Replaceable magnetic screw-locking depth positoining head
09833887 ยท 2017-12-05
Inventors
Cpc classification
B25B23/10
PERFORMING OPERATIONS; TRANSPORTING
B25B23/101
PERFORMING OPERATIONS; TRANSPORTING
B25B23/0035
PERFORMING OPERATIONS; TRANSPORTING
B25B21/00
PERFORMING OPERATIONS; TRANSPORTING
International classification
B25B21/00
PERFORMING OPERATIONS; TRANSPORTING
B25B23/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A replaceable magnetic screw-locking depth positioning head includes a main body formed by a rod, a positioning sleeve, a buckling ring, a cushioning member and a magnetic member. The positioning sleeve has a stepped slot, so that the buckling ring can be installed into the stepped slot more conveniently, and the stepped slot contains a cushioning member and a magnetic member. The cushioning member provides a buffering/shock absorbing effect and a better manufacture precision of the main body, and the magnetic member provides a better positioning effect for locking the screw, and a first slot is formed at a free end of the stepped slot for accommodating debris. The positioning head of the present invention has the advantages of high manufacturing efficiency, production efficiency and manufacturing precision.
Claims
1. A replaceable magnetic screw-locking depth positioning head, comprising: a main body, formed by a rod, a positioning sleeve, a buckling ring, a cushioning member and a magnetic member; wherein the rod has a position limiting surface disposed at an end thereof, and a position increasing member is axially extended from the position limiting surface, and a ring groove is concavely formed at an end of the position increasing member opposite to the position limiting surface, and a tool member is axially extended and protruded from the ring groove, and the ring groove has a radial cross-sectional diameter smaller than a radial cross-sectional diameter of a connecting end of the tool member and the ring groove, and the positioning sleeve having an abutting member from which a sleeve member is concavely extended; wherein the abutting member has a flat abutting surface, and an inner side has a first slot concavely formed thereon, and an inner side of a joint between the sleeve member and the abutting member has a second slot concavely formed thereon, and the second slot has a radial cross-sectional diameter smaller than a radial cross-sectional diameter of the first slot, and the second slot has a ring abutting edge concavely formed at an end opposite to the first slot, and the ring abutting edge has a radial cross-sectional diameter smaller the radial cross-sectional diameter of the second slot, and the first slot, the second slot and the ring abutting edge jointly form a stepped slot; wherein the sleeve member has a sleeve bottom surface disposed at a free end thereof, and a penetrating hole passes through a center of the sleeve bottom surface, and the penetrating hole has a radial cross-sectional diameter smaller than the radial cross-sectional diameter of the ring abutting edge, and the penetrating hole and the stepped slot are communicated with each other; wherein the buckling ring is installed at the ring abutting edge; wherein the cushioning member and the magnetic member are disposed at the second slot, and the cushioning member has an end abutting the buckling ring an opposite end abutting the magnetic member, and a first through hole passes through a center of the cushioning member, and a second through hole passes through a center of the magnetic member; wherein the tool member is configured to pass into the penetrating hole, the first through hole and the second through hole, so that the ring groove is latched to the buckling ring.
2. The replaceable magnetic screw-locking depth positioning head of claim 1, wherein the position increasing member is an equidistant equal-height circular member, and the position increasing member has a radial cross-section diameter smaller than a radial cross-sectional diameter of the position limiting surface and the radial cross-sectional diameter of the penetrating hole.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The accomplishment of this and other objects of the invention will become apparent from the following description and its accompanying drawings of which:
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
(9) With reference to
(10) An end of the rod 12 is disposed on a position limiting surface 121, and a position increasing member 14 is axially extended from the position limiting surface 121, and a ring groove 16 is concavely formed at the other end of the position increasing member 14 opposite to the position limiting surface 121, and a tool member 18 is axially extended and protruded from the ring groove 16, wherein the ring groove 16 has a radial cross-sectional diameter smaller than the radial cross-sectional diameter of the connecting end of the tool member 18 and the ring groove 16.
(11) The positioning sleeve 20 has an abutting member 22 from which a sleeve member 24 is concavely extended.
(12) The surface of the abutting member 22 is a flat abutting surface 221-2, and a first slot 261 is concavely formed on an inner surface of the abutting member 22, and a second slot 262 is formed on an inner surface of a joint of the sleeve member 24 and the abutting member 22. The second slot 262 has a radial cross-sectional diameter smaller than the radial cross-sectional diameter of the first slot 261, and a ring abutting edge 263 is concavely formed at the other end of the second slot 262 opposite to the first slot 261, and the ring abutting edge 263 has a radial cross-sectional diameter smaller than the radial cross-sectional diameter of the second slot 262. The first slot 261, the second slot 262 and the ring abutting edge 263 jointly form a stepped slot 26.
(13) A sleeve bottom surface 241 is disposed at a free end of the sleeve member 24. A penetrating hole 264 is formed and passed through the center of the sleeve bottom surface 241, and the penetrating hole 264 has a radial cross-sectional diameter smaller than the radial cross-sectional diameter of the ring abutting edge 263, and the penetrating hole 264 and the stepped slot 26 are penetrated and communicated with each other.
(14) The buckling ring 30 is installed to the ring abutting edge 263.
(15) The cushioning member 32 and the magnetic member 34 are installed to the second slot 262, and the cushioning member 32 has an end abutting the buckling ring 30 and the other end abutting the magnetic member 34, and a first through hole 321 is passed through the center of the cushioning member 32, and a second through hole 341 is passed through the center of the magnetic member 34.
(16) With the aforementioned structure, the tool member 18 is passed into the penetrating hole 264, the first through hole 321 and the second through hole 341, so that the ring groove 16 is latched to the buckling ring 30.
(17) Wherein, the position increasing member 14 is an equidistant, equal-height circular member, and the position increasing member 14 has a radial cross-sectional diameter smaller than the radial cross-sectional diameter of the position limiting surface 121 and the penetrating hole 264.
(18) With reference to
(19) Since the magnetic member 34 has a strong magnetic field, therefore a stable positioning effect of the screw 40 can be achieved even the screw 40 is not in contact.
(20) When the rod 12 is rotated, the cushioning member 32 can provide the effect of absorbing the vibration caused by the rotation of the tool member 18 to improve the manufacture precision.
(21) Many changes and modifications in the above-described embodiments of the invention can, of course, be carried out without departing from the scope thereof. Accordingly, to promote the progress in science and the useful arts, the invention is disclosed and is intended to be limited only by the scope of the appended claims.