Rotation mechanism and storage device including thereof
11457709 ยท 2022-10-04
Assignee
Inventors
Cpc classification
A45C2011/001
HUMAN NECESSITIES
International classification
Abstract
A rotation mechanism includes a base, a rotation plate, and an elastic element. The base has two base side walls opposite to each other, an accommodation space between the two base side walls, an abutting portion, and two pivot portions opposite to each other. The abutting portion is located at one end of the base side walls, and the pivot portions are respectively located at the other end of the base side walls. The rotation plate is pivotally connected to the base and between the pivot portions. The elastic element has a first pivot section, an elastic bending section, and a second pivot section that are sequentially connected to each other. The first pivot section is pivotally connected to the two base side walls, and the second pivot section is pivotally connected to one side of the rotation plate.
Claims
1. A rotation mechanism, comprising: a base having two base side walls opposite to each other, an accommodation space between the two base side walls, an abutting portion, and two pivot portions opposite to each other, wherein the abutting portion is located at one of two ends of the base side walls, and the pivot portions are respectively located at the other end of the base side walls; a rotation plate pivotally connected to the base and between the pivot portions; and an elastic element having a first pivot section, an elastic bending section, and a second pivot section that are sequentially connected to each other, wherein the first pivot section is pivotally connected to at least one of the two base side walls, and the second pivot section is pivotally connected to one side of the rotation plate, wherein when the rotation plate is in a closed state, the elastic bending section abuts against the abutting portion, and when the elastic element drives the rotation plate to rotate around the pivot portions, the elastic bending section detaches from an abutting plane of the abutting portion, and the rotation plate is in an opened state.
2. The rotation mechanism according to claim 1, wherein each of the two base side walls comprises a first side wall and a second side wall perpendicular to each other, and wherein the abutting portion is located on the first side walls, and the two pivot portions are respectively located on the second side walls.
3. The rotation mechanism according to claim 1, wherein the rotation plate has a pivot shaft, and the pivot portion has a pivot hole, and wherein the pivot shaft is inserted into the pivot hole, so that an included angle is capable of being formed between the rotation plate and the pivot portion.
4. The rotation mechanism according to claim 1, further comprising a pin, wherein the pin is connected to at least one of the two base side walls and located in the accommodation space, and wherein a number of the elastic element is two, and two ends of each of the two elastic elements are respectively pivotally connected to the pin and the rotation plate.
5. The rotation mechanism according to claim 4, wherein a number of the pin is two, and the two pins are respectively connected to the two base side walls, and wherein each of the two elastic elements is pivotally connected to the corresponding pin.
6. The rotation mechanism according to claim 4, further comprising a spring pin, wherein each of the two elastic bending sections further comprises a spring coil, and wherein the spring pin passes through the two spring coils, so that the two elastic elements are capable of moving at the same time.
7. The rotation mechanism according to claim 1, wherein the abutting portion further comprises a leaning plane, and wherein when the rotation plate is in the closed state, the elastic bending section abuts against the leaning plane.
8. The rotation mechanism according to claim 1, wherein the rotation plate further comprises two connection portions opposite to each other and a rotation shaft, wherein the connection portions and the rotation shaft are located at one side of the rotation plate, and wherein the rotation shaft is located between the two connection portions, and the second pivoting section is pivotally connected to the rotation shaft.
9. The rotation mechanism according to claim 8, wherein the number of the rotation shaft is two, and each of the rotation shafts is connected to the corresponding connection portion.
10. A storage device, comprising: an accommodation body; an upper lid connected to the accommodation body; and a rotation mechanism, comprising: a base having two base side walls opposite to each other, an accommodation space between the two base side walls, an abutting portion, and two pivot portions opposite to each other, wherein the abutting portion is located at one of two ends of the base side walls, and the pivot portions are respectively located at the other end of the base side walls; a rotation plate pivotally connected to the base and between the pivot portions; and an elastic element having a first pivot section, an elastic bending section, and a second pivot section that are sequentially connected to each other, wherein the first pivot section is pivotally connected to at least one of the two base side walls, and the second pivot section is pivotally connected to one side of the rotation plate, wherein when the rotation plate is in a closed state, the elastic bending section abuts against the abutting portion, and when the elastic element drives the rotation plate to rotate around the pivot portions, the elastic bending section detaches from an abutting plane of the abutting portion, and the rotation plate is in an opened state; wherein the base is connected to the accommodation body, and the rotation plate is connected to the upper lid, so that the upper lid is located at the accommodation body.
11. The storage device according to claim 10, wherein each of the two base side walls comprises a first side wall and a second side wall perpendicular to each other, and wherein the abutting portion is located on the first side walls, and the two pivot portions are respectively located on the second side walls.
