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Supplier: Belmont Metals, Inc.
Description: Copper Master Alloys with: Beryllium, Boron, Cadmium, Chromium, Iron, Lithium, Magnesium, Manganese, Nickel, Phosphorous, Silicon, Tellurium, Titanium, Zinc, Zirconium Belmont Copper Master Alloys are alloying elements manufactured from high purity Copper and is combined with a high
- Features: Billet / Slab / Bloom, Non-ferrous - Any Type, Other
- Type: Copper, Brass or Bronze Alloy (UNS C)
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Supplier: Belmont Metals, Inc.
Description: Copper Master Alloys with: Beryllium, Boron, Cadmium, Chromium, Iron, Lithium, Magnesium, Manganese, Nickel, Phosphorous, Silicon, Tellurium, Titanium, Zinc, Zirconium Belmont Copper Master Alloys are alloying elements manufactured from high purity Copper and is combined with a high
- Features: Billet / Slab / Bloom, Non-ferrous - Any Type, Other
- Type: Copper, Brass or Bronze Alloy (UNS C)
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Supplier: Belmont Metals, Inc.
Description: Aluminum Master Alloys with Beryllium, Boron, Boron-Titanium, Chromium, Copper, Iron, Lithium , Magnesium, Manganese, Nickel, Silicon, Titanium, Zinc Belmont Aluminum Master Alloys are alloying elements manufactured from Aluminum and are combined with a high percentages of one or more
- Applications: Abrasive / Erosive Wear Protection
- Type: Aluminum / Aluminum Alloy (UNS A)
- Features: Billet / Slab / Bloom, Casting Grade (ICI, etc.), Non-ferrous - Any Type
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Supplier: Belmont Metals, Inc.
Description: Aluminum Master Alloys with Beryllium, Boron, Boron-Titanium, Chromium, Copper, Iron, Lithium , Magnesium, Manganese, Nickel, Silicon, Titanium, Zinc Belmont Aluminum Master Alloys are alloying elements manufactured from Aluminum and are combined with a high percentages of one or more
- Applications: Abrasive / Erosive Wear Protection
- Type: Aluminum / Aluminum Alloy (UNS A)
- Features: Billet / Slab / Bloom, Casting Grade (ICI, etc.), Non-ferrous - Any Type
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Supplier: High Performance Alloys, Inc.
Description: NITRONIC 50 Stainless Steel provides a combination of corrosion resistance and strength not found in any other commercial material available in its price range. This austenitic stainless has corrosion resistance greater than that provided by Types 316 and 316L, plus approximately twice the yield
- Tensile Strength (UTS, Break): 100,000 psi
- Yield Strength (YS): 55,000 psi
- Elongation: 35 %
- Specifications: AMS, ASTM / ASME, UNS
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Supplier: Concast Metal Products Co.
Description: Concast will work with engineers and specifiers to prototype and customize an alloy to meet their exacting specifications.
- AISI / AA / CDA Grade: 92,900
- ID: 0.5 to 13.5 inch
- Tensile Strength (UTS, Break): 47,000 psi
- Yield Strength (YS): 26,000 psi
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Supplier: Arcelor Mittal USA
Description: No Description Provided
- Overall Width / OD: 10 to 22 inch
- Overall Length: 102 to 252 inch
- Overall Thickness: 6 to 14 inch
- Specifications: ASTM / ASME, SAE
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Supplier: Concast Metal Products Co.
Description: Ranging from aluminum bronzes to high tin bronzes, these alloys are recognized by the Copper Development Association (CDA) and are manufactured to ASTM specifications.
- AISI / AA / CDA Grade: 90,700
- Tensile Strength (UTS, Break): 44,000 psi
- Yield Strength (YS): 22,000 psi
- Elongation: 20 %
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Supplier: Concast Metal Products Co.
Description: Ranging from aluminum bronzes to high tin bronzes, these alloys are recognized by the Copper Development Association (CDA) and are manufactured to ASTM specifications.
- AISI / AA / CDA Grade: 90,300
- Tensile Strength (UTS, Break): 45,000 psi
- Yield Strength (YS): 21,000 psi
- Elongation: 30 %
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Supplier: Concast Metal Products Co.
