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Supplier: Belmont Metals, Inc.
Description: -structure of a metal during casting and solidification in order to change its properties. Properties that can be modified include: castability, surface finish, electrical conductivity, mechanical strength or ductility. The use of a Master Alloy instead of a pure metal can be for
- Applications: Abrasive / Erosive Wear Protection
- Shape / Form: Other
- Standards / Specifications: Casting Grade (ICI, etc.)
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Supplier: Zhuhai Cersol Technology Co., Ltd.
Description: Molecular formula: TiB2,CAS No.: 12045-63-5. Characteristic: ? Black hexagonal crystal or powder; tasteless. ? Excellent thermal stability, oxidation resistance and electrical conductivity. ? Density: 4.50-4.52, melting point: 2980
- Density: 4.5 to 4.52 g/cc
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Supplier: Zhuhai Cersol Technology Co., Ltd.
Description: Molecular formula: TiB2,CAS No.: 12045-63-5. Characteristic: Black hexagonal crystal or powder; tasteless. Excellent thermal stability, oxidation resistance and electrical conductivity. Density: 4.50-4.52, melting point: 2980 °c,hardness: 3600, oxidation
- Density: 4.5 to 4.52 g/cc
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Supplier: PCE Instruments / PCE Americas Inc.
Description: during changing ambient conditions. Measurement of the electrical conductivity of non-ferrous metals, such as aluminum, copper, titanium, magnesium or bronze, is necessary in applications involving electrical conductors and the characterization of alloys. Typical
- Battery Powered: Yes
- Display Type: Digital Display
- Mounting / Environment: Hand Held, Portable
- Temperature Compensation: Yes
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Description: Aluminium Nitride (AlN) has an astonishingly high thermal conductivity of 180-200 W/m·K. Aluminium Nitride is particularly well suited for electrical engineering applications due to its excellent electrical insulating characteristics. Aluminium Nitride is an ideal material for
- Dielectric Strength: 2.00E7 V/m
- Material Type: Aluminum Nitride
- Thermal Conductivity: 180 to 200 W/m-K
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Description: electrode design, automobile bearings and bushings, as well as air and hydraulic filtration systems. All our expanded metals can be tailored to meet specific mechanical and electrical performance parameters. Whether it's EMI shielding effectiveness or lightning strike conductivity, the
- Applications: Aerospace / Aircraft (AQ), Automotive / Vehicular, Battery / Fuel Cell, Electronics / RF-Microwave, Oil and Gas, Other
- Features: Coated
- Processing & Finish: Annealed
- Shape / Form: Other
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Supplier: 3M Advanced Materials Division
Description: High hardness Extremely high electrical conductivity Thermal stability Inert to nonferrous metals 3M™ Titanium Diboride Powders are highly resistant to abrasion, chemical corrosion and high temperatures, making them suitable for wear
- Applications: Electrical / HV Parts, Other
- Material Type: Specialty Ceramic
- Shape / Form: Granular Fill / Bed Media, Powder / Aggregate (Grain / Grog)
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Supplier: Plansee SE
Description: resistance Thermal conductivity Electrical conductivity Color effects Antibacterial properties Tailor-made coatings. We have one more thing to add: We introduce additional elements to perfect our
- Type: Sputtering Target
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Description: Boron Nitride is a high-temperature ceramic that has a structure similar to graphite. Our portfolio of hot-pressed solid materials includes pure Hexagonal Boron Nitride as well as composites suitable for applications requiring excellent thermal properties combined with electrical isolation
- Material Type: Aluminum Nitride, Boron Nitride
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Supplier: PCE Instruments / PCE Americas Inc.
Description: changing ambient conditions. Measurement of the electrical conductivity of non-ferrous metals, such as aluminum, copper, titanium, magnesium or bronze, is necessary in applications involving electrical conductors and the characterization of alloys. Typical application
- Accuracy: 0.5000 to 1 ±% Full Scale
- Form Factor: Portable
- Measuring Range: 3.00E6 to 6.50E8 mS/cm
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Supplier: TE Connectivity
Description: Body Features Port Material : Titanium Configuration Features Electrical Connection : Internal Battery Pressure Port/Fitting : Ported Electrical Characteristics
- Communication Interface Options: Serial Interface
- Level Measurement Type: Continuous Level
- Media Type: Liquid
- Meter Technology: Electrical Conductivity or Resistance, Other
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Supplier: TE Connectivity
Description: Body Features Port Material : Titanium Configuration Features Electrical Connection : Internal Battery Pressure Port/Fitting : Ported Electrical Characteristics
- Communication Interface: Serial Interface
- Level Measurement Type: Continuous Level
- Meter Technology: Electrical Conductivity / Resistance, Other
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Supplier: ASTM International
Description: accordingly to examine their conformance to dimensional (mass, thickness, width, length, straightness, and edge), mechanical (tensile strength and Rockwell hardness), electrical (resistivity and equivalent conductivity), and chemical composition requirements.
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Supplier: PMC Engineering LLC
Description: Titanium construction and integral polyurethane cable provide a reliable long term solution for these difficult-to-measure applications. Kevlar is used as a cable reinforcement to avoid any elongation, particularly when long lengths of cable are required for deep wells. Long term stability of
- Device Classification: Sensor-Only
- Level Measurement Type: Continuous Level
- Material Temperature Range: 25 to 125 F
- Maximum Operating Pressure: 500 psi
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Supplier: PMC Engineering LLC
Description: titanium housing provides immunity to virtually all environments, especially including brackish or sea water, or other chemicals unsuitable for stainless steel. The standard polyurethane vented cable is molded to the transmitter providing the highest integrity waterproof assembly well proven
- Device Classification: Sensor-Only
- Level Measurement Type: Continuous Level
- Material Temperature Range: -5 to 175 F
- Maximum Operating Pressure: 150 psi
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Supplier: PMC Engineering LLC
Description: specifically developed for long term monitoring in wells and other applications where high performance is important. Accuracies of better than 0.05% are available. The Titanium housing provides immunity to virtually all environments, especially including brackish or sea water, or other
- Device Classification: Sensor-Only
- Level Measurement Type: Continuous Level
- Material Temperature Range: 30 to 255 F
- Maximum Operating Pressure: 1000 psi
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Supplier: PMC Engineering LLC
Description: . VersaLine VL5270 Series Depth and Level Transmitter Ranges: Full Scale (Zero based)0-30, 50"WC; 0-1, 5, 10, 15, 30, 50, 100, 150, 300 psig, and 500, 1000 psisg;0-50, 100, 150, 200, 300 psia;Other ranges or engineering units can be specified. 0.1% Accuracy 0-5VDC or 4-20mA 250°F continuous 1"
- Device Classification: Sensor-Only
- Level Measurement Type: Continuous Level
- Material Temperature Range: 30 to 255 F
- Maximum Operating Pressure: 1000 psi
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Supplier: Keller America, Inc.
Description: water parameters such as temperature and conductivity. The 36 Xi W series is based on the proven KELLER 36 X W series using the high-quality 10 L-series pressure transducer. All series X pressure level transmitters feature an RS485 interface, which provide pressure and temperature standard
- Communication Interface: Serial Interface, Other Interface Type
- Device Classification: Sensor-Only
- Level Measurement Type: Continuous Level
- Maximum Operating Pressure: 435 psi
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Description: Strip, Coil, Foil, Wire, ASTM F290 APPLICATIONS Used typically for electrical contact applications such as springs. DESCRIPTION Permanickel 300® is an age-hardenable high Nickel super alloy with a maximum carbon level of 0.4% and Magnesium and Titanium
- Applications: Electrical / HV Parts, Other
- Coil Stock: Yes
- Elongation: 1 to 50 %
- Features: Cold Finished / Rolled, Corrosion Resistant, Hot Rolled
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Description: the base materials. Metal-to-Ceramic Bonding Titanium-to-Zirconia Invar-to-AIN Metal-to-Composite Bonding Titanium-to-CuMo High thermal conductivity Low density
- Additional Services: CAD / CAM Support, Design Assistance, Fixture Design / Fabrication, Low to Mid Volume Production, Machining, Testing and Inspection
- Dissimilar Materials: Yes
- Industry Served: Aerospace / Avionics, Electrical Parts / Assemblies (Contacts, Connectors, etc.), Heat Sinks / Thermal Management, Medical Devices / Health Care
- Location: North America, United States Only, Northwest US Only
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Description: other design elements. Explosive Bonding of Materials Materials can often exhibit good corrosive resistance, electrical conductivity, or thermal conductivity, yet be lacking in the strength, hardness, weld-ability, or wear resistance required by the final design. PA&E has
- Cladding / Hardfacing Process: Explosive Bonding, Specialty / Other
- Function / Performance: Abrasion / Erosion Resistant, Blast Mitigation / Armor, Conductive / Electrical, Corrosion / Chemical Resistant (Rust Preventive), Heat Resistant / High Temperature, Impact Resistant, Magnetic, Non-magnetic, Wear / Tribology, Specialty / Other
- Hardening / Heat Treatment: Yes
- Materials: Aluminum, Braze, Carbide / Hardmetal, Composite / Metal Matrix, Copper / Copper Alloy, Nickel / Nickel Alloy, Precious Metal (Gold, Silver), Refractory Metal, Solder, Steel - Stainless, Steel - High Carbon / Alloy, Steel - Tool, Titanium Alloy
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Supplier: Materion Corporation
Description: BrushCAST high strength casting Alloy 20C provides peak strength and hardness greater than many steels, but with thermal conductivity similar to that of aluminum, and up to five times that of steel. Additionally, beryllium Alloy 20C offers good electrical conductivity, excellent
- Applications: Aerospace / Aircraft (AQ), Wear Parts / Tooling, Other
- Features: Cast (Continuous, Centrifugal, etc.)
- Light Alloy: Yes
- Metal / Alloy Types: Copper, Brass or Bronze Alloy (UNS C), Refractory / Reactive (UNS R), Beryllium / Beryllium Alloy
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Supplier: Materion Corporation
Description: BrushCAST high strength casting alloy 275C provides peak strength and hardness greater than most steels, and offers thermal conductivity similar to that of aluminum, and up to five times that of steel. Beryllium Alloy 275C offers excellent electrical conductivity, wear and
- Applications: Aerospace / Aircraft (AQ), Wear Parts / Tooling, Other
- Features: Cast (Continuous, Centrifugal, etc.)
- Light Alloy: Yes
- Metal / Alloy Types: Copper, Brass or Bronze Alloy (UNS C), Refractory / Reactive (UNS R), Beryllium / Beryllium Alloy
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Supplier: Applied Diamond, Inc.
Description: Applied Diamond can build heat spreaders for the most extreme possibilities. As a material, diamond has no peer as a semiconductor medium. The unsurpassed thermal conductivity of diamond and its high electrical resistivity allow for better performance across virtually all measures of
- Device: Passive Heat Sink
- Height: 0.1000 to 0.5000 mm
- Length: 1.5 to 30 mm
- Material: Mixed Material, Other Materials
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Description: Aluminum Nitride (AlN) is a suitable material to utilize when high thermal conductivity and electrical insulation are required, making it perfect for use in thermal management and electrical applications. Furthermore, AlN is a popular alternative to Beryllium Oxide (BeO) in the
- Material Type: Aluminum Nitride
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Description: Aluminum Nitride (AlN) is a suitable material to utilize when high thermal conductivity and electrical insulation are required, making it perfect for use in thermal management and electrical applications. Furthermore, AlN is a popular alternative to Beryllium Oxide (BeO) in the
- Material Type: Aluminum Nitride
- Shape / Form: Plate / Board (e.g., Fiberboard)
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Supplier: Fischer Technology, Inc.
