IP Library Granted Patent US 10,910,550
Granted Patent B2
US 10,910,550 · App. 14/909,786 · Granted Feb 2, 2021

Piezoceramic material with reduced lead content

Inventors: Eberhard Hennig (Mörsdorf, DE); Antje Kynast (Leipzig, DE); Michael Töpfer (Arnstadt, DE); Michael Hofmann (Neustade an der Orla, DE)
Assignee: PI CERAMIC GMBH
H01L41/1873C04B35/495C04B35/62655C04B35/62695H01L41/43C04B2235/3201C04B2235/3203C04B2235/3251C04B2235/3262C04B2235/3291C04B2235/3294C04B2235/3296C04B2235/72C04B2235/725C04B2235/768C04B2235/79
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Quick Facts
Patent No.
US 10,910,550
App. No.
14/909,786
Granted
Feb 2, 2021
Kind
B2
Abstract

The invention relates to a piezoceramic material with reduced lead content, based on potassium sodium niobate (PSN) and having a defined parent composition. According to the invention the manner of addition of a mixture of Pb, Nb and optionally Ag and optionally Mn gives a wide sintering range together with reproducible electrical and mechanical properties of the material.

Claims (58)

1. A mixture for a piezoceramic material with reduced lead content, based on potassium sodium niobate (PSN), the mixture consisting of:

a calcinate of the basic composition

(K x Na y Li 1-x-y ) a (Mn u Ta v Sb w Nb 1-u-v-w )O 3 , with

0< x< 1; 0 <y< 1; 0< u< 0.01; 0< v< 0.3; 0≤ w< 0.2 and

0.95< a< 1.05; x+y≤ 1; and

a sintering aid mixture of Pb, Nb and optionally Ag according to

k % by weight Pb+ l % by weight Nb+ m % by weight Ag

with

0.001< k≤ 0.2 and 0< l≤ 0.179; 0≤ m< 1,

characterized in that the ratio of k:l lies in the range of 1:0.9 to 1:0.3.

2. A mixture for a piezoceramic material according to claim 1 , characterized in that 0.001<k≤0.1.

3. A mixture for a piezoceramic material according to claim 1 , characterized in that 0.022<l≤0.09.

4. A mixture for a piezoceramic material according to claim 1 , characterized in that 0.001<k≤0.1 and 0.022<l≤0.09.

5. A mixture for a piezoceramic material according to claim 1 , characterized by the addition of a mixture of k % by weight Pb, 1% by weight Nb, and n % by weight Mn, wherein the ratio of n:l lies in the range of 0.05 to 0.15:0.30.

6. A mixture for a piezoceramic material according to claim 5 , characterized in that the ratio of k:n:l lies at 1:0.09:0.30.

7. A method for producing a piezoceramic material with reduced lead content, based on potassium sodium niobate (PSN), comprising the steps of:

producing a raw material mixture of the basic composition

(K x Na y Li 1-x-y ) a (Mn u Ta v Sb w Nb 1-u-v-w )O 3 with

0< x< 1; 0 <y< 1; 0< u< 0.01; 0< v< 0.3; 0≤ w< 0.2 and

0.95< a< 1.05; x+y≤ 1;

producing a calcinate of the basic composition;

adding a sintering aid mixture of Pb, Nb and optionally Ag and optionally Mn after the step of producing a calcinate of the basic composition according to

k % by weight Pb+ l % by weight Nb+ m % by weight Ag

with 0.001< k≤ 0.2 and 0< l≤ 0.179; 0≤ m< 1,

characterized in that the ratio of k:l lies in the range of 1:0.9 to 1:0.3;

fine grinding of the calcinate;

producing a granulate or producing a casting slurry for the multilayer or “co-firing” process;

further processing including sintering in normal atmosphere.

8. A piezoceramic multilayer actuator on the basis of a piezoceramic material with reduced lead content, based on potassium sodium niobate (PSN), formed by a process comprising the steps of:

producing a raw material mixture of the basic composition

(K x Na y Li 1-x-y ) a (Mn u Ta v Sb w Nb 1-u-v-w )O 3 , with

0< x< 1; 0 <y< 1; 0< u< 0.01; 0< v< 0.3; 0≤ w< 0.2 and

0.95< a< 1.05; x+y≤ 1;

producing a calcinate of the basic composition;

adding a sintering aid mixture of Pb, Nb and optionally Ag and optionally Mn after the step of producing a calcinate of the basic composition according to

k % by weight Pb+ l % by weight Nb+ m % by weight Ag

with

0.001< k≤ 0.2 and 0< l≤ 0.179; 0≤ m< 1,

characterized in that the ratio of k:l lies in the range of 1:0.9 to 1:0.3;

fine grinding of the calcinate;

producing a granulate or producing a casting slurry for the multilayer or “co-firing” process;

further processing including sintering in normal atmosphere.

9. A method of increasing the sintering interval in a piezoceramic material, based on potassium sodium niobate (PSN) of the basic composition

(K x Na y Li 1-x-y ) a (Mn u Ta v Sb w Nb 1-u-v-w )O 3 , with

0< x< 1; 0 <y< 1; 0< u< 0.01; 0< v< 0.3; 0≤ w< 0.2 and

0.95< a< 1.05; x+y≤ 1,

comprising the step of adding a sintering aid mixture of Pb, Nb and Ag to the basic composition such that the content of added Pb, Nb and Ag in percent by weight relating to the entire piezoceramic material is as follows:

k % by weight Pb+ l % by weight Nb+ m % by weight Ag, with

0.001< k≤ 0.2 and 0< l≤ 0.179; 0≤ m< 1,

characterized in that the ratio of k:l lies in the range of 1:0.9 to 1:0.3,

wherein the range bounded by two temperature specifications is to be understood as the sintering interval, within which the required properties of the ceramic material are achieved during the burning of the material, which are defined as follows:

tan δ: ≤50 10 −3

S3 (RT): >0.6 10 −3

E max : ≥2 kV/mm.

10. The method of increasing the sintering interval in a piezoceramic material according to claim 9 , characterized in that 0.001<k≤0.1 and 0.022<l≤0.09.

11. The method of increasing the sintering interval in a piezoceramic material according to claim 10 , characterized by the addition of a mixture of k % by weight Pb, 1% by weight Nb, and n % by weight Mn, wherein the ratio of n:l lies in the range of 0.05 to 0.15:0.30.

12. The method of increasing the sintering interval in a piezoceramic material according to claim 11 , characterized in that the ratio of k:n:l lies at 1:0.09:0.30.

13. A method as defined by claim 7 , wherein the granulate is produced by spray granulation.

Assignments (2)
CHANGE OF NAME Recorded Dec 23, 2016
From: PI CERAMIC GMBH KERAMISCHE TECHNOLOGIEN UND BAUELEMENTE
To: PI CERAMIC GMBH
Reel/Frame 041187/0847 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 19, 2016
From: HENNIG, EBERHARD; KYNAST, ANTJE; TOPFER, MICHAEL; HOFMANN, MICHAEL
To: PI CERAMIC GMBH
Reel/Frame 040061/0937 →
Priority Claims (2)
DE 10 2013 013 182 · Aug 7, 2013 · national
DE 10 2014 111 285 · Aug 7, 2014 · national
Continuity (1)
Related Publication 20160190430A1 · Jun 30, 2016