GB2310157A - Impact wrench - Google Patents

Impact wrench Download PDF

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Publication number
GB2310157A
GB2310157A GB9626937A GB9626937A GB2310157A GB 2310157 A GB2310157 A GB 2310157A GB 9626937 A GB9626937 A GB 9626937A GB 9626937 A GB9626937 A GB 9626937A GB 2310157 A GB2310157 A GB 2310157A
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GB
United Kingdom
Prior art keywords
coupling member
output shaft
central bore
centrifugal clutch
main body
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
GB9626937A
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GB2310157B (en
GB9626937D0 (en
Inventor
Chen Shu-Hsia Huang
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Individual
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Individual
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Filing date
Publication date
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Priority to GB9626937A priority Critical patent/GB2310157B/en
Publication of GB9626937D0 publication Critical patent/GB9626937D0/en
Publication of GB2310157A publication Critical patent/GB2310157A/en
Application granted granted Critical
Publication of GB2310157B publication Critical patent/GB2310157B/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B25HAND TOOLS; PORTABLE POWER-DRIVEN TOOLS; MANIPULATORS
    • B25BTOOLS OR BENCH DEVICES NOT OTHERWISE PROVIDED FOR, FOR FASTENING, CONNECTING, DISENGAGING OR HOLDING
    • B25B21/00Portable power-driven screw or nut setting or loosening tools; Attachments for drilling apparatus serving the same purpose
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B25HAND TOOLS; PORTABLE POWER-DRIVEN TOOLS; MANIPULATORS
    • B25BTOOLS OR BENCH DEVICES NOT OTHERWISE PROVIDED FOR, FOR FASTENING, CONNECTING, DISENGAGING OR HOLDING
    • B25B21/00Portable power-driven screw or nut setting or loosening tools; Attachments for drilling apparatus serving the same purpose
    • B25B21/02Portable power-driven screw or nut setting or loosening tools; Attachments for drilling apparatus serving the same purpose with means for imparting impact to screwdriver blade or nut socket

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • One-Way And Automatic Clutches, And Combinations Of Different Clutches (AREA)

