Claims
- 1. A spring steel of high strength and high corrosion resistance containing:
- C: 0.3-0.49 mass % (hereinafter, referred to as %),
- Si: 1.0-3.0%,
- Mn: 0.1-0.5%,
- Cr: 0.5-1.5%, and
- Ni: 1.0% or less (excluding 0%) and/or Mo: 0.1-0.5%, the balance being essentially Fe and inevitable impurities, wherein said elements satisfy the following requirement:
- 2.5.ltoreq.(FP).ltoreq.4.5 (Ia)
- where FP=(0.23�C!+0.1).times.(0.7�Si!+1).times.(3.5�Mn!+1).times.(2.2�Cr!+1).times.(0.4�Ni!+1).times.(3�Mo!+1) in which �element! represents mass % of the element, wherein said spring steel is a steel bar or steel wire, and the composition also satisfies the following requirement:
- 2.0.ltoreq.(FP/log D).ltoreq.4.0 (Ib)
- where D is a diameter (mm) of said steel bar or steel wire after hot rolling, wherein the tensile strength after hot rolling is 1350 MPa or less; 90% or more of a cross-section of the metal structure comprises a ferrite/pearlite structure or pearlite structure; and the nodule size number of said pearlite structure is 6 or more.
- 2. A spring steel of high strength and high corrosion resistance containing:
- C: 0.3-0.49 mass % (hereinafter, referred to as %),
- Si: 1.0-3.0%,
- Mn: 0.1-0.5%,
- Cr: 0.5-1.5%, and
- Ni: 1.0% or less (excluding 0%) and/or Mo: 0.1-0.5%, the balance being essentially Fe and inevitable impurities, wherein said elements satisfy the following requirement:
- 2.5.ltoreq.(FP).ltoreq.4.5 (Ia)
- where FP=(0.23�C!+0.1).times.(0.7�Si!+1).times.(3.5�Mn!+1).times.(2.2�Cr!+1).times.(0.4�Ni!+1).times.(3�Mo!+1) in which �element! represents mass % of the element, wherein said spring steel is a steel bar or steel wire, and the composition also satisfies the following requirement:
- 2.0.ltoreq.(FP/log D).ltoreq.4.0 (Ib)
- where D is a diameter (mm) of said steel bar or steel wire after hot rolling, wherein the rolling starting temperature upon hot rolling is in the range from 850.degree. to 1050.degree. C.; the cooling starting temperature after hot rolling is in the range from 700.degree. to 900.degree. C.; and the average cooling rate in the region from said cooling starting temperature to 500.degree. C. is in the range from 0.5.degree. to 3.0.degree. C./sec.
- 3. A spring steel of high strength and high corrosion resistance according to claim 1, wherein the rolling starting temperature upon hot rolling is in the range from 850.degree. to 1050.degree. C.; the cooling starting temperature after hot rolling is in the range from 700.degree. to 900.degree. C.; and the average cooling rate in the region from said cooling starting temperature to 500.degree. C. is in the range from 0.5.degree. to 3.0.degree. C./sec.
- 4. A spring steel of high strength and high corrosion resistance containing:
- C: 0.3-0.49 mass % (hereinafter, referred to as %),
- Si: 1.0-3.0%,
- Mn: 0.1-0.5%,
- Cr: 0.5-1.5%,
- Ni: 1.0% or less (excluding 0%) and/or Mo: 0.1-0.5%, and
- Cu: 0.1-1.0%,
- the balance being essentially Fe and inevitable impurities, wherein said elements satisfy the following requirement:
- 2.5.ltoreq.(FP).ltoreq.4.5 (Ia)
- where FP=(0.23�C!+0.1).times.(0.7�Si!+1).times.(3.5�Mn!+1).times.(2.2�Cr!+1).times.(0.4�Ni!+1).times.(3�Mo!+1) in which �element! represents mass % of the element, wherein the tensile strength after hot rolling is 1350 MPa or less; 90% or more of a cross-section of the metal structure comprises a ferrite/pearlite structure or pearlite structure; and the nodule size number of said pearlite structure is 6 or more.
- 5. A spring steel of high strength and high corrosion resistance containing:
- C: 0.3-0.49 mass 6 (hereinafter, referred to as %),
- Si: 1.0-3.0%,
- Mn: 0.1-0.5%,
- Cr: 0.5-1.5%,
- Ni: 1.0% or less (excluding 0%) and/or Mo: 0.1-0.5%, and
- Cu: 0.1-1.0%,
- the balance being essentially Fe and inevitable impurities, wherein said elements satisfy the following requirement:
- 2.5.ltoreq.(FP).ltoreq.4.5 (Ia)
- where FP=(0.23�C!+0.1).times.(0.7�Si!+1).times.(3.5�Mn!+1).times.(2.2�Cr!+1).times.(0.4�Ni!+1).times.(3�Mo!+1) in which �element! represents mass % of the element, wherein said spring steel is a steel bar or steel wire, and the composition also satisfies the following requirement:
- 2.0.ltoreq.(FP/log D).ltoreq.4.0 (Ib)
- where D is a diameter (mm) of said steel bar or steel wire after hot rolling.
- 6. A spring steel of high strength and high corrosion resistance according to claim 1, which further contains 0.1-1.0% of Cu.
- 7. A spring steel of high strength and high corrosion resistance according to claim 4, wherein the rolling starting temperature upon hot rolling is in the range from 850.degree. to 1050.degree. C.; the cooling starting temperature after hot rolling is in the range from 700.degree. to 900.degree. C.; and the average cooling rate in the region from said cooling starting temperature to 500.degree. C. is in the range from 0.5.degree. to 3.0.degree. C./sec.
- 8. A spring steel of high strength and high corrosion resistance according to claim 2, which further contains 0.1-1.0% of Cu.
- 9. A spring steel of high strength and high corrosion resistance according to claim 8, wherein the tensile strength after hot rolling is 1350 MPa or less; 90% or more of a cross-section of the metal structure comprises a ferrite/pearlite structure or pearlite structure; and the nodule size number of said pearlite structure is 6 or more.
- 10. A spring steel of high strength and high corrosion resistance containing:
- C: 0.3-0.49 mass % (hereinafter, referred to as %)
- Si: 1.0-3.0%,
- Mn: 0.1-0.5%,
- Cr: 0.5-1.5%,
- Ni: 1.0% or less (excluding 0) and/or Mo: 0.1-0.5%, and at least one element selected from a group consisting of 0.01-0.5% of V, 0.01-1.0% of Nb, 0.01-1.0% of Al and 0.01-1.0% of Ti, the balance being essentially Fe and inevitable impurities, wherein said elements satisfy the following requirement:
- 2.5.ltoreq.(FP).ltoreq.4.5 (Ia)
- where FP=(0.23�C!+0.1).times.(0.7�Si!+1).times.(3.5�Mn!+1).times.(2.2�Cr!+1).times.(0.4�Ni!+1).times.(3�Mo!+1) in which �element! represents mass % of the element, wherein the tensile strength after hot rolling is 1350 MPa or less; 90% or more of a cross-section of the metal structure comprises a ferrite/pearlite structure or pearlite structure; and the nodule size number of said pearlite structure is 6 or more.
- 11. A spring steel of high strength and high corrosion resistance containing:
- C: 0.3-0.49 mass 6 (hereinafter, referred to as %),
- Si: 1.0-3.0%,
- Mn: 0.1-0.5%,
- Cr: 0.5-1.5%,
- Ni: 1.0% or less (excluding 0%) and/or Mo: 0.1-0.5%, and at least one element selected from a group consisting of 0.01-0.5% of V, 0.01-1.0% of Nb, 0.01-1.0% of Al and 0.1-1.0% of Ti, the balance being essentially Fe and inevitable impurities, wherein said elements satisfy the following requirement:
- 2.5.ltoreq.(FP).ltoreq.4.5 (Ia)
- where FP=(0.23�C!+0.1).times.(0.7�Si!+1).times.(3.5�Mn!+1).times.(2.2�Cr!+1).times.(0.4�Ni!+1).times.(3�Mo!+1) in which �element! represents mass % of the element, wherein said spring steel is a steel bar or steel wire, and the composition also satisfies the following requirement:
- 2.0.ltoreq.(FP/log D).ltoreq.4.0 (Ib)
- where D is a diameter (mm) of said steel bar or steel wire after hot rolling.
- 12. A spring steel of high strength and high corrosion resistance according to claim 10, wherein said spring steel is a steel bar or steel wire, and the composition also satisfies the following requirement:
- 2.0.ltoreq.(FP/log D).ltoreq.4.0 (Ib)
- where D is a diameter (mm) of said steel bar or steel wire after hot rolling.
- 13. A spring steel of high strength and high corrosion resistance according to claim 10, wherein the rolling starting temperature upon hot rolling is in the range from 850.degree. to 1050.degree. C.; the cooling starting temperature after hot rolling is in the range from 700.degree. to 900.degree. C.; and the average cooling rate in the region from said cooling starting temperature to 500.degree. C. is in the range from 0.5.degree. to 3.0.degree. C./sec.
- 14. A spring steel of high strength and high corrosion resistance according to claim 11, wherein the rolling starting temperature upon hot rolling is in the range from 850.degree. to 1050.degree. C.; the cooling starting temperature after hot rolling is in the range from 700.degree. to 900.degree. C.; and the average cooling rate in the region from said cooling starting temperature to 500.degree. C. is in the range from 0.5.degree. to 3.0.degree. C./sec.
- 15. A spring steel of high strength and high corrosion according resistance according to claim 14, wherein the tensile strength after hot rolling is 1350 MPa or less; 90% or more of a cross-section of the metal structure comprises a ferrite/pearlite structure or pearlite structure; and the nodule size number of said pearlite structure is 6 or more.
- 16. A spring steel of high strength and high corrosion resistance containing:
- C: 0.3-0.49 mass % (hereinafter, referred to as %),
- Si: 1.0-3.0%,
- Mn: 0.1-0.5%,
- Cr: 0.5-1.5%,
- Ni: 1.0% or less (excluding 0%) and/or Mo: 0.1-0.5%,
- Cu: 0.1-1.0%, and
- at least one element selected from a group consisting of 0.01-0.5% of V, 0.01-1.0% of Nb, 0.01-1.0% of Al and 0.01-1.0% of Ti, the balance being essentially Fe and inevitable impurities, wherein said elements satisfy the following requirement:
- 2.5.ltoreq.(FP).ltoreq.4.5 (Ia)
- where FP=(0.23�C!+0.1).times.(0.7�Si!+0.1).times.(3.5�MN!+1).times.(2.2�Cr!+1).times.(0.4�Ni!+1).times.(3�Mo!+1) in which �element! represents mass % of the element.
- 17. A spring steel of high strength and high corrosion resistance according to claim 16, wherein the tensile strength after hot rolling is 1350 MPa or less; 90% or more of a cross-section section of the metal structure comprises a ferrite/pearlite structure or pearlite structure; and the nodule size number of said pearlite structure is 6 or more.
- 18. A spring steel of high strength and high corrosion resistance according to claim 16, wherein said spring steel is a steel bar or steel wire, and the composition also satisfies the following requirement:
- 2.0.ltoreq.(FP/log D).ltoreq.4.0 (Ib)
- where D is a diameter (mm) of said steel bar or steel wire after hot rolling.
- 19. A spring steel of high strength and high corrosion resistance according to claim 18, wherein the tensile strength after hot rolling is 1350 MPa or less; 90% or more of a cross-section of the metal structure comprises a ferrite/pearlite structure or pearlite structure; and the nodule size number of said pearlite structure is 6 or more.
