Claims
- 1. An actuating member with a body of elastomer material, which body on each of two boundary surfaces lying oppositely to one another is provided with an electrode arrangement, characterized in that at least one boundary surface (3, 4) has a waved area with heights (13) and depths (14) as extreme values running parallel to the transverse direction of the body, which waved area is covered by an electrode (5, 6), which electrode covers the full surface of at least a portion of the extremes (13, 14) and is continuous over the waved area.
- 2. An actuating member according to claim 1, further characterized in that the electrode (5, 6) covers entirely the surface of the waved area.
- 3. An actuating member according to claim 1 or 2 further characterized in that the electrode (5, 6) is directly connected to the body (2).
- 4. An actuating member according to one of claims 1 to 3 further characterized in that the extremes (13, 14) have an amplitude (a) which is not larger than 20%o of the thickness (d) of the body (2) between the boundary surfaces (3, 4).
- 5. An actuating member according to claim 4, further characterized in that the electrode (5, 6) has a thickness (h) which maximally is 10% of the amplitude (a).
- 6. An actuating member according to claim 4 or 5 further characterized in that the ratio between the amplitude (a) and the period length (L) lies in the range of 0.08 to 0.25.
- 7. An actuating member according to one of claims 1 to 6, further characterized in that the waved area has a rectangular profile.
- 8. An actuating element according to claim 7, further characterized in that the rectangular profile has teeth and teeth gaps which are of equal length in the longitudinal direction (12).
- 9. A method for making an actuating member with a body of elastomer material which body is provided with electrodes on two sides lying oppositely to one another, characterized in that an elastomer is pressed into a mold (7) with a waved surface profile (8) to form a film (9), which film is then left to harden for so short a time that it remains formable, then a further mold (10) with a waved surface (11) is pressed against the other side of the film (9), and after the forming of the outer surface structure a conducting layer is applied to the outer surface.
- 10. A method according to claim 9, further characterized that the conducting layer is evaporatively applied.
Priority Claims (1)
| Number |
Date |
Country |
Kind |
| 100 54 247.6 |
Nov 2000 |
DE |
|
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is entitled to the benefit of and incorporates by reference essential subject matter disclosed in International Application No. PCT/DK01/00719 filed on Oct. 31, 2001 and German Patent Application No. 100 54 247.6 filed on Nov. 2, 2000.
PCT Information
| Filing Document |
Filing Date |
Country |
Kind |
| PCT/DK01/00719 |
10/31/2001 |
WO |
|