
Titanium Crucible
product name: Pure Titanium Crucible
Material: 99.95% Pure Titanium Crucible
Density: 4.543
Melting Point: 1668℃
Boiling Point: 3560℃
Packing: inner vacuum packing, outer plywood box
Delivery: FedEx, TNT, DHL, and EMS shipping
We can offer private customization
Product Introduction
Titanium crucibles are containers made of titanium specifically for melting and holding materials at high temperatures. they are favored for their strength, corrosion resistance, and ability to withstand high temperatures, making them suitable for a variety of applications such as melting metals, chemical reactions, and other processes requiring high temperatures and a sealed container.
Titanium crucibles are commonly used in the production of high-quality alloys, such as those used in the aerospace, medical, and chemical industries. They are also used in the production of semiconductors and other electronics.
They come in various shapes such as round, conical, square, rectangular, cylindrical, and boat-shaped.

Descriptions of the crucibles
A crucible is a cup-shaped piece of laboratory equipment used to contain chemical compounds when heating them to very high temperatures. The receptacle is usually made of porcelain or an inert metal. One of the earliest uses of platinum was to make crucibles.
Our titanium crucibles are crafted to various shapes and sizes to meet your needs, including rectangular, cylindrical, squared, and other specially shaped crucibles. The volume range we offer is from 1 to 2000ml, and we use only the best quality titanium for high performance. Our titanium crucibles exhibit excellent corrosion resistance, thus working well in extreme environments.
Titanium Crucible Material Chemical Composition
|
Type |
Element (%) |
||||||||||
|
N |
C |
H |
Fe |
O |
Al |
V |
Mo |
Ni 镍 |
Pd 钯 |
Ti 钛 |
|
|
GR.1 |
≤0.03 |
≤0.08 |
≤0.015 |
≤0.2 |
≤0.18 |
Residual |
|||||
|
GR.2 |
≤0.03 |
≤0.08 |
≤0.015 |
≤0.3 |
≤0.25 |
Residual |
|||||
|
GR.3 |
≤0.05 |
≤0.08 |
≤0.015 |
≤0.3 |
≤0.35 |
Residual |
|||||
|
GR.7 |
≤0.03 |
≤0.08 |
≤0.015 |
≤0.3 |
≤0.25 |
0.12-0.25 |
Residual |
||||
|
GR.9 |
≤0.02 |
≤0.08 |
≤0.015 |
≤0.25 |
≤0.15 |
2.5-3.3 |
2.0-3.0 |
Residual |
|||
|
GR.12 |
≤0.03 |
≤0.08 |
≤0.015 |
≤0.3 |
≤0.25 |
0.2-0.4 |
0.6-0.9 |
Residual |
|||
Titanium crucible specifications
|
Diameter (mm) |
Wall Thickness (mm) |
Height (mm) |
|
30 ~ 50 |
2 ~ 10 |
30 ~ 500 |
|
50 ~ 100 |
3 ~ 15 |
|
|
100 ~ 150 |
3 ~ 15 |
|
|
150 ~ 200 |
5 ~ 20 |
|
|
200 ~ 300 |
8 ~ 20 |
|
|
300 ~ 400 |
8 ~ 30 |
|
|
400 ~ 450 |
8 ~ 30 |
|
|
450 ~ 500 |
8 ~ 30 |
Raw Material: Select high-purity titanium powder.
Powder Metallurgy: Mix with binder and compact into a green billet.
Sintering: High-temperature sintering to remove the binder and increase density.
Heat Treatment: Anneal to relieve stress and enhance properties.
Surface Treatment: Clean and polish the surface.
Titanium Crucible Surface Finish
Depending on the intended applications, titanium crucibles have three main surface finishes as follows:
Black: The surface is "as swaged" or "as drawn", retaining a coating of processing lubricants and oxides.
Cleaned: The surface is chemically cleaned to remove all lubricants and oxides.
Ground: The surface is centerless to remove all coating and achieve precise dimensions control.