- 20. A spring steel of high strength and high corrosion resistance according to claim 17, wherein the rolling starting temperature upon hot rolling is in the range from 850.degree. to 1050.degree. C.; the cooling starting temperature after hot rolling is in the range from 700.degree. to 900.degree. C.; and the average cooling rate in the region from said cooling starting temperature to 500.degree. C. is in the range from 0.5.degree. to 3.0.degree. C./sec.
- 21. A spring steel of high strength and high corrosion resistance according to claim 18, wherein the rolling starting temperature upon hot rolling is in the range from 850.degree. to 1050.degree. C.; the cooling starting temperature after hot rolling is in the range from 700.degree. to 900.degree. C.; and the average cooling rate in the region from said cooling starting temperature to 500.degree. C. is in the range from 0.5.degree. to 3.0.degree. C./sec.
- 22. A spring steel of high strength and high corrosion resistance according to claim 21, wherein the tensile strength after hot rolling is 1350 MPa or less; 90% or more of a cross-section of the metal structure comprises a ferrite/pearlite structure or pearlite structure; and the nodule size number of said pearlite structure is 6 or more.
- 23. A spring steel of high strength and high corrosion resistance containing:
- C: 0.3-0.49 mass 6 (hereinafter, referred to as %),
- Si: 1.0-3.0%,
- Mn: 0.1-0.5%,
- Cr: 0.5-1.5%,
- Ni: 1.0% or less (excluding 0%) and/or Mo: 0.1-0.5%, and
- Co: 0.1-3.0% and/or W: 0.1-1.0%, the balance being essentially Fe and inevitable impurities, wherein said elements satisfy the following requirement:
- 2.5.ltoreq.(FP).ltoreq.4.5 (Ia)
- where FP=(0.23�C!+0.1).times.(0.7�Si!+1).times.(3.5�Mn!+1).times.(2.2�Cr!+1).times.(0.4�Ni!+1).times.(3�Mo!+1) in which �element! represents mass 6 of the element, wherein the tensile strength after hot rolling is 1350 MPa or less; 90% or more of a cross-section of the metal structure comprises a ferrite/pearlite structure or pearlite structure; and the nodule size number of said pearlite structure is 6 or more.
- 24. A spring steel of high strength and high corrosion resistance containing:
- C: 0.3-0.49 mass % (hereinafter, referred to as %),
- Si: 1.0-3.0%,
- Mn: 0.1-0.5%,
- Cr: 0.5-1.5%,
- Ni: 1.0% or less (excluding 0%) and/or Mo: 0.1-0.5%, and
- Co: 0.1-3.0% and/or W: 0.1-1.0%, the balance being essentially Fe and inevitable impurities, wherein said elements satisfy the following requirement:
- 2.5.ltoreq.(FP).ltoreq.4.5 (Ia)
- where FP=(0.23�C!+0.1).times.(0.7�Si!+1).times.(3.5�Mn!+1).times.(2.2�Cr!+1).times.(0.4�Ni!+1).times.(3�Mo!+1) in which �element! represents mass % of the element, wherein said spring steel is a steel bar or steel wire, and the composition also satisfies the following requirement:
- 2.0.ltoreq.(FP/log D).ltoreq.4.0 (Ib)
- where D is a diameter (mm) of said steel bar or steel wire after hot rolling.
- 25. A spring steel of high strength and high corrosion resistance according to claim 24, wherein the tensile strength after hot rolling is 1350 MPa or less; 90% or more of a cross-section of the metal structure comprises a ferrite/pearlite structure or pearlite structure; and the nodule size number of said pearlite structure is 6 or more.
- 26. A spring steel of high strength and high corrosion resistance according to claim 23, wherein the rolling starting temperature upon hot rolling is in the range from 850.degree. to 1050.degree. C.; the cooling starting temperature after hot rolling is in the range from 700.degree. to 900.degree. C.; and the average cooling rate in the region from said cooling starting temperature to 500.degree. C. is in the range from 0.5.degree. to 3.0.degree. C./sec.
- 27. A spring steel of high strength and high corrosion resistance according to claim 24, wherein the rolling starting temperature upon hot rolling is in the range from 850.degree. to 1050.degree. C.; the cooling starting temperature after hot rolling is in the range from 700.degree. to 900.degree. C.; and the average cooling rate in the region from said cooling starting temperature to 500.degree. C. is in the range from 0.5.degree. to 3.0.degree. C./sec.
- 28. A spring steel of high strength and high corrosion resistance according to claim 27, wherein the tensile strength after hot rolling is 1350 MPa or less; 90% or more of a cross-section of the metal structure comprises a ferrite/pearlite structure or pearlite structure; and the nodule size number of said pearlite structure is 6 or more.
- 29. A spring steel of high strength and high corrosion resistance containing:
- C: 0.3-0.49 mass % (hereinafter, referred to as %),
- Si: 1.0-3.0%,
- Mn: 0.1-0.56,
- Cr: 0.5-1.5%,
- Ni: 1.0% or less (excluding 0%) and/or Mo: 0.1-0.5%,
- Cu: 0.1-1.0%, and
- Co: 0.1-3.0% and/or W: 0.1-1.0%, the balance being essentially Fe and inevitable impurities, wherein said elements satisfy the following requirement:
- 2.5.ltoreq.(FP).ltoreq.4.5 (Ia)
- where FP=(0.23�C!+0.1).times.(0.7�Si!+1).times.(3.5�Mn!+1).times.(2.2�Cr!+1).times.(0.4�Ni!+1).times.(3�Mo!+1) in which �element! represents mass % of the element.
- 30. A spring steel of high strength and high corrosion resistance according to claim 29, wherein the tensile strength after hot rolling is 1350 MPa or less; 90% or more of a cross-section of the metal structure comprises a ferrite/pearlite structure or pearlite structure; and the nodule size number of said pearlite structure is 6 or more.
- 31. A spring steel of high strength and high corrosion resistance according to claim 29, wherein said spring steel is a steel bar or steel wire, and the composition also satisfies the following requirement:
- 2.0.ltoreq.(FP/log D).ltoreq.4.0 (Ib)
- where D is a diameter (mm) of said steel bar or steel wire after hot rolling.
- 32. A spring steel of high strength and high corrosion resistance according to claim 30, wherein said spring steel is a steel bar or steel wire, and the composition also satisfies the following requirement:
- 2.0.ltoreq.(FP/log D).ltoreq.4.0 (Ib)
- where D is a diameter (mm) of said steel bar or steel wire after hot rolling.
- 33. A spring steel of high strength and high corrosion resistance according to claim 30, wherein the rolling starting temperature upon hot rolling is in the range from 850.degree. to 1050.degree. C.; the cooling starting temperature after hot rolling is in the range from 700.degree. to 900.degree. C.; and the average cooling rate in the region from said cooling starting temperature to 500.degree. C. is in the range from 0.5.degree. to 3.0.degree. C./sec.
- 34. A spring steel of high strength and high corrosion resistance according to claim 31, wherein the rolling starting temperature upon hot rolling is in the range from 850.degree. to 1050.degree. C.; the cooling starting temperature after hot rolling is in the range from 700.degree. to 900.degree. C.; and the average cooling rate in the region from said cooling starting temperature to 500.degree. C. is in the range from 0.5.degree. to 3.0.degree. C./sec.
- 35. A spring steel of high strength and high corrosion resistance according to claim 34, wherein the tensile strength after hot rolling is 1350 MPa or less; 90% or more of a cross-section of the metal structure comprises a ferrite/pearlite structure or pearlite structure; and the nodule size number of said pearlite structure is 6 or more.
- 36. A spring steel of high strength and high corrosion resistance containing:
- C: 0.3-0.49 mass % (hereinafter, referred to as %),
- Si: 1.0-3.0%,
- Mn: 0.1-0.5%,
- Cr: 0.5-1.5%,
- Ni: 1.0% or less (excluding 0%) and/or Mo: 0.1-0.5%,
- Co: 0.1-3.0% and/or W: 0.1-1.0%, and at least one element selected from a group consisting of 0.01-0.5% of V, 0.01-1.0% of Nb, 0.01-1.0% of Al and 0.01-1.0% of Ti, the balance being essentially Fe and inevitable impurities, wherein said elements satisfy the following requirement:
- 2.5.ltoreq.(FP).ltoreq.4.5 (Ia)
- where FP=(0.23�C!+0.1).times.(0.7�Si!+1).times.(3.5�Mn!+1).times.(2.2�Cr!+1).times.(0.4�Ni!+1).times.(3�Mo!+1) in which �element! represents mass % of the element.
- 37. A spring steel of high strength and high corrosion according resistance according to claim 36, wherein the tensile strength after hot rolling is 1350 MPa or less; 90% or more of a cross-section of the metal structure comprises a ferrite/pearlite structure or pearlite structure; and the nodule size number of said pearlite structure is 6 or more.
- 38. A spring steel of high strength and high corrosion resistance according to claim 36, wherein said spring steel is a steel bar or steel wire, and the composition also satisfies the following requirement:
- 2.0.ltoreq.(FP/log D).ltoreq.4.0 (Ib)
- where D is a diameter (mm) of said steel bar or steel wire after hot rolling.
- 39. A spring steel of high strength and high corrosion according resistance according to claim 38, wherein the tensile strength after hot rolling is 1350 MPa or less; 90% or more of a cross-section of the metal structure comprises a ferrite/pearlite structure or pearlite structure; and the nodule size number of said pearlite structure is 6 or more.
- 40. A spring steel of high strength and high corrosion resistance according to claim 37, wherein the rolling starting temperature upon hot rolling is in the range from 850.degree. to 1050.degree. C.; the cooling starting temperature after hot rolling is in the range from 700.degree. to 900.degree. C.; and the average cooling rate in the region from said cooling starting temperature to 500.degree. C. is in the range from 0.5.degree. to 3.0.degree. C./sec.
- 41. A spring steel of high strength and high corrosion resistance according to claim 38, wherein the rolling starting temperature upon hot rolling is in the range from 850.degree. to 1050.degree. C.; the cooling starting temperature after hot rolling is in the range from 700.degree. to 900.degree. C.; and the average cooling rate in the region from said cooling starting temperature to 500.degree. C. is in the range from 0.5.degree. to 3.0.degree. C./sec.
- 42. A spring steel of high strength and high corrosion according resistance according to claim 41, wherein the tensile strength after hot rolling is 1350 MPa or less; 900 or more of a cross-section of the metal structure comprises a ferrite/pearlite structure or pearlite structure; and the nodule size number of said pearlite structure is 6 or more.
- 43. A spring steel of high strength and high corrosion resistance according to claim 36, which further contains 0.1-1.0% of Cu.
- 44. A spring steel of high strength and high corrosion according resistance according to claim 43, wherein the tensile strength after hot rolling is 1350 MPa or less; 90% or more of a cross-section of the metal structure comprises a ferrite/pearlite structure or pearlite structure; and the nodule size number of said pearlite structure is 6 or more.
- 45. A spring steel of high strength and high corrosion resistance according to claim 43, wherein said spring steel is a steel bar or steel wire, and the composition also satisfies the following requirement:
- 2.0.ltoreq.(FP/log D).ltoreq.4.0 (Ib)
- where D is a diameter (mm) of said steel bar or steel wire after hot rolling.
- 46. A spring steel of high strength and high corrosion resistance according to claim 45, wherein the tensile strength after hot rolling is 1350 MPa or less; 90% or more of a cross-section of the metal structure comprises a ferrite/pearlite structure or pearlite structure; and the nodule size number of said pearlite structure is 6 or more.
- 47. A spring steel of high strength and high corrosion resistance according to claim 44, wherein the rolling starting temperature upon hot rolling is in the range from 850.degree. to 1050.degree. C.; the cooling starting temperature after hot rolling is in the range from 700.degree. to 900.degree. C.; and the average cooling rate in the region from said cooling starting temperature to 500.degree. C. is in the range from 0.5.degree. to 3.0.degree. C./sec.
