Invention Grant
- Patent Title: Cost-effective high-bending-stiffness connector and piezoelectric actuator made of such
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Application No.: US16621835Application Date: 2017-06-12
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Publication No.: US11716908B2Publication Date: 2023-08-01
- Inventor: Leong Chew Lim , Yu Huang , Yuexue Xia , Dian-Hua Lin
- Applicant: MICROFINE MATERIALS TECHNOLOGIES PTE LTD
- Applicant Address: SG Singapore
- Assignee: MICROFINE MATERIALS TECHNOLOGIES PTE LTD
- Current Assignee: MICROFINE MATERIALS TECHNOLOGIES PTE LTD
- Current Assignee Address: SG Singapore
- Agency: Cantor Colburn LLP
- International Application: PCT/SG2017/050297 2017.06.12
- International Announcement: WO2018/231144A 2018.12.20
- Date entered country: 2019-12-12
- Main IPC: B06B1/06
- IPC: B06B1/06 ; H02N2/02 ; H10N30/88 ; H10N30/20 ; H10N30/853

Abstract:
Cost effective connectors of high bending stiffness for making high-performance piezoelectric actuators and derivative devices are disclosed. In one embodiment, the connector has circumferentially alternating recesses of circular cross-section which can be cost-effectively machined out with conventional machining techniques. The circular recesses can be adopted to house circular or non-circular cross-sectioned piezoelectric active elements to make cost effective 2-level (2×) piezoelectric displacement actuators. In another embodiment, the non-circular cross-sectioned recesses in the connector include suitable wall openings to enable said recesses to be machined out cost effectively via conventional machining techniques, or via reduced use of non-conventional machining techniques. Additional stiffening mechanisms can be added to minimize the bending displacement of the base of recesses when desired. Cost effective derivative devices, such as high-performance multi-level displacement actuators and compact Langevin low-frequency underwater projectors, can be made from such connectors.
Public/Granted literature
- US20200176665A1 COST-EFFECTIVE HIGH-BENDING-STIFFNESS CONNECTOR AND PIEZOELECTRIC ACTUATOR MADE OF SUCH Public/Granted day:2020-06-04
Information query
IPC分类: