This invention relates to an adjustable torque screwdriver, and pertains to the field of manual tools.
Generally, the output torque of an ordinary screwdriver is not adjustable, relying merely on the user's experience to control the torque applied. So when the torque needs to be controlled precisely, as in the case of interconnections between various parts of precise instruments, or in the case of brittle or easily damaged fastening and/or fastened parts, excessive force or too large an exerted torque may damage the parts. In such a case, experience of the operator is the sole reliance, and therefore there is a certain prerequisite for the user, for example, he/she needs to be a skilled mechanic.
In light of the foregoing limitations of an ordinary screwdriver, the present invention provides an adjustable torque screwdriver of which the size of output torque can be adjusted according to the needs of users, thus allowing multi-stage adjustment of the output torque. When the torque exerted by the user is larger than the set torque, the torque output shaft of the screwdriver slips, thereby shutting off the output of torque.
In light of the defects of the prior art, the invention aims to solve the technical problem by providing an adjustable torque screwdriver.
To this end, the invention provides an adjustable torque screwdriver, including a torque input assembly and a torque output assembly, and further including a ratchet pair, which comprises a first ratchet and a second ratchet, respectively having circular teeth. The torque input assembly transmits the torque to the first ratchet, and the second ratchet then transmits the torque to the torque output assembly, and the circular teeth are arranged to enable the ratchet pair to slip either clockwise or counterclockwise, but not to slip in the respective opposite direction. The adjustable torque screwdriver also includes an adjusting assembly and an elastic assembly, the elastic assembly exerting pressure to the ratchet to tightly fit the ratchet pair, the adjusting assembly loading and unloading the elastic assembly, thereby adjusting the exerted pressure and the in-between fitting tightness of the ratchet pair, thus adjusting the torque for the ratchet pair to slip.
In a preferred embodiment of the invention, the elastic assembly is a spring group which includes a plurality of springs approximately concentrically disposed, each of the springs having respectively a specific free height and an elastic modulus.
In a further preferred embodiment of the present invention, the spring group includes a first spring and a second spring; the free height of the first spring is larger than that of the second spring, and the elastic modulus of the second spring is larger than that of the first spring.
In another preferred embodiment of the invention, the adjusting assembly is an outer casing with an internal thread and an interior ring with an external thread. The interior ring matches with the outer casing through the threads, and not allowed to rotate about the axis of the screwdriver; when the outer casing revolves about the axis of the screwdriver relative to the interior ring, the interior ring translates relative to the elastic assembly under the effect of the thread pair, thus loading or unloading the elastic assembly.
In another preferred embodiment of the invention, the embodiment also includes a flange rotating together with the outer casing, a plurality of round holes arranged on the flange, and a bead mating with the round holes and the grading spring biasing the bead.
In another preferred embodiment of the invention, the outer casing is disposed in the head part of the adjustable torque screwdriver, and the ratchet pair and the elastic assembly are disposed in the outer casing.
In another preferred embodiment of the invention, the elastic assembly is disposed on the side of the first ratchet.
In another preferred embodiment of the invention, the outer casing is rotatably connected to the handle about the axis of the adjustable torque screwdriver.
In another preferred embodiment of the invention, the handle has a cavity, to be used for storing screwdriver blades mountable on the screwdriver.
In another preferred embodiment of the invention, the handle has a rear cover.
In another preferred embodiment of the invention, grading marks are arranged on the outer casing, and an indication arrow is arranged on the handle.
The adjustable torque screwdriver according to the invention can set maximum output torque thereof in a set direction in order to produce a more accurate output torque; when the torque exceeds the set grade, the output shaft automatically slips so as to avoid damage to the fastening/fastened pieces and the bit of the screwdriver, not relying on the operating skill of the user, thus there is no specific requirement for the user.
Further, the invention adopts a spring group composed of multi-stage springs to adjust the maximum output torque of the screwdriver, achieving a wider range of output torque, a more precise setting in particular in the low range of torque, and a longer service life than that of a single spring.
In addition, as the ratchet pair and the elastic assembly are disposed in the outer casing of the head part of the screwdriver, the center of gravity of the screwdriver is closer to the output shaft of the screwdriver, and therefore the screwdriver works more stably, and the vibrations of the bit of the screwdriver is weaker when slipping occurs.
Referencing now to the figures, the conception, detailed structure and induced technical effect of the present invention will be expounded for due understanding of the purpose, characterizations and effects of the present invention:
a) and
As shown in
The aforementioned is only a specific description of a torque transmission method, the object of which is to realize torque input in the adjustable torque screwdriver 100 of the invention. It should be understood by the technicians in the field that, other torque transmission means in the prior art are also adaptable to, but are not intended to be restricted by, the present invention.
Now further description of the torque control assembly of the embodiment of the invention will be expounded, as shown in
The axial force between the ratchets 28 and 29 is usually provided by the elastic assembly, engaging one of the ratchets 28, 29, on the opposite side to the side of the teeth. The larger the pressure imposed on ratchet pair 14 is, the greater the fitting tightness between the ratchet pair. The elastic assembly may be a single spring or a spring group configured in accordance to their different free height and elastic modulus, as shown in
The torque control assembly also includes an adjusting assembly which is mainly used for adjustment of the compression of springs 11, 12, as shown in
Further, as shown in the figure, handle 2 is arranged with a grading spring 6 and bead 7, and accordingly flange 8 is arranged with a plurality of round holes 36. When the outer casing 13 rotates, the flange 8 rotates along with it, so that the bead in turn falls into the round holes on the flange 36 by the elastic biasing force of the grading spring. In addition, as shown in the figure, outer casing 13 is arranged with grading marks corresponding to the locations of round holes 36 with indication arrow arranged on handle 2, so that users can revolve outer casing 13 to set the output torque of the screwdriver 100 to a required grade.
Torque output assembly includes a torque output shaft 18, having a hexagonal contour at one end of it, and can be inserted into and fit the second hexagon hole 35 of the second ratchet 29. Further, as shown in the figure, a blind hole is disposed on the surface of the shaft end. Accordingly, a convex boss extends from the end of hexagonal drive rod 5 inserted in the first hexagon hole 34 of the first ratchet 28. During assembly, the convex boss is connected into the blind hole. The other end of the torque output shaft, through sleeve 17, flat gasket 16, and shaft retaining ring 15, extends from the opening 37 of outer casing 13, and mounting holes are arranged in the other end surface to mount all kinds of screwdriver bits.
The foregoing disclosure is only a specific description of a torque transmission method, the object of which is to realize torque input in the adjustable torque screwdriver 100 of the invention. It should be understood by the technicians in the field that, other torque transmission means of the prior art are adaptable to, but are not intended to be restricted by, the present invention.
The foregoing description details the preferred embodiments of the invention. It should be understood that with the general technique of this field, no inventive work is necessary as to make multiple amendments and changes according to the conception of this invention. Therefore, all the technical schemes gained from logical analysis, deductions or limited experimentation based on the conception of the present invention by technicians in this field, should be considered within the protection range asserted in the Claims.
Number | Date | Country | Kind |
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201210082515.1 | Mar 2012 | CN | national |
This utility patent application is a U.S. National Phase of PCT/2012/080945, filed Sep. 4, 2012, which claims priority from CN 201210082515.1, filed Mar. 26, 2012, the entire contents of which are incorporated herein by reference.
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/CN12/80945 | 9/4/2012 | WO | 00 | 6/5/2013 |