Molybdenum Machined Parts

Your Professional Molybdenum Machined Parts Supplier

 

 

Shaanxi Innovate Metal Technology Co., Ltd. specializes in the production, processing, sales and service of tungsten, molybdenum, tantalum, zirconium, niobium, titanium, hafnium and other non-ferrous metal materials.

The products include foils, plates, rods, wires, standard parts, stamping parts, etc. of various specifications of titanium, zirconium, molybdenum, tungsten, tantalum, niobium, hafnium and their alloys.

 

 
  • Molybdenum Electrode
    Melting point: 2615℃
    Boiling point: 4610℃
    Density: 10.2g/cm3
    Using temperature: ≤1600℃
    Surface state: polished surface/bright surface
    Implementation standard:...
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  • Customized Molybdenum Special-Shaped Parts
    Material: 99.95% Pure Molybdenum
    Customized Shapes & Sizes – Tailored to meet unique design and application requirements.
    Wall Thickness: 0.5mm – 20mm (customized)
    Length:...
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  • Evaporation Coating Molybdenum Crucible
    Melting point: 2615℃
    Boiling point: 4610℃
    Density: 10.2g/cm3
    Using temperature: ≤1600℃
    Surface state: polished surface/bright surface
    Implementation standard:...
    read more
  • Molybdenum Crucible
    Melting point: 2615℃
    Boiling point: 4610℃
    Density: 10.2g/cm3
    Use temperature: ≤1600℃
    Surface state: polished surface/bright surface
    Implementation standard: GB/T...
    read more
 

Why Choose us

Quality Control

The company is equipped with comprehensive production facilities and advanced testing instruments, as well as a robust technical team. Its quality management system is highly sophisticated, ensuring consistently stable and reliable product quality.

Leading Technology

The company is equipped with a high-caliber R&D team dedicated to pioneering research in metal materials and advanced processing technologies, ensuring that product performance consistently remains at the forefront of the industry.

Rich Experience

With years of deep engagement in the metal materials sector, the company has amassed extensive practical experience. This enables it to swiftly adapt to market changes and deliver dependable technical support.

 

Specification

 

 

Delivery conditions

Dimensions(mm)

Tolerance(mm)

 

Diameter(mm)

High(mm)

Diameter(mm)

High(mm)

Sintered

10-500

10-600

±5

±5

Forged

10-130

10-200

±1

±2

Sintered and machined

100-450

10-500

±0.5

±1

 

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Customization Process

Communication Needs: Custom sizes and shapes can be tailored to meet specific customer requirements. Please provide your customization concepts and detailed specifications for further discussion.

 

Production Execution: Following the confirmed design, we implement meticulous production processes with strict quality control at every stage, ensuring consistency and precision before proceeding to mass production.

 

Quality Inspection and Packaging: Upon completion of the product, a comprehensive three-stage inspection process is conducted to ensure quality standards are met. Subsequently, the products are packaged in accordance with your specified requirements.

 

Delivery Assurance: We ensure timely delivery of the products within the agreed timeframe as per the contract terms.

 

Types of Molybdenum Machined Parts

The molybdenum machined parts produced by our company mainly include the following types:

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Customized Molybdenum Special-Shaped Parts
Customized Molybdenum Special-Shaped Parts

Molybdenum Electrode
The main component of molybdenum electrode is molybdenum, which is made by powder metallurgy process. The internationally accepted molybdenum electrode component content is 99.95%, and the density is greater than 10.15g/cm3 to ensure the quality of glass and the service life of the electrode. The commonly used molybdenum electrode size ranges from 20mm to 152.4mm in diameter, and the length of a single electrode can reach 1500mm.

 

Customized Molybdenum Special-Shaped Parts
Our Customized Molybdenum Special-Shaped Parts are made from high-purity molybdenum (Mo≥99.95%), designed and fabricated to meet the unique requirements of high-precision, high-performance applications. These parts offer excellent thermal conductivity, mechanical strength, and corrosion resistance at high temperatures, making them ideal for aerospace, electronics, semiconductor manufacturing, and industrial processes. With advanced machining and customization capabilities, we provide tailor-made solutions to fit your specific technical needs.

 

Evaporation Coating Molybdenum Crucible
The Evaporation Coating Molybdenum Crucible is a high-performance container used in vacuum thermal evaporation, electron beam coating, and crystal growth applications. Made from 99.95% pure molybdenum, this crucible offers exceptional high-temperature resistance, superior thermal conductivity, and excellent corrosion resistance in extreme environments. It is widely used in the production of optical coatings, semiconductor materials, and thin-film deposition.

 

Molybdenum Crucible
Molybdenum crucible is sintered and forged from the final material. Generally speaking, molybdenum crucible is made of pure molybdenum, which can prevent the molten metal powder from mixing. The density of molybdenum crucible is greater than 9.8g/cm3, and its working temperature is between 1100℃. In addition to tungsten crucible in metal smelting industry, it is another good choice.

