature—Silicone rubber with a 70° cure temperature compounds are a putty that you can mix with your hands and form into any shape. Press an object into these compounds to create a mold for casting duplicates. They do not shrink as they dry, so textures and other fine details are captured faithfully.
    Hardness
    Time to Harden,
    min.
    Time to
    Cure, min.
    Time to Demold,
    min.
    Cure Temp.,
    ° F
    Max. Temp.,
    ° F
    Shrinkage
    Color
    Mixing
    Req.
    Volume,
    cu. in.
    Wt.,
    lb.
    Each
    Acrylic Plastic
     
    Hard
    Durometer 85D21111693500%Light BlueYes20100000000000000
    Durometer 85D21111693500%Light BlueYes6230000000000000
     
    Silicone Rubber
     
    Soft
    Durometer 27A21515706500%Light BlueYes40.2000000000000
    Durometer 27A21515706500%Light BlueYes462.20000000000000
    Durometer 30A21010692500%GreenYes80.5000000000000
    Durometer 30A21010692500%GreenYes231.10000000000000
     
    Medium
    Durometer 40A21515706000%GreenYes40.2000000000000
    Durometer 40A21515706000%GreenYes462.20000000000000
    Durometer 50A21010692500%Light BlueYes130.80000000000000
    Durometer 50A21010692500%Light BlueYes321.750000000000000
     
    Casting Compounds with Dispensing Gun
    Image of ProductInUse. Front orientation. Casting Compounds. Casting Compounds with Dispensing Gun.
    Compounds with dispensing gun come ready to use—no mixing required—and won’t leave a mess.
    Medium—Medium silicone rubber holds its shape better than soft silicone rubber, so small ridges and channels are less likely to collapse or deform while making molds.
    Soft—Soft silicone rubber is more flexible and easier to peel off of molds than medium silicone rubber, especially when making complex shapes.
    69° F Cure Temperature—Combine acrylic plastic or silicone rubber with a 69° cure temperature compounds in different ratios to adjust the consistency from thin to thick. Thin mixtures are easier to pour and better for filling small crevices.
    Hardness
    Rating
    Hardness
    Time to Harden,
    min.
    Time to
    Cure
    Time to
    Demold
    Cure Temp.,
    ° F
    Max. Temp.,
    ° F
    Shrinkage
    Color
    Mixing
    Req.
    Wt.,
    lb.
    Includes
    Each
    Silicone Rubber
    SoftDurometer 30A210 min.10 min.692500%GreenNo4Carrying Case, Six each 3 cu. in. Disposable Cartridges00000000000000
    Soft
    Medium
    Durometer 30A
    Durometer 55A
    210 min.
    6 min.
    10 min.
    6 min.
    692500%Green
    Orange
    No4Carrying Case, Six each 3 cu. in. Disposable Cartridges0000000000000
    MediumDurometer 55A26 min.6 min.692500%OrangeNo415 Disposable Nozzles, 2 Snap-On Nozzles, Carrying Case, Six each 3 cu. in. Disposable Cartridges0000000000000
     
    Replacements for Casting Compounds

    Food and Beverage Casting Compounds

    Image of ProductInUse. Front orientation. Casting Compounds.
    These food-grade compounds comply with FDA 21 CFR. They are easy-to-mix two-part compounds that capture intricate details when creating prototypes, molds, and linings.
    View our selection of release agents.
    Hardness
    Time to Harden,
    min.
    Time to
    Cure, hr.
    Time to
    Demold, hr.
    Cure Temp.,
    ° F
    Max. Temp.,
    ° F
    Shrinkage
    Color
    Mixing
    Req.
    Food Industry Std.
    Volume,
    cu. in.
    Wt.,
    lb.
    Each
    Urethane Rubber
     
    Medium
    Durometer 40A81221201805%WhiteYesFDA Compliant 21 CFR 175.105, FDA Compliant 21 CFR 177.16802510000000000000
    Durometer 60A81221201805%WhiteYesFDA Compliant 21 CFR 175.105, FDA Compliant 21 CFR 177.1680251000000000000
    Durometer 60A81221201805%WhiteYesFDA Compliant 21 CFR 175.105, FDA Compliant 21 CFR 177.1680250100000000000000
     
