ROTATION TOOL
20210187704 ยท 2021-06-24
Inventors
Cpc classification
B25B23/0028
PERFORMING OPERATIONS; TRANSPORTING
B25B13/481
PERFORMING OPERATIONS; TRANSPORTING
B25G1/025
PERFORMING OPERATIONS; TRANSPORTING
B25B23/0021
PERFORMING OPERATIONS; TRANSPORTING
A61C1/18
HUMAN NECESSITIES
B25B15/02
PERFORMING OPERATIONS; TRANSPORTING
International classification
B25B15/02
PERFORMING OPERATIONS; TRANSPORTING
B25B23/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The invention aims to provide a rotation tool enabling work without obstructing a view of an operator and facilitating fine-adjustment for the tool. A rotation tool includes a flexible shaft including a tool portion at one end and a grip portion at the other end; and a cylindrical exterior body including curved portion on at least a part thereof, wherein a spiral protrusion is formed on at least a part of the shaft and a spiral groove is formed on at least a part of the curved portion, and the shaft is configured to be movable inside the exterior body by screwing the spiral protrusion and the spiral groove to each other.
Claims
1. A rotation tool comprising: a flexible shaft including a tool portion at one end and a grip portion at the other end; and a cylindrical exterior body including a curved portion on at least a part thereof, wherein a spiral protrusion is formed on at least a part of the shaft and a spiral groove is formed on at least a part of the curved portion, and the shaft is configured to be movable inside the exterior body by screwing the spiral protrusion and the spiral groove to each other.
2. The rotation tool according to claim 1, wherein a pitch in the spiral groove increases as being far away from a center point of a curvature of the curved portion.
3. The rotation tool according to claim 1, wherein when the spiral protrusion and the spiral groove are screwed to each other, respective threads facing each other are formed at any same inclination angle.
4. The rotation tool according to claim 1, wherein a pitch in the spiral groove increases as being far away from a center point of a curvature of the curved portion, and when the spiral protrusion and the spiral groove are screwed to each other, respective threads facing each other are formed at any same inclination angle.
5. The rotation tool according to claim 1, wherein the tool portion is formed to be detachable from the shaft
6. The rotation tool according to claim 1, wherein the tool portion is formed integrally with the shaft.
7. The rotation tool according to claim 1, wherein a stopper member configured to prevent a movement of the shaft is provided on at least one of the shaft and the exterior body.
8. The rotation tool according to claim 1, wherein the tool portion is formed to be detachable from the shaft, and a stopper member configured to prevent a movement of the shaft is provided on at least one of the shaft and the exterior body.
9. The rotation tool according to claim 1, wherein the tool portion is formed to be detachable from the shaft, and a stopper member configured to prevent a movement of the shaft is provided on at least one of the shaft and the exterior body.
10. The rotation tool according to claim 1, wherein a detachable holding member is provided at any position on an outer circumference of the exterior body.
11. The rotation tool according to claim 1, wherein the spiral groove is formed from both ends of the exterior body to any length, and the spiral groove is not provided in an intermediate portion of the exterior body.
12. The rotation tool according to claim 1, wherein a pitch in the spiral groove increases as being far away from a center point of a curvature of the curved portion, and the spiral groove is formed from both ends of the exterior body to any length, and the spiral groove is not provided in an intermediate portion of the exterior body.
13. The rotation tool according to claim 1, wherein when the spiral protrusion and the spiral groove are screwed to each other, respective threads facing each other are formed at any same inclination angle, and the spiral groove is formed from both ends of the exterior body to any length, and the spiral groove is not provided in an intermediate portion of the exterior body.
14. The rotation tool according to claim 1, wherein a pitch in the spiral groove increases as being far away from a center point of a curvature of the curved portion, when the spiral protrusion and the spiral groove are screwed to each other, respective threads facing each other are formed at any same inclination angle, and the spiral groove is formed from both ends of the exterior body to any length, and the spiral groove is not provided in an intermediate portion of the exterior body.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0019]
[0020]
[0021]
[0022]
[0023]
[0024]
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[0026]
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[0029]
[0030]
[0031]
[0032]
[0033]
[0034]
[0035]
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0036] Hereinafter, embodiments of a rotation tool according to the invention will be described with reference to
First Embodiment
[0037] A first embodiment of the invention will be described in detail below with reference to
Overall Configuration of Rotation Tool
[0038] The overall configuration of a rotation tool according to the present embodiment will be described below.
