Claims
- 1. A Fe—Ni based permalloy made of a hot rolled sheet comprising Ni: 70-85 wt %, C: not more than 0.015 wt %, Si: not more than 1.0 wt %, Mn: not more than 1.0 wt %, P: not more than 0.01 wt %, S: not more than 0.005 wt %, O: not more than 0.006 wt %, Al: not more than 0.02 wt % and having such magnetic properties that a maximum magnetic permeability μm is not less than 400000, an initial magnetic permeability μi is not less than 200000 and a coercive force He is not more than 0.006 (Oe), provided that Ni segregation amount CNis represented by the following equation is not more than 0.15 wt %:
CNis=analytical value of Ni component (wt %)×CiNis (c.p.s.)/CiNiave. (c.p.s.) wherein CiNis: a standard deviation of X-ray intensity (c.p.s.)
CiNiave.: an average intensity of total X-ray intensities (c.p.s.).
- 2. A Fe—Ni based permalloy according to claim 1, wherein the Ni segregation amount CNis is not more than 0.10 wt %.
- 3. A Fe—Ni based permalloy according to claim 1, wherein an amount of non-metallic inclusion having a diameter corresponding to a circle of not less than 0.1 μm is not more than 20 particles/mm2.
- 4. A Fe—Ni based permalloy according to claim 1, wherein an amount of non-metallic inclusion having a diameter corresponding to a circle of not less than 0.1 μm is not more than 10 particles/mm2.
- 5. A Fe—Ni based permalloy made of a hot rolled sheet comprising Ni: 70-85 wt %, C: not more than 0.015 wt %, Si: not more than 1.0 wt %, Mn: not more than 1.0 wt %, P: not more than 0.01 wt %, S: not more than 0.005 wt %, 0: not more than 0.006 wt %, Al: not more than 0.02 wt %, and not more than 15 wt % of at least one selected from the group consisting of Mo, Cu, Co and Nb within a range of not more than 20 wt % in total, and having such magnetic properties that a maximum magnetic permeability μm is not less than 400000, an initial magnetic permeability μi is not less than 200000 and a coercive force Hc is not more than 0.006 (Oe), provided that Ni segregation amount CNis represented by the following equation is not more than 0.15 wt %:
CNis=analytical value of Ni component (wt %)×CiNis (c.p.s.)/CiNiave. (c.p.s.) wherein CiNis: a standard deviation of X-ray intensity (c.p.s.)
CiNiave.: an average intensity of total X-ray intensities (c.p.s.).
- 6. A Fe—Ni based permalloy according to claim 5, wherein the Ni segregation amount CNis is not more than 0.10 wt %.
- 7. A Fe—Ni based permalloy according to claim 5, wherein an amount of non-metallic inclusion having a diameter corresponding to a circle of not less than 0.1 μm is not more than 20 particles/mm2.
- 8. A Fe—Ni based permalloy according to claim 5, wherein an amount of non-metallic inclusion having a diameter corresponding to a circle of not less than 0.1 μm is not more than 10 particles/mm2.
- 9. A method of producing a Fe—Ni based permalloy, which comprises casting an alloy comprising Ni: 30-85 wt %, C: not more than 0.015 wt %, Si: not more than 1.0 wt %, Mn: not more than 1.0 wt %, P: not more than 0.01 wt %, S: not more than 0.005 wt %, O: not more than 0.0060 wt %, Al: not more than 0.02 wt % and the remainder being Fe and inevitable impurities into a slab, and subjecting the cast slab to a homogenizing heat treatment and further to a hot rolling.
- 10. The method according to claim 9, wherein a cold rolling is carried out after the hot rolling.
- 11. The method according to claim 9, wherein a cold rolling is carried out after the hot rolling and thereafter a magnetic heat treatment is carried out at 1100-1200° C.
- 12. The method according to claim 9, wherein a cold rolling is carried out after the hot rolling and thereafter a magnetic heat treatment is carried out at 1100-1200° C. in a hydrogen atmosphere.
- 13. The method according to claim 9, wherein the casting is carried out by a continuously casting process.
- 14. The method according to claim 13, wherein the continuously casting is carried out without electromagnetic agitation.
- 15. The method according to claim 9, wherein the cast slab for the permalloy has a cast texture having an area ratio of equiaxed crystal of not more than 1%.
- 16. The method according to claim 9, wherein the homogenizing heat treatment of the cast slab is treated at a temperature of 1100-1375° C. under a condition that Ni diffusion distance DNi represented by the following equation is not less than 39:
- 17. A method of producing a Fe—Ni based permalloy, which comprises casting an alloy comprising Ni: 30-85 wt %, C: not more than 0.015 wt %, Si: not more than 1.0 wt %, Mn: not more than 1.0 wt %, P: not more than 0.01 wt %, S: not more than 0.005 wt %, O: not more than 0.0060 wt %, Al: not more than 0.02 wt % and not more than 15 wt % of at least one selected from the group consisting of Mo, Cu, Co and Nb within a range of not more than 20 wt % in total and the remainder being Fe and inevitable impurities into a slab, and subjecting the cast slab to a homogenizing heat treatment and further to a hot rolling.
- 18. The method according to claim 17, wherein the casting is carried out by a continuously casting process.
- 19. The method according to claim 18, wherein the continuously casting is carried out without electromagnetic agitation.
- 20. The method according to claim 17, wherein the cast slab for the permalloy has a cast texture having an area ratio of equiaxed crystal of not more than 1%.
- 21. The method according to claim 17, wherein a cold rolling is carried out after the hot rolling.
- 22. The method according to claim 17, wherein a cold rolling is carried out after the hot rolling and thereafter a magnetic heat treatment is carried out at 1100-1200° C.
- 23. The method according to claim 17, wherein a cold rolling is carried out after the hot rolling and thereafter a magnetic heat treatment is carried out at 1100-1200° C. in a hydrogen atmosphere.
- 24. The method according to claim 17, wherein the homogenizing heat treatment of the cast slab is treated at a temperature of 1100-1375° C. under a condition that Ni diffusion distance DNi represented by the following equation is not less than 39:
- 25. A cast slab for a Fe—Ni based permalloy comprising Ni: 30-85 wt %, C: not more than 0.015 wt %, Si: not more than 1.0 wt %, Mn: not more than 1.0 wt %, P: not more than 0.01 wt %, S: not more than 0.005 wt %, O: not more than 0.0060 wt %, Al: not more than 0.02 wt % and the remainder being Fe and inevitable impurities, and having such a cast texture that an area ratio of equiaxed crystal is not more than 1%.
- 26. A cast slab for a Fe—Ni based permalloy according to claim 25, wherein the slab further contains not more than 15 wt % of at least one selected from the group consisting of Mo, Cu, Co and Nb within a range of not more than 20 wt % in total.
Priority Claims (2)
Number |
Date |
Country |
Kind |
2000-300632 |
Sep 2000 |
JP |
|
2001-23275 |
Jan 2001 |
JP |
|
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is a divisional of application Ser. No. 09/961,366, filed Sep. 25, 2001. The entire disclosure of application Ser. No. 09/961,366 is considered as being part of the disclosure of this application, and the entire disclosure of application Ser. No. 09/961,366 is expressly incorporated by reference herein in its entirety.
[0002] This application is related to Japanese Application Nos. 2000-300632, filed Sep. 29, 2000, and 2001-023275, filed Jan. 31, 2001 whose priorities are claimed.
Divisions (1)
|
Number |
Date |
Country |
Parent |
09961366 |
Sep 2001 |
US |
Child |
10424818 |
Apr 2003 |
US |