{"id":1515,"date":"2022-01-06T14:35:12","date_gmt":"2022-01-06T14:35:12","guid":{"rendered":"https:\/\/energy-ti.com\/?p=1515"},"modified":"2022-01-06T14:42:34","modified_gmt":"2022-01-06T14:42:34","slug":"the-chemical-composition-of-titanium-sponge","status":"publish","type":"post","link":"https:\/\/energy-ti.com\/pl\/the-chemical-composition-of-titanium-sponge\/","title":{"rendered":"Sk\u0142ad chemiczny g\u0105bki tytanowej"},"content":{"rendered":"

Tytan g\u0105bczasty to jasnoszare cz\u0105stki lub metal tytanowy w kszta\u0142cie g\u0105bki, kt\u00f3ry jest surowcem do produkcji wyrob\u00f3w tytanowych i innych. proszek tytanowy<\/a>. Prawie ca\u0142y tytan g\u0105bczasty jest wytwarzany w procesie Kroll, kt\u00f3ry redukuje czterochlorek tytanu za pomoc\u0105 metalicznego magnezu, przekszta\u0142caj\u0105c ilmenit w czterochlorek tytanu i reaguje z metalicznym magnezem, aby uzyska\u0107 g\u0105bczasty porowaty \"g\u0105bczasty tytan\". Obecnie \u015bwiatowa produkcja tytanu g\u0105bczastego koncentruje si\u0119 w Japonii, Stanach Zjednoczonych, Rosji, Kazachstanie, Ukrainie i Chinach oraz kilku innych krajach, wszystkie fabryki wybieraj\u0105 po\u0142\u0105czony proces redukcji magnezu i destylacji. Czysto\u015b\u0107 % (masa) g\u0105bczastego tytanu wytwarzanego metod\u0105 redukcji termicznej metalu wynosi zazwyczaj 99,1-99,7, ca\u0142kowita ilo\u015b\u0107 pierwiastka zanieczyszczenia % (masa) wynosi 0,3 ~ 0,9, tlen % (masa) wynosi 0,06 ~ 0,20, a twardo\u015b\u0107 (HB) wynosi 100 ~ 157. Sk\u0142ad chemiczny g\u0105bki tytanowej r\u00f3\u017cni si\u0119 w zale\u017cno\u015bci od standardu. Dzi\u015b przedstawiamy sk\u0142ad chemiczny standard\u00f3w g\u0105bki tytanowej w Stanach Zjednoczonych, Rosji, Japonii i Chinach.<\/p>\n<\/div><\/section>
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ASTM B299 Wymagania chemiczne<\/h3>
<\/div><\/div><\/div>
\n
\n\n\n\n\n\n\n\n
Waga wed\u0142ug % (sucha podstawa)<\/td>\nN 0.02<\/td>\nC<\/td>\nNa<\/td>\nMg<\/td>\nAl<\/td>\nCl<\/td>\nFe<\/td>\nSi<\/td>\nH<\/td>\nO<\/td>\nWoda<\/td>\nTi, min<\/td>\nTwardo\u015b\u0107 Brinella, HB, maks.<\/td>\n<\/tr>\n
GPA<\/td>\n0.02<\/td>\n0.03<\/td>\nF<\/td>\nF<\/td>\n0.05<\/td>\n0.2<\/td>\n0.15<\/td>\n0.04<\/td>\n0.03<\/td>\n0.15<\/td>\n0.02<\/td>\nPrzypomnienie<\/td>\n140<\/td>\n<\/tr>\n
ELB<\/td>\n0.008<\/td>\n0.02<\/td>\n0.1<\/td>\n0.08<\/td>\n0.03<\/td>\n0.10<\/td>\n0.05<\/td>\n0.04<\/td>\n0.02<\/td>\n0.08<\/td>\n0.02<\/td>\nPrzypomnienie<\/td>\n110<\/td>\n<\/tr>\n
SLC<\/td>\n0.015<\/td>\n0.02<\/td>\n0.19<\/td>\n\/<\/td>\n0.05<\/td>\n0.20<\/td>\n0.05<\/td>\n0.04<\/td>\n0.05<\/td>\n0.10<\/td>\n0.02<\/td>\nPrzypomnienie<\/td>\n120<\/td>\n<\/tr>\n
MLD<\/td>\n0.015<\/td>\n0.02<\/td>\n\/<\/td>\n0.50<\/td>\n0.05<\/td>\n0.20<\/td>\n0.15<\/td>\n0.04<\/td>\n0.03<\/td>\n0.10<\/td>\n0.02<\/td>\nPrzypomnienie<\/td>\n140<\/td>\n<\/tr>\n
MDE<\/td>\n0.015<\/td>\n0.02<\/td>\n\/<\/td>\n0.08<\/td>\n\/<\/td>\n0.12<\/td>\n0.12<\/td>\n0.04<\/td>\n0.010<\/td>\n0.10<\/td>\n0.02<\/td>\nPrzypomnienie<\/td>\n140<\/td>\n<\/tr>\n<\/tbody>\n<\/table>\n<\/div><\/section>
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GOST 17746 Sk\u0142ad chemiczny g\u0105bki tytanowej<\/h3>
<\/div><\/div><\/div><\/p><\/div>\n
\n\n\n\n\n\n\n\n\n\n
Stopnie<\/td>\nTi, min<\/td>\nFe<\/td>\nSi<\/td>\nNi<\/td>\nC<\/td>\nCl<\/td>\nO<\/td>\nN<\/td>\nTwardo\u015b\u0107 Brinella, HB..,
\n10\/1500\/30, maks<\/td>\n<\/tr>\n
TG90<\/td>\n99.74<\/td>\n0.05<\/td>\n0.01<\/td>\n0.04<\/td>\n0.02<\/td>\n0.08<\/td>\n0.04<\/td>\n0.02<\/td>\n90<\/td>\n<\/tr>\n
TG100<\/td>\n99.72<\/td>\n0.06<\/td>\n0.01<\/td>\n0.04<\/td>\n0.03<\/td>\n0.08<\/td>\n0.04<\/td>\n0.02<\/td>\n100<\/td>\n<\/tr>\n
TG110<\/td>\n99.67<\/td>\n0.09<\/td>\n0.02<\/td>\n0.04<\/td>\n0.03<\/td>\n0.08<\/td>\n0.06<\/td>\n0.02<\/td>\n110<\/td>\n<\/tr>\n
TG120<\/td>\n99.64<\/td>\n0.11<\/td>\n0.02<\/td>\n0.04<\/td>\n0.03<\/td>\n0.08<\/td>\n0.06<\/td>\n0.02<\/td>\n120<\/td>\n<\/tr>\n
TG130<\/td>\n99.56<\/td>\n0.13<\/td>\n0.03<\/td>\n0.04<\/td>\n0.03<\/td>\n0.10<\/td>\n0.08<\/td>\n0.03<\/td>\n130<\/td>\n<\/tr>\n
TG150<\/td>\n99.45<\/td>\n0.20<\/td>\n0.03<\/td>\n0.04<\/td>\n0.03<\/td>\n0.12<\/td>\n0.10<\/td>\n0.03<\/td>\n150<\/td>\n<\/tr>\n
TGTv<\/td>\n97.75<\/td>\n1.90<\/td>\n\/<\/td>\n\/<\/td>\n0.1<\/td>\n0.15<\/td>\n0.10<\/td>\n\/<\/td>\n\/<\/td>\n<\/tr>\n<\/tbody>\n<\/table>\n<\/div><\/section>\n