 

 

Features of Molybdenum Machined Parts

 

 

Molybdenum Electrode
 
 

Molybdenum electrode have many features , including:

 

High Thermal Conductivity

One of the standout features of molybdenum electrodes is their high thermal conductivity. Thermal conductivity refers to the rate at which heat is transferred through a material. Molybdenum exhibits one of the highest thermal conductivities among metals, ensuring efficient heat distribution and minimizing hotspots.

 
 

Temperature Gradient Management

The temperature gradient is the rate of temperature change within a material. Molybdenum electrodes excel in managing temperature gradients, allowing for uniform thermal distribution. This capability is vital in processes that require precise temperature control, such as in heat exchangers and advanced manufacturing techniques.

 
 

Physical Properties and Specific Heats

Molybdenum’s physical properties include high density and strength, contributing to its effectiveness as a conducting material. The specific heats of molybdenum, which represent the amount of heat required to change its temperature, further enhance its suitability in applications demanding high thermal stability.

 
 

Surface Area and Room Temperature Performance

The surface area of molybdenum electrodes plays a crucial role in heat dissipation. A larger surface area facilitates more efficient heat transfer. Additionally, molybdenum maintains excellent performance at room temperature, making it versatile for various industrial applications.

 

 

Molybdenum Crucible

Molybdenum crucible have many features , including:

High Melting Point

Molybdenum has a high melting point of approximately 2620°C (4748°F), making molybdenum crucibles capable of withstanding extremely high temperatures required for melting refractory metals, ceramics, and alloys.

01

Chemical Resistance

Molybdenum is resistant to corrosion by many acids, alkalis, and molten metals, making molybdenum crucibles suitable for handling corrosive materials and reactive substances in various industrial processes.

02

Thermal Conductivity

Molybdenum has good thermal conductivity, allowing for efficient heat transfer within the crucible. This property is beneficial for uniform heating and temperature distribution during high-temperature processes such as melting and annealing.

03

Low Thermal Expansion

Molybdenum has a relatively low coefficient of thermal expansion, which means molybdenum crucibles experience minimal dimensional changes with temperature variations. This property helps reduce the risk of thermal stress-induced cracking.

04

 

 

Application of Molybdenum Machined Parts

 

 

Molybdenum Crucible
 

Molybdenum crucible have many use, including:

Metal Melting and Casting:
Molybdenum crucibles are extensively used in the melting and casting of high-temperature metals, such as titanium, tantalum, and tungsten. They can withstand the extreme heat required for these processes without deformation.

 

Sintering Processes:
Used in sintering for various materials, including ceramics and hard metals. Molybdenum crucibles facilitate the densification of powders at elevated temperatures, ensuring uniform heating and optimal material properties.

 

Chemical Vapor Deposition (CVD):
Crucibles are utilized in CVD processes for producing thin films and coatings in the semiconductor and electronics industries. Molybdenum’s thermal stability makes it suitable for these applications.

 

Physical Vapor Deposition (PVD):
Similar to CVD, molybdenum crucibles are employed in PVD processes for depositing materials onto surfaces in a vacuum, critical for producing advanced materials.

 

Research and Development:
Commonly used in laboratories for high-temperature research applications, such as studying material properties, phase transitions, and reactions involving solid-state materials.

 

Nuclear Industry:
Due to their resistance to corrosion and ability to withstand high temperatures, molybdenum crucibles are utilized in processes related to nuclear materials handling and processing.

 

Glass and Ceramics Manufacturing:
Molybdenum crucibles are used in the production of high-temperature glass and ceramic materials, where they provide excellent thermal and mechanical properties.

 

Molybdenum Electrode

Molybdenum electrode have many use, including:

 

Electrochemistry
Used as electrodes in electrolysis cells, electrodeposition, and electrolysis processes.

 

Environmental monitoring
Used in the electrochemical detection part of environmental monitoring instruments, such as pH meters, redox potential meters, etc.

Medical equipment

Used in biomedical applications for devices like electrostimulation equipment and biosensors.

Semiconductor manufacturing

Used as electrodes in processes like etching and electroplating in semiconductor manufacturing.

Other fields

Also applied in glass processing, vacuum equipment, heat treatment, and more.

 

Packaging

 

 

Molybdenum machined parts will be carefully packaged in wooden cases, and supported with soft materials to prevent movement during transportation. This ensures that the products remain securely in place throughout the packaging process.

 

FAQ

 

Q: How magnetic is molybdenum?

A: Bulk molybdenum disulfide is known to be a nonmagnetic material. We have synthesized edge-oriented MoS2 nanosheet-like films that exhibit weak magnetism (∼1−2 emu/g) and 2.5% magnetoresistance effects with a Curie temperature of 685 K.

Q: Why is molybdenum a good conductor of electricity?

A: The movement of electrons between the layers of molybdenum makes it good conductor of heat and also electricity. Molybdenum is a metal,and we know that all metals is a good conductor of heat and electricity,and they have free electron.

Q: What is the crucible former made of?

A: The stand or base usually made of metal or resin onto which a sprued wax pattern is placed.

We're professional molybdenum machined parts manufacturers and suppliers in China, specialized in providing high quality customized service. We warmly welcome you to buy molybdenum machined parts for sale here and get quotation from our factory. For price consultation, contact us.

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