Claims
- 1. A method of manufacturing a multilayer ceramic electronic part comprising:
providing a plurality of ceramic green sheets prepared by the method of coating a ceramic slurry comprising a ceramic powder dispersed in a dispersion medium on a carrier film to form a sheet, drying the sheet-formed ceramic slurry on the carrier film, and pressing the dry sheet obtained by drying the ceramic slurry on the carrier film under conditions of a pressing surface temperature of about 0 to 150° C. and a pressing pressure of about 500 to 10,000 kgf/cm2 to smooth the surface of the sheet, coating an electrode paste on ceramic green sheets subjected to the smoothing process in a predetermined pattern; coating a ceramic paste containing a ceramic powder, a binder and a solvent on a region of the electrode paste-coated surface on which the electrode paste was not coated, subjecting the ceramic green sheet having the electrode paste and the ceramic paste coated thereon to a secondary smoothing process by pressing under conditions of a pressing surface temperature of about 0 to 150° C. and a pressing pressure of about 500 to 10,000 kgf/cm2 to smooth the surface of the sheet; laminating the sheets provided with electrodes to form a lamination, and burning the lamination.
- 2. A method of producing a ceramic green sheet according to claim 1, wherein the pressing is effected by a pair of pressing plates.
- 3. A method of producing a green sheet according to claim 2, wherein plate pressing is performed under conditions of a pressing plate surface temperature of about 20 to 100° C. and a pressing pressure of about 1,000 to 6,000 kgf/cm2.
- 4. A method of producing a ceramic green sheet according to claim 1, wherein the pressing is hydrostatic pressing.
- 5. A method of producing a ceramic green sheet according to claim 4, wherein hydrostatic pressing is performed by under conditions of a pressing temperature of about 20 to 100° C. and a pressing pressure of about 1,000 to 6,000 kgf/cm2.
- 6. A method of producing a ceramic green sheet according to claim 1, wherein the pressing comprises:
calendering the dry sheet obtained by drying the ceramic slurry on the carrier film by using a calender roll comprising at least a pair of nip rolls under conditions of a pressing pressure (linear pressure) of about 500 to 1,000 kgf/cm to smooth the surface of the sheet.
- 7. A method of producing a ceramic green sheet according to claim 6, wherein calendar roll processing is performed under conditions of a nip roll surface temperature of about 20 to 100° C. and a pressing pressure (linear pressure) of about 100 to 600 kgf/cm.
- 8. A method of producing a ceramic green sheet according to claim 1, wherein the smoothing process is performed such that the surface roughness (Ra value) of the resulting ceramic green sheet is 100 nm or less.
- 9. A method of producing a ceramic green sheet according to claim 1, wherein the ceramic green sheet is separated from the carrier film, and a plurality of such separated sheets are laminated.
- 10. A method of manufacturing a multilayer electronic part according to claim 1, wherein the electrode paste for forming an internal electrode comprising a base metal powder as a conductive component so that the internal electrode formed after burning the lamination comprise a base metal.
- 11. A method of manufacturing a multilayer ceramic electronic part according to claim 1, wherein the smoothing process is performed by a calendar roll pressing, plate pressing or a hydrostatic pressing.
- 12. A method of manufacturing a multilayer ceramic electronic part according to claim 1, wherein the secondary smoothing process is performed by a calendar roll pressing, plate pressing or hydrostatic pressing.
- 13. A method of producing a multilayer ceramic electronic part according to claim 12, wherein the secondary smoothing process is performed by under conditions of a pressing temperature of about 20 to 100° C. and a pressing pressure of about 1,000 to 6,000 kgf/cm2.
- 14. A method of producing a multilayer ceramic electronic part according to claim 13, wherein the secondary smoothing is effected by a pair of pressing plates.
- 15. A method of producing a multilayer ceramic electronic part according to claim 13, wherein the secondary smoothing is effected by hydrostatic pressing.
- 16. A method of producing a multilayer ceramic electronic part according to claim 13, wherein the secondary smoothing comprises:
calendering the dry sheet using a calender roll comprising at least a pair of nip rolls under conditions of a pressing pressure (linear pressure) of about 50 to 1,000 kgf/cm to smooth the surface of the sheet.
- 17. A method of producing a multilayer ceramic electronic part according to claim 16, wherein calender roll processing is performed under conditions of a nip roll surface temperature of about 20 to 100° C. and a pressing pressure (linear pressure) of about 100 to 600 kgf/cm.
Priority Claims (2)
Number |
Date |
Country |
Kind |
11-295324 |
Oct 1999 |
JP |
|
11-295326 |
Oct 1999 |
JP |
|
Parent Case Info
[0001] This is a division of application Ser. No. 09/690,788, filed Oct. 17, 2000.
Divisions (1)
|
Number |
Date |
Country |
Parent |
09690788 |
Oct 2000 |
US |
Child |
10448118 |
May 2003 |
US |