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StainlessSteel foil, 0.025mm (0.001in) thick, Type 304
StainlessSteel foil, 0.025mm (0.001in) thick, Type 304. Group: Alloys.
StainlessSteel foil, 0.05mm (0.002in) thick, Type 304
StainlessSteel foil, 0.05mm (0.002in) thick, Type 304. Group: Alloys.
StainlessSteel foil, 0.1mm (0.004in) thick, Type 304
StainlessSteel foil, 0.1mm (0.004in) thick, Type 304. Group: Alloys.
StainlessSteel foil, 0.25mm (0.01in) thick, Type 304
StainlessSteel foil, 0.25mm (0.01in) thick, Type 304. Group: Alloys.
StainlessSteel foil, 0.2mm (0.008in) thick, Type 304
StainlessSteel foil, 0.2mm (0.008in) thick, Type 304. Group: Alloys.
StainlessSteel foil, 0.5mm (0.02in) thick, Type 304
StainlessSteel foil, 0.5mm (0.02in) thick, Type 304. Group: Alloys.
StainlessSteel gauze, 100 mesh woven from 0.025mm (0.001in) dia wire, Type 304
StainlessSteel gauze, 100 mesh woven from 0.025mm (0.001in) dia wire, Type 304. Group: Alloys.
StainlessSteel gauze, 100 mesh woven from 0.11mm (0.0045in) dia wire, Type 316
StainlessSteel gauze, 100 mesh woven from 0.11mm (0.0045in) dia wire, Type 316. Group: Alloys.
StainlessSteel gauze, 150 mesh woven from 0.066mm (0.0026in) dia wire, Type 304
StainlessSteel gauze, 150 mesh woven from 0.066mm (0.0026in) dia wire, Type 304. Group: Alloys.
StainlessSteel gauze, 200 mesh woven from 0.05mm (0.002in) dia wire, Type 304
StainlessSteel gauze, 200 mesh woven from 0.05mm (0.002in) dia wire, Type 304. Group: Alloys.
StainlessSteel gauze, 200 mesh woven from 0.05mm (0.002in) dia wire, Type 316
StainlessSteel gauze, 200 mesh woven from 0.05mm (0.002in) dia wire, Type 316. Group: Alloys.
StainlessSteel gauze, 20 mesh woven from 0.102mm (0.004in) dia wire, Type 316
StainlessSteel gauze, 20 mesh woven from 0.102mm (0.004in) dia wire, Type 316. Group: Alloys.
StainlessSteel gauze, 20 mesh woven from 0.382mm (0.015in) dia wire, Type 304
StainlessSteel gauze, 20 mesh woven from 0.382mm (0.015in) dia wire, Type 304. Group: Alloys.
StainlessSteel gauze, 325 mesh woven from 0.036mm (0.0014in) dia wire, Type 316
StainlessSteel gauze, 325 mesh woven from 0.036mm (0.0014in) dia wire, Type 316. Group: Alloys.
StainlessSteel gauze, 400 mesh woven from 0.028mm (0.0011in) dia wire, twilled weave, Type 304
StainlessSteel gauze, 400 mesh woven from 0.028mm (0.0011in) dia wire, twilled weave, Type 304. Group: Alloys.
StainlessSteel gauze, 40 mesh woven from 0.25mm (0.01in) dia wire, Type 304
StainlessSteel gauze, 40 mesh woven from 0.25mm (0.01in) dia wire, Type 304. Group: Alloys.
StainlessSteel gauze, 500 mesh woven from 0.02mm (0.0009in) dia wire, Type 304
StainlessSteel gauze, 500 mesh woven from 0.02mm (0.0009in) dia wire, Type 304. Group: Alloys.
StainlessSteel gauze, 80 mesh woven from 0.127mm (0.005in) dia wire, Type 304
StainlessSteel gauze, 80 mesh woven from 0.127mm (0.005in) dia wire, Type 304. Group: Alloys.
StainlessSteel gauze, 80 mesh woven from 0.14mm (0.0055in) dia wire, Type 316
StainlessSteel gauze, 80 mesh woven from 0.14mm (0.0055in) dia wire, Type 316. Group: Alloys.
StainlessSteel Nanoparticles
Stainlesssteel nanoparticles are nanoscale particles composed of stainlesssteel, which is an alloy of iron, chromium, and other elements such as nickel, molybdenum, or manganese. Uses: Stainlesssteel nanoparticles have garnered attention in the biomedical field. they can be used in drug delivery systems, tissue engineering, or as antibacterial agents. surface modifications can be employed to tailor their biocompatibility and interactions with biological systems. Group: Nanoparticles & nanopowders. Alternative Names: Martensitic steel. CAS No. 65997-19-5. Molecular formula: Fe/Cr/Ni. Appearance: Gray nanopowder. Catalog: ACM65997195-1.
