Medical pendant arm system and rotation shaft used for the same
10398528 ยท 2019-09-03
Assignee
Inventors
Cpc classification
F16C19/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16M2200/066
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16M13/027
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16M11/2014
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C2316/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y10T403/32081
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
A61B90/50
HUMAN NECESSITIES
F16C19/166
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16M2200/022
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C41/001
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16M11/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16M13/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
A61B90/50
HUMAN NECESSITIES
F16M11/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C19/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
A61B90/00
HUMAN NECESSITIES
F16M13/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A medical pendant assembly has an anchor plate that is attachable to a roof structure and a first rotation shaft that includes a shaft outer ring, a shaft inner ring, and a ball spacer sleeve. The ball spacer sleeve is disposed between the shaft outer ring and the shaft inner ring. A lower portion of the shaft outer ring includes a first flange. An upper portion of the shaft outer ring includes a second flange. The second flange of the first rotation shaft is either attached directly to the anchor plate or attached to the anchor plate via an extension assembly. A first arm is attached to the first flange of the first rotation shaft.
Claims
1. A medical pendant assembly, comprising: an anchor plate that is attachable to a roof structure; and a rotation shaft that includes a shaft outer ring, a shaft inner ring, and a ball spacer sleeve; wherein the ball spacer sleeve is disposed between the shaft outer ring and the shaft inner ring; wherein a lower portion of the shaft outer ring includes a first flange; wherein an upper portion of the shaft outer ring includes a second flange; wherein the second flange of the rotation shaft is either attached directly to the anchor plate or attached to the anchor plate via an extension assembly; wherein a first arm is attached to the first flange of the rotation shaft; and wherein a brake is disposed at the first flange; the medical pendant assembly further comprising a rotation shaft cover disposed outside the rotation shaft, the rotation shaft cover including an upper rotation shaft cover, a lower rotation shaft cover, and a circular groove that is disposed between the upper rotation shaft cover and the lower rotation shaft cover; wherein the circular groove includes a brake indicator lamp.
2. The medical pendant assembly of claim 1, wherein the brake is an electromagnetic brake or an air-bag brake.
3. The medical pendant assembly of claim 1, wherein: the brake is a mechanical brake; and a periphery of the mechanical brake includes threads configured to be screwed into a threaded hole of the first flange.
4. The medical pendant assembly of claim 1, wherein: the brake is a mechanical brake; and the brake includes a threaded portion, a friction head, and a disc spring disposed between the threaded portion and the friction head.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION AND INDUSTRIAL APPLICABILITY
(8) The present disclosure is further described in connection with drawings and exemplary embodiments as follows and elaborated in more detail in the following description in order to fully understand the present disclosure, but it is evident that the present disclosure can be implemented in many other ways which are different from those described herein; generalization and deduction can be made by a skilled in the art without departing from the connotation of the disclosure according to practical application, and therefore the protective scope of the present disclosure should not be limited by the specific content of embodiments of the present disclosure herein.
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(10) The medical pendant arm system 100 of the present invention may comprise an anchor plate 10, wherein the anchor plate 10 may be used for attaching (e.g., fixing, attachable, and/or fixable) to the roof structure in the installation space of the medical pendant arm system. The top structure may, for example, include the ceilings of an operating room and an intensive care unit in a hospital. A first rotation shaft 11 may be provided, wherein the first rotation shaft 11 may comprise a shaft outer ring 111, a shaft inner ring 112 and a ball spacer sleeve 113, the ball spacer sleeve 113 being provided between the shaft outer ring 111 and the shaft inner ring 112, the lower portion of the shaft outer ring 111 forming a first flange of any suitable shape (e.g., a rectangular flange 114), the upper portion of the shaft outer ring 111 forming a second flange of any suitable shape (e.g., a circular flange 115), wherein the circular flange 115 of the first rotation shaft 11 may be fixed directly to the anchor plate 10 or fixed to the anchor plate 10 via (e.g., by) an extension assembly (e.g., extension column 20). A first arm 12 may be provided, wherein the first arm 12, in the vicinity of one end portion thereof, may be fixed to the rectangular flange 114 of the first rotation shaft 11.
(11) The upper circular flange 115 of the rotation shaft 11 may be formed integrally with the lower rectangular flange 114.
(12) The exemplary medical pendant arm system can involve modular design, have a compact overall structure, be easy to assemble with a short assembly time, and can have relatively less parts, and an electromagnetic brake or an air-bag brake can be selectively installed.
(13) Note that, upper, lower, front, rear, left, right and the like used herein are only exemplary directions defined to facilitate the description of the invention. For example, as shown in
(14) In at least some exemplary embodiments, the medical pendant arm system 100 may comprise a second rotation shaft 21, wherein the second rotation shaft may comprise a shaft outer ring 111, a shaft inner ring 112 and a ball spacer sleeve 113, the ball spacer sleeve 113 being provided between the shaft outer ring 111 and the shaft inner ring 112, the lower portion of the shaft outer ring 111 forming a rectangular flange 114. The upper portion of the shaft outer ring 111 may form a circular flange 115, wherein the circular flange 115 of the second rotation shaft 21 may be fixed in the vicinity of the other end portion of the first arm 12. A second arm 22 may be provided, wherein the second arm 22, in the vicinity of one end portion thereof, may be fixed to the rectangular flange 114 of the second rotation shaft 21.