Sk\u0142ad chemiczny g\u0105bki tytanowej JIS H2151<\/h3>
<\/div><\/div><\/div>\n

Klasa A (%): Rozmiar cz\u0105stek: -19,1 + 0,84 mm<\/p>\n\n\n\n\n\n\n\n
Nr produktu.<\/td>\nMn<\/td>\nFe<\/td>\nMg<\/td>\nN<\/td>\nSi<\/td>\nC<\/td>\nH<\/td>\nO<\/td>\nCl<\/td>\nTi
\n(min.)<\/td>\n<\/tr>\n
1 (TST-P)<\/td>\n0.005<\/td>\n0.04<\/td>\n0.04<\/td>\n0.008<\/td>\n0.02<\/td>\n0.01<\/td>\n0.003<\/td>\n0.04<\/td>\n0.08<\/td>\n99.7<\/td>\n<\/tr>\n
2 (TST-1)<\/td>\n0.005<\/td>\n0.04<\/td>\n0.04<\/td>\n0.01<\/td>\n0.02<\/td>\n0.01<\/td>\n0.003<\/td>\n0.05<\/td>\n0.08<\/td>\n99.7<\/td>\n<\/tr>\n
3 (TST-2)<\/td>\n0.005<\/td>\n0.06<\/td>\n0.05<\/td>\n0.01<\/td>\n0.02<\/td>\n0.01<\/td>\n0.004<\/td>\n0.05<\/td>\n0.10<\/td>\n99.6<\/td>\n<\/tr>\n
4 (TST-3)<\/td>\n0.010<\/td>\n0.08<\/td>\n0.06<\/td>\n0.01<\/td>\n0.02<\/td>\n0.02<\/td>\n0.005<\/td>\n0.06<\/td>\n0.12<\/td>\n99.4<\/td>\n<\/tr>\n<\/tbody>\n<\/table>\n

