Cobalt Sheet Metal
Cobalt is a shiny, brittle metal that is used to produce strong, corrosion and heat-resistant alloys, permanent magnets and hard metals.
Properties:
Atomic Symbol: Co
Atomic Number:27
Atomic Mass: 58.93g/mol
Element Category: Transition metal
Density: 8.56g/cm3at 20C
Melting Point:2723F (1495C)
Boiling Point:5301F (2927C)
Moh's Hardness: 5
Indium Ingot 99.995% purity
Specifications:
1.Typical purity 99.995% up, customize high purity 99.9999%
2. Wide range of usage such as alloys, special solder, coating, electronics and high purity indium, etc.
3. Customized indium powder size 80mesh, 100mesh, 200mesh, 325mesh, 500mesh.
4. High purity virgin Indium metal 99.995% up.
5.Wide range of application like the transparent electrode(ITO film) , solder in electronic industry, Low melting alloy, bearing for high performance engine , and the seal in low temperature, etc.
Magnesium Ingot
Product name: metallic magnesium alloy ingot
Specifications: 5kg, 6kg, 8kg, 12kg, 17.5kg
Appearance: bright silver metallic surface or as per buyer request
Main application: magnesium alloy additive, military industry, chemical industry and more.
We are exporters of Polypropylene Car Bumper Scrap and we can supply 500MT on monthly basis. However, we are seeking for buyers worldwide. Contact us for terms and condition, if interested.
DESCRIPTION :
It is galvanized steel barbed wire with two strands of wire used for fencing.
APPLICATION :
Used in fencing
Type A: The wire has four points and is formed by twisting two points wire, each two turns, tightly around both line wires.
Specification :
IS:278
SIZE RANGE :
All Sizes
Material :
The galvanized barbed wire is manufactured from galvanized mild steel wire conforming to IS: 280
Galvanizing :
The barbed wire is galvanized and the galvanizing requirements as laid down for medium coated wire of IS:4826 specification for galvanized coating on the round wire.
Packing:
The coils are normally supplied in the bare condition.
DESCRIPTION :
It is galvanised steel barbed wire with two strands of wire used for fencing.
APPLICATION :
Used in fencing
Type A : The wire have four points and formed by twesting two points wire, each two turns, tightly around both line wires.
Specification :
IS:278
SIZE RANGE :
All Sizes
Material :
The galvanised barbed wire is manufactured from galvaised mild steel wire confirming to IS : 280
Galvanizing :
The barbed wire is galvanised and the galvanizing requirements as laid down for medium coated wire of IS:4826 specification for galvanised coating on round wire.
Packing:
The coils are normally supplied in bare condition.
DESCRIPTION :
These wires are supplied in coils with Phosphated coating to facilitate cold heading operation.
APPLICATION :
Used in manufacturing Balls, Rollers, Taper rollers, Cylindrical rollers and needles etc. made out from EN31 / SAE 52100.
SPECIFICATIONS :
Grade EN31 / SAE 52100 (Carbon 0.98 â?? 1.10 % and Chromium 1.30 â?? 1.60%). Microstructure: Uniformly distributed fine carbide globules in ferrite matrix i.e. Spherodized annealed.
All properties like Hardness, Tensile strength, Size tolerance, coil weight etc. are maintained as per customerâ??s specification.
PACKING :
The finished drawn wires are dipped in rust preventive oil, securely bound at four places and wrapped with Polethene & Hessian/ HDPE.
We specialize in supplying Bearing wires to customerâ??s actual needs.
Specification :
IS:EN 31/SAE 52100
SIZE RANGE :
Min. 1.60 MM,
Max. 9.50 MM
WE ARE LEADING MANUFACTUER OF VENT PLUG FOR ELECTRIC VEHICLE BATTERY
Manufacturer & Supplier of all types of Vent Plugs,Metal drum seals and 63mm spout cap in . We are the Exclusive manufacturer of D15, D17 D19, D28 D38 and D50 Vent Plugs in India. Complete Range of Customized Venting Solutions in Industrial Packaging with a wide Network Across the globe.
Vent Plugs are designed to stabilise the pressure within the container to avoid the container from bloating, collapsing and deforming. We manufacture vented plug for bottles and containers ranging from 50 ml to 100 ltr.
We offer these printed drum cap Seals in size 50 mm and 20 mm also widely known as 2, 1, 3, 4, 7, 72 mm, 75 mm, 80 mm, and 85 mm. We also offer customized solutions for our respected clients in order to cater their requirements. Our Product is made from finest quality of tin free steel & Plastisol in order to achieve the best crimping / sealing results. We can create a new design for each of your products or use your existing artwork a company logo or even a photograph, These labels can be used on any of our cap seals or cap with a flat surface. We know your brand is important to your and our new laser printing system from kirao means you will get perfect color reduction and the highest quality every time.
Wood Type: Mango & Iron
Size (Inch): 8 x 8 x 7
MOQ Piece: 250
FOB Price (USD): 8.4
Place Of Origin: India
Quality Certification: 100% Handmade superior quality with high standards of control.
