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Customized Vacuum Furnace Heating Elements Pure Molybdenum Shelf Rack
Molybdenum Parts material rack
| We accept customized Molybdenum material rack, TZM, and other parts according to your specific requirements or drawings. | 
Material: 99.95% Pure Molybdenum
Purity: 99.95%
Density: 10.2g/m³
Size: customized
Standard: ASTM B387
Surface: Grey/ polishing
Melting Point: 2610℃
Boiling Point: 5560℃
High electrical conductivity
High thermal conductivity
High temperature strength and creep resistance
High dimensional stability
Low coefficient of thermal expansion
Excellent corrosion resistance
| Sheet/ plate | Bars | Deep processing of products | 
| MoLa Alloy plate | Molybdenum and lanthanum alloy bar | Molybdenum-Lanthanum alloy boat, rack | 
| Molybdenum and Lanthanum Alloy sheet | Molybdenum Lanthanum alloy rod | Molybdenum-Lanthanum alloy heater, heat shield | 
| Molybdenum and Lanthanum Alloy Foil | Molybdenum and lanthanum alloy wire | Molybdenum-lanthanum alloy parts | 
The molybdenum material rack, TZM parts racks are used for placing and transferring workpieces needing to be processed in high-temperature annealing furnaces and sintering furnaces, continuous furnace as its High-density, high-temperature strength ,accurate measurement, smooth surface, convenient assembly, and reasonable design of heat components elements for manufacturing racks. we can produce various kinds of parts pure molybdenum, pure tungsten, molybdenum-lanthanum alloy racks.
| Atomic number | 42 | 
| CAS number | 7439-98-7 | 
| Atomic mass | 95.94 [g/mol] | 
| Melting point | 2620 °C | 
| Boiling point | 4639 °C | 
| Density at 20 °C | 10.22 [g/cm³] | 
| Crystal structure | Body-centered cubic | 
| Coefficient of linear thermal expansion at 20 °C | 5.2 × 10-6 [m/(mK)] | 
| Thermal conductivity at 20 °C | 142 [W/(mK)] | 
| Specific heat at 20 °C | 0.25 [J/(gK)] | 
| Electrical conductivity at 20 °C | 17.9 × 106 [S/m] | 
| Specific electrical resistance at 20 °C | 0.056 [(Ωmm2)/m] | 

The Tungsten, Molybdenum products can be widely used to the following industrial through deep processing: