Polygonal wrench tool
10029352 ยท 2018-07-24
Inventors
Cpc classification
B25B15/005
PERFORMING OPERATIONS; TRANSPORTING
Y10T403/32475
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
B25G1/043
PERFORMING OPERATIONS; TRANSPORTING
International classification
B25F1/00
PERFORMING OPERATIONS; TRANSPORTING
F16B7/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16B7/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A polygonal wrench tool has a stick body, a mounting tube, a positioning ball and a spring. The stick body has an insertion end, a first positioning trough, a first distance, a second positioning trough, and a second distance. The first distance is defined between a center of the first positioning trough and the insertion end. The second distance is defined between a center of the second positioning trough and the insertion end. The mounting tube is slidably mounted around the stick body and has a ball hole and a third distance defined between a center of the ball hole and a tube end of the mounting tube. The third distance is larger than the first distance and is shorter than the second distance. The positioning ball is accommodated in the ball hole and abuts the engagement portion. The spring presses the positioning ball.
Claims
1. A polygonal wrench tool having: a stick body being polygonal in cross-section forming multiple edges extending along the longitudinal direction, wherein the stick body has: an insertion end; an engagement portion formed in one of the multiple edges along the longitudinal direction of the stick body and having: an engagement slit having a slit depth from the one of the multiple edges of the stick body and extending along the longitudinal direction of the stick body; a first positioning trough having a first trough depth from the one of the multiple edges of the stick body and communicating with the engagement slit; and a second positioning trough having a second trough depth from the one of the multiple edges of the stick body and communicating with the engagement slit, with the first and second trough depth being deeper from the one of the multiple edges of the stick body than the slit depth; a first distance defined between a center of the first positioning trough and the insertion end; and a second distance defined between a center of the second positioning trough and the insertion end; a mounting tube being hollow, slidably mounted around the stick body and having: a tube end selectively protruding beyond the insertion end; a ball hole formed through the mounting tube and communicating with an interior of the mounting tube; and a third distance defined between a center of the ball hole and the tube end, wherein the third distance is larger than the first distance and is shorter than the second distance; a positioning ball accommodated in the ball hole and abutting the engagement portion; and a spring mounted around the mounting tube and pressing the positioning ball, wherein the insertion end protrudes out of the mounting tube with the positioning ball engaged in the second positioning trough and with the first positioning trough intermediate the tube end and the second positioning trough, and wherein the mounting tube protrudes beyond the insertion end with the positioning ball engaged in the first positioning trough and with the first positioning trough intermediate the tube end and the second positioning trough.
2. The polygonal wrench tool as claimed in claim 1, wherein the mounting tube further has: a mounting trough annularly concaved in the interior of the mounting tube from the tube end, and having a step structure opposite to the tube end; and a fourth distance defined between the step structure and the tube end, wherein the fourth distance is larger than the first distance but is shorter than the third distance and the second distance.
3. The polygonal wrench tool as claimed in claim 1, wherein a cross section of the stick body is hexagonal.
4. The polygonal wrench tool as claimed in claim 2, wherein a cross section of the stick body is hexagonal.
5. The polygonal wrench tool as claimed in claim 1, wherein a cross section of the stick body is hexagonal, and the stick body is elongated and L-shaped.
6. The polygonal wrench tool as claimed in claim 1 further having a holding handle connected with the stick body, wherein the holding handle has: a handle body being elongated; and an adapter tube connected between the handle body and an end of the stick body opposite to the insertion end.
7. The polygonal wrench tool as claimed in claim 6, wherein a cross section of the stick body is hexagonal.
8. The polygonal wrench tool as claimed in claim 1, wherein the insertion end has a stellate cross section, and the stick body is elongated and L-shaped.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF PREFERRED EMBODIMENTS
(15) With reference to
(16) A cross section of the stick body 10 may be hexagonal or stellate. In the first preferred embodiment, the cross section of the stick body 10 is hexagonal, such that the stick body 10 has six edges along a longitudinal direction of the stick body 10. The stick body 10 has an insertion end 13, an engagement portion 14, a first distance D1 and a second distance D2. The insertion end 13 is one of two ends of the stick body 10. The engagement portion 14 is formed in the stick body 10 and has an engagement slit 11, a first positioning trough 12 and a second positioning trough 12. The engagement slit 11 is defined in the stick body 10 along the longitudinal direction of the stick body 10. The first positioning trough 12 and the second positioning trough 12 are formed in the stick body 10 at an interval and communicate with the engagement slit 11.
