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PTU0440 Katanax® Platinum Crucibles & Molds

Catalog No.PTU0440
SizeCustomized
MaterialPtAu5 (95% Pt and 5% Au)
PurityPt ≥ 99.95%

TFM specializes in providing premium Katanax® Platinum Crucibles and Molds. We are proud to offer high-quality platinum crucibles and molds at competitive pricing, ensuring both value and performance for our customers.

Katanax® Platinum Crucibles & Molds Description

Platinum stands out as the least reactive metal, showcasing an extraordinary resistance to corrosion, even when exposed to high temperatures. Thanks to these exceptional properties, Katanax® Platinum Crucibles & Molds have become the top choice for standard laboratory equipment.

Katanax® Platinum Crucibles & Molds Specification

  • Size: Customizable according to your needs.
  • Material Composition: PtAu5 alloy (95% Platinum, 5% Gold)
  • Purity: Platinum content of at least 99.95%

We offer a standard selection of products, and custom-made items can be tailored to meet specific requirements. Feel free to reach out for any additional information or inquiries. All weights are provided in grams, and dimensions are measured in millimeters.

Katanax® Platinum Crucibles

Code

Capacity
(ml)

B

A1

Weight

PT0801

30

32

40.5

26

PT0802

30

32

40.5

30

PT0803

30

32

40.5

PT0804

53

16

Katanax® Platinum Molds

Code

D2

A2

A1

B

C

Weight

PT0805

30

31

39

6

0.6

18

PT0806

30

31

39

6

1

30

PT0807

32

33

41

6

0.6

21

PT0808

32

33

41

6

1

36

PT0809

35

36

44

6

0.6

25

PT0810

35

36

44

6

0.9

48

PT0811

40

42

49

6

0.6

34

PT0812

40

42

49

6

0.9

48

Katanax® Platinum Crucibles & Molds Packaging

Our Katanax® Platinum Crucibles & Molds are clearly tagged and labeled externally to ensure efficient identification and quality control. Great care is taken to avoid any damage which might be caused during storage or transportation.

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FAQ

A crucible is a heat-resistant container designed to hold materials during high-temperature processes such as melting, alloying, or chemical reactions. They’re essential in metal casting, laboratory analyses, and even certain thin-film deposition systems.

Crucibles are usually made from ceramics like alumina, zirconia, silicon carbide, or magnesia due to their high melting points and chemical inertness. Graphite and metal (e.g., steel) crucibles are also used for lower temperature applications.

The ideal crucible depends on the temperature and chemical nature of the process. Always select a crucible material with a melting point significantly higher than that of the material being processed and one that is chemically compatible to prevent reactions or contamination.

Always wear appropriate personal protective equipment (PPE) such as heat-resistant gloves, face shields, and aprons. Use proper tongs for handling, ensure adequate ventilation, and follow established protocols to avoid thermal shock and accidental spills.

Prior to use, crucibles are usually “dried” or pre-fired to remove moisture and avoid thermal shock. Some applications recommend a seasoning or “dressing” process to improve performance and extend the crucible’s lifespan.

Crucibles should be stored in a dry, well-ventilated area on wood shelving or other non-abrasive supports—not directly on concrete or metal floors—to avoid damage. They should also not be nested together to prevent chipping or cracking.

Yes, most crucibles are designed for multiple uses if they’re properly maintained and cleaned. However, frequent use at extreme temperatures or for reactive materials may eventually degrade them, in which case replacement is necessary.

Common challenges include cracking from rapid temperature changes (thermal shock), contamination from residual materials, and wear or erosion from high-temperature exposure. Following proper handling and maintenance guidelines helps mitigate these issues.

Allow the crucible to cool completely, then remove any residues with a suitable scraper or chemical cleaner if recommended. Some crucibles benefit from an acid wash to remove stubborn deposits—but always follow the manufacturer’s guidelines to prevent damage.

Ensure the crucible is pre-heated and free of moisture. Load the material slowly and evenly using appropriate tools to prevent splashing or uneven heating. For heavy or large pieces, use tongs or specialized equipment to maintain safety and consistency.

In metal casting, crucibles are used to melt and hold metals for forming alloys or casting components. In evaporation processes (e.g., thin-film deposition), they heat materials to their vaporization point, allowing controlled deposition onto substrates.

Their ability to withstand extreme temperatures and resist chemical reactions makes crucibles indispensable. They enable precise control over high-temperature processes in metallurgy, materials science, and chemical analysis, ensuring product quality and process reliability.

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