Dental implant structure
11191621 ยท 2021-12-07
Assignee
Inventors
Cpc classification
A61C8/0048
HUMAN NECESSITIES
International classification
Abstract
The present invention relates to an implant and, more specifically, has a fixture having a circular ball shape and a socket structure of an abutment body coupled to the fixture, and thus enables improvement of the matching between the fixture and an abutment which are an implant structure during an implant procedure.
Claims
1. A dental implant structure comprising: an abutment formed with a screw at its end; a head formed in a ball shape at the upper end of the abutment; a housing which accommodates the head, wherein the housing is connected to the abutment, comprises at its side at least three ball accommodation holes accommodating head fixing balls, and at the same time comprises a ball accommodating recess at which a rotation prevention ball is seated; a ring spring which covers the ball accommodation holes and the head fixing balls, wherein the ring spring is mounted at the peripheral surface of the housing, and comprises separation sections which are partially cut, wherein a ring spring space section is formed in a form of a circle between the separation sections, so that the rotation prevention ball is seated therein; and a cap connected to the housing while covering the ring spring.
2. The dental implant structure of claim 1, wherein the abutment comprises a circular column shape having a width which is gradually increased going from the screw end of the abutment to the upper end, and wherein a concave of a curved surface has a width narrower than the diameter of the head is formed at a portion adjoining the head formed in a ball shape at a distal end of the abutment so that after the head is inserted in the housing, the concave and the head fixing balls contact each other.
3. The dental implant structure of claim 2, wherein the three ball accommodation holes are formed spaced at an angle of 120 degrees along the side of the housing, wherein each ball corresponds to each of the ball accommodation holes and is positioned at the ball accommodation holes, wherein the diameter of the ball is formed to be larger than the ball accommodation holes, wherein the balls are displaced outward when the head is drawn into the head accommodation section, wherein the ring spring is placed around a portion of the housing where the ball accommodation holes are formed, so as to block the ball accommodation holes, wherein the ring spring is formed in a ring shape.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
(9) The best form for embodying the present invention is as follows:
(10) That is, a dental implant structure comprises:
(11) an abutment 200 formed with a screw 216 at its end;
(12) a bead 210 formed in ball shape at the upper end of the abutment;
(13) a housing 400 which accommodates the head, is combined to the abutment, is formed at its side with at least three ball accommodation holes 450 to accommodate head fixing balls 601, 602, 603, and at the same time is formed with a ball accommodating recess 480 at which a rotation prevention ball 604 can be seated;
(14) a ring spring 500 which covers the ball accommodation holes 450, is mounted at the peripheral surface of the housing, and is formed with separation sections 514, 515 which are partially cut, wherein a ring spring space section 510 is formed in a form of a circle between the separation sections 514, 515 so that the rotation prevention ball 604 is seated; and
(15) a cap 300 combined to the housing 400 while covering the ring spring.
(16) Hereinafter, the implant structure according to a preferred embodiment of the present invention will be described.
(17) However, it should be appreciated that the scope of the right of the present invention is not limited to the embodiments described below but should be comprehended within a scope equivalent to the claims.
(18)
(19) In
(20) It is a common sense in this technical field that a screw 216 portion of an abutment 200 of
(21) Therefore, in the drawings of the present invention, the structure and the function of the abutment combined to the upper part of the normal fixture and the members combined to the abutment will be described.
(22) The present invention largely comprises an abutment 200, a housing 400 combined to an upper head 210 of the abutment, a ring spring 500 mounted at the peripheral surface of the housing, and a cap 300 combined to one side of the housing 400 while covering the ring spring.
(23) The abutment 200 is formed with an abutment body 214 which is formed with a screw 216 at its lower part and is formed in a circular column shape having the width which is gradually increased going from the screw position to the other side, and a head 210 formed in ball shape at the distal end of the abutment.
(24) The portion just below the head 210 is formed with a concave 212 of a curved surface having the width narrower than the head 210.