Description

POWER WRENCH FIELD OF THE INVENTION The present invention relates generally to a power wrench for applying torque impulse to loose/tighten the wheel stub in an intermittent fashion and in particular to a power wrench with improved torque transmission mechanism.
BACKGROUND OF THE INVENTION Power wrenches for loosening/tightening stud nuts or bolt by applying intermittent torque thereto are known. Examples are US patent Nos. 4,727,780, 4,920,831, 4,947,939, 5,035,161 and 5,412,546, Japanese patent publication No. 7-42617 and Japanese utility model No. 3017657, Chinese patent Nos. 24796 and 213255, Canadian patent Nos. 1,245,482 and 2,030,473, Australian patent No. 589089 and Taiwanese patent Nos. 34467 and 62327. All these patents are related to power wrenches comprising a housing inside which a motor is fixed to drive a torque transmission mechanism.The torque transmission mechanism comprises a hollow body coupled to the motor to be driven thereby, a coupling member having two opposite wings pivoted to the body and rotatable relative thereto to have either one of the wings swing into the body, an output shaft having a toothed end rotatably and substantially co-axially received within the body to be engaged by the wings of the coupling member so as to drive the output shaft to transmit torque to a tool, such as a socket, located outside the housing and removably secured to an opposite end of the shaft and a clutch to control the engagement between the wings and the toothed end of the output shaft so as to generate an intermittent torque output at the output shaft.
Among these known patents, US patent No. 5,412,546 is a particularly good design. The design of this US patent, however, still has some drawbacks in the torque transmission mechanism thereof and can be further improved. It is therefore desirable to provide a power wrench, based on the teaching of US patent No. 5,412,546 with further improvement to overcome the drawbacks of the prior patent.
SUMMARY OF THE INVENTION The principal object of the invention is to provide a power wrench having an improved torque transmission mechanism comprising improvements over the known device of US patent No.
5,412,546 by providing the output shaft with a double-faced tooth configuration so as to improve the working efficiency of the teeth of the output shaft, as compared to single-faced configuration teeth adapted in the '546 patent.
It is another object of the present invention to provide a power wrench wherein the torque transmission mechanism thereof comprising two control pins that are driven by the centrifugal clutch to control the torque impulse output of the output shaft are loosely connected to the centrifugal clutch so as to accommodate sideways force applied thereto and thus increase the service life thereof as compared to the completely fixed control pins adapted in the prior art.
In accordance with the present invention, there is provided a power wrench comprising a housing inside which a motor is fixed to drive a torque transmission mechanism. The torque transmission mechanism comprising a body driven by the motor and having a central bore to rotatably support therein a toothed end of an output shaft. The toothed end of the shaft has a pair of diametrically opposite teeth, each defined by two circumferentially opposite contact faces that extend along radii of the output shaft. The body has a radial notch communicating the bore with a coupling member pivotally received therein. The coupling member has two opposite wings alternately movable into the bore with the rotation thereof to selectively engage one of. the teeth for driving the shaft.A centrifugal clutch is provided between the body and the motor to control the movement of the wings. The control comprises two pins movable between an engagement position where the pins engage the coupling member and prevents the wings of the coupling member from moving into the bore and a disengagement position where the pins disengage from the coupling member and the coupling member is allowed to rotate freely. The pins have circumferential grooves to be loosely received within open slots provided on the clutch, while maintaining the pins thereon, to accommodate sideways force applied thereto so as to increase the service life thereof.
BRIEF DESCRIPTION OF THE DRAWINGS The present invention will be better understood from the following description of a preferred embodiment of the present invention, with reference to the attached drawings, wherein: Fig. 1 is a side elevational view, partially broken, showing a power wrench in accordance with the present invention; Fig. 2 is an exploded perspective view showing a power wrench torque transmission mechanism adapted in the power wrench in accordance with the present invention; Fig. 3 is a perspective view showing a centrifugal clutch adapted in the torque transmission mechanism of the power wrench in accordance with the present invention; Fig. 4 is an exploded perspective view of the centrifugal clutch of Fig. 3; Figs.S and 6 are top views, partially broken, respectively showing the engagement and disengagement of the control pins with the coupling member of the torque transmission mechanism of Fig. 1; Figs. 7 and 8 are side elevational views, partially broken, showing the engagement and disengagement of the control pins with the coupling member, respectively associated with Figs. 5 and 6; and Figs. 9 and 10 are cross-sectional views of the main body of the torque transmission mechanism with the coupling member and the output shaft therein, showing the engagement and disengagement of the coupling member with the output shaft.
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT With reference to the drawings and in particular Fig. 1, wherein a power wrench constructed in accordance with the present invention, generally designated with the reference numeral 900, is shown, the power wrench 900 generally comprises a housing 902 inside which a torque source, preferably a reversible electrical motor 904, is secured. A torque transmission mechanism 906 is also encased in the housing 902 and coupled to a spindle 908 of the motor 904 to be driven thereby. The torque transmission mechanism 906 comprises a driving tip 910 extending out of the housing 902 from a front end thereof and adapted to engage a nut/bolt to be loosened/tightened, preferably via a socket (not shown) for performing nut loosening/tightening operation.
A handle 912 extends from the housing 902 for hand holding the power wrench 900. An ON/OFF switch 914 is provided on the handle 912 to manually power on/off the motor 904 by supplying electricity from an external power source (not shown) to the motor 904.
With particular reference to Fig. 2, wherein the torque transmission mechanism 906 is shown, the torque transmission mechanism 906 comprises a hollow cylindrical main body 1, having a central bore 10 with an open end 14 and a closed end 15 connected together by a cylindrical circumferential side wall 16. A projection 151, preferably cylindrical, is coaxially or concentrically mounted to the closed end 15 of the main body 1 with a central hole 152 extending therethrough to receive and fix to the spindle 908 of the motor 904 so as to be rotatable with the motor spindle 908 for transmitting torque/rotation from the motor 904 to the main body 1.
The main body 1 comprises a radial notch 11 formed on the side wall 16 and in communication with the central bore 10 to loosely receive therein a coupling member 2 of complemental shape and size. A pivot pin 4 extends through holes 12 formed on the main body 14 at axially opposite edges of the notch 11 and a hole 20 formed on the coupling member 2 to freely rotatably support the coupling member 2 within the notch 11.
The hole 20 is formed on a central portion of the coupling member 2 with two opposite wings 23 and 24 extending laterally from the central portion of the coupling member 2 where the hole 20 is located.