Description: piston surfaces (NICKELSCOPE®) in the automotive sector Ferrite content in austenitic or duplex steels (PERMASCOPE®) Electrical conductivity of non-magnetic metals such as copper, aluminum, titanium (SIGMASCOPE®)
- Coating Thickness: Yes
- Gaging Technology: Eddy Current / Electromagnetic, Electronic
- Graduation / Resolution: 0.0 to 0.0787 inch
- Mounting / Loading: Benchtop / Floor
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Supplier: Indium Corporation
Description: Thermal and Electrical Conductivity Metals conduct heat and electricity with their valence electrons. This very effective conduction mechanism is a property of liquid as well as solid metals and alloys. Accordingly, liquid metals have thermal conductivity far superior to
- Chemical / Polymer System Type: Specialty / Other
- Coeff. of Thermal Expansion (CTE): 16.11 µin/in-F
- Elongation: 22 to 41 %
- Features: Thermal Compound / Interface (Thermally Conductive)
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Supplier: Belmont Metals, Inc.
Description: -structure of a metal during casting and solidification in order to change its properties. Properties that can be modified include: castability, surface finish, electrical conductivity, mechanical strength or ductility. The use of a Master Alloy instead of a pure metal can be for
- Applications: Abrasive / Erosive Wear Protection
- Shape / Form: Billet / Slab / Bloom
- Standards / Specifications: Casting Grade (ICI, etc.)
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Supplier: Belmont Metals, Inc.
Description: -structure of a metal during casting and solidification in order to change its properties. Properties that can be modified include: castability, surface finish, electrical conductivity, mechanical strength or ductility. The use of a Master Alloy instead of a pure metal can be for
- Applications: Abrasive / Erosive Wear Protection
- Shape / Form: Other
- Standards / Specifications: Casting Grade (ICI, etc.)
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Supplier: Belmont Metals, Inc.
Description: -structure of a metal during casting and solidification in order to change its properties. Properties that can be modified include: castability, surface finish, electrical conductivity, mechanical strength or ductility. The use of a Master Alloy instead of a pure metal can be for
- Applications: Abrasive / Erosive Wear Protection
- Shape / Form: Other
- Standards / Specifications: Casting Grade (ICI, etc.)
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Description: conductivity -- part of NFPA 77 Explosibility of tantalum, titanium, magnesium, and zirconium, and electrically conducted floors -- from NFPA 484 Parameters to determine degree and extent of hazardous locations for dusts -- from NFPA 499 Table to determine
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Supplier: Raytheon ELCAN Optical Technologies
Description: and manufacture including anti-reflection, high reflection and hard-carbon protective coatings for eye and sensor protection, beam splitting, electrical conductivity and other performance enhancements. Established in Canada in 1952, Raytheon ELCAN has evolved into one of the world's
- Functional / Performance: Abrasion Resistant, Antireflective, Chemical Resistant, Conductive, Dielectric, Corrosion / Rust Preventive, Friction Reducing / Low Friction, Heat Resistant / High Temperature, Mold Release / Nonstick, Oil & Grease Resistant, Reflective, Protective, Waterproof / Water Repellant, Wear / Erosion
- Hard Coating / Treatment: Yes
- Industry: Aerospace, Automotive, Electronics, Energy / Utilities, Food & Beverage, Government, Medical / Healthcare, Military Specification, OEM / Industrial
- Material / Substrate Capabilities: Aluminum, Carbide, Ceramic, Composites, Copper / Copper Alloys, Glass, Iron / Cast Iron, Metal, Nickel / Nickel Alloys, Precious Metals, Plastic, Stainless Steel, Steel / Steel Alloys, Titanium, Specialty / Other
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μm), the device ensures quick, easy, accurate and reproducible measurements of coated or corroded pieces during changing ambient conditions. Measurement of the electrical conductivity of non-ferrous metals, such as aluminum, copper, titanium, magnesium or bronze, is necessary in applications (read more)
Browse Conductivity and Resistivity Meters Datasheets for PCE Instruments / PCE Americas Inc. -
-pressure environments and undergo 100% electrical and hermetic testing to ensure performance and reliability. Douglas also upgrades non-hermetic or obsolete interconnects by sealing them with epoxy and verifying conductivity and leak integrity. Beyond wire and cable solutions, the company can (read more)
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Dexmet® Corporation, a part of PPG’s engineered materials division
MicroGrid is a superior alternative to woven wire