- 48. A spring steel of high strength and high corrosion resistance according to claim 45, wherein the rolling starting temperature upon hot rolling is in the range from 850.degree. to 1050.degree. C.; the cooling starting temperature after hot rolling is in the range from 700.degree. to 900.degree. C.; and the average cooling rate in the region from said cooling starting temperature to 500.degree. C. is in the range from 0.5.degree. to 3.0.degree. C./sec.
- 49. A spring steel of high strength and high corrosion resistance according to claim 48, wherein the tensile strength after hot rolling is 1350 MPa or less; 90% or more of a cross-section of the metal structure comprises a ferrite/pearlite structure or pearlite structure; and the nodule size number of said pearlite structure is 6 or more.
- 50. A spring steel of high strength and high corrosion resistance containing:
- C: 0.3-0.49 mass % (hereinafter, referred to as %),
- Si: 1.0-3.0%,
- Mn: 0.1-0.5%,
- Cr: 0.5-1.5%,
- Ni: 1.0% or less (excluding 0%) and/or Mo: 0.1-0.5%, and at least one element selected from a group consisting of 0.001-0.1% of Ca, 0.001-1.0% of La, and 0.001-1.0% of Ce for further enhancing the corrosion resistance, the balance being essentially Fe and inevitable impurities, wherein said elements satisfy the following requirement:
- 2.5.ltoreq.(FP).ltoreq.4.5 (Ia)
- where FP=(0.23�C!+0.1).times.(0.7�Si!+1).times.(3.5�Mn!+1).times.(2.2�Cr!+1).times.(0.4�Ni!+1).times.(3�Mo!+1) in which �element! represents mass % of the element, wherein the tensile strength after hot rolling is 1350 MPa or less; 90% or more of a cross-section of the metal structure comprises a ferrite/pearlite structure or pearlite structure; and the nodule size number of said pearlite structure is 6 or more.
- 51. A spring steel of high strength and high corrosion resistance containing:
- C: 0.3-0.49 mass % (hereinafter, referred to as %),
- Si: 1.0-3.0%,
- Mn: 0.1-0.5%,
- Cr: 0.5-1.5%,
- Ni: 1.0% or less (excluding 0%) and/or Mo: 0.1-0.5%, and at least one element selected from a group consisting of 0.001-0.1 of Ca, 0.001-1.0% of La, and 0.001-1.0% of Ce for further enhancing the corrosion resistance, the balance being essentially Fe and inevitable impurities, wherein said elements satisfy the following requirement:
- 2.5.ltoreq.(FP).ltoreq.4.5 (Ia)
- where FP=(0.23�C!+0.1).times.(0.7�Si!+1).times.(3.5�Mn!+1).times.(2.2�Cr!+1).times.(0.4�Ni!+1).times.(3�Mo!+1) in which �element! represents mass % of the element, wherein said spring steel is a steel bar or steel wire, and the composition also satisfies the following requirement:
- 2.0.ltoreq.(FP/log D).ltoreq.4.0 (Ib)
- where D is a diameter (mm) of said steel bar or steel wire after hot rolling.
- 52. A spring steel of high strength and high corrosion resistance according to claim 50, wherein said spring steel is a steel bar or steel wire, and the composition also satisfies the following requirement:
- 2.0.ltoreq.(FP/log D).ltoreq.4.0 (Ib)
- where D is a diameter (mm) of said steel bar or steel wire after hot rolling.
- 53. A spring steel of high strength and high corrosion resistance according to claim 50, wherein the rolling starting temperature upon hot rolling is in the range from 850.degree. to 1050.degree. C.; the cooling starting temperature after hot rolling is in the range from 700.degree. to 900.degree. C.; and the average cooling rate in the region from said cooling starting temperature to 500.degree. C. is in the range from 0.5.degree. to 3.0.degree. C./sec.
- 54. A spring steel of high strength and high corrosion resistance according to claim 51, wherein the rolling starting temperature upon hot rolling is in the range from 850.degree. to 1050.degree. C.; the cooling starting temperature after hot rolling is in the range from 700.degree. to 900.degree. C.; and the average cooling rate in the region from said cooling starting temperature to 500.degree. C. is in the range from 0.5.degree. to 3.0.degree. C./sec.
- 55. A spring steel of high strength and high corrosion resistance according to claim 54, wherein the tensile strength after hot rolling is 1350 MPa or less; 90% or more of a cross-section of the metal structure comprises a ferrite/pearlite structure or pearlite structure; and the nodule size number of said pearlite structure is 6 or more.
- 56. A spring steel of high strength and high corrosion resistance containing:
- C: 0.3-0.49 mass % (hereinafter, referred to as %),
- Si: 1.0-3.0%,
- Mn: 0.1-0.5%,
- Cr: 0.5-1.56,
- Ni: 1.0% or less (excluding 0%) and/or Mo: 0.1-0.5%,
- Cu: 0.1-1.0%, and
- at least one element selected from a group consisting of 0.001-0.1% of Ca, 0.001-1.0% of La, and 0.001-1.0% of Ce for further enhancing the corrosion resistance, the balance being essentially Fe and inevitable impurities, wherein said elements satisfy the following requirement:
- 2.5.ltoreq.(FP).ltoreq.4.5 (Ia)
- where FP=(0.23�C!+0.1).times.(0.7�Si!+1).times.(3.5�Mn!+1).times.(2.2�Cr!+1).times.(0.4�Ni!+1).times.(3�Mo!+l) in which �element! represents mass % of the element.
- 57. A spring steel of high strength and high corrosion resistance according to claim 56, wherein the tensile strength after hot rolling is 1350 MPa or less; 90% or more of a cross-section of the metal structure comprises a ferrite/pearlite structure or pearlite structure; and the nodule size number of said pearlite structure is 6 or more.