Preferably, each of the wings 23 and 24 has a remote end edge 22 which points toward the central bore 10. The free rotation of the coupling member 2 about the pivot pin 4 allows the end edge 22 of either one of the wings 23 and 24 to move from a neutral position (Fig. 9) where the coupling member 2 is substantially flush with the side wall 16 of the main body 1 and thus the end edges 22 are located substantially symmetrical with respect to the main body 1 so as to form a continue cylindrical surface with the cylindrical side wall 16 of the main body 1 toward a working position (Fig. 10) where the end edge 22 of one of the wings 23 and 24 is moved into the central bore 10.
The coupling member 2 also has an inclined side surface 21 formed on one side thereof facing the closed end 15 of the main body 1 and extending from the end edge 22 of one of the wings 23 and 24 to the edge 22 of the other wing.
The open end 14 of the main body 1 receives an output shaft 3 to extend into the central bore 10 of the main body 1 so that an expanded end 31 of the output shaft 3 is rotatably supported within the central bore 10 of the hollow cylindrical main body 1 and substantially in registration with the notch 11 and the coupling member 2. The output shaft 3 comprises an opposite end which serves as the driving tip 910 of the power wrench 900 and extends out of the housing 902 to engage and drive a tool, such as a socket.
The expanded end 31 of the output shaft 3 comprises a pair of teeth 310, preferably diametrically opposite to each other and each comprising a double-faced configuration that comprises two circumferentially opposite contact faces 311 substantially extending along radii of the output shaft 3.
The teeth 310 are shaped and sized so as to be rotatable within the central bore 10 of the main body 1 when the coupling member 2 is in the neutral position, but engageable by the end edge 22 of one of the wings 23 and 24 of the coupling member 2 by the contact engagement between one of the faces 311 and the end edge 22 when the coupling member 2 is rotated relative to the main body 1 to the working position where the one of the end edges 22 is moved deeply into the central bore 10.
The double-faced configuration of the teeth 310 of the output shaft 3 provides the advantage that once the end edges 22 of the coupling member 2 miss one of the teeth 310, they may hit the contact face 311 of the other tooth 310 so that the working efficiency of the power wrench may be increased as compared to the conventional design wherein the teeth have only one contact face.
A centrifugal clutch 5 is mounted to the projection 151 of the closed end 15 of the main body 1. As best seen in Figs. 3 and 4, the centrifugal clutch 5 comprises a disk-like member 54 having a first surface facing the closed end 15 of the main body 1 on which at least a control pin 6 is fixed to point toward the closed end 1S of the main body 1. It is preferable to have two such control pins 6 fixed on the disk 54 as illustrated in the specific embodiment shown in the drawings.
The disk 54 also has a second surface facing away from the closed end 15 of the main body 1 on which a cylinder 540 is formed to be movably or slidably fit over the projection 151 of the main body 1.
To mount the control pins 6, the disk 54 has formed thereon an open slot 541 of a given width for each of the control pins 6. Each of the control pins 6 has formed on an end thereof a circumferential groove 61, see Fig. 2, which has an outer diameter substantially corresponding to the width of the open slot 541 to be loosely and thus limitedly movably receivable therein with an opposite free end of the control pin 6 pointing toward the closed end 15 of the main body 1.
Preferably, a pre-determined clearance is provided between the circumferential groove 61 of each of the control pins 6 and the width of the respective open slot 541 of the disk 54.
This allows the control pins 6 to accommodate sideways forces applied thereto during the operation of the wrench so as to elongate the service life thereof.
The closed end 15 of the main body 1 has holes 13 formed thereon and corresponding in position to the control pins 6 so that when the disk 54 of the clutch 5 is movably fit over the projection 151, the control pins 6 are received within the holes 13 to be movable, by the movement of the disk 54 relative to the projection 151, between an engaging position where the free ends of the control pins 6 extend out of the holes 13 and enter the notch 11 to be located closely under and in contact engagement with the inclined side surface 21 of the coupling member 2 and thus prevent the coupling member 2 from rotation relative to the main body 1 and maintain the coupling member 2 at the neutral position thereof, as shown in Figs. 5 and 7, and a disengaging position where the control pins 6 are withdrawn into the holes 13 and disengage from the inclined side surface 21 of the coupling member 2 and thus forming no constraint to the rotation of the coupling member 2, as shown in Figs. 6 and 8.
Preferably, the free ends of the control pins 6 are tapered to facilitate their movement into contact engagement with the inclined side surface 21 of the coupling member 2 and helping forcing the wings 23 and 24 to move from the working position back to the neutral position by the camming engagement therebetween.
Back to Figs. 3 and 4, the centrifugal clutch 5 further comprises a base plate 55 fixed to the projection 151 of the main body 1 with two movable members 51 movably attached thereto. Each of the movable members 51 is rotatably supported on the base plate 55 with a pair of helical springs 52 are arranged between the two movable members 51 to bias the movable members 51 toward each other. Each of the movable members 51 also has an end in contact engagement with the disk 54 so that when the movable members 51 are rotated relative to the base plate 55 away from each other, the disk 54 is allowed to move relative to the projection 151 of the main body 1 and thus moving the control pins 6 to disengage from the coupling member 2.
Each of the movable members 51 has a weight 53 fixed thereon which when rotated in a high speed generates a force to move the movable members 51 against the helical spring 52 with the centrifugal force acting thereupon.
In operation, since the centrifugal clutch 5 is fixed te the projection 151 of the main body 1, the rotational speed of the main body 1 generates a centrifugal force acting upon the weights 53 of the centrifugal clutch 5 to rotate the movable members 51 relative to the base plate 55 against the biasing force of the helical springs 52.Under this situation, the disk 54 is allowed to move relative to the cylindrical projection 151 of the main body 1 to disengage the control pins 6 from the coupling member 2 (the disengaging position) and thus allowing the coupling member 2 to rotate relative to the main body 1, making one of the wings 23 and 24 move into the central bore 10 toward the working position (Fig. 10) to hit and impact one of the teeth 310 of the output shaft 3 so as to transmit a torque impulse or rotation to the tool fixed to the driving tip end 32 of the output shaft 3 for performing loosening/tightening operation.
On the other hand, once the driving tip end 32 is engaged with a nut or bolt, the rotation of the output shaft 3 is stopped by the reaction torque from the nut or bolt to be loosened/tightened. Under this situation, the biasing force of the helical springs 52 becomes greater than the centrifugal force provided by the rotation of the weights 53 so as to force the disk 54 and the control pins 6 to move toward the main body 1 and thus the control pins 6 enter into the notch 11 toward the engaging position, forcing the coupling member 2 to move from the working position (Fig. 10) back to the neutral position (Fig. 9) thereof. The rotation of the output shaft 3 then resumes due to the disengagement of the coupling member 2 from the teeth 310 of the output shaft 3. The repeated high speed and low speed cycle of the output shaft 3 will continue until the nut or bolt is tightened or loosened.
It is apparent that although the invention has been described in connection with the preferred embodiment, it is contemplated that those skilled in the art may make changes to the preferred embodiment without departing from the scope of the invention as defined in the appended claims.

