Material for hot stamping
Abstract
The present disclosure provides a material for hot stamping including: a steel sheet including carbon (C) in an amount of 0.19 to 0.25 wt %, silicon (Si) in an amount of 0.1 to 0.6 wt %, manganese (Mn) in an amount of 0.8 to 1.6 wt %, phosphorus (P) in an amount of 0.03 wt % or less, sulfur(S) in an amount of 0.015 wt % or less, chromium (Cr) in an amount of 0.1 to 0.6 wt %, boron (B) in an amount of 0.001 to 0.005 wt %, an additive in an amount of 0.1 wt % or less, a remainder of iron (Fe), and other inevitable impurities; fine precipitates distributed inside the steel sheet, wherein the additive includes at least one of titanium (Ti), niobium (Nb), and vanadium (V), the fine precipitates include nitride or carbide of at least one of titanium (Ti), niobium (Nb), and vanadium (V), the fine precipitates trap hydrogen, and a mean diameter variation coefficient, which is a value obtained by dividing a standard deviation of a mean diameter of the fine precipitates by the mean diameter of the fine precipitates, is 0.8 or less.
Claims
exact text as granted — not AI-modified1 . A material for hot stamping, the material comprising:
a steel sheet comprising carbon (C) in an amount of 0.19 to 0.25 wt %, silicon (Si) in an amount of 0.1 to 0.6 wt %, manganese (Mn) in an amount of 0.8 to 1.6 wt %, phosphorus (P) in an amount of 0.03 wt % or less, sulfur(S) in an amount of 0.015 wt % or less, chromium (Cr) in an amount of 0.1 to 0.6 wt %, boron (B) in an amount of 0.001 to 0.005 wt %, an additive in an amount of 0.1 wt % or less, a remainder of iron (Fe), and other inevitable impurities; and fine precipitates distributed inside the steel sheet, wherein the additive comprises at least one of titanium (Ti), niobium (Nb), and vanadium (V), the fine precipitates comprise nitride or carbide of at least one of titanium (Ti), niobium (Nb), and vanadium (V), the fine precipitates trap hydrogen, and a mean diameter variation coefficient, which is a value obtained by dividing a standard deviation of a mean diameter of the fine precipitates by the mean diameter of the fine precipitates, is 0.8 or less.
2 . The material of claim 1 , wherein the material after hot stamping exhibits a tensile strength of 1,350 MPa or greater, a bending angle of 50 degrees or greater, and an amount of activated hydrogen of 0.8 wppm or less.
3 . The material of claim 1 , wherein the mean diameter of the fine precipitates is 0.007 μm or less.
4 . The material of claim 3 , wherein 60% or greater of the fine precipitates have a diameter of 0.01 μm or less.
5 . The material of claim 4 , wherein 25% or greater of the fine precipitates have a diameter of 0.005 μm or less.
6 . The material of claim 1 , wherein the number of the fine precipitates per unit area (100 μm 2 ) is 7,000 to 16,500.
7 . The material of claim 6 , wherein the number of the fine precipitates per unit area (100 μm 2 ) having a diameter of 0.01 μm or less is 4,500 to 16,000.
8 . The material of claim 7 , wherein the number of the fine precipitates per unit area (100 μm 2 ) having a diameter of 0.005 μm or less is 1,755 to 16,000.
9 . The material of claim 1 , wherein a number variation coefficient, which is a value obtained by dividing a standard deviation of a mean number of the fine precipitates by the mean number of the fine precipitates, is 0.95 or less.
10 . A material for hot stamping, the material comprising:
a steel sheet comprising carbon (C) in an amount of 0.19 to 0.25 wt %, silicon (Si) in an amount of 0.1 to 0.6 wt %, manganese (Mn) in an amount of 0.8 to 1.6 wt %, phosphorus (P) in an amount of 0.03 wt % or less, sulfur(S) in an amount of 0.015 wt % or less, chromium (Cr) in an amount of 0.1 to 0.6 wt %, boron (B) in an amount of 0.001 to 0.005 wt %, an additive in an amount of 0.1 wt % or less, a remainder of iron (Fe), and other inevitable impurities; and fine precipitates distributed inside the steel sheet, wherein the additive comprises at least one of titanium (Ti), niobium (Nb), and vanadium (V), the fine precipitates comprise nitride or carbide of at least one of titanium (Ti), niobium (Nb), and vanadium (V), the fine precipitates trap hydrogen, and a number variation coefficient, which is a value obtained by dividing a standard deviation of a mean number of the fine precipitates by the mean number of the fine precipitates, is 0.95 or less.
11 . The material of claim 10 , wherein the material after hot stamping exhibits a tensile strength of 1,350 MPa or greater, a bending angle of 50 degrees or greater, and an amount of activated hydrogen of 0.8 wppm or less.
12 . The material of claim 10 , wherein a first number variation coefficient, which is a value obtained by dividing a standard deviation of a mean number of the fine precipitates having a diameter of 0.01 μm or less from among the fine precipitates, by the mean number of the fine precipitates having a diameter of 0.01 μm or less, is 0.95 or less.
13 . The material of claim 12 , wherein a second number variation coefficient, which is a value obtained by dividing a standard deviation of a mean number of the fine precipitates having a diameter of 0.005 μm or less from among the fine precipitates, by the mean number of the fine precipitates having a diameter of 0.005 μm or less, is 0.95 or less.
14 . The material of claim 10 , wherein the number of the fine precipitates per unit area (100 μm 2 ) is 7,000 to 16,500.
15 . The material of claim 14 , wherein the number of the fine precipitates per unit area (100 μm 2 ) having a diameter of 0.01 μm or less is 4,500 to 16,000.
16 . The material of claim 15 , wherein the number of the fine precipitates per unit area (100 μm 2 ) having a diameter of 0.005 μm or less is 1,755 to 16,000.
17 . The material of claim 10 , wherein the mean diameter of the fine precipitates is 0.007 μm or less.
18 . The material of claim 17 , wherein 60% or greater of the fine precipitates have a diameter of 0.01 μm or less.
19 . The material of claim 18 , wherein 25% or greater of the fine precipitates have a diameter of 0.005 μm or less.Join the waitlist — get patent alerts
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