Handle structure
11192692 ยท 2021-12-07
Inventors
Cpc classification
International classification
Abstract
A handle structure includes a handgrip body and at least one rotating body. The rotating body is pivotally connected to the handgrip body, the rotating body is used to pivotally connect a first object, and when rotating, the rotating body drives the handgrip body to move toward the first object for reducing the height of the handle structure. Therefore, the handle structure can make a handgrip body moved out toward a direction distant from the first object when used, and can make the handgrip body moved in toward a direction of the first object when not in use for reducing the height of the handgrip body so as to operate and use easily and prevent collision.
Claims
1. A handle structure, comprising: a handgrip body; and at least one rotating body, pivotally connected to the handgrip body, the rotating body is used to pivotally connect a first object, and when rotating, the rotating body drives the handgrip body to move toward the first object for reducing the height of the handle structure; wherein the first object has a body, the body has an assembling portion, and the assembling portion is used to assemble with a second object; wherein the assembling portion has a feeding space, and the assembling portion is used to be squeezed by an external force so that a material of the second object flows into or enters the feeding space to combine the first object with the second object, or the assembling portion is used to be squeezed by an external force to deform and abut on the second object for assembling the first object with the second object.
2. The handle structure according to claim 1, wherein the handgrip body and the rotating body are pivotally connected by a pivot portion.
3. The handle structure according to claim 1, wherein the rotating body has a support portion, and the support portion supports or relies on or abuts for standing or abuts for standing temporarily with the first object.
4. The handle structure according to claim 1, wherein the handgrip body or the rotating body has at least one track portion, and the rotating body or the handgrip body rotates and moves in the track portion.
5. The handle structure according to claim 1, wherein an elastic element is provided between the rotating body and the first object, and the elastic element has two ends respectively abutting against the rotating body and the first object.
6. The handle structure according to claim 5, wherein the rotating body abuts toward the first object or fails to abut toward the first object normally or abnormally by the rotating body abutting against the elastic element.
7. The handle structure according to claim 2, wherein the pivot portion is a pillar body, convex body, concave body, fastening body, hook body, groove body, perforation or rivet.
8. The handle structure according to claim 1, wherein the rotating body has a pulling portion, and the pulling portion is used to pull the rotating body to perform a rotation.
9. A handle structure comprising: a handgrip body; and two rotating bodies, each rotating body is pivotally connected to the handgrip body respectively, each rotating body is used to pivotally connect a first object, and when rotating, each rotating body drives the handgrip body to move toward the first object for reducing the height of the handle structure.
10. A handle structure, comprising: a handgrip body; and at least one rotating body, pivotally connected to the handgrip body, the rotating body is used to pivotally connect a first object, and when rotating, the rotating body drives the handgrip body to move toward the first object for reducing the height of the handle structure; wherein the first object and the rotating body are pivotally connected by a pivot portion, the pivot portion is a shaft portion, and an elastic element is provided between the shaft portion and the first object.
11. A handle structure, comprising: a handgrip body; and at least one rotating body, pivotally connected to the handgrip body, the rotating body is used to pivotally connect a first object, and when rotating, the rotating body drives the handgrip body to move toward the first object for reducing the height of the handle structure; wherein the handgrip body or the rotating body has at least one track portion, and the rotating body or the handgrip body rotates and moves in the track portion.
12. A handle structure, comprising: a handgrip body; and at least one rotating body, pivotally connected to the handgrip body, the rotating body is used to pivotally connect a first object, and when rotating, the rotating body drives the handgrip body to move toward the first object for reducing the height of the handle structure; wherein an elastic element is provided between the rotating body and the first object, and the elastic element has two ends respectively abutting against the rotating body and the first object.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE INVENTION
(10) To facilitate understanding of the object, characteristics and effects of this present disclosure, embodiments together with the attached drawings for the detailed description of the present disclosure are provided.
(11) Referring to
(12) The rotating body 2 is pivotally connected (or connected) to the handgrip body 1, the rotating body 2 is used to pivotally connect a first object 3, and when rotating, the rotating body 2 can drive the handgrip body 1 to move toward the first object 3 for reducing the height of the handle structure.
