
Nickel Alloy Rod
Product name: Nickel alloy rod
Brand: N4 N6
Material: Nickel alloy
Implementation standard: ASTM B160
Nickel alloy rod shape: round square hexagonal
The production process mainly includes : smelting, casting, hot working, cold working and heat treatment
Place of Origin: Baoji, China
Nickel alloys are classified by use : nickel-based high-temperature alloys Nickel-based corrosion-resistant
alloy Nickel-based wear-resistant alloy Nickel-based precision alloy Nickel-based shape memory alloy
Product Introduction
product description
Nickel combination is a composite in light of nickel and added with different components. Nickel has great mechanical, physical and substance properties. Adding fitting components can further develop its oxidation obstruction, consumption opposition, high temperature strength and work on specific actual properties. Nickel composites can be utilized as materials for electron tubes, accuracy combinations ( attractive compounds , accuracy opposition amalgams , electrothermal composites, and so on.), Shape memory alloys, high-temperature alloys based on nickel, and corrosion-resistant alloys based on nickel Nickel combinations are generally utilized in areas like energy improvement, synthetic compounds, gadgets, route, flight and aviation.
Execution standard: ASTM B160
Nickel combination bar shape: round square hexagonal
The creation interaction fundamentally incorporates : smelting, casting, heat treatment, hot working, cold working, and cold working Baoji, China
Nickel combinations are ordered by use : nickel-based high-temperature composites Nickel-based erosion safe amalgam Nickel-based wear-safe compound Nickel-based accuracy combination Nickel-based shape memory combination
Conveyance time: 10 to 15 days for personalization. Prepared stock can be transported whenever.
Packaging: Loaded in wooden boxes with plastic allotments, including material testaments and pressing records. The heaviness of a solitary box shouldn't surpass 100kg .
The development history of nickel alloys
Monel alloy, produced in the United States in 1905, is the earliest nickel-based corrosion-resistant alloy. In 1906, the United States began producing nickel-chromium-molybdenum-copper corrosion-resistant alloys. In 1920, Germany produced nickel-chromium-molybdenum corrosion-resistant alloy. In 1941, the United Kingdom produced nickel-chromium-titanium alloy. In 1953, the former Soviet Union produced nickel-tungsten-calcium alloy for electric vacuum devices. In 1958, the United States produced nickel-tungsten-zirconium alloys for electric vacuum devices. China began to produce nickel-based corrosion-resistant alloys and nickel-based temperature measurement materials in the early 1950s; in the early 1960s, it developed and produced nickel alloys and nickel-based high-temperature alloys for electric vacuum devices; in the early 1970s, it produced nickel-based catalytic alloys and nickel beryllium for synthetic diamonds Flexible alloy.

The straightness of the rod should meet the following requirements
straightness of rod
|
length |
Diameter≤20 |
Diameter>20 |
||
|
Full length straightness |
Straightness per meter |
Full length straightness |
Straightness per meter |
|
|
<1000 |
≤3 |
- |
≤5 |
|
|
≥1000~2000 |
≤3×length(m)/1m |
≤3 |
≤5×length(m)/1m |
≤5 |
|
>2000~6000 |
≤4×length (m)/1 m |
≤4 |
≤6×length(m)/1m |
≤6 |
Nickel alloy rodGrade, status and specifications
|
Trademark |
state |
Diameter/mm |
Length/mm |
|
N4, N5, N6, N7, N8, |
Y (hard) |
3~65 |
300~6000 |
|
R (hot processing) |
6~254 |
||
|
Note: Bars of other specifications can be supplied after negotiation between both parties. Specific requirements should be specified in the contract. |
|||
Applications of Nickel Alloy Rods
Avionic business: Used to make aviation motor parts, for example, turbine cutting edges and gas turbine parts, which are inclined toward for their steadiness in high temperature, high tension and destructive conditions. Petrochemical field: The petrochemical business has extremely high necessities on the consumption opposition of materials. Its great erosion obstruction and high temperature strength are generally utilized in petrochemical hardware, compound reactors, high temperature and high tension pipelines and different fields.
Electronic industry: used to make electronic gadgets, like batteries, inductors, connectors, and so forth., because of their high conductivity and attractive properties
Synthetic science : Because of its fantastic erosion opposition, it is generally utilized in assembling fields, for example, substance gear, reactors, capacity tanks and pipelines, particularly in work spaces that arrangement with solid acids, solid antacid and destructive gases. Utilized in the assembling of substance reactors, heat move hardware and other synthetic gear requiring high erosion obstruction.
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