    Hard
    Durometer 78A41221201805%WhiteYesFDA Compliant 21 CFR 175.105, FDA Compliant 21 CFR 177.1680251000000000000
    Durometer 88A41221201805%WhiteYesFDA Compliant 21 CFR 175.105, FDA Compliant 21 CFR 177.1680251000000000000
    Durometer 88A41221201805%WhiteYesFDA Compliant 21 CFR 175.105, FDA Compliant 21 CFR 177.1680250100000000000000
    Durometer 75D51221201805%WhiteYesFDA Compliant 21 CFR 175.105, FDA Compliant 21 CFR 177.1680251000000000000
     

    Long-Life Casting Compounds

    Image of ProductInUse. Front orientation. Casting Compounds.
    Create rubber molds that retain their shape for decades—they won’t soften, degrade, or warp, so you can continue to replicate intricate parts. Because these compounds don’t shrink as they cure, they are more accurate and predictable than other compounds.
    View our selection of release agents.
    Hardness
    Time to Harden,
    min.
    Time to
    Cure, hr.
    Time to
    Demold, hr.
    Cure Temp.,
    ° F
    Max. Temp.,
    ° F
    Shrinkage
    Color
    Mixing
    Req.
    Volume,
    cu. in.
    Wt.,
    lb.
    Each
    Urethane Rubber
     
    Medium
    Durometer 45A602416772000%YellowYes582.200000000000000
     

    High-Temperature Casting Compounds

    Image of ProductInUse. Front orientation. Casting Compounds.
    Capture intricate details when creating prototypes, molds, and linings with these easy-to-mix compounds.
    View our selection of release agents.
    Aluminum Oxide—Aluminum oxide is high strength.
    High-Purity Ceramic Alumina—High-purity ceramic alumina resists shrinking in casts, has a low level of contamination, and is a strong electrical insulator. It’s often used for constructing furnaces and handling liquid metal.
    Silicon Carbide—Silicon carbide has a high heat transfer rate, making it ideal for use in metal casting molds. It has the added benefit of excellent erosion and oxidation resistance.
    Silica—Silica withstands rapid changes in temperature without cracking and has a low rate of thermal expansion.
    Zirconium Oxide—Zirconium oxide is often used in metal handling applications. In addition to its high temperature resistance, it’s also chemical resistant.
    Time to Harden,
    min.
    Time to
    Cure, hr.
    Time to
    Demold, hr.
    Cure Temp.,
    ° F
    Max. Temp.,
    ° F
    Shrinkage
    Color
    Mixing
    Req.
    Volume,
    cu. in.
    Wt.,
    lb.
    Each
    Aluminum Oxide
    202424773,0001%WhiteYes3840000000000000
    202424773,0001%WhiteYes96100000000000000
     
    High-Purity Ceramic Alumina
    252424773,2001.3%WhiteYes98100000000000000
     
    Silicon Carbide
    202424772,7001.5%BlackYes474000000000000
    202424772,7001.5%BlackYes119100000000000000
     
    Silica
    202424772,7001.3%WhiteYes624000000000000
    202424772,7001.3%WhiteYes155100000000000000
     
    Zirconium Oxide
    202424774,0001%BeigeYes2740000000000000
    202424774,0001%BeigeYes69100000000000000
     

    See-Through Casting Compounds

    Image of ProductInUse. Front orientation. Casting Compounds.
    Create transparent molds to monitor fill levels, differentiate parts at a glance, and avoid damaging parts when cutting the mold away. These casting compounds are two parts that activate when mixed.
    View our selection of release agents.
    Urethane Rubber—Urethane rubber compounds are tougher than silicone rubber compounds, so your molds will last longer. Although not required, curing urethane rubber molds inside a vacuum chamber improves their clarity. By removing trapped air bubbles, the chamber prevents the finished mold from looking speckled.
    Silicone Rubber—Silicone rubber compounds handle higher temperatures than urethane rubber compounds—up to 570° F. Silicone rubber also cures faster than urethane rubber, and it won't shrink as it cures, which means you won't need to guess at the final size of your mold. Because silicone rubber compounds trap air bubbles when mixed, they must be cured inside a vacuum chamber. The chamber removes the trapped air bubbles, strengthens the mold, and improves its clarity.
    Hardness
    Time to Harden,
    min.
    Time to
    Cure
    Time to
    Demold
    Cure
    Temp.
    Max. Temp.,
    ° F
    Shrinkage
    Color
    Mixing
    Req.
    Volume,
    cu. in.
    Wt.,
    lb.
    Each
    Urethane Rubber
     
