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Tungsten Heavy Alloy WNiFe Weights

Categories Tungsten Heavy Alloy
Brand Name: JX
Model Number: 90-93WNiFe
Certification: ISO 9001
Place of Origin: CHINA
Payment Terms: D/P, D/A, T/T, MoneyGram, Western Union
Delivery Time: 10-20DAYS
Packaging Details: Plywood box with shock absorbing foam board
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Tungsten Heavy Alloy WNiFe Weights

Overview

Tungsten Heavy Alloy WNiFe Weights is a kind of balancing or weighting component made of tungsten-nickel-iron alloy as the main raw material. It has the advantages of high density, high strength, strong corrosion resistance, good high-temperature resistance, and easy machining. It can play the role of balancing weight increase and auxiliary assembly in a limited space.

Advantages

  • High density, can quickly adjust the center of gravity, smaller volume at the same weight, suitable for scenes with limited space.
  • Outstanding mechanical properties, high hardness, tensile strength of up to 1000-1500MPa, wear resistance, and long service life.
  • The melting point of tungsten is as high as 3422℃, and it can still maintain excellent dimensional stability above 600℃.
  • Tungsten alloy is stable in humid, acidic and alkaline environments, and is not easy to rust or corrode.
  • Tungsten alloy is non-magnetic, non-toxic, and non-radioactive, and performs well in medical and anti-interference equipment.

Application

  1. Aerospace: Satellite attitude control counterweights, aircraft engine balance blocks, and engine turbine blade counterweights can avoid counterweight failure caused by temperature rise, and achieve precise counterweighting in a small space.
  2. Automotive industry: Tungsten Heavy Alloy WNiFe Weights can be used for engine crankshaft counterweights, which can withstand the centrifugal force and vibration of high-speed rotation, avoid deformation or breakage, and extend the life of the engine.
  3. Industrial equipment: The moving parts of injection molding machines and stamping machines can resist long-term mechanical impact and extend the service life.
  4. Marine engineering: Ship propeller counterweights can reduce weight changes caused by seawater corrosion and maintain ship balance.
  5. Chemical equipment: The counterweight components of reactor agitators, tungsten alloys, are sufficient to resist chemical medium erosion and ensure the smooth progress of chemical production processes.
  6. Medical equipment: The rotating parts of CT scanners require the counterweights to be compact and stable in weight to meet the space limitations of precision equipment.

Dimension

Grade90-93WNiFe
SizeCustomized
Shape

Rod:Φ2-100×50-1000mm

Block:10mm×10mm×5mm

Density16.5g/cm3 -18.95g/cm3
Hardness25-35 HRC
Tensile Strength800-1000Mpa
SurfacePolishing, Grounding, Grinding
StandardASTM B777-07/B760,AMS-T-21014
CertificationISO9001

Process

① Mix tungsten powder and bonding metal (such as nickel, iron, copper, etc.) in proportion, and crush them into uniform powder by ball mill.

② Press and mold at 100-300MPa pressure in the mold to form a green body with a certain strength.

③ Sinter at 1300-1500℃ in vacuum or hydrogen atmosphere, and improve density through hot isostatic pressing and aging treatment.

④ High-precision processing, such as turning, wire cutting, and EDM, can make complex shapes and ensure dimensional accuracy.

⑤ The surface is electroplated and polished, and a comprehensive quality inspection is carried out before shipment.

Grade

90WNiFe:density is about 17.1±0.15g/cm³, hardness is 24-28HRC, tensile strength is 900-1000MPa, and elongation is 18%-29%. This grade has good plasticity and toughness, and performs well in some application scenarios that require a certain degree of deformation ability, such as being used to manufacture some counterweight components that require toughness.

93WNiFe: has a higher density, generally around 18.8g/cm³. They all have good radiation shielding capabilities. Under the same thickness conditions, the radiation shielding ability is more than 1.7 times that of lead. At the same time, the thermal expansion coefficient is small, the thermal conductivity coefficient is large, and it has good processability and weldability. It is often used for radiation protection and guidance, such as various CT, linear accelerators, and other equipment, and can also be used for industrial counterweight components.

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