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Hastelloy C 276 Electrode For Flowmeter
Hastelloy electrodes for magnetic flow meter. The electrodes widely used for electromagnetic flow meter producing, we can customized according your requirements. 316L electrode , Titanium electrode ,Tantalum electrode ,Hastelloy-C electrode.
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Hastelloy C22 Pipe fittings
Hastelloy C 22 Pipe fittings ( Short Radius Elbows , Long Radius Elbows , Concentric Reducers , Eccentric Reducers , Stub Ends , End Caps , Equal Tees , Weldolets , Pipe Nipples .) ASME/ANSI B16.9, ASME B16.28, MSS-SP-43, MSS SP-79 , Type Seamless / Welded / Fabricated . Hastelloy C-22 / UNS N06022 / DIN W. Nr. 2.4602
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Hastelloy C 276 Pipe fittings
Hastelloy C 276 Pipe fittings ( Short Radius Elbows , Long Radius Elbows , Concentric Reducers , Eccentric Reducers , Stub Ends , End Caps , Equal Tees , Weldolets , Pipe Nipples .) ASME/ANSI B16.9, ASME B16.28, MSS-SP-43, MSS SP-79 , Type Seamless / Welded / Fabricated Hastelloy C276 Pipe Fittings UNS (N10276), DIN (2.4819).
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Inconel 625 Rod
Inconel Round Bar , ASTM B446 Inconel, 625 Bright Round Rod , Inconel 625 Hex Rods ,Inconel 625 flat bar with standard ASTM B446 / ASME SB446 and Nickel Alloy 625/ Inconel 625 (AMS 5666)
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Inconel 601 Welding Wire
Inconel 601 Welding Wire - UNS N06601 - DIN W. Nr.2.4851 . ERNiCrFe-11 (Alloy 601) . ASME II, Part C, SFA-5.14, ERNiCrFe-11 (UNS N06601) , ASME IX, F-No.43 , BS290] NA 49 , DIN 1736 SG-NiCr23Al (2.4626) , (EN) ISO 18274 - SN16601 (NiCr23Fel5Al) , ASME III (NCA3800, NB2400), AMS and other specifications
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Inconel 600 Welding Wire
Inconel 600 Wire ASTM B166 , Inconel 600 welding wire Alloy 600. UNS N06600 / W.Nr. 2.4816 .Nickel Alloy (AWS A5.11) ENiCrFe-3 Welding Electrode, Nickel Alloy ENiCrFe-3 Welding Electrode, ENiCrFe-3 inconel 600
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Invar 32 Wire
Invar 32 Wire Super-Invar 32-5 rod UNS-K-93500, Consisting of 32% Nickel, 5% Cobalt, and the balance Iron, this alloy exhibits minimum thermal expansion (one half of Invar 36) at room temperature. It is often used in structural components, supports and substrates requiring precision measurements. ASTM F1684.
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Invar 32 Sheet
Invar 32 Sheet, plate , Invar Alloy Foil , Super Invar 32-5 Alloy DESCRIPTION. A low expansion alloy consisting of 32% Nickel, 5% Cobalt, balance Iron. This alloy exhibits minimum thermal expansion (one half of Invar 36) Invar-36, Invar-42, Pernifer 36, Invar Steel, Super Invar 32-5, Carpenter 36, 4J32, 4J36
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Invar 36 Plate
Alloy 36 Sheet (Invar) / K93603 / ASTM F1684 Widely known under several trades names such as Invar and Nilo 36**, this grade is a 36% nickel-iron alloy. AMS l-23011 CL7MIL l-23011 CL7UNS K93602/03 4J36 (China), Fe-Ni36 (France), 1.3912, Ni36 (Germany), X1NiCrMoCu, N 25-20-7 (UK) Invar 36, UNSK93600 thermostat alloy, UNSK93601 pressure vessel sheet (USA)
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Alloy 46 Wire
Alloy 46 wire : Consisting of 46% nickel and iron balance, 46 Alloy is a controlled expansion alloy used mostly in electronic applications, especially for glass and ceramic seals. Alloy 46 is also known as Pernifer 462, NILO 464, and Glass-Seal 461 , ,Fe46Ni
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Alloy 46 Sheet
Alloy 46: Consisting of 46% nickel and iron balance, 46 Alloy is a controlled expansion alloy used mostly in electronic applications, especially for glass and ceramic seals. Alloy 46 is also known as Pernifer 462, NILO 464, and Glass-Seal 461
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MP35N Thread Bolt Fastener
MP35N Thread Rod , MP35N bolts , MP35N fasteners , UNS R30035 bolts , MP35N Thread Bar, MP35N Specifications: AMS 5844, AMS 5845, AMS7468, ASTM F562, NACE MR0175. MP35N alloys are used in fasteners, springs, non-magnetic assemblies and instrumentation components in medical, marine, oil and gas well, chemical and food processing environments.
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Factory Price Molybdenum Carbide Moc Nanoparticles Moc Nano

Nano Molybdenum Carbide Moc Powder Price

nano molybdenum carbide MoC powder . 1. Gold supplier and manufacturer. 2. China factory price. 3. High purity and less particle size. 4. Timely delivery. 5. Good after-sale service

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ALB Materials Inc supply Molybdenum Carbide (MoC) Micropowder, Microparticles, 3μm, % with high quality at competitive price.