Claims (6)

WHAT IS CLAIMED IS
1. A power wrench comprising a housing (902) inside which a motor (904) and a torque transmission mechanism (906) are fixed and mechanically coupled together to transmit torque from the motor to a driving tip (910) located outside the housing, the torque transmission mechanism (906) comprising a cylindrical main body (1) having a central bore (10) surrounded by a cylindrical side wall (16) with a closed end (15) adapted to connect to the motor (904) and an open end (14) to receive and rotatably support a toothed end (31) of an output shaft (3) within the central bore (10), the toothed end (31) of the output shaft (3) comprising two radially extending teeth (310), each having two circumferentially opposite and radially extending contact faces (311) , the output shaft (3) having an opposite second end extending outside the housing to serve as the driving tip (910), the main body (1) comprising a radial notch (11) in communication with the central bore (10) to receive and rotatably support therein a coupling member (2), the coupling member (2) comprising two wings (23, 24) opposite to each'other and alternately movable into the central bore (10) to selectively engage and drive the toothed end (31) of the output shaft (3), the coupling member (2) further comprising an inclined side surface (21), a centrifugal clutch (5) mounted to the main body (1) and having at least one control pin (6) mounted thereto to be movable by the centrifugal clutch (5) between a first position where the at least one control pin (6) engages the inclined side surface (21) of the coupling member (2) to prevent thewings (23, 24) of the coupling member (2) from moving into the central bore (10) and engaging the toothed end (31) of the output shaft (3) and a second position where the at least one control pin (5) disengages from the coupling member (2) to allow the wings (23, 24) to move into the central bore (10) to engage the toothed end (31) of the output shaft (3).
2. The mechanism as claimed in Claim 1, wherein the centrifugal clutch (5) comprises two control pins (6) fixed to the centrifugal clutch (5).
3. The mechanism as claimed in Claim 1, wherein the at least one control pin (6) comprises a circumferential groove (61) located at one end thereof and the centrifugal clutch (5) comprises an open slot (541) having a width sufficient to loosely receive the circumferential groove (61) of the at least one pin (6) therein to have a second opposite end of the at least one control pin (6) pointing toward the inclined side surface (21) of the coupling member (2)
4. The mechanism as claimed in Claim 3, wherein the centrifugal clutch (5) comprises two control pins (5) and two corresponding open slots (541) to respectively loosely receive the control pins (6) therein.
5. The mechanism as claimed in Claim 1, wherein the two teeth (310) of the output shaft (3) are arranged to be diametrically opposite to each other.
6. A power wrench constructed and arranged substantially as described in relation to Figs.l-lO of the accompanying drawings.
6. A power wrench constructed and arranged substantially as described in relation to Figs. 1-10 of the accompanying drawings.
Amendments to the claims have been filed as follows 1. A power wrench comprising a housing (902) inside which a motor (904) and a torque transmission mechanism (906) are fixed and mechanically coupled together to transmit torque from the motor to a driving tip (910) located outside the housing, the torque transmission mechanism (906) comprising a cylindrical main body (1) having a central bore (10) surrounded by a cylindrical side wall (16) with a closed end (15) adapted to connect to the motor (904) and an open end (14) to receive and rotatably support a toothed end (31) of an output shaft (3) within the central bore (10), the toothed end (31) of the output shaft (3) comprising two radially extending teeth (310), each having two circumferentially opposite and radially extending contact faces (311), the output shaft (3) having an opposite second end extending outside the housing to serve as the driving tip (910), the main body (1) comprising a radial notch (11) in communication with the central bore (10) to receive and rotatably support therein a coupling member (2), the coupling member (2) comprising two wings (23, 24) opposite to each other and alternately movable into the central bore (10) to selectively engage and drive the toothed end (31) of the output shaft (3), the coupling member (2) further comprising an inclined side surface (21), a centrifugal clutch (5) mounted to the main body (1) and having at least one control pin (6) mounted thereto to be movable by the centrifugal clutch (5) between a first position where the at least one control pin (6) engages the inclined side surface (21) of the coupling member (2) to prevent the wings (23,24) of the coupling member (2) from moving into the central bore (10) and engaging the toothed end (31) of the output shaft (3) and a second position where the at least one control pir) (()) disengages from the coupling member (2) to allow the wings (23,24) to move into the central bore (10) to engage the toothed end (31) of the output shaft (3).
2. The power wrench as claimed in claim 1, wherein the centrifugal clutch (5) comprises two control pins (6) fixed to the centrifugal clutch (5).
3. The power wrench as claimed in claim 1, wherein the at least one control pin (6) comprises a circumferential groove (61) located at one end thereof and the centrifugal clutch (5) comprises an open slot (541) having a width sufficient to loosely receive the circumferential groove (61) of the at least one pin (6) therein so as to have a second opposite end of the at least one control pin (6) pointing toward the inclined side surface (21) of the coupling member (2).
4. The power wrench as claimed in claim 3, wherein the centrifugal clutch (5) comprises two control pins (6) and two corresponding open slots (541) to respectively loosely receive the control pins (6) therein.
5. The power wrench as claimed in claim 1, wherein the two teeth (310) of the output shaft (3) are arranged to be diametrically opposite to each other.
GB9626937A 1996-12-24 1996-12-24 Power wrench Expired - Fee Related GB2310157B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
GB9626937A GB2310157B (en) 1996-12-24 1996-12-24 Power wrench

