|
Code
No.
|
Chemical
Composition %
|
Mechanical
properties
|
||||||
|
CU
|
Impurity
|
W
|
Density
(g/cm3)
|
Hardness
HB
|
RES(cm)
|
Conductivity
IACS/%
|
TRS/
Mpa
|
|
|
CuW(50)
|
50+2.0
|
0.5
|
Balance
|
11.85
|
115
|
3.2
|
54
|
|
|
CuW(55)
|
45+2.0
|
0.5
|
Balance
|
12.30
|
125
|
3.5
|
49
|
|
|
CuW(60)
|
40+2.0
|
0.5
|
Balance
|
12.75
|
140
|
3.7
|
47
|
|
|
CuW(65)
|
35+2.0
|
0.5
|
Balance
|
13.30
|
155
|
3.9
|
44
|
|
|
CuW(70)
|
30+2.0
|
0.5
|
Balance
|
13.80
|
175
|
4.1
|
42
|
790
|
|
CuW(75)
|
25+2.0
|
0.5
|
Balance
|
14.50
|
195
|
4.5
|
38
|
885
|
|
CuW(80)
|
20+2.0
|
0.5
|
Balance
|
15.15
|
220
|
5.0
|
34
|
980
|
|
CuW(85)
|
15+2.0
|
0.5
|
Balance
|
15.90
|
240
|
5.7
|
30
|
1080
|
|
CuW(90)
|
10+2.0
|
0.5
|
Balance
|
16.75
|
260
|
6.5
|
27
|
1160
|
Tungsten copper alloy combines tungsten and copper, which owns heat resistant, high density, low thermal expansivity and high electrical conductivity.
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2012年8月2日星期四
Specifications of Copper Tungsten Alloy
2012年8月1日星期三
Tungsten Copper EDM and ECM
Our
tungsten copper composites are used worldwide for electrical discharge
machining (EDM) and electrochemical machining (ECM) electrodes. All composite
material is manufactured by the press, sinter, and infiltrate process; adhering
to strict quality checks every step of the way. You can rely on the quality of
our tungsten composites to provide consistent, homogeneous materials that yield
high and even burning rates
Tungsten
copper alloys are used worldwide for EDM (Electrical Discharge Machining) and
ECM (Electrochemical Machining) electrodes. All material is manufactured by the
press, sinter, and infiltrate process. Virgin tungsten powders are used, resulting
in consistent homogeneous material giving high and even burning rates. Tungstencopper is used in plunger/sinker applications where intricate definition is
required, especially in tungsten carbide.
2012年7月31日星期二
Tungsten Copper Electrical Contacts
The CuW75
tungsten copper materials can be also used in oil-filled devices, air and gas
circuit breakers, contactors, and high voltage switch gear. Some common
applications are: arcing contacts and plates,arc runners,current carrying members,blade facings.
The high
electrical and thermal conductivity of tungsten copper alloy allows a
cool, effective transfer of power, while the excellent arc-resistance
properties of tungsten copper minimize arc erosion and transfer problems. These
characteristics can be varied by composition more silver or copper yields
higher electrical and thermal conductivity, while a higher refractory metal
content results in superior arc erosion properties. We offer a variety of
composites to meet your demands. Regardless of the environment (oil-filled
devices, air and gas circuit breakers, contactors, high voltage switch gear) or
the application (arcing contacts and plates, arc runners, current carrying
members and blade facings), you won't be disappointed in electrical contacts
made from our copper tungsten composites.
2012年7月30日星期一
Tungsten Copper Resistance Welding
If
you can't stand the heat resistance welding isn't for you. Luckily, electrodes
made from our tungsten copper composites perform even under the most extreme
conditions. High-thermal and electrical conductivity along with the ability to
reduce heat-balance problems make our tungsten copper composites excellent
choices for die inserts and electrode facings, flash and butt welding dies, and
hot upsetting.
The
high physical and mechanical properties, as well as the thermal and electrical
conductivity, of refractory metal composites make tungsten copper alloy very
suitable for die inserts and electrode facings, flash and butt welding dies,
and hot upsetting. They can also solve heat balance problems.
2012年7月29日星期日
Tungsten Copper Heat Sinks
Our
tungsten copper composites to be used extensively in thermal mounting plates,
chip carriers, flanges, and frames for high-powered electronic devices. With
the thermal advantages of copper with the very low expansion characteristics of
tungsten, tungsten copper has properties similar to those of silicone carbide,
aluminum oxide, and beryllium oxide. The thermal conductivity and low expansion
also make tungsten copper alloy an excellent choice even for extremely dense
circuits.