    Medium
    Durometer 40A6144 hr.2 hr.77° F1800.8%ClearYes25100000000000000
    Durometer 60A6144 hr.2 hr.77° F1800.8%ClearYes2510000000000000
     
    Hard
    Durometer 80A6144 hr.2 hr.77° F1800.8%ClearYes251000000000000
    Durometer 75D6144 hr.2 hr.77° F1800.8%ClearYes251000000000000
     
    Silicone Rubber
     
    Medium
    Durometer 40A101.5 hr.
    30 min.
    1.5 hr.
    30 min.
    77° F
    120° F
    5700%BlueYes572.20000000000000
     

    Chemical-Resistant Casting Compounds

    Image of ProductInUse. Front orientation. Casting Compounds.
    This silicone rubber compound offers good resistance to acids, oils and salt water. Use it to capture intricate details when creating prototypes, molds, and linings with this easy-to-mix two-part compound. It is a durable and tear-resistant silicone rubber, which easily demolds.
    View our selection of release agents.
    Hardness
    Time to Harden,
    min.
    Time to
    Cure, hr.
    Time to
    Demold, hr.
    Cure Temp.,
    ° F
    Max. Temp.,
    ° F
    Shrinkage
    Color
    Mixing
    Req.
    Volume,
    cu. in.
    Wt.,
    lb.
    Each
    Silicone Rubber
     
    Medium
    Durometer 65A1202416784000%BlueYes2210000000000000
    Durometer 65A1202416784000%BlueYes242110000000000000
     

    Nonporous Ceramic Alumina Powder

    Image of Product. Front orientation. Ceramic. Nonporous Ceramic Alumina Powder.
    Ceramic alumina withstands higher temperatures than any other ceramic and is highly chemical resistant. This powder is high purity, so it’s inert even at high temperatures. Because alumina is ultra hard, it can be used in applications that require superior strength. It is also wear resistant, making it suitable for high-wear applications. Both thermally and electrically insulating, alumina can also be used in high-temperature and high-power electrical applications. Finished products made from alumina powder are nonporous, so they will seal out air and gas. Powder is often used in casting processes. Add it to slurries to create custom parts and tools such as crucibles, cutting tools, and laboratory ware. Alumina powder also is often used as a friction material, such as in brake linings.
    Choose a particle size based on the application of your finished piece. Finer powders can be processed into finished pieces that will be harder, stronger, and more wear-resistant than those made with coarse grains. They may also have a finer finish. Parts made with coarse grain powders can be processed into pieces that are more porous and thermally shock-resistant than pieces made with finer grains. Mixing sizes can combine these properties.
    99.3% Aluminum Oxide—99.3% aluminum oxide powder is slightly more reactive than 99.5% aluminum oxide powder because it’s less pure. It’s commonly used for polishing, lapping, and buffing.
    99.5% Aluminum Oxide—99.5% aluminum oxide powder is more pure than 99.3% aluminum oxide, so it’s less reactive. It’s often used in the ceramic, glass, and foundry industries.
    Material Certificate Icon
    Certificates with a traceable lot number are available for these products. Download certificates from ORDER HISTORY after your order ships.
    5 lb. Pail
    10 lb. Pail
    25 lb. Pail
    Particle
    Size, μm
    Particle
    Mesh Size
    Fabrication
    Color
    Temp. Range,
    ° F
    Each
    Each
    Each
    99.3% Aluminum Oxide
     
    Fine Grit
    4 to 7Heat TreatedWhite0 to 3,630000000000000000000000000000000000000000000
    70Heat TreatedWhite0 to 3,630000000000000000000000000000000000000000
     