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Ultrafast Synthesis of Molybdenum Carbide Nanoparticles for

Ultrafast Synthesis of Molybdenum Carbide Nanoparticles for Efficient Hydrogen Generation Cuncai Lv,a,b Zhipeng Huang,*,a Qianpeng Yang,a,b Guangfeng Wei,a Zuofeng Chen,a Mark G Humphrey,a,c and Chi Zhang*,a a School of Chemical Science and Engineering, and Institute for Advanced Study, Tongji University, Shanghai, , P. R. China.

Transition Metal Carbides and Nitrides in Energy Storage and

Over the past decades, molybdenum carbide is one of the most widely studied transition metal carbides in the light of its intrinsic high catalytic activity similar to Pt‐group metals, low cost, high abundance, and good electrical conductivity. 108 It is well known that molybdenum carbides have four different crystal structures (., α‐MoC

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Molybdenum Disulfide MoS2 Powder Nanoparticles Microspheres

relative to the general molybdenum disulfide, nano molybdenum disulfide can significantly increase the number of surface atoms, the formation of more sulfur vacancy, to higher catalytic activity and selectivity can be used as heavy oil conversion, oil refining hydrogenation catalyst of high activity, nano-MoS2 in the process of methanation of

Structure of Mo2Cx and Mo4Cx Molybdenum Carbide Nanoparticles

Structure of Mo 2 C x and Mo 4 C x Molybdenum Carbide Nanoparticles and Their Anchoring Sites on ZSM-5 Zeolites Jie Gao ? , Yiteng Zheng ? , George B. Fitzgerald * ? , Jason de Joannis ? , Yadan Tang § , Israel E. Wachs * § , and Simon G. Podkolzin * ?

Porous molybdenum carbide nanooctahedrons synthesized via

In this work, we develop a MOFs-assisted strategy for synthesizing porous molybdenum carbide octahedral nanoparticles (denoted as MoC x nano-octahedrons) that consist of very small nanocrystallites as electrocatalysts for efficient hydrogen production.

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Ultrafast synthesis of molybdenum carbide nanoparticles for

The development of efficient, low-cost, and stable non-precious metal and metal-free nanocarbons), molybdenum carbide and tungsten carbide have gained Molybdenum carbide nanoparticles coated with few-layer carbon (MoC/ C) were

Tailored synthesis of Zn–N codoped porous MoC nanosheets

Tailored synthesis of Zn–N co-doped porous MoC nanosheets towards efficient Cost-effective hydrogen evolution reaction (HER) from the electrolysis of water is Transition metal carbides, such as molybdenum carbide (MoxC), exhibit Pt-like (Zn powder) were bought from Tianjin Damao Chemical Reagent Factory.

N,PDoped Molybdenum Carbide Nanofibers for Efficient

11 Apr 2018 N,P-Doped Molybdenum Carbide Nanofibers for Efficient Hydrogen Production Herein, well-defined N,P-codoped Mo2C/MoC nanofibers (N,P-MoxC Carbon Nanospheres: One-Step Facile Synthesis for Low-Cost and

Ultrafine α‐Phase Molybdenum Carbide Decorated with

21 Feb 2019 So, a hybrid catalyst that combines a low‐cost electrocatalyst with Pt would Herein, α‐phase molybdenum carbide (MoC1? x) nanoparticles (NPs) . Most of the MoC1? x‐EWE‐NPs are ultrafine, nanosized particles with a

nano molybdenum carbide powder Zhengzhou Dongyao

Hot sale molybdenum carbide MoC nanopowder price. $ - $/Gram Factory price molybdenum carbide powder MoC nanoparticles MoC nanopowder .

Catalysts Free FullText Effect of Ni–Mo Carbide Catalyst

19 Nov 2018 High-loading Ni–Mo carbide catalysts were prepared by the and a significant increase in the prices of oil-refining products, obtaining of . of the recovered catalysts showed negligible changes in nanoparticle sizes, thus Scheme of furfural hydrogenation over calcined catalyst MoC–SiO2 Nano Lett.

Activated Carbon, Carbon Nanofiber and Carbon Nanotube

16 Mar 2015 Molybdenum carbide was supported on three types of carbon support—activated At 350 °C, carbon nanofiber supported Mo2C afforded near and paper industry and is typically burned on-site to operate factory processes [1]. . the CNT supported catalysts containing Mo2C or MoC, these microparticles

Molybdenum carbide nanoparticle_ Understanding the

Molybdenum carbide nanoparticle: Understanding the surface properties strategy towards synthesis of cost-effective and efficient catalysts for renewable and sustainable . MoC (with face-centered cubic (fcc)) and nanosized Mo2C ( with hex- long-term test at the post-combustion capture pilot plant in Niederaussem.

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