SCREWDRIVER BIT ASSEMBLY WITH A MAGNETIC STRUCTURE
20170297183 · 2017-10-19
Inventors
Cpc classification
International classification
Abstract
A screwdriver bit assembly includes a magnetic ring mounted in a front end of a sleeve hole of a sleeve. A retaining ring is made of a material more rigid than the sleeve, is mounted in the sleeve hole, and is located behind the magnetic ring. A screwdriver bit includes an insertion end, an extending section behind the insertion end, a flange section behind the extending section, and a clamping section behind the flange section. The front end of the screwdriver bit extends through the sleeve hole of the sleeve, the retaining ring, and the magnetic ring. The insertion end extends beyond the sleeve and is located in front of a front end face of the sleeve. The flange section abuts the retaining ring. The clamping section is held by a holding device mounted on the sleeve, providing a holding force towards a longitudinal axis of the sleeve hole.
Claims
1. A screwdriver bit assembly comprising: a sleeve including a front end face, a rear end face, and an outer peripheral face between the front end face and the rear end face, with the sleeve further including a sleeve hole extending from the front end face through the rear end face; a magnetic ring mounted in a front end of the sleeve hole of the sleeve, with the magnetic ring including a through-hole in a central portion thereof; a retaining ring made of a material more rigid than the sleeve, with the retaining ring mounted in the sleeve hole and located behind the magnetic ring, and with the retaining ring including a through-hole in a central portion thereof; a holding device mounted on the sleeve, providing a holding force towards a longitudinal axis of the sleeve hole; and a screwdriver bit having a rigidity larger than the sleeve, with the screwdriver bit including an insertion end on a front end thereof, a coupling end on a rear end thereof, and an extending section behind the insertion end, with the coupling end adapted to couple with an external tool, with the screwdriver bit further including a flange section located behind the extending section and having a diameter larger than a diameter of the extending section, with the screwdriver bit further including a clamping section behind the flange section, with the front end of the screwdriver bit extending through the sleeve hole of the sleeve, the through-hole of the retaining ring, and the through-hole of the magnetic ring, with the insertion end extending beyond the sleeve and located in front of the front end face of the sleeve, with the flange section having a front side abutting the retaining ring, and with the clamping section held by the holding device.
2. The screwdriver bit assembly as claimed in claim 1, with the sleeve hole of the sleeve including an inner flange section extending from an inner periphery of the front end of the sleeve hole towards the longitudinal axis, with the inner flange section defining a first hole section, with the inner flange section having a first stop wall and a second stop wall respectively located on front and rear sides of the inner flange section, with a second hole section defined between the front stop wall and the front end face of the sleeve and having a diameter larger than a diameter of the first hole section, with the magnetic ring mounted in the second hole section, with the sleeve hole further including a third hole section located behind the second stop wall and having a diameter larger than the diameter of the first hole section, and with the retaining ring mounted in the third hole section.
3. The screwdriver bit assembly as claimed in claim 2, with the magnetic ring having a front end and a rear end, with the front end of the magnetic ring flush with the front end face of the sleeve, with the rear end of the magnetic ring abutting the first stop wall, with the retaining ring having an outer diameter substantially equal to the diameter of the third hole section, and with the retaining ring abutting the second stop wall.
4. The screwdriver bit assembly as claimed in claim 1, wherein the sleeve is made of a material with low magnetic conductivity.
5. The screwdriver bit assembly as claimed in claim 4, wherein the sleeve is made of aluminum or a rigid plastic.
6. The screwdriver bit assembly as claimed in claim 1, wherein the screwdriver bit is made of metal, and the retaining ring is made of low-carbon steel or high-carbon steel.
7. The screwdriver bit assembly as claimed in claim 1, with the sleeve further including at least one through-hole extending radially from the outer peripheral face through an inner periphery of the sleeve hole, with the at least one through-hole of the sleeve having a reduced section adjacent to the sleeve hole, with the reduced section having a diameter smaller than a remaining portion of the at least one through-hole of the sleeve, with the holding device including at least one ball and a resilient ring, with the at least one ball having a diameter smaller than the remaining portion of the at least one through-hole of the sleeve but larger than the diameter of the reduced section of the at least one through-hole, with the at least ball received in the at least one through-hole of the sleeve and partially located in the sleeve hole of the sleeve, with the resilient ring mounted around the outer peripheral face of the sleeve, and with the resilient ring biasing the at least one ball to press against the clamping section of the screwdriver bit.