Description: The alloys which are described as tin bronzes have long been recognized for their low lead content (less than .25% lead) and high strength characteristics. These alloys from C90200 through C91700 are not materially different than those produced more than 3,500 years ago in Europe and China. These
- AISI / AA / CDA Grade: 93,600
- ID: 0.5 to 13.5 inch
- Tensile Strength (UTS, Break): 35,000 psi
- Yield Strength (YS): 21,000 psi
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Description: Materials may exhibit good corrosive resistance, electrical conductivity, or thermal conductivity, yet lack in the areas of strength, hardness, weld-ability, or wear resistance characteristics required in the final design. Qnnect, formerly Hermetic Solutions Group has helped customers to achieve
- Applications: Bearings (BQ), Electronics / RF-Microwave, Marine, Nuclear, Pressure Vessel (PVQ), Wear Parts / Tooling
- Features: Billet / Slab / Bloom, Corrosion Resistant, Fabricated Parts / Shapes, Ferrous / Iron Based - Any Type, Non-ferrous - Any Type
- Type: Clad / Bimetal
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Description: Design engineers are often faced with the dilemma of material selection, and frequently, they find that a combination of materials provides the optimal properties required by the design. Qnnect, formerly Hermetic Solutions Group’s explosively bonded metals can join otherwise incompatible materials
- Applications: Bearings (BQ), Electronics / RF-Microwave, Marine, Nuclear, Pressure Vessel (PVQ), Wear Parts / Tooling
- Features: Billet / Slab / Bloom, Corrosion Resistant, Fabricated Parts / Shapes, Ferrous / Iron Based - Any Type, Non-ferrous - Any Type
- Type: Clad / Bimetal
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Supplier: National Bronze & Metals Inc.
Description: C18000 Copper Chromium Nickel Silicon RWMA Class III Economical high strength, high conductivity copper base alloy. It is a heat treatable copper base alloy and its excellent properties are obtained largely through heat treatment. Its properties combine high hardness, strength and wear resistance
- UNS Number: 18,000
- AISI / AA / CDA Grade: 180
- CDA Grade: 180
- UNS C Number: 18,000
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systems maintain their high efficiency throughout their operating range. Metals such as titanium, which are susceptible to oxidation and scale formation if heated above certain temperatures can be accurately heated using induction heating. Thus increasing yield and reducing associated steps such (read more)
Browse Induction Heaters Datasheets for Inductotherm Group
More Information Top
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EconPapers: Stochastic Modelling of Times to Temperature for Furnaces Supplying Titanium Blooms to a Rolling Mill at TIMET
Stochastic Modelling of Times to Temperature for Furnaces Supplying Titanium Blooms to a Rolling Mill at TIMET .
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Effect of substituting SiO2 with TiO2 on viscosity and crystallisation of mould flux for casting titanium stabilised stainless steel
One of the most important factors affecting the formation of sound continuous cast blooms of titanium stabilised stainless steel is the performance of the mould .
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CT Provides Precise Size Assessment of Implanted Titanium Alloy Pedicle Screws
The amount of bloom artifact produced by titanium alloy implants is subject to the size of screw imaged; however, even for the 7-mm screws, the amount of distortion is minimal and usually 1 mm or less.
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METALS AND CERAMICS DIVISION ANNUAL PROGRESS REPORT FOR PERIOD ENDING JUNE 30, 1968.
E. Bloom , Effect of Titanium Additions on the Stress- Rupture Properties of Type 304 Stainless Steel, ORNL-TM .
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Bioceramics and Alternative Bearings in Joint Arthroplasty
The metal blooming artefact of the titanium alloy (left) and even worse with the cobalt chromium alloy (right) hinder the clear interpretation of MR images [11].
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FUELS AND MATERIALS DEVELOPMENT PROGRAM. Quarterly Progress Report for Period Ending December 31, 1968.
E. Bloom , Effect of Titanium Additions on the Stress-Rupture Properties of Type 304 Stainless Steel, 0RNL-TM-l8b7 (June 1967jt .
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The Cr−Ti (chromium-titanium) system
The Effect of the Elements of the First Long Period on the a-J3 Transformation in Titanium " 52BLO: Bloom , D. S., Putnam, J. W. and Grant, N. J., Trans.
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Matter
Some fungi and plants like the titan wurz (with the greatest flower of the world) attract with blowing odor Bestäuber or prey that apparently a completely have other odor sense as people.
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Effect of Neutron Irradiation on the Microstructure and Properties of Titanium-Stabilized Type 316 Stainless Steels
E. E. BLOOM , "Effect of Titanium Additions on the Stress- Rupture Properties of Type 304 Stainless Steel," ORNL-TM- 1807, Oak Ridge National Laboratory (June 1967).
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METALS AND CERAMICS DIVISION ANNUAL PROGRESS REPORT FOR PERIOD ENDING JUNE 30, 1971.
… "Review of Oak Ridge National Laboratory's Neutron Absorber Program" Spring Meeting of The Metallurgical Society of AIME, Atlanta, Ga., May 17-20, 1971 K. H. G. Ashbee,* "Plasticity of Hot Glass-Ceramics" E. E. Bloom , "Effect of Titanium Additions on the Creep …
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