Impact device of pneumatic tool
09636808 ยท 2017-05-02
Inventors
Cpc classification
B25B21/02
PERFORMING OPERATIONS; TRANSPORTING
B25B23/1453
PERFORMING OPERATIONS; TRANSPORTING
B25B19/00
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
An impact device includes a transmission shaft, an impact cylinder, two first impact pins and a first ring. The transmission shaft has an impacted section disposed in the impact cylinder, an extending section extending along an axis, a first protrusion extending toward a first radial direction, and two first concave surfaces located at the first protrusion. The impact cylinder has two elongated protrusions and two first radial holes separated by the elongated protrusions. The first impact pins are received in the first radial holes in parallel to the axis and abuttable against the first concave surfaces. The first ring is sleeved onto the impact cylinder and the first impact pins and has a first narrow groove in which one elongated protrusion is located, and a first wide groove in which the other elongated protrusion is movably located. The impact device has sufficient torque output and long lifetime.
Claims
1. An impact device comprising: a transmission shaft which has an impacted section, an extending section extending from the impacted section along an axis of the transmission shaft, a first protrusion extending from the impacted section toward a first radial direction, and two first concave surfaces located at two sides of the first protrusion; an impact cylinder which is provided at an inside thereof with a passage for accommodating the impacted section of the transmission shaft, at an outside thereof with two elongated protrusions which are located at two opposite sides of the impact cylinder and extend parallel to the axis, and at two other opposite sides thereof with two first radial holes, the two first radial holes and the two elongated protrusions being alternately arranged along a circumference of the impact cylinder; two first impact pins which are respectively received in the first radial holes, shaped as circular columns extending parallel to the axis of the transmission shaft, and abuttable against the first concave surfaces of the transmission shaft; and a first ring which is sleeved onto the impact cylinder and the first impact pins, and provided at an inside thereof with a first narrow groove and a first wide groove both extending parallel to the axis of the transmission shaft, wherein the first wide groove is wider than the first narrow groove; one of the elongated protrusions is located in the first narrow groove and the other elongated protrusion is movably located in the first wide groove.
2. The impact device as claimed in claim 1, wherein the transmission shaft comprises a second protrusion extending from the impacted section toward a second radial direction which is reverse to the first radial direction, and two second concave surfaces located at two sides of the second protrusion; the impact cylinder is further provided at two opposite sides thereof with two second radial holes; the two second radial holes and the two elongated protrusions are alternately arranged along the circumference of the impact cylinder; the impact device further comprises two second impact pins respectively received in the second radial holes, shaped as circular columns extending parallel to the axis of the transmission shaft, and abuttable against the second concave surfaces of the transmission shaft, and a second ring sleeved onto the impact cylinder and the second impact pins, aligned with the first ring, and provided at an inside thereof with a second narrow groove and a second wide groove both extending parallel to the axis of the transmission shaft; the second wide groove is wider than the second narrow groove; the second narrow groove is in alignment with the first wide groove; the second wide groove is in alignment with the first narrow groove; one of the elongated protrusions is located in the second narrow groove; the other elongated protrusion is movably located in the second wide groove.
3. The impact device as claimed in claim 1, wherein the impact cylinder is adapted to be driven by a pneumatic motor to rotate.
4. The impact device as claimed in claim 1, wherein the first ring is adapted to be driven by a pneumatic motor to rotate.
5. The impact device as claimed in claim 1, wherein the impact cylinder is provided at the outside thereof with two convex portions located by the first radial holes.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The present invention will become more fully understood from the detailed description given herein below and the accompanying drawings which are given by way of illustration only, and thus are not limitative of the present invention, and wherein:
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DETAILED DESCRIPTION OF THE INVENTION
(11) First of all, it is to be mentioned that same reference numerals used in the following preferred embodiments and the appendix drawings designate same or similar elements throughout the specification for the purpose of concise illustration of the present invention.
(12) Referring to
(13) The transmission shaft 30 has an impacted section 31, and an extending section 32 extending from the impacted section 31 along an axis L of the transmission shaft 30. The extending section 32 has a sleeved portion 322 approximately shaped as a square column for connection with a socket (not shown), which is configured corresponding in shape to a screw or a nut (not shown), so that the socket is driven by the transmission shaft 30 so as to further drive the screw or nut to rotate when the transmission shaft 30 rotates.
(14) The transmission shaft 30 further has a first protrusion 33 extending from the impacted section 31 toward a first radial direction D1 of the transmission shaft 30, two first concave surfaces 34A, 34B located at two sides of the first protrusion 33, a second protrusion 35 extending from the impacted section 31 toward a second radial direction D2 of the transmission shaft 30, which is inverse to the first radial direction D1, and two second concave surfaces 36A, 36B located at two sides of the second protrusion 35.
