MEDICAL POWER TOOL
20210361268 ยท 2021-11-25
Inventors
Cpc classification
A61B2017/0046
HUMAN NECESSITIES
A61B17/16
HUMAN NECESSITIES
A61B17/162
HUMAN NECESSITIES
A61B2017/00398
HUMAN NECESSITIES
A61B2090/0813
HUMAN NECESSITIES
International classification
Abstract
A medical power tool includes a motor, a first drive transmission part drive-transmitted from the motor, a second drive transmission part drive-transmitted from the first drive transmission part in a non-contact manner, a tool holding part holding a tool drive-transmitted from the second drive transmission part, a tool body having heat resistance, which is assembled so as to cover the first drive transmission part and the second drive transmission part, and the tool detachably mounted to the tool holding part and provided to protrude at a tip side in a longitudinal direction of the tool body.
Claims
1. A medical power tool used after sterilization treatment in medical practice, comprising: a motor; a first drive transmission part drive-transmitted from the motor; a second drive transmission part drive-transmitted from the first drive transmission part in a non-contact manner; a tool holding part holding a tool drive-transmitted from the second drive transmission part; a tool body having heat resistance, which is assembled so as to cover the first drive transmission part and the second drive transmission part; and the tool detachably mounted to the tool holding part and provided to protrude at a tip side in a longitudinal direction of the tool body.
2. The medical power tool according to claim 1, wherein the first drive transmission part and the second drive transmission part are connected by magnet couplings in which annular magnets are concentrically arranged around a motor axis on inner and outer sides in a radial direction.
3. The medical power tool according to claim 1, wherein the first drive transmission part includes a cylindrical first yoke member integrally assembled to a motor shaft and the drive-side magnets provided in an annular shape on an inner peripheral surface of the first yoke member, the second drive transmission part includes a second yoke member integrally connected to the tool holding part and the driven-side magnets provided in an annular shape on an outer peripheral surface of the second yoke member, and the drive-side magnets and the driven-side magnets are arranged to face each other in the radial direction and magnetically coupled.
4. The medical power tool according to claim 1, wherein a drive unit including the motor, a power supply unit supplying the power to the motor, and a control substrate and a bearing holder supporting the tool holding part so as to rotate are assembled on both sides in a longitudinal direction of the tool body in a sealed state through sealing materials.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0018]
[0019]
[0020]
[0021]
DESCRIPTION OF EMBODIMENTS
[0022] Hereinafter, a medial power tool according to an embodiment of the present invention will be explained with reference to the attached drawings. First, a schematic configuration of an electric screwdriver as an example of a medical power tool used after sterilization treatment by autoclave in medical practice will be explained with reference to
[0023] In
[0024] On an outer peripheral surface of a body part of the tool body 2, operation parts 2a, 2b are provided. The operation part 2a is, for example, a switch for normal rotation and the operation part 2b is, for example, a switch for reverse rotation. These parts may be interchanged with each other. The operation parts 2a, 2b also serve as a substrate cover, and a later-described operation substrate and the like are provided inside the operation parts 2a, 2b.
[0025] As shown in
[0026] A fitting hole 5a to which the driver bit (tool) 6 is fitted is provided on a tip side of the bit holding part 5 as shown in
[0027] When the driver bit 6 is newly mounted, a rear end part of the driver bit 6 is inserted into the fitting hole 5a of the bit holding part 5 in a state of
[0028] As shown in
[0029] A first drive transmission part 12 is assembled to a motor shaft 11a of the motor 11. Specifically, a first yoke member 12a having a bottomed cylindrical shape is integrally assembled to the motor shaft 11a. First magnets 12b (drive-side magnets) provided in an annular shape are integrally assembled to an inner peripheral surface of the first yoke member 12a (magnetic material). A rear end side of the bit holding part 5 is extended from the bearing holder 3 to the tool body 2 side, which is assembled so as to be fitted to a second drive transmission part 13 by a screw. Specifically, a screw hole 13c is provided at a tip part of a second yoke member 13a, and a screw part 5b provided at a rear end part of the bit holding part 5 is screwed to the screw hole 13c to be assembled.
[0030] The second drive transmission part 13 is arranged to face the first drive transmission part 12, and drive transmission is performed in a non-contact manner. The second drive transmission part 13 includes the bar-shaped second yoke member 13a (magnetic material) which is screw-fitted with the screw part 5b of the bit holding part 5 and annular-shaped second magnets 13b (driven-side magnets) assembled to an outer periphery of the second yoke member 13a. The second magnets 13b and the first magnets 12b are concentrically arranged around a motor axis. In the first magnets 12b and the second magnets 13b, N-poles and S-poles are alternately magnetized in a circumferential direction. The second magnets 13b are arranged on an inner side in a radial direction and the first magnets 12b arranged on an outer side in the radial direction, and magnet couplings in which different magnetic poles are arranged to face each other and magnetically coupled are formed. Permanent magnets such as metal magnets (alnico magnet, rare earth magnets (neodymium magnet, samarium-cobalt magnet, and the like) and bonded magnets are used for the first magnets 12b and the second magnets 13b. The first magnets 12b and the second magnets 13b are arranged to face each other through a partition wall 2c provided inside the cylindrical hole of the tool body 2. Accordingly, the tool body 2 can be shaped like a pencil, which improves operability.
[0031] As shown in
[0032] According to the above, as shown in
[0033] Additionally, drive transmission is performed between the first drive transmission part 12 and the second drive transmission part 13 by using magnet couplings; therefore, the first drive transmission unit 12 can be separated from the second drive transmission unit 13 without contact and detached from the tool body 2 with the drive unit 10 only by removing the end cap 14 from the tool body 2, and the second drive transmission part 13 can be taken out with the tool holding part 5 only by removing the bearing holder 3 from the tool body 2. Accordingly, the electric screwdriver 1 can be easily disassembled before the autoclave treatment.
[0034] When cylindrical magnet couplings are adopted, a transmission torque can be arbitrarily adjusted according to lengths of couplings. As benefits of the couplings of the same shape, the tool body 2 can be formed like a slim pencil and the operability can be improved because the transmission torque is adjusted according to lengths.
[0035] The electric screwdriver 1 is cited above as an example of the power tool, and the tool to be mounted to the bit holding part 5 may be changed to be used from the driver bit 6 to other tools such as a drill bit.