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
GB9626937A GB2310157B (en) 1996-12-24 1996-12-24 Power wrench

Publications (3)

Publication Number Publication Date
GB9626937D0 GB9626937D0 (en) 1997-02-12
GB2310157A true GB2310157A (en) 1997-08-20
GB2310157B GB2310157B (en) 1998-01-14

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Family Applications (1)

Application Number Title Priority Date Filing Date
GB9626937A Expired - Fee Related GB2310157B (en) 1996-12-24 1996-12-24 Power wrench

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2380962A (en) * 2001-10-17 2003-04-23 Tranmax Machinery Co Ltd Torsion limiting member for an impact mechanism

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5035161A (en) * 1990-08-08 1991-07-30 Huang Dora H Wrench
US5412546A (en) * 1994-07-20 1995-05-02 Huang; Chen S. Power wrench

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5035161A (en) * 1990-08-08 1991-07-30 Huang Dora H Wrench
US5412546A (en) * 1994-07-20 1995-05-02 Huang; Chen S. Power wrench

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2380962A (en) * 2001-10-17 2003-04-23 Tranmax Machinery Co Ltd Torsion limiting member for an impact mechanism

Also Published As

Publication number Publication date
GB2310157B (en) 1998-01-14
GB9626937D0 (en) 1997-02-12

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PCNP Patent ceased through non-payment of renewal fee

Effective date: 20021224