(17) The first positioning trough 12 is closer to the insertion end 13 than the second positioning trough 12 is. Preferably, the first positioning trough 12 and the second positioning trough 12 are located at two ends of the engagement slit 11. Preferably, the first positioning trough 12, the second positioning trough 12 and the engagement slit 11 are formed in one of the edges along the longitudinal direction of the stick body 10. The first distance D1 is defined between a center of the first positioning trough 12 and the insertion end 13. The second distance D2 is defined between a center of the second positioning trough 12 and the insertion end 13. The second distance D2 is longer than the first distance D1.
(18) The mounting tube 20 is hollow, is slidably mounted around the stick body 10, matches the stick body 10, and has a tube end 26, a ball hole 21, a spring trough 25 and a third distance D3. The ball hole 21 is formed radially through the mounting tube 20 and communicates with an interior of the mounting tube 20. The spring trough 25 is defined around the mounting tube 20 and communicates with the ball hole 21. The third distance D3 is defined between a center of the ball hole 21 and the tube end 26. The third distance D3 is longer than the first distance D1 and is shorter than the second distance D2. The positioning ball 22 is accommodated in the ball hole 21 and abuts the engagement portion 14. The spring 23 is mounted in the spring trough 25 and abuts the positioning ball 22 to keep the positioning ball 22 from disengaging from the ball hole 21.
(19) In assembling, the mounting tube 20 is first mounted around the stick body 10, and the ball hole 21 is aligned with the engagement portion 14. Then, the positioning ball 22 is mounted in the ball hole 21 and abuts the engagement portion 14. Specifically, the positioning ball abuts the first positioning trough 12 or the second positioning trough 12. Then, the spring 23 is mounted in the spring trough 25 to abut the positioning ball 22.
(20) With reference to
(21) With reference to
(22) With reference to
(23) With reference to
(24) In use, when the positioning ball 22 is engaged in the second positioning trough 12 of the stick body 10B, the insertion end 13 protrudes out of the mounting tube 20B, as shown in
(25) With reference to
(26) From the above description, it is noted that the present invention has the following advantages: 1. By adjusting the position of the positioning ball 22 engaged in the engagement portion 14, the wrench tool can be determined as applicable on an Allen bolt or a hex bolt, such that the wrench tool has two operating states even though without being a sleeve hex-wrench. The manufacturing process of the engagement portion 14 in the stick body 10 is simple, such that the polygonal wrench tool has a lowered manufacturing cost.
(27) 2. When the stick body 10 protrudes out of the mounting tube 20, the stick body 10 can be applied in an inner polygonal bolt. When the mounting tube 20 protrudes out of the stick body 10, the mounting tube 20 can be applied around an outer polygonal bolt. The spring 23 presses the positioning ball 22 to be engaged in the engagement portion 14 to keep the mounting tube 20 from detaching from the stick body 10. Therefore, it is convenient for the user to assembly and use the polygonal wrench tool.
(28) 3. The mounting tube 20 may further have a mounting trough 24, so when the mounting tube 20 protrudes out of the stick body 10, the mounting tube 20 can be applied around two bolts of different sizes.
(29) 4. The cross section of the stick body 10 may be hexagonal or stellate to meet different usage demands.
(30) Even though numerous characteristics and advantages of the present invention have been set forth in the foregoing description, together with details of the structure and function of the invention, the disclosure is illustrative only, and changes may be made in detail, especially in matters of shape, size, and arrangement of parts within the principles of the invention to the full extent indicated by the broad general meaning of the terms in which the appended claims are expressed.