Explosive Models R30035/AMS 5844/2.4999 Medical Materials Alloy Tube for Vascular Stents MP35n Medical Implant Grade Cobalt Alloy Pipe

Product Details
Customization: Available
Shape: Powder
Application: Medical, Industrial
Manufacturer/Factory, Group Corporation
Diamond Member Since 2024

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  • Explosive Models R30035/AMS 5844/2.4999 Medical Materials Alloy Tube for Vascular Stents MP35n Medical Implant Grade Cobalt Alloy Pipe
  • Explosive Models R30035/AMS 5844/2.4999 Medical Materials Alloy Tube for Vascular Stents MP35n Medical Implant Grade Cobalt Alloy Pipe
  • Explosive Models R30035/AMS 5844/2.4999 Medical Materials Alloy Tube for Vascular Stents MP35n Medical Implant Grade Cobalt Alloy Pipe
  • Explosive Models R30035/AMS 5844/2.4999 Medical Materials Alloy Tube for Vascular Stents MP35n Medical Implant Grade Cobalt Alloy Pipe
  • Explosive Models R30035/AMS 5844/2.4999 Medical Materials Alloy Tube for Vascular Stents MP35n Medical Implant Grade Cobalt Alloy Pipe
  • Explosive Models R30035/AMS 5844/2.4999 Medical Materials Alloy Tube for Vascular Stents MP35n Medical Implant Grade Cobalt Alloy Pipe
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  • Overview
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Overview

Basic Info.

Model NO.
MP35n Tube/Pipe
Key Words
MP35n Tube/Pipe
Thickness
3mm - 150.0mm
Width
1000mm - 3000mm
Length
as Your Requirments
Diameter Tolerance
H9, H11, H13, K9, K11, K13 etc
Sample
Free-Sample
Surface
Lack, Peeled, Polishing, Bright, Sand Blast, Hl
MOQ
100kgs
Stock
in Stock
Transport Package
Wooden Package
Specification
MP35n
Trademark
LORK
Origin
China
HS Code
7219350000
Production Capacity
50000kg/Month

Product Description

Product Description

Explosive Models R30035/AMS 5844/2.4999 Medical Materials Alloy Tube for Vascular Stents MP35n Medical Implant Grade Cobalt Alloy PipeExplosive Models R30035/AMS 5844/2.4999 Medical Materials Alloy Tube for Vascular Stents MP35n Medical Implant Grade Cobalt Alloy Pipe

Introduction

MP35N is an age hardenable Nickel-Cobalt base alloy that has a unique combination of properties - ultra high strength, toughness, ductility and outstanding corrosion resistance. MP35N resists corrosion in hydrogen sulphide, salt water and other chloride solutions. It also has excellent resistance to crevice and stress corrosion cracking in sea water and other hostile environments.

The four alloy elements in MP35N are the basis for corrosion resistance in almost every Stainless Steel, Nickel and Cobalt-based alloy commonly used in the industry. The alloy resists corrosion in hydrogen sulphide, salt water and other Chloride solutions, as well as the mineral acids (Nitric, Hydrochloric and Sulphuric).

MP35N is suitable where a high combination of strength, high modulus values and good corrosion resistance are required.

Applications for this alloy also include medical devices and dental products.


Composition

The chemical composition of MP35N is indicated in the table below:

Element Min % Max %
C - 0.025
P - 0.015
Si - 0.15
Ni 33.00 37.00
Co bal  
Mn - 0.15
S - 0.01
Cr 19.00 21.00
Mo 9.00 10.50
Ti - 1.00
Fe - 1.00



Grade Specification
Grade UNS DIN EN AMS ASTM JIS
MP35N

R30035

 
2.4999 AMS 5844
AMS 5845
ASTM F562  

 



Mechanical Properties

Material Condtion Ultimate Tensile Strength ksi 0.2 % Yield Strength ksi Elongation % Reduction of Area % Hardness HRC
MP35N 
AMS 5844
Solution Heat Treated and Work Strengthened 255 225 12 50 45
MP35N
AMS 5845
Solution Heat Treated and Work Strengthened and Aged 260 230 8 35 38 min
 


Characteristic

Combination of high strength, ductility and good mechanical properties at ambient temperatures.
Excellent corrosion resistance in hydrogen sulphide.
Excellent resistance to crevice and stress corrosion cracking in sea water.
Age hardenable (Spring Temper only).

Outstanding corrosion resistance
High strength & ductility
Good mechanical properties at ambient temperatures
Excellent resistance to crevice & stress corrosion cracking
Meets UNS R30035 specifications


Heat Treatment (Aging)

MP35N should be aged at the temperature required to achieve the final properties desired. The amount of cold work in MP35N defines the recommended aging treatments. For AMS 5844 (fully strength/heavily cold worked) material, the alloy should be ages at 1000ºF - 1200ºF for 4 hours. For optimum sulphide SCC resistance, less-heavily cold worked material can be aged at 1300ºF or 1350ºF for 4 hours or at 1425ºF for 6 hours as indicated in NACE MR-0175. The 425ºF aging treatment provides the best sulphide SCC resistance, but at the expense of strength. Exposure to temperatures much above the recommended aging temperatures may result in significant (and nonrecoverable) loss in strength cause by the reversion of the cold-worked metallurgical structure to the much softer annealed structure.


Applications

Aerospace fasteners
Tie rods
Chemical processing
Medical devices
Dental equipment
Cryogenic equipment
Marine equipment
Oil & gas
Food processing
 

 

surface

 

Explosive Models R30035/AMS 5844/2.4999 Medical Materials Alloy Tube for Vascular Stents MP35n Medical Implant Grade Cobalt Alloy Pipe
 

Process


Explosive Models R30035/AMS 5844/2.4999 Medical Materials Alloy Tube for Vascular Stents MP35n Medical Implant Grade Cobalt Alloy Pipe

Main Applications


Explosive Models R30035/AMS 5844/2.4999 Medical Materials Alloy Tube for Vascular Stents MP35n Medical Implant Grade Cobalt Alloy Pipe

Company Profile


Explosive Models R30035/AMS 5844/2.4999 Medical Materials Alloy Tube for Vascular Stents MP35n Medical Implant Grade Cobalt Alloy Pipe

Packaging & Shipping

Explosive Models R30035/AMS 5844/2.4999 Medical Materials Alloy Tube for Vascular Stents MP35n Medical Implant Grade Cobalt Alloy PipeExplosive Models R30035/AMS 5844/2.4999 Medical Materials Alloy Tube for Vascular Stents MP35n Medical Implant Grade Cobalt Alloy Pipe

 

FAQ

Explosive Models R30035/AMS 5844/2.4999 Medical Materials Alloy Tube for Vascular Stents MP35n Medical Implant Grade Cobalt Alloy Pipe

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