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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Ni-Ti 60 nm, Ni:Ti/50:50
Sn-Cu 40-100 nm, SN:CU/9:1
Sn-Cu 40-100 nm, SN:CU/1:9
Sn-Cu 40-100 nm, SN:CU/92:8
Fe-Ni-Co 40-100nm, Fe:Ni:Co/55:28:17
Fe-Ni 40-100 nm, Fe:Ni/5:5
Fe-Ni 40-100 nm, Fe:Ni/2:8
Fe-Cr-Co 40-100nm, Fe:Cr:Co/64:25:11
Cu-Zn 40nm Cu:Zn/5:5
Cu-Zn 40-100 nm, Cu:Zn/5:5
Cu-Zn 40-100 nm, Cu:Zn/6:4
Ag-Cu Nanopowder, 99.9%,
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
Related Product :
Ni-Ti 60 nm, Ni:Ti/50:50
Sn-Cu 40-100 nm, SN:CU/9:1
Sn-Cu 40-100 nm, SN:CU/1:9
Sn-Cu 40-100 nm, SN:CU/92:8
Fe-Ni-Co 40-100nm, Fe:Ni:Co/55:28:17
Fe-Ni 40-100 nm, Fe:Ni/5:5
Fe-Ni 40-100 nm, Fe:Ni/2:8
Fe-Cr-Co 40-100nm, Fe:Cr:Co/64:25:11
Cu-Zn 40nm Cu:Zn/5:5
Cu-Zn 40-100 nm, Cu:Zn/5:5
Cu-Zn 40-100 nm, Cu:Zn/6:4
Ag-Cu Nanopowder, 99.9%,
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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Ni-Ti 60 nm, Ni:Ti/50:50
Sn-Cu 40-100 nm, SN:CU/9:1
Sn-Cu 40-100 nm, SN:CU/1:9
Sn-Cu 40-100 nm, SN:CU/92:8
Fe-Ni-Co 40-100nm, Fe:Ni:Co/55:28:17
Fe-Ni 40-100 nm, Fe:Ni/5:5
Fe-Ni 40-100 nm, Fe:Ni/2:8
Fe-Cr-Co 40-100nm, Fe:Cr:Co/64:25:11
Cu-Zn 40nm Cu:Zn/5:5
Cu-Zn 40-100 nm, Cu:Zn/5:5
Cu-Zn 40-100 nm, Cu:Zn/6:4
Ag-Cu Nanopowder, 99.9%,
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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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Ni-Ti 60 nm, Ni:Ti/50:50
Sn-Cu 40-100 nm, SN:CU/9:1
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Fe-Ni-Co 40-100nm, Fe:Ni:Co/55:28:17
Fe-Ni 40-100 nm, Fe:Ni/5:5
Fe-Ni 40-100 nm, Fe:Ni/2:8
Fe-Cr-Co 40-100nm, Fe:Cr:Co/64:25:11
Cu-Zn 40nm Cu:Zn/5:5
Cu-Zn 40-100 nm, Cu:Zn/5:5
Cu-Zn 40-100 nm, Cu:Zn/6:4
Ag-Cu Nanopowder, 99.9%,
Product Name Cobalt Nanopowder
Cas No 7440-48-4
Appearance Powder
Purity 99.9%
APS 60-70 nm (Can be Customized)
Formula Co
Product no. SCM-NM-106/22
Molar Weight 58.9
Description :-
Electromagnetic-wave absorption; Electromagnetic-wave radiation shielding for cellar phones; Ferrofluids; High density magnetic storage; Magnetic inks; Magnetic toner in xerograph; Contrast agents in magnetic resonance imaging. Metal nanopowder should be gently placed and avoided violent vibration and friction. Metal nanopowder should be prevented from moisture, heat, impact and sunlight.
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Cobalt (Co) Nanopowder / Nanoparticle (Co, 99.8%, 28 nm, carbon coated, metal basis)
Fe-Ni-Co Alloy Nanopowder / Nanoparticle, 99.9%, 40 nm-100 nm, Fe:Ni:Co/55:28:17
Fe-Cr-Co Alloy Nanopowder / Nanoparticle, 99.9%, 40 nm-100nm, Fe:Cr:Co/64:25:11
Ni-Cr-Co Nanopowder / Nanoparticle, 99.9%,
Product Name : Cr2GaN MAX Phase Powder
Pack Size: 10 gram, 50gram, 100gam ,250gram, 500 gram
Product Name Cr2GaN MAX Phase Powder
Cas No N/A
Appreance Gray to Black
Purity 98%
APS 40-5m
Formula Cr2GaN
Product no. SCM-MX-107/22
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Cr2GaC MAX Phase Powder
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Hf21nc MAX Phase Powder
Related Information :-
Storage Conditions:
Airtight Sealed, Avoid light and keep dry at room temperature.
Please contact us for customization & Price inquiry
We are proactive organization Specialist in Stainless Steel Pipes and other quality products that meet and exceed customer`s specific requirements and thus ensure complete satisfaction.
We are capable of providing a vast range of materials like stainless steel, Carbon Steel & Alloy Steel Pipe Fittings from stock, to suit your needs.
Stamping is the process of placing flat sheet metal in either blank or coil form into a stamping press where a tool and die surface forms the metal into a net shape. Stamping includes a variety of sheet-metal forming manufacturing processes, such as punching using a machine press or stamping press, blanking, embossing, bending, flanging, and coining.[1] This could be a single stage operation where every stroke of the press produces the desired form on the sheet metal part, or could occur through a series of stages. The process is usually carried out on sheet metal.
Stamping parts have applications in almost all industries like automotive, electrical, medical, appliances etc. Forms and type of the stampings differ as per the design.
Marine gratings and marine grilles fully comply with CBT608 and CBT615.
Steel and stainless steel gratings are produced mainly by welding. First, we will punch or slot the flat steel, then place the crossbar into the hole for spot welding. Each contact point of the cross bar and the flat steel is properly welded. The crossbar can also be welded by spot welding. welding staff have the top grade industry profession certification
The base of the grilles or gratings could be material of steel ASTM A36, stainless steel 1cr18ni9ti, FRP,polyester and etc.
Our new product molded polyester grating is using glass fiber as the reinforcing material, using the unsaturated polyester resin as substrate and then specially processed and compounded to be strong and anti-slip.
Our grilles could be used as bilge suction grilles for shipbuildiing, deck walkway gratings, Marine submarine door grilles and etc.
Processing: Sheet metal cutting and stamping;
Material range: Aluminum, stainless steel, copper, etc;
Common surface treatments: Bead blasting, anodizing, powder coating, etc.
Lead time:3-7 time.
Product: Tin Wire
Product composition: Sn42% Bi58%
Product diameter: 0.8~2.0mm
Product weight: 500g
Working temperature: 180 â??
Melting point: 138â??
Product packaging: 20 rolls/box
Product use: suitable for low temperature lead-free packaging of heat-resistant components, manual soldering iron welding and automatic welding in the field of secondary packaging of circuit boards; suitable for welding of heat-resistant components.
product description:
The melting point of Sn42Bi58 tin wire alloy produced is 138â??, which can meet the welding and packaging requirements of electronic components that are sensitive to welding temperature. Using its own patented technology, customizing special equipment and molds to manufacture brittle tin-bismuth alloy tin wires, the low-temperature solder has a low melting point and the welding operating temperature is 190 �°C. Lead-free low-temperature solder joint brightness, welding mechanical strength, tensile toughness and electronic conductivity have been greatly improved. . It has the characteristics of fast soldering speed and firm soldering, as well as its fine alloy structure, uniform composition, and excellent welding performance.
Product: Tin Wire
Product composition: Sn96.5Ag3.0Cu0.5
Product diameter: 1.0mm
Product weight: 1000g
Working temperature: 380-420â??
Flux content: 2.0%
Product packaging: 10 rolls/box
product description:
Using high-purity tin raw materials to fuse electrolytic copper and pure silver, it is refined through a special process; the rosin core of the product is made of high-quality pure white transparent hydrogenated rosin with an organic acid activator independently developed by itself, and is boiled in a vacuum-tight container. Its process is particularly reliable; according to the activity of the rosin core, it is divided into three types: R type (low activity), RMA type (medium activity), and RA type (high activity). , The solder wire has the characteristics of low smoke and high insulation resistance, and it also has the dual functions of spot welding and drag welding, which enhances the versatility of the solder wire.
Product name: lead-free tin wire
Model: Sn99.3Cu0.7
Composition: Tin 99.3% Copper 0.7%
Weight: 1kg/roll
Specific gravity: 7.3g/cm3 Melting point: 227â??
Features of lead-free solder wire:
Made of pure tin, good wettability, electrical conductivity and thermal conductivity. The flux is moderate, and the welding does not splash. The winding is neat, no knots, easy welding operation, and high work efficiency. Environmentally friendly lead-free tin wire complies with RoHS standards and sGs certification. Tin wires of different specifications can have various alloy compositions, different types of additives and wire diameters to choose the packaging method: 50-1000 g/roll, or according to customer requirements.
Product: Tin Wire
Product composition: Sn99.95
Product diameter: 1.0mm (wire diameter can be customized 0.4mm~3.0mm)
Product weight: 1000g (weight can be customized)
Working temperature: 350-480 â??
Product packaging: 10 rolls/box
product description:
The lead-free solder wire Sn99.3Cu0.7 produced is made of high-purity tin raw material fused with electrolytic copper through a special process. It does not contain rosin, and its process is particularly reliable and unique in the industry. It is widely used in electronic equipment. , electronic products, home appliances, automotive electronics, medical equipment and other high-temperature welding products. , Easy to tin, good fluidity, no virtual welding phenomenon after welding. For welding large materials, it is necessary to preheat in advance and then tin to achieve the ideal welding effect.
Type: Lead-free tin wire
Model Number: Sn99.95
Place of Origin: China
Alloy Or Not: Not Alloy
SIize: Wire diameter: 0.3mm-6.0mm or Size can be customized according to customer needs.
Package: 50-1000g/roll.Standard export package or as required.
Payment: T/T,Western Union,L/C,etc.
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