Customized Molybdenum

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At Marine Techq, Customized Molybdenum products, where precision meets innovation to cater to the distinctive needs of your machining applications. Meticulously engineered for excellence, our CNC-customized molybdenum tools redefine the standards in precision machining.

Our Customized Molybdenum tools are crafted from high-quality molybdenum alloys, known for their exceptional strength, high melting point, and resistance to corrosion. What sets our products apart is the ability to tailor each tool to your precise specifications. Whether you require specific geometries, coatings, or other features, our CNC Customized Molybdenum tools are designed with precision to ensure optimal performance in your unique machining processes.

Collaborate with our team of experts to design tools that precisely align with your application needs. From intricate components to specialized materials, our Customized Molybdenum products provide a bespoke solution for achieving unmatched precision in machining. Experience the adaptability and reliability of tools that go beyond standard offerings, offering a distinct advantage in your manufacturing operations.

Step into a new dimension of CNC machining with our Customized Molybdenum tools, where customization converges with excellence for seamless integration into your specialized machining tasks. Trust in precision, trust in customization – redefine your machining experience with our Customized Molybdenum products.

Key Features

At Marine Techq, we source and utilize high-purity molybdenum, a material renowned for its exceptional strength, high melting points, and remarkable thermal conductivity. This ensures that our CNC-machined molybdenum components meet and exceed the stringent requirements of various industries.
Our CNC machines redefine precision, enabling us to deliver intricate details with unmatched accuracy. This precision is not just a goal; it’s a commitment to providing the highest quality molybdenum components for your projects.
Tailoring the machining process to your exact specifications is our specialty. Whether you need specific sizes, dimensions, surface finishes, tolerance levels, or complex geometries, our customization options ensure that the final product aligns perfectly with your project requirements.
customized molybdenum

Specifications

Type Diameter ( inch ) Tolerance ( % )
Molybdenum Wire for EDM 0.007 -0.01 + 3 % wt
Molybdenum Spray Wire 1/16 - 1/8 ± 1 % to 3 % wt
Molybdenum Wire 0.002 - 0.08 ± 3 % wt
Molybdenum Wire ( clean ) 0.006 -0.04 ± 3 % wt

Mechanical Properties

Molecular Weight 95.94
Appearance Silvery
Melting Point 2623 ° C
Boiling Point 4639 ° C
Density 10280 kg / m3
Solubility in H20 N / A
Electrical Resistivity 5.2 microhm - cm @ 0 ° C
Electronegativity 1.9 Paulings
Heat of Fusion 6.6 Cal / gm mole
Heat of Vaporization 128 K - Cal / gm atom at 4612 ° C
Poisson's Ratio 0.31
Specific Heat 0.0599 Cal / g / K @ 25 ° C
Tensile Strength N / A
Thermal Conductivity 1.38 W / cm / K @ 298.2 K
Thermal Expansion ( 25 ° C ) 4.8 μm - m - 1 · K - 1
Vickers Hardness 1530 MPa
Young's Modulus 329 GPa

Characteristics

Name Specific Property Application
Molybdenum wires cleaned by electrolysis The aquadag layer can be removed by electrolysis . Mandrels of tungsten coiled coil
Molybdenum wires cleaned in hydrogen atmosphere The aquadag layer can be removed in hydrogen atmosphere . Used in making supports of various type of bulb
Material: High-purity Molybdenum
Tolerance Levels: Customizable to meet project specifications
Surface Finish Options: Polished, Brushed, Textured
Size and Dimensions: Tailored to fit project requirements
Complex Geometries: Capable of handling intricate designs and shapes with precision

Types of Customization

Customize the size and dimensions of your CNC-machined molybdenum components for seamless integration into your projects.
Choose from a variety of surface finishes, including polished, brushed, or textured, aligning with both aesthetic and functional preferences.
Specify the required tolerance levels for CNC-machined molybdenum components, ensuring precision according to your project specifications.
Our CNC machines are capable of handling complex geometries, allowing you to achieve intricate designs and shapes with precision.

Applications of Customized Molybdenum

Precision components for semiconductor devices and electronic applications benefit from molybdenum’s high thermal conductivity. Explore our range of CNC Custom Steel Products and CNC High-Speed Steel Products for additional solutions optimized for the electronics and semiconductor industry

Critical components for aircraft and spacecraft, where molybdenum’s strength and durability are essential. Discover our offerings in CNC Machined Titanium and Customized Super Duplex for further solutions suitable for the aerospace industry.

Intricate parts for medical devices, ensuring precision and reliability for critical healthcare applications. Explore our range of CNC Machined Inconel and CNC Mumetal Nickel Sheets for additional solutions tailored for medical equipment manufacturing.

Why Choose Our Customized Molybdenum

Ideal for applications where strength and durability are crucial.
Well-suited for applications requiring efficient heat transfer, such as in the electronics and semiconductor industry.
CNC machining is customized to your project’s exact specifications, ensuring the highest level of precision.

FAQ

Molybdenum machining specifications include precise tooling, low cutting speeds, and adequate cooling to ensure optimal results in machining this high-strength material.
Molybdenum ASTM B387 Type 361 is a specification indicating a specific grade of molybdenum, known for its high melting point, strength, and corrosion resistance, making it suitable for various industrial applications.
Molybdenum Type 365 refers to a specific alloy, prized for its enhanced mechanical properties, including high tensile strength and resistance to deformation, making it valuable for challenging applications.
The cutting speed of molybdenum varies depending on factors like tooling, machining conditions, and material thickness, but generally, it is recommended to use low cutting speeds for optimal results.
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