1.0330 (DC01)

Классификация

Страна Раздел Категория
Германия Нелегированные стали Стали со средним C <0,12% или Rm <400 МПа

Химический состав

Стандарт Fe, % Mn, % P, % C, % S, %
DIN 1624:1987 > 99.19 < 0.6 < 0.045 < 0.12 < 0.045

Информация о поставщиках

Механические свойства при температуре 20 °C

Прокат Стандарт Размер, мм Напряжение Классификаторы $$\sigma _{B}$$, $$\textit{МПа}$$ $$\sigma_{T}$$, $$\textit{МПа}$$ $$\epsilon_{L (L_0 = 80 mm)}$$, % $$\epsilon_{L (L_0 = 5.65\sqrt{S_o})}$$, % Обработка
270–410 280 28
отжиг, мягкий 32

Твёрдость по Викерсу

Прокат Стандарт Классификаторы Значение, HV
отжиг, мягкий 105

Properties

Property
According to DIN 1624 Designation processing K note is Not standardized
According to DIN 1624 Designation processing G note Annealing
According to DIN 1624 Designation processing G Thickness: < 3 mm ; tensile strength: 270 - 390 MPa
According to DIN 1624 Designation processing G Thickness: < 3 mm ; elongation: > 28 %
According to DIN 1624 Designation processing G Thickness: > 3 mm ; tensile strength: 270 - 390 MPa
According to DIN 1624 Designation processing G Thickness: > 3 mm ; elongation: > 32 %
According to DIN 1624 Designation processing LG note Snapping
According to DIN 1624 Designation processing LG Thickness: < 0.7 mm ; yield stress: < 300 MPa
According to DIN 1624 Designation processing LG Thickness: < 0.7 mm ; tensile strength: 270 - 410 MPa
According to DIN 1624 Designation processing LG Thickness: < 0.7 mm ; elongation: > 28 %
According to DIN 1624 Designation processing LG Thickness: 0.7 - 3.0 mm ; yield strength: < 280 MPa
According to DIN 1624 Designation processing LG Thickness: 0.7 - 3.0 mm ; tensile strength: 270 - 410 MPa
According to DIN 1624 Designation processing LG Thickness: 0.7 - 3.0 mm ; elongation: > 28 %
According to DIN 1624 Designation processing LG Thickness: > 3 mm ; yield strength: < 280 MPa
According to DIN 1624 Designation processing LG Thickness: > 3 mm ; tensile strength: 270 - 410 MPa
According to DIN 1624 Designation processing LG Thickness: > 3 mm ; elongation: > 32 %
According to DIN 1624 Designation processing 32 K note Training
According to DIN 1624 Designation processing 32 K Thickness: < 3 mm ; yield strength: 200 - 380 MPa
According to DIN 1624 Designation processing 32 K Thickness: < 3 mm ; tensile strength: 290 - 430 MPa
According to DIN 1624 Designation processing 32 K Thickness: < 3 mm ; elongation: > 18 %
According to DIN 1624 Designation processing 32 K Thickness: > 3 mm ; yield strength: 200 - 380 MPa
According to DIN 1624 Designation processing 32 K Thickness: > 3 mm ; tensile strength: 290 - 430 MPa
According to DIN 1624 Designation processing 32 K Thickness: > 3 mm ; elongation: > 24 %
According to DIN 1624, the Designation processing 40 K note Training
According to DIN 1624, the Designation processing 40 K Thickness: < 3 mm ; yield strength: > 310 MPa
According to DIN 1624, the Designation processing 40 K Thickness: < 3 mm ; tensile strength: 390 - 540 MPa
According to DIN 1624, the Designation processing 40 K Thickness: < 3 mm ; elongation: > 4 %
According to DIN 1624, the Designation processing 40 K Thickness: > 3 mm ; yield strength: > 310 MPa
According to DIN 1624, the Designation processing 40 K Thickness: > 3 mm ; tensile strength: 390 - 540 MPa
According to DIN 1624, the Designation processing 40 K Thickness: > 3 mm ; elongation: > 12 %
According to DIN 1624 Designation processing K 50 note Training
According to DIN 1624 Designation processing K 50 yield strength: > 420 MPa
According to DIN 1624 Designation processing K 50 Temporary resistance: 490 - 640 MPa
According to DIN 1624 Designation processing K 60 note Training
According to DIN 1624 Designation processing K 60 yield strength: > 520 MPa
According to DIN 1624 Designation processing K 60 tensile strength: 590 - 740 MPa
According to DIN 1624 Designation processing K 70 note Training
According to DIN 1624 Designation processing K 70 yield strength: > 630 MPa
According to DIN 1624 Designation processing K 70 tensile strength: > 690 MPa

Аналоги

Германия Украина США
DC 04 G1 10кп SAE 1008

Стандарты

Описание химических элементов

Элемент Единицы измерений Описание
Fe % Железо
Mn % Марганец
P % Фосфор
C % Углерод
S % Сера

Описание механических свойств

Параметр Единицы измерений Описание
$$\sigma_{T}$$ $$\textit{МПа}$$ Предел текучести
$$\sigma _{B}$$ $$\textit{МПа}$$ Предел кратковременной прочности
$$\epsilon_{L (L_0 = 80 mm)}$$ % Относительное удлинение при растяжении (продольн.) (для L0 = 80 мм)
$$\epsilon_{L (L_0 = 5.65\sqrt{S_o})}$$ % Относительное удлинение при растяжении (продольн.) (для L0 = 5.65√So)