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Electrolytic iron

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22: 161:, and other trace element levels to become one of the highest grades of iron on the market known as electrolytic iron. Once the iron is in its purest state, it can be then used as a component in alloys. Alloys with high purity elemental makeups have specifically enhanced properties such as 242:
is producing and selling electrolytic iron refined by the wet process on an industrial scale. TOHO ZINC CO.,LTD. accounts for the top market share of high purity iron in wet type process. The purity of the iron sold is from 99.9% to 99.999%, especially including the gas components of
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Smelting is typically classified into two procedures: the wet process and the dry process. Electrolytic iron is considered the “wet process” since
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resistance, and better magnetic characteristics; a chemical process must occur to remove impurities. The most effective process is through
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resistance, on which each element draws from their best inherent properties and collectively contributes to the alloy as a whole.
86: 58: 43: 65: 478:, are areas that require the use of electrolytic iron. It is also used in research and development, special alloys ( 72: 32: 54: 125:. It has a high purity greater than 99.95% with trace elements accounting for only a millionth of a decimal. 193:
requires electric charges to move through a liquid solution. This action causes a chemical reaction called
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Electrolytic iron is utilized by the aerospace sector in areas where components are safety critical.
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are known as dry process. VOD is a process of melting pure iron in a vacuum and degassing.
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High purity iron is also produced in dry process. VOD (vacuum oxygen decarburization), and
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method is known as wet type process in addition to electrolytic refining.
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method is a process of dripping the molten metal refining pure iron as an
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liquids), etc. In addition, it is used as a raw material for Japanese
252: 244: 154: 150: 221: 205: 213: 134: 15: 212:(base plate) are immersed into an electrolyte including 228:. As a result, iron is deposited on the surface of the 149:that takes commercial grade iron and minimizes the 46:. Unsourced material may be challenged and removed. 494:produced using traditional Japanese techniques. 236:tendency, and high purity iron can be obtained. 8: 121:is a form of high purity iron, obtained by 263:Representative value of electrolytic iron 106:Learn how and when to remove this message 261: 503: 185:Production method of electrolytic iron 216:ions and other components. Moreover, 7: 509: 507: 44:adding citations to reliable sources 133:To obtain the best qualities that 14: 20: 31:needs additional citations for 482:, Ni-base alloys, Ti alloys), 1: 515:"electrolytic iron business" 440:ESR (electro-slag remelting) 436:ESR (electro-slag remelting) 564: 232:due to a difference in an 177:, heat resistance, and 137:has to offer like high 201:is electrolytic iron. 208:(raw material) and a 199:electrolytic refining 195:electrolytic refining 40:improve this article 517:. TOHO ZINC CO.,LTD 264: 55:"Electrolytic iron" 484:sputtering targets 262: 240:TOHO ZINC CO.,LTD. 220:flows between the 427: 426: 119:Electrolytic iron 116: 115: 108: 90: 555: 527: 526: 524: 522: 511: 446:. Moreover, an 265: 197:. The result of 175:fatigue strength 167:tensile strength 111: 104: 100: 97: 91: 89: 48: 24: 16: 563: 562: 558: 557: 556: 554: 553: 552: 533: 532: 531: 530: 520: 518: 513: 512: 505: 500: 456: 432: 187: 131: 112: 101: 95: 92: 49: 47: 37: 25: 12: 11: 5: 561: 559: 551: 550: 545: 535: 534: 529: 528: 502: 501: 499: 496: 480:maraging steel 455: 452: 431: 428: 425: 424: 421: 418: 415: 412: 409: 406: 403: 400: 397: 393: 392: 389: 386: 383: 380: 377: 374: 371: 368: 365: 361: 360: 357: 354: 351: 348: 345: 342: 339: 336: 333: 329: 328: 325: 322: 319: 316: 313: 310: 307: 304: 301: 297: 296: 293: 290: 287: 284: 281: 278: 275: 272: 269: 186: 183: 130: 127: 114: 113: 28: 26: 19: 13: 10: 9: 6: 4: 3: 2: 560: 549: 546: 544: 541: 540: 538: 516: 510: 508: 504: 497: 495: 493: 489: 486:, chemicals ( 485: 481: 477: 473: 469: 465: 464:engine shafts 461: 453: 451: 449: 445: 441: 437: 429: 422: 419: 416: 413: 410: 407: 404: 401: 398: 395: 394: 390: 387: 384: 381: 378: 375: 372: 369: 366: 363: 362: 358: 355: 352: 349: 346: 343: 340: 337: 334: 331: 330: 326: 323: 320: 317: 314: 311: 308: 305: 302: 299: 298: 294: 291: 288: 285: 282: 279: 276: 273: 270: 267: 266: 260: 258: 254: 250: 246: 241: 237: 235: 231: 227: 223: 219: 215: 211: 207: 202: 200: 196: 192: 184: 182: 180: 176: 172: 168: 164: 160: 156: 152: 148: 144: 140: 136: 128: 126: 124: 120: 110: 107: 99: 88: 85: 81: 78: 74: 71: 67: 64: 60: 57: –  56: 52: 51:Find sources: 45: 41: 35: 34: 29:This article 27: 23: 18: 17: 548:Electrolysis 519:. Retrieved 472:gas turbines 468:jet aircraft 460:Landing gear 457: 448:ion exchange 433: 430:Other method 238: 203: 191:electrolysis 188: 147:electrolysis 132: 123:electrolysis 118: 117: 102: 96:October 2020 93: 83: 76: 69: 62: 50: 38:Please help 33:verification 30: 454:Application 537:Categories 521:16 October 498:References 476:generators 268:Purity(%) 234:ionization 66:newspapers 444:electrode 179:corrosion 171:toughness 163:ductility 143:corrosion 139:ductility 286:Cu(ppm) 283:Mn(ppm) 280:Si(ppm) 224:and the 129:Overview 488:etching 470:, and 295:N(ppm) 292:H(ppm) 289:O(ppm) 277:S(ppm) 274:P(ppm) 271:C(ppm) 230:cathode 226:cathode 218:current 210:cathode 141:, more 80:scholar 492:swords 408:<5 396:99.97 376:<5 364:99.97 344:<5 332:99.97 327:<5 321:20~50 312:<5 300:99.99 255:, and 82:  75:  68:  61:  53:  303:5~15 222:anode 206:anode 87:JSTOR 73:books 543:Iron 523:2020 417:100 353:110 324:1~3 309:1~3 214:iron 135:iron 59:news 474:of 466:in 399:20 385:70 382:15 367:15 335:15 204:An 42:by 539:: 506:^ 462:, 423:5 420:- 414:1 411:1 405:8 402:5 391:8 388:- 379:1 373:1 370:8 359:8 356:3 350:2 347:1 341:7 338:7 318:1 315:1 306:1 259:. 251:, 247:, 173:, 169:, 165:, 159:Mn 157:, 153:, 525:. 257:H 253:C 249:N 245:O 155:S 151:C 109:) 103:( 98:) 94:( 84:· 77:· 70:· 63:· 36:.

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"Electrolytic iron"
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electrolysis
iron
ductility
corrosion
electrolysis
C
S
Mn
ductility
tensile strength
toughness
fatigue strength
corrosion
electrolysis
electrolytic refining
electrolytic refining
anode
cathode
iron

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