[0039]
[0040] As shown in
[0041] In the present embodiment, in the rotation tool 1 shown in
[0042] In the rotation tool 1 according to the present embodiment, as shown in
Exterior Body
[0043] The exterior body 2 has a cylindrical shape including a curved portion on at least a part thereof, and as shown in
[0044] It is desirable that a length of the exterior body 2 is 20 times or more of an outer diameter of the exterior body 2, and the outer diameter is 10 mm or less. In addition, it is desirable that a curvature radius of the curved portion of the exterior body 2 is 40 times or more of the outer diameter of the exterior body 2.
[0045] The exterior body 2 is made of a metal or a resin, and it is desirable that a material having flexibility whose curvature can be changed within a range in which plastic deformation does not occur can be used for the exterior body 2. For example, it is desirable to use stainless steel, titanium, or brass as the metal, and POM, PPS, PC, or ABS resins, as the resin.
[0046] Accordingly, even when the curvature changes slightly due to a holding force of an operator during use of the rotation tool 1, the shaft 3 can be rotated without breaking.
[0047] However, the material, shape, and dimension of the exterior body 2 are not limited to the illustrated example, and may be appropriately changed in consideration of design, application, workability, and the like.
Shaft
[0048] As shown in
[0049] In addition, the tool portion 32 is provided at one end of the shaft 3, and the grip portion 33 for holding the shaft is provided at the other end of the shaft 3.
[0050] The shaft 3 is made of, for example, a resin material, a metal material, or a combination of these materials as appropriate. However, the shape of the shaft 3 is not limited to the shape shown in the illustrated example, and may be changed as appropriate in consideration of design and size.
[0051] The shaft 3 is made of a metal or a resin, and it is desirable that a material having flexibility whose curvature can be changed within a range in which plastic deformation does not occur can be used for the shaft 3.
[0052] Accordingly, the shaft 3 traveling while rotating can pass through the curved portion without breaking.
Configuration of Spiral Grooves
[0053] As shown in
[0054] In the rotation tool 1 according to the present embodiment, it is desirable that the pitch length L1 of the spiral groove 21a is smaller than the pitch length L2 of the spiral groove 21b.
Configuration of Spiral Protrusions
[0055] As shown in
[0056] In the rotation tool 1 according to the present embodiment, it is desirable that the spiral protrusion 31a and the spiral protrusion 31b are arranged so that the pitch lengths M1 and M2 are the same, and that M1 is equal to M2 in the state of the shaft 3 alone which is not screwed with the exterior body 2,
Operation When Shaft Moves in Exterior Body
[0057] When the shaft 3 moves in the exterior body 2 including the curved portion, the shaft 3 is also curved according to the curvature of the curved portion. Since an arc length on a curvature center side is different from an arc length on a curvature outer circumference side, the pitch length of the spiral protrusions 31 is shorter at the spiral protrusion 31a in the center curvature direction and is longer at the spiral protrusion 31b in the curvature outer circumference direction. That is, the pitch length M1 is smaller than the pitch length M2.
[0058] In the present embodiment, spiral grooves 21 satisfying L1<L2 are formed on the exterior body 2 so as to correspond to the change in the pitch lengths of the spiral protrusion 31a and the spiral protrusion 31b.
[0059] Accordingly, since the pitches when the spiral grooves and the spiral protrusions are screwed to each other can he made the same over the entire circumference, when the shaft 3 is rotated, all sliding portions of the spiral grooves and the spiral protrusions are in contact with each other or have a very small gap therebetween.
[0060] Therefore, when stress is concentrated on the sliding portions that are in contact with each other, the spiral grooves 21 or the spiral protrusions 31 are slightly deformed, and when other spiral grooves 21 and other spiral protrusions 31 come into contact with each other, the stress can be dispersed and the resistance of the sliding portions can be reduced, so that the shaft 3 can move smoothly in the exterior body 2 while rotating.
Desirable Screwed State
[0061] As shown in
[0062] Accordingly, when the shaft 3 is rotated while sliding along the spiral grooves 21 in the exterior body 2, frictional resistance between the spiral grooves 21 and the spiral protrusions 31 can be reduced and the shaft 3 can be smoothly rotated.
Tool Portion
[0063] Tip members that can be used in the tool portion 32 in the present embodiment will he described below with reference to
Tools Used in Tool Portion
[0064] It is desirable that the tip member used in the tool portion 32 is a tool that acts by spiral motion.