(25) The head 210 is accommodated in the housing 400. In the housing 400 is formed a head accommodation section 440 (
(26) At the side of the housing 400 are formed at least three ball accommodation holes 450 which are formed to communicate with the outside.
(27) In
(28) Each head fixing ball 601, 602, 603 corresponding to each of the ball accommodation holes 450 is positioned at the ball accommodation holes, and the diameter of the ball is formed to be larger than the ball accommodation holes 450, and at the ball accommodation hole 450 position is possible a partial displacement of the halls moving into and out of the head accommodation section 440. It is preferable that the number of the head fixing balls 601, 602, 603 is three or more.
(29) These head fixing balls 601, 602, 603 are pushed by the head 210 so as to be displaced when the head 210 is drawn into the bead accommodation section 440 (
(30) Referring to
(31) A ring spring 500 is inserted at a portion of the housing 400 where the ball accommodation holes 450 are formed, so as to block the ball accommodation holes 450.
(32)
(33) The ring spring 500 is formed in a ring shape, however, a part thereof is cut out.
(34) The ring spring is cut in a form of a circle at the inner side of separation section 514, 515 where one side of the ring spring is cut, and at the middle thereof is formed a void space referred to as a ring spring space section 510.
(35) And, at the periphery of the ring spring space section 510, a ball contact surface 512 of curved surface where the rotation prevention ball 604 can be seated is formed.
(36) Referring to
(37)
(38) In the meantime, the cap 300 covers the ring spring 500 in the state of
(39) In
(40) Referring to the combinational section drawing of
(41) Referring to
(42)
(43) If the head 210 is accommodated in the head accommodation section 440, then the head fixing balls 601, 602, 603 are displaced in the direction of T1, T2, T3, and at this time, the ring spring receives the force from the three balls 601, 602, 603 so that the separation sections 514, 515 which are the cut portions of the ring spring are wide opened.
(44) At the same time, the head 210 is pushed into the housing 400 so as to be combined, the wide opened ring spring is again restored, the three balls 601, 602, 603 are again restored to their original positions in the direction opposite to the T1, T2, T3, and the concave section 212 (
(45) In the meantime, the rotation prevention ball 004 is seated at the ball contact surface 512 (
(46) This rotation prevention ball 604 plays the role of preventing the ring spring 500 from being rotated while the ring spring 500 is in the state of
(47) That is, since the ring spring 500 exists in the intermediate space formed by combination of the cap 300 and the housing 400, a device for preventing the ring spring from rotating in the direction of R1 or R2 (
(48) The present invention is characterized in that the ball and socket structure is applied to the combination of the abutment and the housing which accommodates the abutment.
(49) Here, the head accommodation section 440 takes charge of the role of the socket, and the positions of the bead 210 and the ring spring 500 are stably hold by the number of balls 601, 602, 603, 604.
(50) In the conventional implant structure, the upper part of the abutment is not in the form of sphere.
(51) During an implant procedure, in case where a mistake happens that the fixture is inclined and buried in the mandible, it is very dangerous and a large problem has been suggested that the implant eventually cannot perform its function and an operation should be carried out again, however, in the present invention, even in case where the fixture is inclined more or less and buried in the mandible, due to the structural characteristic of the ball and socket, there is an advantage that the implant structure can be installed in a direction which is not a direction parallel to the fixture buried inclined, that is, in a direction parallel to the movement of the jaw through the ball and socket structure of the upper side of the abutment regardless of the inclined fixture, so that the problems of the conventional implant structure as described above can be solved.
(52) It will be appreciated that although the present invent ion has been described by referring only to the embodiments described above, the present invention can be practiced in various ways within the scope not departing from the technical thoughts of the present invention, and their contents belong to the right of the present invention.
(53) The present invention relates to a structure for improving the matching of the implant by using the ball and socket structure and can be used usefully in the dental implant field.