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Home Metal Working Extension-for-socket-tool-drive-system

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 Extension for socket tool drive system

Details
Inventors: Puncochar, Norbert L.;
Assignee:
Primary Examiner: Schmidt; Frederick R.
Assistant Examiner: Rachuba; Maurina
Attorney, Agent or Firm: Shlesinger, Arkwright, Garvey & Fado

A torque transmitting wrench assembly comprises a plurality of serially arranged gears positioned between a first tool gear and a second tool gear in a housing. Each of the serially arranged gears includes gear teeth defining an outer idler gear tooth perimeter and at least one annular peripheral bearing surface with a perimeter substantially the same as the outer idler gear tooth perimeter. The housing is formed of two parts and includes at least one recess having an arcuate periphery, for receiving the bearing surface.

DETAILED DESCRIPTION OF THE INVENTION Referring now in detail to FIG.
1, there is illustrated a torque wrench assembly or torque transfer device T having a first end 2 and a second end 4.
Torque wrench assembly T is formed of a lower housing portion 6 and a cooperating upper housing portion 8.
At first end 2 of the torque converter assembly T there is a multi-faceted central hole 10, which can be square or hexagonal in crosssection, and which is adapted for receiving conventional socket set drivers, extension shafts, wrenches and screwdrivers.
In FIG.
1, a conventional socket set driver 12 is shown.
At second end 4 of torque wrench assembly T there is a multi-faceted hole 14 which can be of square of hexagonal cross-section.
The hole 14 is adapted for receiving a stud member or the like 16, as best shown in FIG.
4 which snaps into the multi-faceted hole 14 so as to be positioned to receive a socket member 18 which snaps on said member 16.
Socket set driver 12, stud member 16 and socket member 18 need not be further described as they are available and are in common use by persons with ordinary skill as a mechanic.
FIGS.
2, 3, 4, 5, and 8 Referring now in detail to FIGS.
2, 3, 4, 5 and 8, a torque wrench assembly is shown having idler disks or idler gears 20.
As best shown in FIG.
8, idler gear 20 includes an annular peripheral bearing surface 22, cut-out portions 24 forming gear teeth 26 and reduced bearing surface 28.
As is best seen in FIG.
2, idler gears 20a, 20b, 20c, 20d, 20e, 20f and 20g are positioned within idler gear recesses 30a, 30b, 30c, 30d, 30e, 30f and 30g, respectively.
Idler gear 20a is positioned within lower housing portion 6a so that the reduced bearing surface 28 of idler gear 20a is within recess 30a.
Idler gear 20b is positioned within housing portion 6a so that annular peripheral bearing surface 22 of idler gear 20b is within recess 30b.
Idler gear 20c, 20e and 20g are positioned within housing portion 6a with an orientation similar to that of idler gear 20a.
Idler gears 20d and 20f are positioned within housing 6a with an orientation similar to that of idler gear 20b



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