The
CuW75 tungsten copper alloy is used extensively in thermal mounting plates,
chip carriers, flanges, and frames for high-power electronic devices. As a
tungsten copper material, it's a composite, so both the thermal advantages of
copper and the very low expansion characteristics of tungsten can be utilized.
The
combination of tungsten & copper materials results in thermal expansion
characteristics similar to those of silicone carbide, aluminum oxide, and
beryllium oxide, used as chips and substrates. Because of tungsten copper's
thermal conductivity and expansion characteristics, Tungsten copper alloy works
well in densely packed circuits.
2012年7月26日星期四
Applications of Tungsten Copper
Copper tungsten alloys
are used where the combination of high heat resistance, high electrical and/or
thermal conductivity, and low thermal expansion are needed. Some of the
applications are in electric resistance welding, as electrical contacts, and as
heat sinks. As contact material the alloy is resistant to erosion by electric
arc. Tungsten copper alloys are also used in electrodes for electrical
discharge machining and electrochemical machining.
The CuW75
tungsten copper alloy, with 75% of tungsten, is widely used in chip carriers,
substrates, flanges and frames for power semiconductor devices. The high
thermal conductivity of copper together with the low thermal expansion of
tungsten allows thermal expansion matching to silicon, gallium arsenide, and
some ceramics.
Copper Tungsten
alloy with 70-90% of tungsten is used in liners of some specialty shaped
charges. The penetration is enhanced by factor 1.3 against copper for
homogeneous steel target, as both the density and the break-up time are
increased. Tungsten powder based shaped charge liners are especially suitable
for oil well completion. Other ductile metals can be used as binder in place of
copper as well. Graphite can be added as lubricant to the powder.
The manufacturing
process of Tungsten copper alloy is to press the refractory (tungsten or
tungsten carbide), sinter the pressed compact at a high temperature, and
infiltrate with copper. All of this is done under very closely controlled
conditions. The mechanical and physical properties of tungsten copper alloy
vary with composition. The thermal and electrical conductivity increase with
the amount of copper, while the hardness, strength, and resistance to
mechanical wear increase with the amount of tungsten or tungsten carbide. The
application determines the material choice.
Tungsten Copper Alloy
Tungsten copper
(copper tungsten, CuW, or WCu) alloy is pseudo-alloy of tungsten and copper. As
copper and tungsten are not mutually soluble, the material is composed of
distinct particles of one metal dispersed in a matrix of the other one. The
microstructure is therefore rather a metal matrix composite than a true alloy.
Copper tungsten alloy is the composite of tungsten and copper, which own the excellent
performances of tungsten and copper, such as heat-resistant, ablate-resistant,
high-intensity, excellent thermal and electrical conductivity. Tungsten copper alloy
is easy to be machined. Tungsten copper alloy is used widely in such industries
as engine, electrical power, electron, metallurgy, spaceflight and aviation.
Using CIP formation, sintered tungsten skeleton and infiltrating copper
(silver) technology, large size and special shape products of tungsten copper
composites with 6-90 percent of copper are produced, such as electric contacts,
electrode, refractory parts, heat sinks and parts of rocket, We can also
produce tungsten copper alloy sheet material, tubing, plate and other small
products by mould pressing, extrusion pressing and MIM.
Copper tungsten alloy
combines the properties of both metals, resulting in a material that is
heat-resistant, ablation-resistant, highly thermally and electrically
conductive, and easy to machine.
Parts are made
from the tungsten copper alloy by pressing the tungsten particles into a
desired shape, sintering the compacted part, and then infiltrating with molten
copper. Sheets, rods and bars of tungsten copper alloy are available as well.
Commonly used
copper tungsten alloy contains 10 to 50 wt. % of copper, the remaining
portion being substantially all tungsten. The typical properties of the alloy
depend on its composition. The alloy with less wt. % of copper has higher
density, higher hardness and higher resistivity. The typical density of CuW90
alloy, with 10% of copper, is 16.75g/cm3 and 11.85g/cm3 for CuW50 alloy. CuW90
has higher hardness and resistivity of 260 HB kgf/mm2 and 6.5 µΩ.cm than CuW50.
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