[0065] As shown in each diagram in
[0066] The spiral tools that can be used in the tool portion 32 are not limited to the dental root canal treatment tool, and also include spiral tools used for other applications such as a drill and an end mill.
[0067] In addition, as shown in
[0068] In addition, as shown in
[0069] Each tip member described in the present embodiment is formed integrally with or separately from the shaft, and the shape thereof can be appropriately changed according to applications, dimensions, etc. without changing the gist of the invention.
Second Embodiment
[0070] Next, a second embodiment of the invention will be described in detail with reference to
Overall Configuration of Rotation Tool
[0071] The overall configuration of a rotation tool 10 according to the present embodiment will be described below.
[0072]
[0073] As shown in
Exterior Body
[0074] The exterior body 20 has a cylindrical shape including a curved portion on at least a part thereof, and as shown in
Shaft
[0075] As shown in
[0076] In addition, as shown in
Tool Portion
[0077] As shown in
[0078] As shown in
[0079] However, the fixing method for the tool portion 32 described in the present embodiment is an example, and all general methods used for fixing such as press fitting and welding may be included.
[0080] As shown in
[0081] As shown in
[0082] In addition, the attaching/detaching method for the tool portion may be a method of providing a modified hole with a structure that allows an urging spring or ball to move on a tip surface of the shaft, forming a groove or hole for accommodating the urging spring or ball on an outer circumference at any position at one end not for the work of the tool portion 32, which is formed separately from the shaft 30, and holding the tool portion by pushing the tool portion into the modified hole.
[0083] In addition, the attaching/detaching method for the tool portion may be a method of machining an end face of the shaft 30 on the tool side into a three-piece chuck shape, forming a male screw on an outer circumference of the chuck, inserting the tool portion into the chuck, and then tightening a nut-shaped member to the male screw on the outer circumference of the chuck, so as to fix the tool portion.
[0084] However, the attaching/detaching methods for the tool portion described in the present embodiment are examples, and any general method used for attachment/detachment is included.
[0085] As shown in
[0086] In addition, other than the present embodiment, the tool portion 32 described in the present embodiment can be appropriately modified and implemented without changing the gist of the invention.
Third Embodiment
[0087] Next, a third embodiment according to the invention will be described in detail with reference to
Overall Configuration of Rotation Tool
[0088] The overall configuration of a rotation tool 100 according to the present embodiment will be described below.
[0089]
[0090] As shown in
Exterior Body and Shaft
[0091] The exterior body 2 and the shaft 3 in the present embodiment can be obtained by appropriately modifying the exterior body 2 or the exterior body 20 and the shaft 3 or the shaft 30 described in the first embodiment or the second embodiment without changing the gist of the invention, and therefore, the descriptions thereof in the present embodiment will be omitted.
Holding Member
[0092] As shown in
Holding Member Fixing Portion
[0093] As shown in
[0094] The holding member fixing portion 41 can be connected to and fixed to the exterior body 2 by sandwiching the exterior body 2 in the recesses and fitting the holding member fixing screw 44 in the through hole.
[0095] It is desirable that the recess of the holding member fixing portion 41 has a shape corresponding to the curvature of the curved portion of the exterior body 2. Accordingly, an attachment position of the holding member can be changed optionally, and can be adjusted according to applications and preference of users.
Arm Portion
[0096] As shown in
[0097] It is desirable that an intermediate portion of the arm portion 42 is a cylinder. Accordingly, it is possible to secure a certain level of strength and improve the ease of holding.
[0098] However, the shape and dimensions of the arm portion 42 can be appropriately changed in consideration of the curvature and dimensions of the exterior body 2, the ease of holding, and the like.
Shaft Portion
[0099] When the arm portion 42 includes two or more arms, the shaft portion 43 can be provided at one end different from a holding member fixing portion 41 side.
[0100] It is desirable that the shaft portion 43 connects the arm portions to each other and each arm is configured to be rotatable around the shaft portion 43. Accordingly, an angle between two or more arms can be changed as appropriate, and can be adjusted according to applications and preference of users.
[0101] The configuration and shape of the holding member, the fixing method, etc. described in the present embodiment are examples, and can be appropriately modified without changing the gist of the invention.
[0102] In addition, it is possible to appropriately replace components in the above-described embodiments with well-known components without departing from the gist of the invention, and each embodiment and each modification mentioned above may be appropriately combined.