    99.5% Aluminum Oxide
     
    Fine Grit
    45325White0 to 3,63000000000000000000000000000———0
    150100White0 to 3,63000000000000000000000000000———0
     
    Medium Grit
    30048White0 to 3,63000000000000000000000000000———0
    300 to 60025-40White0 to 3,63000000000000000000000000000———0
     
    Coarse Grit
    600 to 1,40012-25White0 to 3,63000000000000000000000000000———0
     

    Machinable Casting Compounds

    Image of ProductInUse. Front orientation. Casting Compounds.
    After these compounds cure, they're tough enough to be machined. They are easy-to-mix two-part compounds that capture intricate details when creating prototypes, molds, and linings.
    View our selection of release agents.
    Hardness
    Time to Harden,
    min.
    Time to
    Cure, hr.
    Time to Demold,
    min.
    Cure Temp.,
    ° F
    Max. Temp.,
    ° F
    Shrinkage
    Color
    Mixing
    Req.
    Volume,
    cu. in.
    Wt.,
    lb.
    Each
    Aluminum-Filled Urethane
     
    Hard
    Durometer 84D616890721301.5%GrayYes72 1/25000000000000000
    Durometer 84D616890721301.5%GrayYes2902000000000000000
     

    Fine-Detail Casting Compounds

    Image of ProductInUse. Front orientation. Casting Compounds.
    Replicate even the most complex details when creating prototypes, molds, and linings. This easy-to-mix two-part compound flows smoothly into crevices. Cast up to 1/2" in thickness at a time.
    View our selection of release agents.
    Hardness
    Time to Harden,
    min.
    Time to
    Cure, hr.
    Time to
    Demold, hr.
    Cure Temp.,
    ° F
    Max. Temp.,
    ° F
    Shrinkage
    Color
    Mixing
    Req.
    Volume,
    cu. in.
    Wt.,
    lb.
    Each
    Urethane Rubber
     
    Hard
    Durometer 80D201684721340.3%WhiteYes4920000000000000
    Durometer 80D201684721340.3%WhiteYes3951600000000000000
     

    Thermal-Shock-Resistant Mullite Ceramic Powder

    Image of Product. Front orientation. Ceramic. Thermal-Shock-Resistant Mullite Ceramic Powder.
    Mullite can withstand very high temperatures and will not deform or crack when repeatedly exposed to temperature fluctuations. Add it to slurries to create crucibles, ladles, and other parts by casting it. Mullite powder is common in furnaces, heaters, thermocouples, electrical insulation, and glass- and steel-industry refractories. When exposed to chemicals that are used to make steel, such as acid, it will not corrode. Due to fused fabrication, it has higher purity and more uniformity which leads to better thermal shock resistance and low thermal expansion.
    Choose a particle size based on the application of your finished piece. Finer powders can be processed into finished pieces that will be harder, stronger, and more wear-resistant than those made with coarse grains. They may also have a finer finish. Parts made with coarse grain powders can be processed into pieces that are more porous and thermally shock-resistant than pieces made with finer grains. Mixing sizes can combine these properties.
    Material Certificate Icon
    Certificates with a traceable lot number are available for these products. Download certificates from ORDER HISTORY after your order ships.
    Temp.,
    ° F
    5 lb. Pail
    10 lb. Pail
    25 lb. Pail
    Particle
    Size, μm
    Particle
    Mesh Size
    Color
    Min.
    Max.
    Performance
    Dielectric
    Strength
    Porosity
    Each
    Each
    Each
     
    Fine Grit
    0 to 45325White03,000Thermal Shock ResistantNot Rated6%000000000000000000000000000000000000000
     
    Medium Grit
    0 to 42540White03,000Thermal Shock ResistantNot Rated6%000000000000———0———0
    212 to 50035-70White03,000Thermal Shock ResistantNot Rated6%000000000000———0———0
     
    Coarse Grit
    500 to 2,00010-35White03,000Thermal Shock ResistantNot Rated6%000000000000———0———0
    2,000 to 2,3608-10White03,000Thermal Shock ResistantNot Rated6%000000000000———0———0
     