8. The screwdriver bit assembly as claimed in claim 7, with the at least one through-hole of the sleeve including three through-holes annularly spaced from each other by 120°, and with the at least one ball including three balls respectively received in the three through-holes.
9. The screwdriver bit assembly as claimed in claim 8, with the sleeve further including an annular groove defined in the outer peripheral face, with the three through-holes defined in a bottom wall of the annular groove, and with the resilient ring received in the annular groove.
Description
DESCRIPTION OF THE DRAWINGS
[0017]
[0018]
[0019]
[0020]
[0021]
[0022]
[0023]
[0024]
DETAILED DESCRIPTION OF THE INVENTION
[0025] With reference to
[0026] The magnetic ring 2 is mounted in the front end of the sleeve hole 14 of the sleeve 1. Specifically, the magnetic ring 2 is mounted in the second hole section 145. An outer diameter of the magnetic ring 2 is substantially equal to the diameter of the second hole section 145. The magnetic ring 2 can be securely coupled to the sleeve 1 by tight fitting or bonding. The magnetic ring 2 includes a through-hole 21 in a central portion thereof. After the magnetic ring 2 is mounted in the front end of the sleeve 1, a front end of the magnetic ring 2 is substantially flush with the front end face 11 of the sleeve 1, and a rear end of the magnetic ring 2 abuts the first stop wall 143, providing improved assembly stability.
[0027] The retaining ring 3 is made of a material more rigid than the sleeve 1. The retaining ring 3 can be made of low-carbon steel or high-carbon steel. The retaining ring 3 is mounted in the third hole section 146 and is located behind the magnetic ring 2. The retaining ring 3 includes a through-hole 31 in a central portion thereof. The retaining ring 3 has an outer diameter substantially equal to the diameter of the third hole section 146. The retaining ring 3 can be mounted in the third hole section 146 by tight fitting or bonding, and a front end of the retaining ring 3 abuts the second stop wall 144, providing improved assembly stability. A diameter of the through-hole 31 of the retaining ring 3 is substantially equal to the diameter of the first-hole section 142.
[0028] The holding device 4 is mounted on the sleeve 1 for providing the sleeve 1 and the screwdriver bit 5 with a holding force towards the longitudinal axis of the sleeve hole 14. The holding device 4 includes at least one ball 41 and a resilient ring 42. In this embodiment, the holding device includes three balls 41 respectively received in the three through-holes 15. Each ball 41 has a diameter smaller than the remaining portion of each through-hole 15 of the sleeve 1 but larger than the diameter of the reduced section 151 of each through-hole 15. Thus, each ball 41 is received in one of the through-holes 15 and is partially located in the sleeve hole 14 of the sleeve 1. The resilient ring 42 is mounted around the outer peripheral face 13 of the sleeve 1 and is received in the annular groove 131 in the outer peripheral face 13, biasing the balls 41 towards the longitudinal axis of the sleeve hole 14.
[0029] The screwdriver bit 5 has a rigidity larger than the sleeve 1 and can be made of metal. The screwdriver bit 5 includes an insertion end 51 on a front end thereof, a coupling end 52 on a rear end thereof, and an extending section 53 located behind the insertion end 51 and having a diameter slightly smaller than the diameter of the first hole section 142. With reference to
[0030] The front end of the screwdriver bit 5 extends through the sleeve hole 14 of the sleeve 1, the through-hole 31 of the retaining ring 3, and the through-hole 21 of the magnetic ring 2. With reference to
[0031] With reference to
[0032] Since the retaining ring 3 is made of a rigid material, wear is less likely to occur due to friction between the retaining ring 3 and the flange section 54 of the screwdriver bit 5, providing a longer service life. During rotation of the screwdriver bit 5, the clamping section 55 of the screwdriver bit 5 is securely held in a suitable clamped state by the balls 41, providing improved operational stability.
[0033] Although specific embodiments have been illustrated and described, numerous modifications and variations are still possible without departing from the scope of the invention. The scope of the invention is limited by the accompanying claims.