Titanium Crucible Safety Precautions For Use
After use, store the titanium crucible in a dry place to prevent rainwater intrusion. Before use, gradually heat it to 500°C.
Add materials according to the crucible's capacity, avoiding overpacking to prevent cracking from the thermal expansion of the metal.
When removing the metal solution, use a scoop rather than calipers. If calipers or other tools are necessary, ensure they match the shape of the crucible to prevent localized pressure that could shorten its lifespan.
The crucible's service life depends on usage. Avoid direct exposure to an oxidizing flame, as this can cause oxidation of the crucible material, leading to premature wear.
Our Titanium Crucible Advantages
1. Commitment to Quality
We strive to select high-quality titanium materials to ensure purity and implement rigorous quality control and inspections throughout the manufacturing process to meet your unique standards.
2.strict inspection
We are committed to producing high-quality titanium crucibles, subjecting each manufacturing process to rigorous inspections to ensure that our products meet specific industry needs and provide reliable and high-performance solutions for various applications.
3.Customized Options for Diverse Requirements
Regardless of crucible size or shape, our comprehensive range of custom solutions ensures that titanium crucibles can be tailored to specific applications, delivering premium performance.
4. Expert and Prompt Assistance
Our experienced team works closely with our customers to provide expert assistance and guidance on your questions and needs within 24 hours.
Applications of Titanium Crucible

Metallurgy
Titanium crucibles are mainly used for high-temperature melting of titanium alloys, aluminum alloys and other lightweight metals in metal smelting, and their high temperature resistance (up to 1600°C or more) and corrosion resistance can effectively prevent metal oxidation pollution. In vacuum or inert gas environments, titanium crucibles can maintain the purity of metal melts, and are suitable for high-end fields such as aviation and aerospace. In addition, titanium crucibles can avoid impurities in the purification of precious metals (such as gold) and improve the purity of materials.
However, it should be noted that titanium crucibles have high costs and are not suitable for strong reducing smelting environments (such as molten iron smelting), so graphite crucibles need to be used instead.
Laboratory Use
Titanium crucibles are mainly used in laboratories for high-temperature melting tests, metal casting and chemical reactions, and their high temperature resistance (up to 1600 °C or more) and corrosion resistance (strong acid and alkali resistance) characteristics make them ideal containers. For example:
Metal smelting: used for high-temperature melting of titanium alloys, aluminum alloys, etc., to avoid oxidative pollution;
Chemical analysis: bear the reaction of highly corrosive reagents (such as aqua regia, hydrofluoric acid) to ensure data accuracy;
Material synthesis: When preparing nanomaterials (such as TiO₂), titanium crucibles can prevent the introduction of impurities.
In addition, titanium crucibles are lightweight and strong, suitable for vacuum or inert gas environments, but the cost is high, and they need to be selected according to the needs of the experiment.


Chemical Industry
Titanium crucibles are mainly used in the chemical industry for high-temperature reactions of highly corrosive media (such as chlor-alkali, sulfuric acid, hydrochloric acid), such as chlorine cooling, caustic soda production, pharmaceutical synthesis (vitamin B1, chloramphenicol, etc.) and chemical fertilizers (ammonium chloride, urea) crystallization. Its corrosion resistance and high-temperature stability significantly extend the life of the equipment, especially in chloride environments below 130°C. Titanium steel composite panel technology can also reduce costs and is suitable for key equipment such as electrolyzers and reactors.
Medical Industry
Titanium crucibles are mainly used in the medical industry for the synthesis of high-purity drugs and the preparation of biocompatible materials, such as the production of antibiotics (chloramphenicol) and vitamins (B1, C), and their corrosion resistance can avoid metal contamination. In orthopedic implant manufacturing, titanium crucibles are used to melt titanium alloys (such as TC4) to ensure that the material meets biocompatibility standards and is suitable for artificial joints, dental implants, etc. In addition, titanium crucibles can ensure material purity and reduce the risk of postoperative rejection when 3D printing personalized medical implants.
The inert properties of titanium make it a substitute for stainless steel equipment in the production of anesthetics (procaine) and anthelmintic drugs, significantly extending the service life. In the future, the application of titanium crucibles in the field of biomedical materials (such as the research and development of B-type titanium alloys) will be further expanded.


who choose us?
Baoji Mingjie Titanium Material Technology Co., Ltd. is mainly engaged in the processing of titanium and titanium alloy materials, covering plates, rods, wires, cakes, rings, craft products, standard parts and surgical implants, which are widely used in chemical, aviation, aerospace, ships, weapons, automobiles, biomedical and other fields. The company adopts electron beam cold bed furnace melting technology, with impurity content of less than 0.1%, low product density (4.5g/cm³), high strength (tensile strength of TC4 tape and coil up to 895-1100MPa), excellent corrosion resistance (annual rate of seawater corrosion <0.01mm), and biocompatibility in line with ISO 5832 standards
The company reduces raw material costs through large-scale production, while providing on-demand customized services to shorten the delivery cycle. The surface roughness of precision titanium foil tape can reach Ra≤0.2μm, the cold rolling glossy surface has high reflectivity, and the corrosion resistance of the annealed oxide surface is enhanced, meeting the needs of different scenarios
one-stop solution
professional team
high quality
FAQ

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