- 58. A spring steel of high strength and high corrosion resistance according to claim wherein said spring steel is a steel bar or steel wire, and the composition also satisfies the following requirement:
- 2.0.ltoreq.(FP/log D).ltoreq.4.0 (Ib)
- where D is a diameter (mm) of said steel bar or steel wire after hot rolling.
- 59. A spring steel of high strength and high corrosion resistance according to claim 58, wherein the tensile strength after hot rolling is 1350 MPa or less; 90% or more of a cross-section of the metal structure comprises a ferrite/pearlite structure or pearlite structure; and the nodule size number of said pearlite structure is 6 or more.
- 60. A spring steel of high strength and high corrosion resistance according to claim 57, wherein the rolling starting temperature upon hot rolling is in the range from 850.degree. to 1050.degree. C.; the cooling starting temperature after hot rolling is in the range from 700.degree. to 900.degree. C.; and the average cooling rate in the region from said cooling starting temperature to 500.degree. C. is in the range from 0.5.degree. to 3.0.degree. C./sec.
- 61. A spring steel of high strength and high corrosion resistance according to claim 58, wherein the rolling starting temperature upon hot rolling is in the range from 850.degree. to 1050.degree. C.; the cooling starting temperature after hot rolling is in the range from 700.degree. to 900.degree. C.; and the average cooling rate in the region from said cooling starting temperature to 500.degree. C. is in the range from 0.5.degree. to 3.0.degree. C./sec.
- 62. A spring steel of high strength and high corrosion resistance according to claim 61, wherein the tensile strength after hot rolling is 1350 MPa or less; 90% or more of a cross-section of the metal structure comprises a ferrite/pearlite structure or pearlite structure; and the nodule size number of said pearlite structure is 6 or more.
- 63. A spring steel of high strength and high corrosion resistance containing:
- C: 0.3-0.49 mass a (hereinafter, referred to as %),
- Si: 1.0-3.0%,
- Mn: 0.1-0.5%,
- Cr: 0.5-1.5%,
- Ni: 1.0% or less (excluding 0%) and/or Mo: 0.1-0.5,
- at least one element selected from a group consisting of 0.001-0.1% of Ca, 0.001-1.0% of La, and 0.001-1.0% of Ce for further enhancing the corrosion resistance, and at least one element selected from a group consisting of 0.01-0.5% of V, 0.01-1.0% of Nb, 0.01-1.0% of Al and 0.01-1.0% of Ti, the balance being essentially Fe and inevitable impurities, wherein said elements satisfy the following requirement:
- 2.5.ltoreq.(FP).ltoreq.4.5 (Ia)
- where FP=(0.23�C!+0.1).times.(0.7�Si!+1).times.(3.5�Mn!+1).times.(2.2�Cr!+1).times.(0.4�Ni!+1).times.(3�Mo!+1) in which �element! represents mass % of the element.
- 64. A spring steel of high strength and high corrosion resistance according to claim 63, wherein the tensile strength after hot rolling is 1350 MPa or less; 90% or more of a cross-section of the metal structure comprises a ferrite/pearlite structure or pearlite structure; and the nodule size number of said pearlite structure is 6 or more.
- 65. A spring steel of high strength and high corrosion resistance according to claim 63, wherein said spring steel is a steel bar or steel wire, and the composition also satisfies the following requirement:
- 2.0.ltoreq.(FP/log D).ltoreq.4.0 (Ib)
- where D is a diameter (mm) of said steel bar or steel wire after hot rolling.
- 66. A spring steel of high strength and high corrosion according resistance according to claim 65, wherein the tensile strength after hot rolling is 1350 MPa or less; 90% or more of a cross-section of the metal structure comprises a ferrite/pearlite structure or pearlite structure; and the nodule size number of said pearlite structure is 6 or more.
- 67. A spring steel of high strength and high corrosion resistance according to claim 64, wherein the rolling starting temperature upon hot rolling is in the range from 850.degree. to 1050.degree. C.; the cooling starting temperature after hot rolling is in the range from 700.degree. to 900.degree. C.; and the average cooling rate in the region from said cooling starting temperature to 500.degree. C. is in the range from 0.5.degree. to 3.0.degree. C./sec.
- 68. A spring steel of high strength and high corrosion resistance according to claim 65, wherein the rolling starting temperature upon hot rolling is in the range from 850.degree. to 1050.degree. C.; the cooling starting temperature after hot rolling is in the range from 700.degree. to 900.degree. C.; and the average cooling rate in the region from said cooling starting temperature to 500.degree. C. is in the range from 0.5.degree. to 3.0.degree. C./sec.
- 69. A spring steel of high strength and high corrosion resistance according to claim 68, wherein the tensile strength after hot rolling is 1350 MPa or less; 90% or more of a cross-section of the metal structure comprises a ferrite/pearlite structure or pearlite structure; and the nodule size number of said pearlite structure is 6 or more.
- 70. A spring steel of high strength and high corrosion resistance according to claim 63, which further contains 0.1-1.0% of Cu.
- 71. A spring steel of high strength and high corrosion resistance according to claim 70, wherein the tensile strength after hot rolling is 1350 MPa or less; 90% or more of a cross-section of the metal structure comprises a ferrite/pearlite structure or pearlite structure; and the nodule size number of said pearlite structure is 6 or more.
- 72. A spring steel of high strength and high corrosion resistance according to claim 70, wherein said spring steel is a steel bar or steel wire, and the composition also satisfies the following requirement:
- 2.0.ltoreq.(FP/log D).ltoreq.4.0 (Ib)
- where D is a diameter (mm) of said steel bar or steel wire after hot rolling.
- 73. A spring steel of high strength and high corrosion resistance according to claim 72, wherein the tensile strength after hot rolling is 1350 MPa or less; 90% or more of a cross-section of the metal structure comprises a ferrite/pearlite structure or pearlite structure; and the nodule size number of said pearlite structure is 6 or more.