12. The storage device according to claim 10, wherein the rotation plate has a pivot shaft, and the pivot portion has a pivot hole, and wherein the pivot shaft is inserted into the pivot hole, so that an included angle is capable of being formed between the rotation plate and the pivot portion.
13. The storage device according to claim 10, further comprising a pin, wherein the pin is connected to at least one of the two base side walls and located in the accommodation space, and wherein a number of the elastic element is two, and two ends of each of the two elastic elements are respectively pivotally connected to the pin and the rotation plate.
14. The storage device according to claim 13, wherein a number of the pin is two, and the two pins are respectively connected to the two base side walls, and wherein each of the two elastic elements is pivotally connected to the corresponding pin.
15. The storage device according to claim 13, further comprising a spring pin, wherein each of the two elastic bending sections further comprises a spring coil, and wherein the spring pin passes through the two spring coils, so that the two elastic elements are capable of moving at the same time.
16. The storage device according to claim 10, wherein the abutting portion further comprises a leaning plane, and wherein when the rotation plate is in the closed state, the elastic bending section abuts against the leaning plane.
17. The storage device according to claim 10, wherein the rotation plate further comprises two connection portions opposite to each other and a rotation shaft, wherein the connection portions and the rotation shaft are located at one side of the rotation plate, and wherein the rotation shaft is located between the two connection portions, and the second pivoting section is pivotally connected to the rotation shaft.
18. The storage device according to claim 17, wherein the number of the rotation shaft is two, and each of the rotation shafts is connected to the corresponding connection portion.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The disclosure will become more fully understood from the detailed description given herein below for illustration only, and thus not limitative of the disclosure, wherein.
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DETAILED DESCRIPTION
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(11) The base 10 includes a bottom portion 11, two base side walls 12 opposite to each other, an accommodation space 13, an abutting portion 14, and two pivot portions 15 opposite to each other. The elastic element 40 is connected to at least one of the base side walls 12 and located in the accommodation space 13. As shown in
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(15) The elastic element 40 includes a first pivot section 41, an elastic bending section 42, and a second pivot section 43 that are sequentially connected to each other. In this embodiment, an included angle is formed between the first pivot section 41 and the second pivot section 43. The value of the included angle between the first pivoting section 41 and the second pivoting section 43 depends on the elastic force of the elastic bending section 42 as well as the force applied to the end of the first pivoting section 41 not connected to the elastic bending section 42 and the end of the second pivoting section 43 not connected to the elastic bending section 42. More specifically, in this embodiment, when the end of the first pivoting section 41 and the end of the second pivoting section 43 that are not connected to the elastic bending section 42 are applied with a force, the elastic element 40 will be compressed, so that the angle between the first pivot section 41 and the second pivot section 43 becomes smaller. On the other hand, when the force disappears, the elastic force of the elastic bending section 42 will make the included angle between the first pivoting section 41 and the second pivoting section 43 recover to the original value before the force is applied. In this embodiment, the elastic element 40 is a torsion spring, but is not limited thereto.
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(17) When the rotation plate 20 is applied with an external force, the elastic bending section 42 will detach from the abutting plane 14a of the abutting portion 14. At the time, since the elastic element 40 is no longer abutted by the abutting plane 14a of the abutting portion 14, the elastic resilient force of the elastic element 40 can be released completely, so that the state of the rotation mechanism changes to the opened state. In this embodiment, the abutting portion 14 further includes a leaning plane 14b adjacent to the abutting plane 14a. When the state of the rotation mechanism changes from the closed state to the opened state, the elastic bending section 42 will detach from the abutting plane 14a and gradually move toward the leaning plane 14b. When the rotation mechanism is in the opened state, the elastic bending section 42 abuts against the leaning plane 14b. However, in some embodiments, the elastic bending section 42 does not abut against the leaning plane 14b when the rotation mechanism is in the opened state.
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(22) To sum up, according to one or some embodiments of the present disclosure, by having the abutting portion of the base in the rotation mechanism, the elastic element can abut against the abutting portion when the rotation mechanism is in the closed state. Thus, the elastic resilient force of the elastic element can be reduced due to the abutting of the abutting portion, by which the rotation mechanism can be kept in the closed state more stably. Therefore, according to one or some embodiments of the present disclosure, the rotation mechanism can solve the problem that the magnetic attraction force in the storage device will gradually weaken as time goes by, so that the elastic force of the spring will eventually be greater than the magnetic attraction force, which results that the lid and the earphone storage box cannot be completely sealed with each other when the lid is closed.
(23) While the instant disclosure has been described by way of example and in terms of the preferred embodiments, it is to be understood that the instant disclosure needs not be limited to the disclosed embodiments. For anyone skilled in the art, various modifications and improvements within the spirit of the instant disclosure are covered under the scope of the instant disclosure. The covered scope of the instant disclosure is based on the appended claims.