IP Library › Granted Patent US 10,442,059
Granted Patent B2
US 10,442,059 · App. 14/211,031 · Granted Oct 15, 2019

Socket with four point drive

Inventors: Kenneth R. Milligan (Uniontown, OH); Terry G. Taylor (Copley, OH)
B25B13/06B25B13/065B25B23/0035
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Quick Facts
Patent No.
US 10,442,059
App. No.
14/211,031
Granted
Oct 15, 2019
Kind
B2
Abstract

An improved socket having a drive end opening being so dimensioned for receiving a drive anvil, the opening comprising a plurality of bounding surfaces parallel to a central axis and being disposed in diametrically opposed pairs about the axis, where the diametrically opposed pairs of bounding surfaces include: at least two pairs of flat side surfaces being parallel to each other about the central axis; at least two pairs of curved recess surfaces forming respective inner corners of the drive end opening; and adjacent pairs of outwardly diverging transition surfaces transitioning between respectively adjacent pairs of the flat side surfaces and the curved recess surfaces. The improved socket increases corner radius for minimizing stress concentration at the corners and provides outwardly diverging transition surfaces for relocating the areas of maximum stress away from the corners.

Claims (11)

1. A socket for a wrench, the wrench for being turned by a four-sided drive anvil for engaging and turning said socket about a central axis with a force, said four-sided drive anvil having four anvil drive surfaces and defining in cross section a square, said socket comprising a drive end portion having a drive end opening being so dimensioned for receiving the four-sided drive anvil, said drive end opening being defined by four bounding surfaces of equal length and being both parallel to said central axis and disposed in two diametrically opposed pairs about said central axis for preventing failure of the socket during a torque application to said drive end portion and to prevent rounding and wear of the corners of the four-sided drive anvil to extend the life of the socket and/or anvil, said diametrically opposed pairs of bounding surfaces including:

two pairs of flat side surfaces being parallel to each other about said central axis, said two pairs of flat side surfaces forming an intermediate part of said respective bounding surfaces;

two pairs of curved recess surfaces forming respective four inner corners of said drive end opening; and

four adjacent pairs of outwardly diverging transition surfaces transitioning between respectively adjacent pairs of said flat side surfaces and said curved recess surfaces,

wherein each of said respective outwardly diverging transition surfaces comprise:

a contact surface being operatively joined to said respective flat side surfaces at a location defined by a contact transition area, said respective contact surfaces providing mating surfaces with respective drive anvil side portions that engage said contact surfaces for distributing the force over said contact surfaces; and

an angled divergence surface transitioning between each of said respective contact surfaces and said respective curved recess surfaces, each of said respective angled divergence surfaces being operatively joined to each of said respective curved recess surfaces at a location defined by a corner transition area, said respective angled divergence surfaces providing clearance with respective drive anvil corner portions for locating the force away from said respective inner corners;

wherein each of said respective contact surfaces are outwardly diverging arcuate contact surfaces being defined by a contact radius, said contact radius having a radial position perpendicular to said respective contact transition areas;

wherein each of said respective angled divergence surfaces diverge outwardly at a divergence angle being defined by the angle between said angled divergence surface and an imaginary plane that is the continuum of the plane defining said respective flat side surface;

wherein each of said respective curved recess surfaces have a curved corner apex surface, and each of said respective curved recess surfaces comprise two pairs of adjacent arcuate recess surfaces being disposed on opposite sides of said respective curved corner apex surfaces, each of said respective two pairs of arcuate recess surfaces transitioning between said curved corner apex surface and said respective angled divergence surfaces, wherein said respective two pairs of arcuate recess surfaces are defined by a corner radius;

and wherein said contact radius defining each of said respective contact surfaces is at least 10 times greater than said corner radius for providing enhanced mating surfaces for the drive anvil side portions to engage said arcuate contact surfaces; and wherein said divergence angle is in the range between about 2 to 5 degrees.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 14, 2014
From: MILLIGAN, KENNETH R.; TAYLOR, TERRY G.
To: WRIGHT TOOL COMPANY
Reel/Frame 032439/0198 →
Continuity (2)
Provisional Application 61794415 · Mar 15, 2013
Related Publication 20140260825A1 · Sep 18, 2014
Cited By (1)
US 12,691,552