Dustproof Structure of Hand Tool
20210362318 ยท 2021-11-25
Inventors
Cpc classification
B25G1/025
PERFORMING OPERATIONS; TRANSPORTING
B25B13/463
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A dustproof structure of a hand tool includes a tool body and a dustproof element. The tool body has a shank. A predetermined portion of the shank is concavely provided with a through hole. The dustproof element is flexible, is provided at the through hole of the shank, and can be opened and closed. The dustproof element closes the through hole when not subjected to an applied force and is elastically deformed to render the through hole into an open state when subjected to the applied force. In normal conditions, therefore, the dustproof element can block foreign matter from entering the through hole. When it is desired to perform a lubricating or adjusting operation on a component in the through hole of the hand tool, the operation can be carried out after directly applying a force to, and thus deforming, the dustproof portion, without having the dustproof element removed.
Claims
1. A dustproof structure of a hand tool, comprising: a tool body having a shank, wherein the shank has a front end having a working head, the shank has a predetermined portion concavely provided with a through hole, the shank is provided therein with an operation unit, and the through hole is configured to provide access to the operation unit; and a dustproof element having flexibility, provided at the through hole of the shank, and configured to be opened and closed, wherein the dustproof element closes the through hole when not subjected to an applied force and is elastically deformed to render the through hole into an open state when subjected to the applied force.
2. The dustproof structure of claim 1, wherein the dustproof element comprises a connecting portion, and the connecting portion is provided in the through hole.
3. The dustproof structure of claim 2, wherein the connecting portion is plate-shaped, and the dustproof element further comprises a plurality of bristles distributed over a predetermined area of the connecting portion.
4. The dustproof structure of claim 3, wherein the connecting portion has a region adjacent to an end face of the through hole, and the bristles are provided on the region of the connecting portion.
5. The dustproof structure of claim 3, wherein the connecting portion has a region adjacent to the operation unit, and the bristles are provided on the region of the connecting portion.
6. The dustproof structure of claim 2, wherein the connecting portion is a hollow tube with a central through hole, and the dustproof element is provided at an end face of the connecting portion.
7. The dustproof structure of claim 6, wherein the dustproof element is formed with at least one flexible dustproof plate, and the at least one dustproof plate covers an end face of the through hole.
8. The dustproof structure of claim 7, wherein there are a plurality of said dustproof plates, a plurality of gaps are formed between the dustproof plates, and each said dustproof plate is bendable when subjected to the applied force.
9. The dustproof structure of claim 7, wherein the dustproof plate is centrally formed with a guide hole, and the guide hole is variable in diameter when subjected to the applied force.
10. The dustproof structure of claim 1, wherein the front end of the shank is provided with the working head, the shank has a rear end having a gripping portion, and the through hole is provided at an end of the gripping portion.
11. The dustproof structure of claim 1, wherein the dustproof element is formed with at least one flexible dustproof plate, and the at least one dustproof plate covers an end face of the through hole.
Description
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWINGS
[0012] In order for the examiner to better understand the objectives, features, and intended effects of the present invention, four preferred embodiments of the invention are detailed below with reference to the accompanying drawings, in which:
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DETAILED DESCRIPTION OF THE INVENTION
[0026] Referring to
[0027] The tool body 30 has a shank 31 and a working head 32. The front end of the shank 31 is connected to the working head 32. The rear end of the shank 31 forms a gripping portion 311. The rear end face of the gripping portion 311 of the shank 31 is concavely provided with a through hole 312. The shank 31 is provided therein with an operation unit 313. In this embodiment, the operation unit 313 is a threaded rod whose working length can be adjusted to adjust the torque to be applied by the working head 32. The operation unit 313, however, is not limited to a threaded rod. The through hole 312 is configured to provide access to the operation unit 313. The working head 32 is configured to apply a torque whose moment arm is defined by the shank 31. In this embodiment, the working head 32 is a ratchet head by way of example only. The working head 32 is a structure well known in the art and therefore will not be described in more detail herein.
[0028] The dustproof element 40 in this embodiment is composed of a plurality of bristles 41 and a plate-shaped connecting portion 42. The bristles 41 are flexible and can deform when subjected to an applied force. The bristles 41 are provided on the surface of one side of the plate-shaped connecting portion 42. As shown in
[0029] To use the tool body 30, referring to
[0030] Referring to
[0031] The dustproof element 40 in the second preferred embodiment has a tubular connecting portion 42 and four flexible dustproof plates 43. The dustproof plates 43 are provided at the outer end face of the connecting portion 42 and are spaced apart by gaps 431 formed between the dustproof plates 43. When the dustproof plates 43 are not subjected to any applied force, the end face of the through hole 312 is covered by the dustproof plates 43, and the combined area of the dustproof plates 43 is equivalent to the cross-sectional area of the through hole 312 such that the end face of the through hole 312 is closed by the dustproof plates 43 except at positions corresponding to the gaps 431 between the dustproof plates 43. The dustproof plates 43, therefore, can block external dust and dirt from entering the through hole 312 when not subjected to any applied force. When the adjustment tool T is inserted into the through hole 312, the adjustment tool T applies a force to, and thus elastically deforms, the dustproof plates 43. As a result, the dustproof plates 43 are curved into the through hole 312, and the gaps 431 between the dustproof plates 43 are widened, thereby allowing the adjustment tool T to enter the through hole 312 and perform an adjusting operation on the operation unit 313. Once the adjusting operation is completed, the adjustment tool T is pulled out of the through hole 312, and the dustproof plates 43 close the end face of the through hole 312 again by returning to the state in which the dustproof plates 43 are subjected to no applied force.
[0032] In practice, referring to
[0033] Referring to
[0034] The dustproof element 40 in the third preferred embodiment has a tubular connecting portion 42 and a flexible dustproof plate 43. The dustproof plate 43 is provided at the outer end face of the connecting portion 42 and has a guide hole 432 at the center. When the dustproof plate 43 is not subjected to any applied force, the diameter of the guide hole 432 is smaller than that of the cross-sectional area of the through hole 312 such that the through hole 312 is in a closed state except at the tiny aperture formed by the guide hole 432. The dustproof plate 43, therefore, can block external dust and dirt from entering the through hole 312 when not subjected to any applied force. When the adjustment tool T is inserted into the through hole 312, the adjustment tool T applies a force to the dustproof plate 43 and thus deforms the guide hole 432 of the dustproof plate 43. As a result, the diameter of the guide hole 432 is increased and becomes equivalent to that of the through hole 312, thereby allowing the adjustment tool T to enter the through hole 312 and perform an adjusting operation on the operation unit 313. Once the adjusting operation is completed, the adjustment tool T is pulled out of the through hole 312, and the end face of the through hole 312 is closed again as the guide hole 432 of the dustproof plate 43 returns to the state in which it is subjected to no applied force.
[0035] The dustproof element provided by the present invention can effectively prevent dust and other foreign matter from entering the through hole from the outside when not subjected to an applied force, and allows access to the operation unit in the through hole without having to be removed. Compared with the conventional dustproof structures whose dustproof plug must be removed in order to provide access to the operation unit inside, the invention is indeed capable of lowering the difficulty of operation and maintenance and enhancing operation efficiency.
[0036] The embodiments described above serve only to explain the technical means of the present invention but not to limit the scope of the invention. Any equivalent modification based on the concept of the invention shall fall within the scope of patent protection of the invention. The dustproof element in the invention is the first of its kind in the art and provides an improvement in functionality, so a patent application for the invention is hereby filed according to the law.