Dongguan Haikun New Material Co., Ltd.

  • low heat conductivity zirconia ceramic bush sleeves tubes
  • low heat conductivity zirconia ceramic bush sleeves tubes
  • low heat conductivity zirconia ceramic bush sleeves tubes
  • low heat conductivity zirconia ceramic bush sleeves tubes
  • low heat conductivity zirconia ceramic bush sleeves tubes
  • low heat conductivity zirconia ceramic bush sleeves tubes

low heat conductivity zirconia ceramic bush sleeves tubes

Payment Type:
L/C,T/T,D/P,Paypal,Money Gram,Western Union
Incoterm:
FOB
Min. Order:
1 Piece/Pieces
Transportation:
Ocean,Land,Air
Port:
Shenzhen
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  • Product Description
Overview
Product Attributes

Model No.ZrO2 372

BrandHard

Supply Ability & Additional Information

PackagingCustomized

TransportationOcean,Land,Air

Place of OriginGuangdong,China

Supply Ability1,000,000 pcs/Month

CertificateSGS

PortShenzhen

Payment TypeL/C,T/T,D/P,Paypal,Money Gram,Western Union

IncotermFOB

Packaging & Delivery
Selling Units:
Piece/Pieces
Package Type:
Customized

low heat conductivity Zirconia Ceramic bush sleeves tubes

Reputation depends on quality,  quality comes from Hard!


Zirocnia Ceramics:

Zirconia Ceramics refer to a variety of alloy metals made of zirconium and other metals. Titanium is an important structural metal developed in the 1950s. Titanium alloys have high strength, good corrosion resistance and high heat resistance. From the 1950s to 1960s, the main focus was the development of high-temperature titanium alloys for aero-engines and structural titanium alloys for airframes.
A number of corrosion-resistant titanium alloys were developed in the 1970s. Since the 1980s, corrosion-resistant titanium alloys and high-strength titanium alloys have been further developed. Titanium alloy is mainly used for the production of aircraft engine compressor components, followed by the structural parts of rockets, missiles and high-speed aircraft. Titanium is an important structural metal developed in the 1950s. Titanium alloys have high strength and good corrosion resistance. It is widely used in various fields because of its characteristics of high heat resistance. Many countries in the world have recognized the importance of titanium alloy materials, have conducted research and development on them, and have been practically applied.
The first practical titanium alloy was the Ti-6Al-4V alloy successfully developed by the United States in 1954. Due to its heat resistance, strength, plasticity, toughness, formability, weldability, corrosion resistance and biocompatibility. It is better, and it has become the flagship alloy in the titanium alloy industry, and the amount of this alloy used has accounted for 75% to 85% of all titanium alloys. Many other titanium alloys can be regarded as modifications of Ti-6Al-4V alloy.
In the 1950s and 1960s, the main focus was on the development of high-temperature titanium alloys for aero-engines and structural zirconia for the body. A batch of corrosion-resistant titanium alloys were developed in the 1970s. Since the 1980s, corrosion-resistant titanium alloys and high-strength titanium alloys have been further developed. develop. The use temperature of heat-resistant titanium alloys has increased from 400°C in the 1950s to 600-650°C in the 1990s. The emergence of A2 (Ti3Al) and r (TiAl)-based alloys has caused titanium to be pushed from the cold end of the engine (fan and compressor) to the hot end (turbine) of the engine in the use part of the engine. Structural titanium alloys are developing in the direction of high strength, high plasticity, high strength, high toughness, high modulus and high damage tolerance.
ceramic sleeve

Data Sheet↓

Color: Customized
Density: 6.0g/cm3
Zirconia Content: 94.4%
Gas permeability: 0
Water Absorption: 0
Crystal Size: 0.5um
Rockwell Hardness(45N): 78R45N
Vickers Hardness (Load 500g): 11.5(1175)Gpa(Kg/mm²)
Flexural Strength(20°C): 800Mpa

Compressive Strength(20°C): 2000Mpa

Modulus of Elasticity(20°C): >200Gpa

Fracture Toughness(20°C): 9.0 MPam1/2
Thermal Conductivity(20°C-400°C): 2.5W(m.K)
Thermal Expansion Coefficient: 9.6 10-6/°C
Thermal Shock Resistance: 250 △T°C


Application industry:

Machinery, fiber optic, knife, medical, food, petroleum etc.


Specific application:

plunger, Ceramic Shaft, fiber optic bushing, stub, grinding, ceramic knife, ceramic slide guide, machined plunger, mobile phone shell, watch case, haircut razor blade etc.


Why Choose Us?
1.12 years of professional production industrial ceramics factory
2.High quality products with low price
3.High precision parts with lowest tolerance
4.Short time for production 
5.Has a group of experienced, professional and efficient R&D team
6.Has a good reputation in China and abroad.

7.MOQ is not limited, small quantity is welcome.

8.Vigorous team and good after-sales service



FAQ

Q: Are you trading company or manufacturer ?
A: We are factory.
 
Q: How long is your delivery time?
A: Generally it is 5-10 days if the goods are in stock. or it is 15-30 days if the goods are not in stock, it is according to quantity.
 
Q: Do you provide samples ? is it free or extra ?
A: Yes, we could offer the sample for free charge but do not pay the cost of freight.
Q: What is your terms of payment ?

A: Payment<=1000USD, 100% in advance. Payment>=1000USD, 50% T/T in advance ,balance before shippment.

Product Categories : Zirconia Ceramics > Zirconia Ceramic Sleeve

Home > Products > Zirconia Ceramics > Zirconia Ceramic Sleeve > low heat conductivity zirconia ceramic bush sleeves tubes

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