Thermal trip compensation structure
10204755 ยท 2019-02-12
Assignee
Inventors
- Junjie ZHOU (Shanghai, CN)
- Zhenzhong Liu (Shanghai, CN)
- Yibo LI (Shanghai, CN)
- Junchang SHI (Shanghai, CN)
- Zakaria BOUGHALEM (Shanghai, CN)
Cpc classification
H01H2071/168
ELECTRICITY
H01H71/40
ELECTRICITY
International classification
H01H71/74
ELECTRICITY
Abstract
The present disclosure relates to a thermal trip compensation structure including a tripping bar having an ejector pin, a bimetal strip, a compensating component, a support for the compensating component, and an adjustment component. One end of the bimetal strip is connected with the support. The support receives and supports the compensating component. The adjustment component is capable of adjusting a position of the compensating component relative to the support. The compensating component has an inclined slant surface which is set in such a way that a gap between the inclined slant surface and the ejector pin of the tripping bar when the bimetal strip is deflected after the occurrence of short circuit is less than the gap between the inclined slant surface and the ejector pin of the tripping bar when the bimetal strip is not deflected before the occurrence of the short circuit.
Claims
1. A thermal trip compensation structure comprising a tripping bar having an ejector pin, a bimetal strip, a compensating component, a support for the compensating component, and an adjustment component, wherein one end of the bimetal strip is connected with the support for the compensating component; the support for the compensating component receives and supports the compensating component; the adjustment component is capable of adjusting a position of the compensating component relative to the support for the compensating component; and the compensating component has an inclined slant surface, the inclined slant surface is set in such a way that a gap between the inclined slant surface and the ejector pin of the tripping bar upon the bimetal strip being deflected after occurrence of a short circuit is less than the gap between the inclined slant surface and the ejector pin of the tripping bar upon the bimetal strip being not deflected before the occurrence of the short circuit, and wherein, the support for the compensating component is provided with a support groove; a guide portion is provided on a side wall of the support groove; and a support aperture is provided on a bottom wall of the support groove.
2. The thermal trip compensation structure according to claim 1, wherein, the inclined slant surface inclines toward a direction in which the bimetal strip is deflected after the short circuit.
3. The thermal trip compensation structure according to claim 1, wherein, the compensating component is provided with a compensating component groove located at a side of the compensating component opposite to the inclined slant surface; and the compensating component groove receives a part of the adjustment component.
4. The thermal trip compensation structure according to claim 3, wherein, the compensating component is further provided with a coupling portion; and the coupling portion cooperates with the guide portion so as to achieve movement of the compensating component with respect to the support for the compensating component.
5. The thermal trip compensation structure according to claim 4, wherein, the adjustment component is a screw passing through the support aperture to actuate the compensating component.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The present disclosure will be better understood by those skilled in the art from the following drawings, which more clearly embrace the advantages of the present disclosure. The drawings described herein are for illustrative purposes only and are not intended to be exhaustive of the present invention, and are also not intended to limit the scope of the disclosure.
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DETAILED DESCRIPTION
(8) In the following, the preferred embodiments according to the present disclosure will be described in detail in conjunction with the drawings. The features and advantages of the disclosure will be apparent to those skilled in the art from the accompanying drawings and corresponding narrative descriptions.
(9)
(10) One end of the bimetal strip 2 is connected with the support 4 for the compensating component.
(11) The support 4 for the compensating component supports the compensating component 3 and receives a part of the compensating component 3.
(12) The adjustment component 5 can adjust the position of the compensating component 3 relative to the support 4 for the compensating component.
(13) As illustrated in
(14) The inclined slant surface 3-1 inclines toward the direction in which the bimetal strip deflects after the short circuit. In
(15)
(16) A guide portion 4-2 is provided on the side wall of the support groove 4-1.
(17) A support aperture 4-3 is provided on the bottom wall of the support groove 4-1.
(18) As illustrated in
(19) The compensating component groove 3-2 receives a part of the adjustment component 5.
(20) The compensating component 3 is further provided with a coupling portion 3-3.
(21) The coupling portion 3-3 cooperates with the guide portion 4-2 so as to achieve movement of the compensating component 3 with respect to the support 4 for the compensating component, and in
(22) As illustrated in
(23) As illustrated in
(24) Referring to the specific embodiments, although the present disclosure has already been described in the Description and the drawings, it should be appreciated that the skilled person in this art could make various alterations and various equivalent matter could be substituted for various method steps and means therein without departing from the scope of the present disclosure defined by the attached claims. Moreover, the combinations and mating of technical features, elements and/or functions among the specific embodiments herein are clear and well-defined, thus according to these disclosed contents, those skilled in the art will appreciate that the technical features, elements, and/or functions as well as method steps in the embodiments may be incorporated into another embodiment as appropriate unless the foregoing description is otherwise described. In addition, according to the teachings of the disclosure, many alterations can be made to adapt to special situations without departing from the essence of the disclosure. Accordingly, the present disclosure is not limited to the specific embodiments illustrated in the drawings, and the specific embodiments in the specification described as the optimal embodiment conceived for carrying out the present disclosure, but the present disclosure is intended to cover all embodiments falling within the scope of the foregoing specification and the appended claims.