- 74. A spring steel of high strength and high corrosion resistance according to claim 71, wherein the rolling starting temperature upon hot rolling is in the range from 850.degree. to 1050.degree. C.; the cooling starting temperature after hot rolling is in the range from 700.degree. to 900.degree. C.; and the average cooling rate in the region from said cooling starting temperature to 500.degree. C. is in the range from 0.5.degree. to 3.0.degree. C./sec.
- 75. A spring steel of high strength and high corrosion resistance according to claim 72, wherein the rolling starting temperature upon hot rolling is in the range from 850.degree. to 1050.degree. C.; the cooling starting temperature after hot rolling is in the range from 700.degree. to 900.degree. C.; and the average cooling rate in the region from said cooling starting temperature to 500.degree. C. is in the range from 0.5.degree. to 3.0.degree. C./sec.
- 76. A spring steel of high strength and high corrosion resistance according to claim 75, wherein the tensile strength after hot rolling is 1350 MPa or less; 90% or more of a cross-section of the metal structure comprises a ferrite/pearlite structure or pearlite structure; and the nodule size number of said pearlite structure is 6 or more.
- 77. A spring steel of high strength and high corrosion resistance containing:
- C: 0.3-0.49 mass % (hereinafter, referred to as %),
- Si: 1.0-3.0%,
- Mn: 0.1-0.5%,
- Cr: 0.5-1.5%,
- Ni: 1.0% or less (excluding 0) and/or Mo: 0.1-0.5%,
- Co: 0.1-3.0 and/or W: 0.1-1.0%, and
- at least one element selected from a group consisting of 0.001-0.1% of Ca, 0.001-1.0% of La, and 0.001-1.0% of Ce for further enhancing the corrosion resistance, the balance being essentially Fe and inevitable impurities, wherein said elements satisfy the following requirement:
- 2.5.ltoreq.(FP).ltoreq.4.5 (Ia)
- where FP=(0.23�C!+0.1).times.(0.7�Si!+1).times.(3.5�Mn!+1).times.(2.2�Cr!+1).times.(0.4�Ni!+1).times.(3�Mo!+1) in which �element! represents mass % of the element.
- 78. A spring steel of high strength and high corrosion resistance according to claim 77, wherein the tensile strength after hot rolling is 1350 MPa or less; 90% or more of a cross-section of the metal structure comprises a ferrite/pearlite structure or pearlite structure; and the nodule size number of said pearlite structure is 6 or more.
- 79. A spring steel of high strength and high corrosion resistance according to claim 77, wherein said spring steel is a steel bar or steel wire, and the composition also satisfies the following requirement:
- 2.0.ltoreq.(FP/log D).ltoreq.4.0 (Ib)
- where D is a diameter (mm) of said steel bar or steel wire after hot rolling.
- 80. A spring steel of high strength and high corrosion resistance according to claim 79, wherein the tensile strength after hot rolling is 1350 MPa or less; 90% or more of a cross-section of the metal structure comprises a ferrite/pearlite structure or pearlite structure; and the nodule size number of said pearlite structure is 6 or more.
- 81. A spring steel of high strength and high corrosion resistance according to claim 78, wherein the rolling starting temperature upon hot rolling is in the range from 850.degree. to 1050.degree. C.; the cooling starting temperature after hot rolling is in the range from 700.degree. to 900.degree. C.; and the average cooling rate in the region from said cooling starting temperature to 500.degree. C. is in the range from 0.5.degree. to 3.0.degree. C./sec.
- 82. A spring steel of high strength and high corrosion resistance according to claim 79, wherein the rolling starting temperature upon hot rolling is in the range from 850.degree. to 1050.degree. C.; the cooling starting temperature after hot rolling is in the range from 700.degree. to 900.degree. C.; and the average cooling rate in the region from said cooling starting temperature to 500.degree. C. is in the range from 0.5.degree. to 3.0.degree. C./sec.
- 83. A spring steel of high strength and high corrosion resistance according to claim 82, wherein the tensile strength after hot rolling is 1350 MPa or less; 90% or more of a cross-section of the metal structure comprises a ferrite/pearlite structure or pearlite structure; and the nodule size number of said pearlite structure is 6 or more.
- 84. A spring steel of high strength and high corrosion resistance according to claim 77, which further contains 0.1-1.0% of Cu.
- 85. A spring steel of high strength and high corrosion resistance according to claim 84, wherein the tensile strength after hot rolling is 1350 MPa or less; 90% or more of a cross-section of the metal structure comprises a ferrite/pearlite structure or pearlite structure; and the nodule size number of said pearlite structure is 6 or more.
- 86. A spring steel of high strength and high corrosion resistance according to claim 84, wherein said spring steel is a steel bar or steel wire, and the composition also satisfies the following requirement:
- 2.0.ltoreq.(FP/log D).ltoreq.4.0 (Ib)
- where D is a diameter (mm) of said steel bar or steel wire after hot rolling.
- 87. A spring steel of high strength and high corrosion resistance according to claim 86, wherein the tensile strength after hot rolling is 1350 MPa or less; 90% or more of a cross-section of the metal structure comprises a ferrite/pearlite structure or pearlite structure; and the nodule size number of said pearlite structure is 6 or more.
- 88. A spring steel of high-strength and high corrosion resistance according to claim 85, wherein the rolling starting temperature upon hot rolling is in the range from 850.degree. to 1050.degree. C.; the cooling starting temperature after hot rolling is in the range from 700.degree. to 900.degree. C.; and the average cooling rate in the region from said cooling starting temperature to 500.degree. C. is in the range from 0.5.degree. to 3.0.degree. C./sec.
- 89. A spring steel of high strength and high corrosion resistance according to claim 86, wherein the rolling starting temperature upon hot rolling is in the range from 850.degree. to 1050.degree. C.; the cooling starting temperature after hot rolling is in the range from 700.degree. to 900.degree. C.; and the average cooling rate in the region from said cooling starting temperature to 500.degree. C. is in the range from 0.5.degree. to 3.0.degree. C./sec.
