Actuator
09841089 · 2017-12-12
Assignee
Inventors
Cpc classification
F16C29/082
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H25/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C29/0602
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H25/2204
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H25/2418
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C29/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2025/2031
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C29/063
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16H25/22
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H25/24
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C29/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H25/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
To provide an actuator with which side face covers can be easily attached and detached without damaging a top face cover, and workability is enhanced, and cost can be reduced without upsizing the actuator, by fastening and fixing the actuator to a base stand from above the actuator in a state in which the side face covers are removed. In an actuator having a long screw shaft with a first roller rolling groove in a spiral shape formed on an outer periphery, an inner block where a screw hole through which the screw shaft penetrates is formed, and which has a second roller rolling groove that is formed on an outer periphery to be parallel with the screw shaft, an outer rail that faces the second roller rolling groove, and a plurality of rollers that are respectively arranged between the screw shaft and the inner block, and between the inner block and the outer rail, side face covers that are laid between a pair of end portion members that are installed at both end portions of the screw shaft, and a top face cover that is disposed to close an opening portion that is formed between the side face covers and is opened parallel with the screw shaft are included, the side face covers each includes a top plate that is formed to be parallel with the top face cover, and a side plate that hangs from one end of the top plate, and the end portion members each has posture retaining device that contacts a corner portion of the top plate and the side plate.
Claims
1. An actuator comprising: a screw shaft with a first roller rolling groove in a spiral shape formed on an outer periphery; an inner block where a screw hole through which the screw shaft penetrates is formed, and which has a second roller rolling groove that is formed on an outer periphery to be parallel with the screw shaft; an outer rail that faces the second roller rolling groove; and a plurality of rollers that are respectively arranged between the screw shaft and the inner block, and between the inner block and the outer rail, comprising: a pair of side face covers that are laid between a pair of end portion members that are installed at both end portions of the screw shaft; and a top face cover that is disposed to close an opening portion that is formed between the side face covers, and is opened parallel with the screw shaft, wherein the side face covers each includes a top plate, and a side plate that hangs from one end along a width direction of the top plate, the end portion members each has a posture retaining device that contacts internally a corner portion where the top plate and the side plate of a side face cover connect to each other, and the posture retaining device comprises a base point portion that contacts the corner portion, and an inclined surface that extends while being slanted at a predetermined angle from the base point portion, and the top plate of each side face cover is disposed on the inclined surface of the posture retaining device when attaching and/or detaching the side face cover to and/or from the end portion members.
2. The actuator according to claim 1, wherein the posture retaining device allows the top plate to rotate around a rotation axis parallel with the screw shaft to a first direction to be toward the top face cover or away from the top face cover with the corner portion as a base point, at a time of attaching and detaching the side face cover, and attachment of the side face cover is made in such a manner that the side face cover is allowed to contact the top face cover and the opening portion is closed by allowing the side face cover to internally contact the posture retaining device and then allowing the top plate to rotate around the rotation axis parallel with the screw shaft to a second direction to be toward the top face cover with the corner portion as the base point.
3. The actuator according to claim 1, wherein the side face cover is provided to extend parallel with the screw shaft, and is fixed to the outer rail.
4. The actuator according to claim 3, wherein the posture retaining device allows the top plate to rotate around a rotation axis parallel with the screw shaft to a first direction to be toward the top face cover or away from the top face cover with the corner portion as a base point, at a time of attaching and detaching the side face cover, and attachment of the side face cover is made in such a manner that the side face cover is allowed to contact the top face cover and the opening portion is closed by allowing the side face cover to internally contact the posture retaining device and then allowing the top plate to rotate around the rotation axis parallel with the screw shaft to a second direction to be toward the top face cover with the corner portion as the base point.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
(4)
(5)
(6)
(7)
(8)
MODE FOR CARRYING OUT THE INVENTION
(9) Hereinafter, embodiments of an actuator according to the present invention will be described with reference to the drawings. Note that the following embodiments do not restrict the invention according to each of claims, and all of combinations of features described in the embodiments are not always essential to the solution of the invention.
First Embodiment
(10)
(11) As shown in
(12) As shown in
(13) The inner block 20 has reciprocating movement thereof guided by an outer rail 80 that is disposed at a lower end, and the outer rail 80 has a bottom portion 83 that extends along the longitudinal direction, and a pair of side wall portions 82 that are vertically provided from both ends of the bottom portion 83 and face both side faces of the ball screw nut 22. Further, a moving plate 21 is attached to the inner block 20 in such a manner as to sandwich the top face cover 50 from above and below. Further, in the side wall portion 82, a second roller rolling groove 82a is formed to face the second load roller rolling grooves 25, and the second load roller rolling grooves 25 and the second roller rolling groove 82a form a roller rolling path. Further, in a lid body 24, a through-hole 24a through which the screw shaft 10 is inserted, and direction changing paths 24b that cause the roller rolling path and the roller return passage 26 to communicate with each other are formed.
(14) The inner block 20 is assembled to the outer rail 80 via a plurality of rollers not illustrated, and the rollers endlessly circulate by rolling in an endless track that is constituted of the roller rolling path, the direction changing paths 24b and the roller return passage 26 to guide the inner block 20 to be capable of reciprocating along the outer rail 80.