    Easy-Form Casting Compounds

    Image of ProductInUse. Front orientation. Casting Compounds.
    Combine the liquid components to form a putty that can be molded into or around any shape. Use these compounds to capture intricate details when creating prototypes, molds, and linings.
    View our selection of release agents.
    Hardness
    Time to Harden,
    min.
    Time to
    Cure, hr.
    Time to
    Demold, hr.
    Cure Temp.,
    ° F
    Max. Temp.,
    ° F
    Shrinkage
    Color
    Mixing
    Req.
    Volume,
    cu. in.
    Wt.,
    lb.
    Each
    Urethane Rubber
     
    Medium
    Durometer 60A15168375180Not RatedDark GrayYes2510000000000000
    Durometer 60A15168375180Not RatedDark GrayYes10040000000000000
    Durometer 60D15168375180Not RatedDark GrayYes2510000000000000
    Durometer 60D15168375180Not RatedDark GrayYes100400000000000000
     
    Hard
    Durometer 85A15168375180Not RatedBlackYes251000000000000
    Durometer 85A15168375180Not RatedBlackYes10040000000000000
     

    High-Purity Acid-Resistant Green Silicon Carbide Powder

    Image of Product. Front orientation. Ceramic. High-Purity Acid-Resistant Green Silicon Carbide Powder.
    Highly pure, this green silicon carbide powder is consistent between batches and bonds better than less pure powders, yielding less cracking and wear in finished products. Products made from green silicon carbide are tough, have excellent corrosion resistance, and good thermal shock resistance. They’re often used in technical ceramics applications such as mechanical seals, thread guides, and heat exchangers.
    Silicon carbide is nearly chemically inert, meaning it won’t corrode in chemical processing environments. It’s good for use in rubbing parts such as bearings and bushings because it dissipates heat well and doesn’t warp from temperature swings. Mullite, however, is often preferred for applications that include rapid temperature swings. This silicon carbide operates in heat up to 3600° F, so it’s commonly used in furnaces and refractories. It’s so hard that it’s often used for body armor and abrasion processes such as pressure blasting. It’s more brittle than other ceramics, though, and is best used with low weight loads at slow to moderate speeds. This powder meets tightly graded, narrow size distribution JIS tolerance standards.
    Choose a particle size based on the application of your finished piece. Finer powders can be processed into finished pieces that will be harder, stronger, and more wear-resistant than those made with coarse grains. They may also have a finer finish. Parts made with coarse grain powders can be processed into pieces that are more porous and thermally shock-resistant than pieces made with finer grains. Mixing sizes can combine these properties.
    Temp.,
    ° F
    4.4 lb. Pail
    Particle
    Size, μm
    Color
    Min.
    Max.
    Performance
    Hardness
    JIS
    Specification
    Each
     
    Fine Grit
    2Green03,600Abrasion Resistant, Acid Resistant, Chemical Resistant, Semi-ConductiveMohs 9JIS R 6001000000000000000
    3Green03,600Abrasion Resistant, Acid Resistant, Chemical Resistant, Semi-ConductiveMohs 9JIS R 600100000000000000
    4Green03,600Abrasion Resistant, Acid Resistant, Chemical Resistant, Semi-ConductiveMohs 9JIS R 60010000000000000
    6.7Green03,600Abrasion Resistant, Acid Resistant, Chemical Resistant, Semi-ConductiveMohs 9JIS R 60010000000000000
    9.5Green03,600Abrasion Resistant, Acid Resistant, Chemical Resistant, Semi-ConductiveMohs 9JIS R 60010000000000000
    11.5Green03,600Abrasion Resistant, Acid Resistant, Chemical Resistant, Semi-ConductiveMohs 9JIS R 60010000000000000
    14Green03,600Abrasion Resistant, Acid Resistant, Chemical Resistant, Semi-ConductiveMohs 9JIS R 60010000000000000
    30Green03,600Abrasion Resistant, Acid Resistant, Chemical Resistant, Semi-ConductiveMohs 9JIS R 60010000000000000
     
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