StainlessSteel Nanoparticles
StainlessSteel Nanoparticles. Group: Metal nano dispersion. Alternative Names: Martensitic steel. CAS No. 65997-19-5. Mole weight: Fe/Cr/Ni. 99.9%.
For etching duplex and 300 series stainlesssteels. Group: Etchants.
Adler Etchant
For etching 300 series stainlesssteel and Hastelloy superalloys. Group: Etchants.
Ammonium cerium(IV) sulfate dihydrate
Ammonium cerium(IV) sulfate dihydrate. Uses: Cerium ammonium sulfate can be used in preparation of cerium iv oxidimetric solutions,it is also applied as industrial antioxidant and etching agent for the integrated circuit, is also raw material for polishing powder, special glass and ceramics. in steels, cerium degasifies and can help reduce sulfides and oxides, and it is a precipitation hardening agent in stainlesssteel. cerium alloys are used in permanent magnets, and in tungsten electrodes for gas tungsten arc welding. it is also used in carbon-arc lighting, especially in the motion picture industry. Group: Electrolytes. Alternative Names: Cerium(IV) ammonium sulfate dihydrate. CAS No. 10378-47-9. Molecular formula: 632.55. Mole weight: CeH20N4O18S4. 99%+.
Ammonium cerium(IV) sulfate dihydrate
Cerium Ammonium Sulfate can be used in preparation of cerium IV oxidimetric solutions,it is also applied as industrial antioxidant and etching agent for the integrated circuit, is also raw material for polishing powder, special glass and ceramics. In steels, Cerium degasifies and can help reduce Sulfides and Oxides, and it is a precipitation hardening agent in stainlesssteel. Cerium alloys are used in permanent magnets, and in Tungsten electrodes for gas Tungsten arc welding. It is also used in carbon-arc lighting, especially in the motion picture industry. Group: Metal & ceramic materials. Alternative Names: Cerium(IV) ammonium sulfate dihydrate. CAS No. 10378-47-9. Molecular formula: CeH20N4O18S4. Mole weight: 632.55. Appearance: Yellow crystalline powder. Purity: 99%+. Catalog: ACM10378479-2.
Bis (methyl-η 5-cyclopentadienyl) methoxymethylzirconium
Atomic number of base material: 40 Zirconium. Uses: Precursors packaged for depositions systems. Group: Vapor deposition precursors. Alternative Names: ZRCMMM, ZrD-CO4. Pack Sizes: 10 g in stainlesssteel cylinder,Packaged in stainlesssteel cylinders compatible with conventional deposition systems. Precursors may be used in liquid injection systems as dilute solutions and in combination with a variety of other sources to deposit mixed oxides. Molecular formula: 295.53. Mole weight: Zr(CH3C5H4)2CH3OCH3. C[C]1[C][C][C][C]1. C[C]2[C][C][C][C]2. C[Zr]OC. 1S/2C6H7. CH3O. CH3. Zr/c2*1-6-4-2-3-5-6; 1-2; ; /h2*2-5H, 1H3; 1H3; 1H3; /q; ; -1; ; +1, LFGIFPGCOXPKMG-UHFFFAOYSA-N. LFGIFPGCOXPKMG-UHFFFAOYSA-N.
Chromium(0) hexacarbonyl
Chromium(0) hexacarbonyl. Uses: Chromiumhexacarbonyl is a volatile; air stable precursor of chromium(0); widely used for thin film deposition - ald and cvd. the thin films can be grown at room temperature and low pressure by laser cvd. Group: Vapor deposition precursors. Alternative Names: Chromium(0) hexacarbonyl, Chromiumhexacarbonyl, Hexacarbonylchromium(0). CAS No. 13007-92-6. Pack Sizes: 25 g in stainlesssteel cylinder. Product ID: carbon monoxide; chromium. Molecular formula: 220.06. Mole weight: Cr(CO)6. [Cr]. [C-]#[O+]. [C-]#[O+]. [C-]#[O+]. [C-]#[O+]. [C-]#[O+]. [C-]#[O+]. 1S/6CO.Cr/c6*1-2;,KOTQLLUQLXWWDK-UHFFFAOYSA-N. KOTQLLUQLXWWDK-UHFFFAOYSA-N.
Dichromate Etchant
Detection of free iron on the surface of austenitic stainlesssteels. Group: Etchants.
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