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industries." The new material range opens many exciting new AM applications for users of Renishaw's RenAM 500 series. Pure copper, with its extremely high thermal and electrical conductivity, is well-suited to consumer electronics and heat exchanger components. Aluminium AlSi7Mg is a (read more)
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other metals, such as silicon. Brass The most common alloy of copper. It is approximately 2/3 copper and 1/3 zinc. It has high electrical conductivity, non-magnetic with low to average strength and good corrosion resistance. Brass and (read more)
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. BRASS The most common alloy of copper. It is approximately 2/3 copper and 1/3 zinc. It has high electrical conductivity, non-magnetic with low to average strength and good corrosion resistance. Brass and silicon bronze gain their strength from the addition of other metals, such as (read more)
Browse Screws Datasheets for ZAGO Manufacturing Company, Inc. -
Dexmet® Corporation, a part of PPG’s engineered materials division
Expanded Metals for Fuel Cell Technologies
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materials used in the equipment. Zirconia ceramics are excellent electrical insulators and are suitable for applications where conductivity needs to be reduced to the minimum. This feature is beneficial in devices that include electronic components because it helps prevent short circuits and ensure (read more)
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RF signals, which means that connectors used in quantum computing must be designed to be mechanically robust and stable, ensuring that connections remain secure and free from microphonics. The use of materials with low electrical resistance and high thermal conductivity helps in reducing noise (read more)
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, depending on the desired properties. Copper - Pinkish/brownish in color, ductile, soft, malleable, and very high in thermal and electrical conductivity. Brass - As this is an alloy of copper, it has similar (read more)
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ALUMINUM ALLOY 201.0: Premium casting aluminum alloy
… 0.20-0.50 12.6 (22.7) x 104 Manganese 6R572'F v"C, 20-30(-K) 13.7(24.7) x 1W 0.15-0.55 Magnesium Thermal conductivity, Btu/ft/h/"F (w/MC at 25°C) 70 (121) 0.15-0.35 Titanium Electrical conductivity .
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Electrical conductivity of titanium pyrophosphate between 100 and 400 °C: effect of sintering temperature and phosphorus content - DTU Orbit
Electrical conductivity of titanium pyrophosphate between 100 and 400 °C: effect of sintering temperature and phosphorus content .
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Microstructure of Heterogeneous Mixtures for Gasless Combustion
As is easily calculated from the data of Fig. 3, the ratio of the electrical conductivity of the powder samples to the electrical conductivity of titanium varies from 2 · 10−6 for samples of nearly bulk density to 2 · 10−2 for …
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Semiconducting large bandgap oxides as potential thermoelectric materials for high-temperature power generation?
The models indicate that the elec- trical conductivity of titanium dioxide increases with decreasing oxygen partial pressure.
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Thermal conductivity and electrical conductivity of materials based on titanium and its alloys at temperatures from 20–80 to 1000°K
We present data on the thermal conductivity and electrical conductivity of titanium alloys OT4 (2% AI, 1.5% Mn), VT6 (5% A1, 4% V), VT8 (6% A1, 3.5% Mo, 0.25% St), and TS5 (5.5% A1, 1.5% V, 2 …
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Synthesis of titanium nitride by anodic polarization of titanium
conductivity of the electrolyte was 0.8 × 10–3 S cm–1 (at this electrical conductivity , titanium dioxide was formed in ethylene glycol [5]).
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Effect of titanium and molybdenum oxides on viscosity and electrical conductivity of oxide-fluoride slags
Keywords: viscosity, electrical conductivity , titanium and molybdenum oxides, complex forming properties DOI: 10.3103/S1067821212060107 METALLURGY OF NONFERROUS METALS .
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Principles of Inorganic Materials Design 2nd Edition Complete Document
For example, TiB2 has five times the electrical conductivity of titanium metal (Holleman and Wiberg, 2001).
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Inderscience Publishers - linking academia, business and industry through research
Investigation of electrical conductivity of titanium dioxide nanofluids .
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High‐conductivity amorphous TiSi substrates for low‐temperature electron microscopy
Electrical conductivity , titanium -silicon evaporation, electron diffrac- tion, amorphous alloys, differential scanning calorimetry.
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