Product Name Fe-Ni-Co Alloy Nanopowder
Cas No 7439-89-6 / 7440-02-0/ 7440-48-4
Appearance Powder
Purity 99.9%
APS 60-70 nm (Can be Customized)
Formula Fe-Ni-Co
Product no. SCM-NM-130/22
Description :-
Fernico describe a family of metal alloys made primarily of iron, nickel and cobalt. The family includes Kovar, FerNiCo I, FerNiCo II, and Dumet. The name is made up of the chemical symbols of its constituent three elements. Dumet is a portmanteau of dual and metal, because it is a heterogeneous alloy, usually fabricated in the form of a wire with an alloy core and a copper cladding. These alloys possess the properties of electrical conductivity, minimal oxidation and formation of porous surfaces at working temperatures of glass and thermal coefficients of expansion which match glass closely. These requirements allow the alloys to be used in glass seals, such that the seal does not crack, fracture or leak with changes in temperature.
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Product Name Cu-In-S Alloy Nanopowder
Cas No 7440-50-8 / 7440-74-6/ 7704-34-9
Appearance Powder
Purity 99%
APS 60-70 nm (Can be Customized)
Formula Cu-In-S
Product no. SCM-NM-137/22
Description :-
Cu-In-S Alloy are generally irreversible and also require high overpotentials to run. In fact, the nanoparticles have the ability to make the redox reactions reversible and to lower the overpotentials when applied to the sensors. A polyacrylamide hydrogel with copper nanoparticles inside is able to determine glucose levels in a sample added to the gel. As phenylboronic acid groups on the hydrogel polymers bind the glucose molecules, the gel becomes swollen. As a result, the copper nanoparticles move apart, changing how incident light is diffracted by the gel. As the glucose levels decrease, the color of gel changes from red to orange to yellow to green.
One of the examples is a glucose sensor. With the use of copper nanoparticles, the sensor does not require any enzyme and therefore has no need to deal with enzyme degradation and denaturation. As described, depending on the level of glucose, the nanoparticles in the sensor diffract the incident light at a different angle. Consequently, the resulting diffracted light gives a different color based on the level of glucose. In fact, the nanoparticles enable the sensor to be more stable at high temperatures and varying pH, and more resistant to toxic chemicals. Moreover, using nanoparticles, native amino acids can be detected. A copper nanoparticle-plated screen-printed carbon electrode functions as a stable and effective sensing system for all 20 amino acid detection
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Product Name Cu-In Alloy Nanopowder
Cas No 7440-50-8 / 7440-74-6
Appearance Powder
Purity 99%
APS 60-70 nm (Can be Customized)
Formula Cu-In
Product no. SCM-NM-135/22
Description :-
Copper nanoparticles with great catalytic activities can be applied to biosensors and electrochemical sensors. Redox reactions utilized in those sensors are generally irreversible and also require high overpotentials (more energy) to run. In fact, the nanoparticles have the ability to make the redox reactions reversible and to lower the overpotentials when applied to the sensors. A polyacrylamide hydrogel with copper nanoparticles inside is able to determine glucose levels in a sample added to the gel. As phenylboronic acid groups on the hydrogel polymers bind the glucose molecules, the gel becomes swollen. As a result, the copper nanoparticles move apart, changing how incident light is diffracted by the gel. As the glucose levels decrease, the color of gel changes from red to orange to yellow to green.
One of the examples is a glucose sensor. With the use of copper nanoparticles, the sensor does not require any enzyme and therefore has no need to deal with enzyme degradation and denaturation. As described in Figure 3, depending on the level of glucose, the nanoparticles in the sensor diffract the incident light at a different angle. Consequently, the resulting diffracted light gives a different color based on the level of glucose. In fact, the nanoparticles enable the sensor to be more stable at high temperatures and varying pH, and more resistant to toxic chemicals. Moreover, using nanoparticles, native amino acids can be detected. A copper nanoparticle-plated screen-printed carbon electrode functions as a stable and effective sensing system for all 20 amino acid detection
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Product Name : Cu Zn Alloy Nano powder
Pack Size: 10 gram, 50gram, 100gam ,250gram, 500 gram
Product Name Cu Zn Alloy Nanopowder
Cas No 7440-50-8 / 7440-66-6
Appearance Powder
Purity 99%
APS 60-70 nm (Can be Customized)
Formula Cu Zn
Product no. SCM-NM-132/22
Description :-
copper couple is an alloy of zinc and copper that is employed as a reagent in organic synthesis. The couple has been widely applied as a reagent in other reactions requiring activated zinc metal. copper couple does not refer to a rigorously defined chemical structure or alloy composition. The couple may contain varying proportions of copper and zinc; the zinc content is typically greater than 90%, although an alloy containing similar proportions of zinc and copper is used in some cases. The couple is frequently prepared as a darkly-colored powder and is slurried in an ethereal solvent prior to being used in slight excess relative to the substrate. Activation of zinc by copper is essential to the couple s utility, but the origin of this effect is poorly documented. It is speculated that copper enhances reactivity of zinc at the surface of the alloy.
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