(15) The side face cover 40 has a top plate 41 that extends parallel with the top face cover 50, and a side plate 42 that hangs from the top plate 41. Further, at an end portion of the top plate 41, a sealing portion 43 that contacts the top face cover 50 is formed. The sealing portion 43 may contact the top face cover in any manner as long as the sealing portion 43 can seal the top face cover 50, but the sealing portion 43 is preferably magnetically attached to the top face cover 50 by a permanent magnet or the like being attached to the sealing portion 43, for example. To the top face cover 50, a stainless steel tape or the like having magnetism is preferably applied. Furthermore, the side face cover 40 is attached and fixed by the side plate 42 being fastened to the outer rail 80 with fastening bolts 81.
(16) Next, with reference to
(17) By being configured as above, in the actuator 1 according to the present embodiment, the inner block 20 is attached to be capable of reciprocating in an axial direction of the screw shaft, with rotational movement of the screw shaft 10, by rotation of the drive motor.
(18) Further, since the opening portion 51 which is formed along a trajectory of movement of the inner block 20 can always keep a closed state by the top face cover 50, by the detour device 60, dust that is generated from sliding portions of the screw shaft 10 and the ball screw nut 22, sliding portions of the ball screw nut 22 and the outer rail 80 and the like does not leak outside through the opening portion 51.
(19) As shown in
(20) The posture retaining device 70 includes a base point portion 71 that contacts a base end side of the top plate 41 of the side face cover 40, and an inclined surface 72 that extends by inclining a predetermined angle from the base point portion 71. The posture retaining device 70 prevents damage to the top face cover 50 at the time of attaching and detaching the side face cover 40 by allowing the side plate 42 to rotate around the rotation axis parallel with the screw shaft 10 with the base end side of the top plate 41 of the side face cover 40 as a base point.
(21) That is, as shown in
(22) Next, with reference to
(23) As shown in
(24) As shown in
(25) As shown in
(26) In this manner, in the actuator 1 according to the present embodiment, the side face cover 40 can be easily attached and detached without damaging the top face cover 50 by rotating the side face cover 40 around the rotation axis parallel with the screw shaft 10 via the posture retaining device 70, and the actuator 1 is fastened and fixed to the base stand with the fixing bolt 84 from above the actuator 1 according to the present embodiment in the state in which the side face cover 40 is removed, whereby workability is enhanced, and cost can be reduced without upsizing the actuator 1.
(27) Further, the posture retaining device 70 can allow the side plate 42 to rotate around the rotation axis parallel with the screw shaft 10 with the base end portion of the top plate 41 of the side face cover 40 as the base point, and therefore, the rotational operation of the aforementioned side face cover 40 can be reliably realized with the simple configuration.
(28) Further, when the side face cover 40 is rotated around the rotation axis parallel with the screw shaft 10, the top plate 41 and the inclined surface 72 abut on each other to restrict rotation of the side plate 42, and therefore, the side face cover can be prevented from erroneously contacting the top face cover 50 with the rotational operation.
(29) Further, the inclined surface 72 functions as a restriction section that restricts rotation of the side face cover 40 by abutting on the top plate 41, and therefore, can contribute to enhancement in attaching workability and cost reduction due to the fact that the base point portion 71 and the inclined surface 72 can be integrally configured.
Second Embodiment
(30) In the actuator 1 according to the first embodiment that is described above, explanation is made about the case where the posture retaining device 70 is integrally formed by the base point portion 71 and the inclined surface 72. In an actuator of a second embodiment that will be described next, explanation will be made about an example of posture retaining device having a form different from the first embodiment. Note that the same or similar members as or to those in the case of the aforementioned first embodiment will be assigned with the same reference numerals and explanation thereof will be omitted.
(31)
(32) As shown in
(33) As shown in
(34) According to the actuator 2 according to the present embodiment, since the posture retaining device is configured by the pin 71′ and the stopper 73, a range of a rotational operation can be finely adjusted by properly changing the size of the stopper 73, and workability of attaching and detaching work of the side face cover 40 can be enhanced more.
(35) The present invention is not limited to the above described embodiments, and various modifications can be made within the range without changing the gist of the present invention. For example, in the actuators 1 and 2 according to the first and second embodiments, explanation is made on the example in which the screw shaft 10 is assembled to the ball screw nut via balls, with respect to the shaft member and the moving member, but the screw shaft 10 can be also screwed into the ball screw nut without using balls.
(36) Further, in the actuators 1 and 2 according to the first and second embodiments, explanation is made on the case where the screw shaft 10 is adopted, with respect to the shaft member and the moving member, but various linear guide devices such as a spline device and a linear guide can be also adopted without being limited to the screw shaft.
(37) Further, in the actuators 1 and 2 according to the first and second embodiments, explanation is made on the case where a magnet is used for the sealing portion 43, but closure of the top face cover 50 and the side face cover 40 may be performed by only contact without using a magnet, as long as the closure of the top face cover 50 and the side face cover 40 can be reliably performed. It is obvious from the statements of the claims that a mode in which such a modification or an improvement is added can be also contained in the technical range of the present invention.
REFERENCE NUMERALS
(38) 1, 2 Actuator 10 Screw shaft 20 Inner block 22 Ball screw nut 31, 31′ First end portion member 32 Second end portion member 40 Side face cover 41 Top plate 42 Side plate 50 Top face cover 51 Opening portion 70 Posture retaining device 71, 71′ Base point portion 72 Inclined surface 73 Stopper 80 Outer rail