(15) The impact cylinder 40 is centrally empty from one end to the other and provided at the inside thereof with a passage 41 for accommodating the impacted section 31 of the transmission shaft 30, and at an end of the passage 41 with an inner gear portion 42 for connection with an output shaft 82 of a pneumatic motor 80, so that the impact cylinder 40 can be driven by the pneumatic motor 80 to rotate about the axis L. The impact cylinder 40 is provided at the outside thereof with two elongated protrusions 43, 44 which are located at two opposite sides of the impact cylinder 40, i.e. the upside and the downside in
(16) The impact cylinder 40 is provided at two other opposite sides thereof, i.e. the left side and the right side in
(17) The first impact pins 51A, 51B are located in the first radial holes 45, respectively. The first ring 61 is sleeved onto the impact cylinder 40 and the first impact pins 51A, 51B so as to prevent the first impact pins 51A, 51B from escape from the first radial holes 45. The second impact pins 52A, 52B are located in the second radial holes 46, respectively. The second ring 62 is disposed in alignment with the first ring 61 and sleeved onto the impact cylinder 40 and the second impact pins 52A, 52B so as to prevent the second impact pins 52A, 52B from escape from the second radial holes 46. The first impact pins 51A, 51B and the second impact pins 52A, 52B are shaped as circular columns extending parallel to the axis L of the transmission shaft 30.
(18) The first ring 61 is provided at the inside thereof with a first narrow groove 612 and a first wide groove 614 wider than the first narrow groove 612. The second ring 62 is provided at the inside thereof with a second narrow groove 622 and a second wide groove 624 wider than the second narrow groove 622. The first and second narrow grooves 612, 622 and wide grooves 614, 624 all extend parallel to the axis L of the transmission shaft 30. In fact, the first and second rings 61, 62 are the same in shape, but arranged having a phase difference of 180 degrees in orientation when being sleeved onto the impact cylinder 40. That is, the first wide groove 614 and the second narrow groove 622 are aligned with respect to each other and both located at the upside of the impact cylinder 40 in
(19) Each limiting unit 70 comprises a limiting ring 72 and a retaining ring 74. The limiting rings 72 are sleeved onto the impact cylinder 40. The first and second rings 61, 62 are located between the limiting rings 72. The retaining rings 74 are embedded in the grooves 47 respectively so that the limiting rings 72 and the first and second rings 61, 62 are limited between the retaining rings 74 and therefore prevented from separation from the impact cylinder 40.
(20) The working process of the impact device 20 will be specified in the following contents wherein the situation that the impact cylinder 40 is driven by the pneumatic motor 80 to rotate counterclockwise is instanced and the positional variations of the first impact pins 51A, 51B and the first ring 61 resulted from the driving of the impact cylinder 40 are described in coordination with
(21) As shown in
(22) The first impact pin 51B is continuously pressed by the first ring 61 after the step shown in
(23) The first impact pin 51A is continuously pressed by the first ring 61 after the step shown in
(24) The impact device 20 can be driven to rotate clockwise and therefore perform a similar process to the aforesaid process. However, when the impact device 20 is driven to rotate clockwise, the first impact pins 51A, 51B are driven to impact the first concave surface 34B of the transmission shaft 30 intermittently, and the second impact pins 52A, 52B are driven to impact the second concave surface 36A of the transmission shaft 30 intermittently.
(25) It is to be mentioned that the impact cylinder 40 in the aforesaid embodiment is provided at the outside thereof with two convex portions 48 located by the first radial holes 45 respectively, and two convex portions 49 located by the second radial holes 46 respectively. The convex portions 48, 49 can increase the structural strength of the impact cylinder 40, the impact forces received by the transmission shaft 30 from the first and second impact pins 51A, 51B, 52A, 52B, and the lifetime of the impact device 20. However, the impact cylinder 40 can be provided without such convex portions 48, 49.
(26) Besides, the transmission shaft 30 can be provided without such second protrusion 35; in this condition, the impact cylinder 40 can be provided without such second radial holes 46, and the impact device 20 has no such second impact pins 52A, 52B and second ring 62. This design is similar to the impact device in the following second preferred embodiment of the present invention. However, in the aforesaid first preferred embodiment, the swinging forces from the first and second rings to reverse directions are received by the transmission shaft 30 at the same time so that the impact device 20 has relatively less vibration resulted from the swinging force when operating.
(27) Referring to