Klasa B (%)<\/p>\n\n\n\n\n
Nr produktu.<\/td>\nN\uff08max.\uff09<\/td>\nTi\uff08min.\uff09<\/td>\n<\/tr>\n
1 (TAT-12)<\/td>\n0.3<\/td>\n97.0<\/td>\n<\/tr>\n<\/tbody>\n<\/table>\n

Klasa D (%)<\/p>\n\n\n\n\n
Ti<\/td>\n<\/tr>\n
90,0 min.<\/td>\n<\/tr>\n<\/tbody>\n<\/table>\n<\/div><\/section>\n

GB\/T 2524 Sk\u0142ad chemiczny g\u0105bki tytanowej<\/h3>
<\/div><\/div><\/div>\n

Zgodnie z GB\/T 2524, istnieje sze\u015b\u0107 klas g\u0105bki tytanowej od 0-5, odpowiadaj\u0105cych MHT-100 do MHT-200 w zale\u017cno\u015bci od czysto\u015bci (liczba 100 oznacza, \u017ce twardo\u015b\u0107 Brinella g\u0105bki tytanowej nie jest wi\u0119ksza ni\u017c 100).<\/p>\n\n\n\n\n\n\n\n\n\n
Stopnie<\/td>\nProdukty Nie<\/td>\nTi, min<\/td>\nFe<\/td>\nSi<\/td>\nCl<\/td>\nC<\/td>\nN<\/td>\nO<\/td>\nMn<\/td>\nMg<\/td>\nH<\/td>\nTwardo\u015b\u0107 Brinella, HB..,
\n10\/1500\/30, maks<\/td>\n<\/tr>\n
0<\/td>\nMHT-100<\/td>\n99.7<\/td>\n0.06<\/td>\n0.02<\/td>\n0.06<\/td>\n0.02<\/td>\n0.02<\/td>\n0.06<\/td>\n0.01<\/td>\n0.06<\/td>\n0.005<\/td>\n100<\/td>\n<\/tr>\n
1<\/td>\nMHT-110<\/td>\n99.6<\/td>\n0.1<\/td>\n0.03<\/td>\n0.08<\/td>\n0.03<\/td>\n0.02<\/td>\n0.08<\/td>\n0.01<\/td>\n0.07<\/td>\n0.005<\/td>\n110<\/td>\n<\/tr>\n
2<\/td>\nMHT-125<\/td>\n99.5<\/td>\n0.15<\/td>\n0.03<\/td>\n0.1<\/td>\n0.03<\/td>\n0.03<\/td>\n0.1<\/td>\n0.02<\/td>\n0.07<\/td>\n0.005<\/td>\n125<\/td>\n<\/tr>\n
3<\/td>\nMHT-140<\/td>\n99.3<\/td>\n0.2<\/td>\n0.03<\/td>\n0.15<\/td>\n0.03<\/td>\n0.04<\/td>\n0.15<\/td>\n0.02<\/td>\n0.08<\/td>\n0.01<\/td>\n140<\/td>\n<\/tr>\n
4<\/td>\nMHT-160<\/td>\n99.1<\/td>\n0.3<\/td>\n0.04<\/td>\n0.15<\/td>\n0.04<\/td>\n0.05<\/td>\n0.2<\/td>\n0.03<\/td>\n0.09<\/td>\n0.012<\/td>\n160<\/td>\n<\/tr>\n
5<\/td>\nMHT-200<\/td>\n98.5<\/td>\n0.4<\/td>\n0.06<\/td>\n0.3<\/td>\n0.05<\/td>\n0.1<\/td>\n0.3<\/td>\n0.08<\/td>\n0.15<\/td>\n0.03<\/td>\n200<\/td>\n<\/tr>\n<\/tbody>\n<\/table>\n<\/div><\/section>\n