- 90. A spring steel of high strength and high corrosion resistance according to claim 89, wherein the tensile strength after hot rolling is 1350 MPa or less; 90% or more of a cross-section of the metal structure comprises a ferrite/pearlite structure or pearlite structure; and the nodule size number of said pearlite structure is 6 or more.
- 91. A spring steel of high strength and high corrosion resistance according to claim 77, which further contains at least one element selected from a group consisting of 0.01-0.5% of V, 0.01-1.0% of Nb, 0.01-1.0% of Al and 0.01-1.0% of Ti.
- 92. A spring steel of high strength and high corrosion resistance according to claim 91, wherein the tensile strength after hot rolling is 1350 MPa or less; 90% or more of a cross-section of the metal structure comprises a ferrite/pearlite structure or pearlite structure; and the nodule size number of said pearlite structure is 6 or more.
- 93. A spring steel of high strength and high corrosion resistance according to claim 91, wherein said spring steel is a steel bar or steel wire, and the composition also satisfies the following requirement:
- 2.0.ltoreq.(FP/log D).ltoreq.4.0 (Ib)
- where D is a diameter (mm) of said steel bar or steel wire after hot rolling.
- 94. A spring steel of high strength and high corrosion resistance according to claim 93, wherein the tensile strength after hot rolling is 1350 MPa or less; 90% or more of a cross-section of the metal structure comprises a ferrite/pearlite structure or pearlite structure; and the nodule size number of said pearlite structure is 6 or more.
- 95. A spring steel of high strength and high corrosion resistance according to claim 92, wherein the rolling starting temperature upon hot rolling is in the range from 850.degree. to 1050.degree. C.; the cooling starting temperature after hot rolling is in the range from 700.degree. to 900.degree. C.; and the average cooling rate in the region from said cooling starting temperature to 500.degree. C. is in the range from 0.5.degree. to 3.0.degree. C./sec.
- 96. A spring steel of high strength and high corrosion resistance according to claim 93, wherein the rolling starting temperature upon hot rolling is in the range from 850.degree. to 1050.degree. C.; the cooling starting temperature after hot rolling is in the range from 700.degree. to 900.degree. C.; and the average cooling rate in the region from said cooling starting temperature to 500.degree. C. is in the range from 0.5.degree. to 3.0.degree. C./sec.
- 97. A spring steel of high strength and high corrosion resistance according to claim 96, wherein the tensile strength after hot rolling is 1350 MPa or less; 90% or more of a cross-section of the metal structure comprises a ferrite/pearlite structure or pearlite structure; and the nodule size number of said pearlite structure is 6 or more.
- 98. A spring steel of high strength and high corrosion resistance according to claim 91, which further contains 0.1-1.0% of Cu.
- 99. A spring steel of high strength and high corrosion resistance according to claim 98, wherein the tensile strength after hot rolling is 1350 MPa or less; 90% or more of a cross-section of the metal structure comprises a ferrite/pearlite structure or pearlite structure; and the nodule size number of said pearlite structure is 6 or more.
- 100. A spring steel of high strength and high corrosion resistance according to claim 98, wherein said spring steel is a steel bar or steel wire, and the composition also satisfies the following requirement:
- 2.0.ltoreq.(FP/log D).ltoreq.4.0 (Ib)
- where D is a diameter (mm) of said steel bar or steel wire after hot rolling.
- 101. A spring steel of high strength and high corrosion resistance according to claim 100, wherein the tensile strength after hot rolling is 1350 MPa or less; 90% or more of a cross-section of the metal structure comprises a ferrite/pearlite structure or pearlite structure; and the nodule size number of said pearlite structure is 6 or more.
- 102. A spring steel of high strength and high corrosion resistance according to claim 99, wherein the rolling starting temperature upon hot rolling is in the range from 850.degree. to 1050.degree. C.; the cooling starting temperature after hot rolling is in the range from 700.degree. to 900.degree. C.; and the average cooling rate in the region from said cooling starting temperature to 500.degree. C. is in the range from 0.5.degree. to 3.0.degree. C./sec.
- 103. A spring steel of high strength and high corrosion resistance according to claim 100, wherein the rolling starting temperature upon hot rolling is in the range from 850.degree. to 1050.degree. C.; the cooling starting temperature after hot rolling is in the range from 700.degree. to 900.degree. C.; and the average cooling rate in the region from said cooling starting temperature to 500.degree. C. is in the range from 0.5.degree. to 3.0.degree. C./sec.
- 104. A spring steel of high strength and high corrosion resistance according to claim 103, wherein the tensile strength after hot rolling is 1350 MPa or less; 90% or more of a cross-section of the metal structure comprises a ferrite/pearlite structure or pearlite structure; and the nodule size number of said pearlite structure is 6 or more.
Priority Claims (2)
Number |
Date |
Country |
Kind |
5-275514 |
Nov 1993 |
JPX |
|
6-203719 |
Aug 1994 |
JPX |
|
Parent Case Info
This is a Continuation of application Ser. No. 08/335,346 filed on Nov. 3, 1994, now U.S. Pat. No. 5,508,002.
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Number |
Name |
Date |
Kind |
5183634 |
Abe et al. |
Feb 1993 |
|
5286312 |
Shimotsusa et al. |
Feb 1994 |
|
5302216 |
Sugita et al. |
Apr 1994 |
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5508002 |
Kawaguchi et al. |
Apr 1996 |
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Foreign Referenced Citations (1)
Number |
Date |
Country |
2044639 |
Dec 1991 |
CAX |
Non-Patent Literature Citations (1)
Entry |
Patent Abstracts of Japan, vol. 13, No. 472 (C-647) Oct. 25, 1989 and JP-A-01 184 259, Suzuki Shinichi. |
Continuations (1)
|
Number |
Date |
Country |
Parent |
335346 |
Nov 1994 |
|