Product classification
1J117 soft magnetic alloy
1J117 is a corrosion-resistant soft magnetic alloy that is easily magnetized under the influence of an external magnetic field, and the magnetic induction intensity essentially disappears after the magnetic field is removed. Applications: It is mainly used in electromagnetic devices working in oxidizing media and hydrazine media, as well as various control devices, armatures, electromagnets, pneumatic valves, and hydraulic valves that operate without protective layers in humid and corrosive environments.
Classification:
Key words:
Superalloy | Inkenel | Hastelloy | Inkloy | Precision Alloy Series
Product Parameters
1j117 soft magnetic alloy
Chemical composition: Carbon C: ≤0.03 Silicon Si: ≤0.15 Manganese Mn: 0.30-0.70 Phosphorus P: ≤0.020 Chromium Cr: 17.0-18.5 Sulfur S: ≤0.020 Nickel Ni: 0.50-0.70 Titanium Ti: 0.30-0.70 Iron Fe: balance
1J117 stainless soft magnetic alloy, 1J117 belongs to precision alloys. The representation method of precision alloy grades is based on GBn294 "Precision Alloy Grades" regulations, using a combination of Arabic numerals and Chinese Pinyin letters.
1J---soft magnetic alloy
2J---deformation permanent magnetic alloy
3J---elastic alloy
4J---expansion alloy
5J---thermal bimetal
6J---precision resistance alloy
The two-digit number following the letter "J" indicates the sequence number of different alloy grades. The sequence starts from 01 and can go up to 99.
The sequence number of the alloy grade is generally represented by the median of the percentage content of the main element (excluding iron). If the alloy sequence number is duplicated, it is allowed for one of the alloy sequence numbers to be represented by the median of the sum of the percentage content of the main element and another alloy element, or by the upper or lower limit of the main element to indicate a distinction.
1J117 belongs to corrosion-resistant soft magnetic alloys, which are easily magnetized under the influence of an external magnetic field, and the magnetic induction intensity basically disappears after the magnetic field is removed. Uses: Mainly used in electromagnetic devices working in oxidizing media and hydrazine media, various control devices, armatures, electromagnets, pneumatic valves, and hydraulic valves working in humid and corrosive media without protective layers.
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