(13) When the handle structure is in use, the rotating body 2 may be applied by an upward external force so that the rotating body 2 can be moved upwards, and the handgrip body 1 can be moved out toward a direction distant from the first object 3. Therefore, the handgrip body 1 can be applied by a force for moving the first object 3. When the handle structure is not in use, the rotating body 2 may be applied by a downward external force so that the rotating body 2 can be moved downwards, and the rotating body 2 and the handgrip body 1 abut simultaneously on the first object 3 to make the handgrip body 1 moved in toward a direction of the first object 3 for reducing the height of the handle structure so as to operate and use easily and prevent collision.
(14) In an embodiment of the invention, when the handgrip body 1 and the rotating body 2 of the invention are assembled, the handgrip body 1 and the rotating body 2 are pivotally connected by at least one pivot portion 21. The pivot portion 21 may be a pillar body, convex body, concave body, fastening body, hook body, groove body, perforation or rivet. In the embodiment, the number of the rotating body 2 may be two, the number of the handgrip body 1 may be one, and the rotating bodies 2, 2 are correspondingly provided at two sides of the handgrip body 1. One end of each rotating body 2 is pivotally connected with the first object 3 respectively by the pivot portion 21, and another end of each rotating body 2 is pivotally connected with the handgrip body 1 respectively by the pivot portion 21.
(15) Therefore, the rotating body 2 at one of the sides can be applied by an external force so that the rotating body 2 can be moved by the cooperation of every pivot portion 21 and drive the handgrip body 1, and the handgrip body 1 can drive another rotating body 2 by every pivot portion 21, and then the handgrip body 1 can be moved out toward a direction distant from the first object 3, or the rotating body 2 and the handgrip body 1 abut simultaneously on the first object 3 to make the handgrip body 1 moved in toward a direction of the first object 3 so as to operate and use easily and prevent collision.
(16) In an embodiment of the invention, the handgrip body 1 has an anti-skid portion 11 thereon, and one end of the rotating body 2 has a pulling portion 22. Accordingly, the pulling portion 22 can be applied by a force for pulling the rotating body 2 to perform a rotation so as to operate by applying a force easily. In addition, when the handgrip body 1 is applied by a force for moving the first object 3, the anti-skid portion 11 can be used to achieve the effects of skid resistance and applying a force easily.
(17) Referring to
(18) Accordingly, when the rotating body 2 at one of the sides is applied by an external force, the rotating body 2 can drive the handgrip body 1, and the handgrip body 1 can drive another rotating body 2, and then the handgrip body 1 can be moved out toward a direction distant from the first object 3, or the rotating body 2 and the handgrip body 1 abut simultaneously on the first object 3 to make the handgrip body 1 moved in toward a direction of the first object 3. When the handgrip body 1 is moved out, the stopping portion 321 stops with the first object 3 for limiting position to prevent the shaft portion 32 and the rotating body 2 being separated. When the handgrip body 1 is moved out or moved in, the rotating body 2 carries out a rotation or abutting to position by an elastic assistance of the elastic element 33 so as to operate and use easily and prevent collision.
(19) In the embodiment, the shaft portion 32 may extend out of the first object 3 so that an extending amount a is existed between the rotating body 2 and the first object 3 (as shown in the right side of
(20) In addition, the assembling portion 31 has a feeding space 311, and the assembling portion 31 can be squeezed by an external force so that a material of the second object 4 flows into or enters the feeding space 311 to combine the first object 3 with the second object 4 (as shown in
(21) Further, the assembling portion 31 is a locking portion or fastening portion, and is used to assemble with the second object 4 (as shown in
(22) Referring to
(23) Referring to
(24) In summary, the embodiments of the invention provide a handle structure which can make a handgrip body moved out toward a direction distant from the first object when used, and can make the handgrip body moved in toward a direction of the first object when not in use for reducing the height of the handgrip body so as to operate and use easily and prevent collision.
(25) The above description is merely embodiments of the invention, and it should not be considered to limit the scope of the invention.
(26) While the present disclosure has been described by means of specific embodiments, numerous modifications and variations could be made thereto by those skilled in the art without departing from the scope and spirit of the present disclosure set forth in the claims.