Tungsten carbide is a compound with an equal composition of tungsten and carbon. The compound finds a specific use in various industrial applications owing to its high strength and resistance to rust. There are only a few materials that can compare strength with tungsten carbide.
Being the market leader
in the production and supply of tungsten carbide products we can design
tungsten carbide valve seats and beds according to the necessities of customers
keeping under the international guidelines of surface completion, resistance,
etc.
WEISON is an innovative
venture who focuses in its steadiness on research advancement, manufacture,
sale, and specialized service dependent on tungsten material. As a
technology-leading enterprise, all employees have received professional
education and training. WEISON is equipped with certain top-class manufacture
of tungsten material. All stages throughout production, sale, and service are
strictly ensured to meet the requirements of ISO 9001:2008.
We are specialized in
producing tungsten products along with carbide products for decades. With the
best quality manufacture machines and high-level instruments, WEISON Advance
materials are a renowned and trusted name in supplying tungsten sleeves that
meet international standards.
Tungsten
Carbide valve seats Features
·
Tungsten carbide is a frequently used
material when it comes to designing pallet and valve seats for the oil
industry.
·
It has high strength.
·
Low maintenance requirements.
·
It has temperature resistance as well as
corrosion resistance.
·
It functions perfectly in the oil and
petroleum industry
What
is Tungsten Carbide Valve seats application?
These carbide valve
seats are usually used in the water pump, oil pump, in industry particularly
used for high-pressure or corrosion resistance pumps, flow restrictors, servo
seats.
Besides, the sleeves
are comprehensively utilized as seal faces with safe wearing, high fractural
strength, high thermal conductivity, heat expansion along being coefficient.
However, it is all that material that can be utilized to oppose warmth and
fracture in all hard face materials.
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