(15) Accordingly, in at least some exemplary embodiments, a dual-arm system having compact overall structure may be constituted. For example, the distance between the arms may be effectively shortened, with simple assembly and short assembly time, and relatively less parts, and an electromagnetic brake or an air-bag brake can be selectively installed.
(16) In at least some exemplary embodiments, the first rotation shaft 11 and the second rotation shaft 21 may be substantially identical rotation shafts. Furthermore, the first arm 12 and the second arm 22 may be identical arms.
(17) In at least some exemplary embodiments, the medical pendant arm system can involve (e.g., realize) modular design and its main components (e.g., rotation shafts and/or arms) can be replaced (e.g., replace each other), which may save production costs and replacement costs.
(18) In at least some exemplary embodiments, in addition to one rotation shaft and one arm or two rotation shafts and two arms, three or more rotation shafts and three or more arms can also be used.
(19) In at least some exemplary embodiments, a dual pendant may be provided. The circular flange of the rotation shaft 11 of one of the medical pendants (e.g., the medical pendant on the left in
(20) In at least some exemplary embodiments, in order to provide for suitable height or size of the extension column 20 (e.g., being suitably small), the end portion of the arms 12 and 22 may be downward bevelled. Accordingly, the space occupancy of the medical pendant arm system can be further reduced and the overall structural compactness may be increased.
(21) In at least some exemplary embodiments, in order to provide for the center distance between the rotation shafts 11 and 11 of the two medical pendants being less than 300 mm, the rotation shafts may be designed into a layout so that the circular flange may be at the top and the rectangular flange may be at the bottom (e.g., the lower portion of the shaft outer ring may form the rectangular flange, and the upper portion of the shaft outer ring may form the circular flange). In this way, not only the center distance between the rotation shafts of the two medical pendants can be shortened, but also the appearance of the extension column cover can be suitable (e.g., perceived as concise and elegant by an observer).
(22) The lower rectangular flanges of the rotation shafts 11 and 21 may be designed into a rectangular shape, the purpose of which may be to install an electromagnetic brake (for example, of 120 Nm brake torque) at the lower ends of the rotation shafts 11 and 21, or to install an air-bag brake (for example, involving little or substantially no change of structure of the rotation shafts according to the request of customers). For example, a brake may be disposed at a flange (e.g., the lower rectangular flanges of the rotation shafts 11 and 21). That is to say, for example, the rectangular flanges of the rotation shafts can be used for installing an electromagnetic brake or an air-bag brake. For example, a snap port for the electromagnetic brake and a backing board-fixing hole for the air-bag brake can be provided on the shaft inner ring 111, and an electromagnetic brake-fixing hole or an air-bag brake-fixing hole can be provided on the shaft outer ring 112.
(23) In at least some exemplary embodiments, the medical pendant arm system may also comprise rotation shaft covers 31 and 32 provided outside the rotation shafts 11 and 21. The rotation shaft covers may be provided with a circular groove set between the upper rotation shaft cover 31 and the lower rotation shaft cover 32 thereof, the circular groove being used for installing a circular brake indicator lamp. The circular brake indicator lamp may light up when a brake of the rotation shafts 11 and 21 releases.
(24) In at least some exemplary embodiments, the end covers of the arms 12 and 22 may be composed of two portions: the end cover housing and the end cover-fixing board. For example, when the end covers are installed, the end cover-fixing board may be firstly fixed by several (e.g., two) screws and several threaded holes inside the arms 12 and 22. Then, for example, the end cover housing may be directly pushed into the corresponding hole in the end cover-fixing board. In this way, the time for the assembly and disassembly of the arm end covers may be shortened, and the complexity for the installation may be reduced.
(25) In at least some exemplary embodiments, as shown in
(26) In at least some exemplary embodiments, in order to reduce the contact stress at the junction between the rotation shafts 11 and 21 and the arms 12 and 22 (aluminium section in general) and increase the connecting strength, the medical pendant arm system may also comprise an upper lining board 41 and a lower lining board 42 disposed at the upper end and the lower end of the rotation shaft, respectively.
(27) In at least some exemplary embodiments, the upper surfaces of the arms 12 and 22 are provided with openings 51 and 52. In this way, for example, this exemplary configuration can facilitate the assembly of the gas pipes and lines, and also a top ambient illumination LED lamp can be selectively installed according to request of customers.
(28) In at least some exemplary embodiments, as shown in
(29) In at least some exemplary embodiments, as shown in
(30) In at least some exemplary embodiments, as shown in
(31) In at least some exemplary embodiments, as shown in
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(33) The extension column 20 may be composed of a cylindrical member having multiple extension column bores 201 distributed along its circumference. When the circular flange 115 of the first rotation shaft 11 is fixed to the anchor plate 10 by the extension column 20, multiple threaded rods may pass through multiple extension column bores 201, respectively, and their lower ends may be connected to the threaded holes located in the first rotation shaft 11, and their upper ends may pass through the unthreaded holes (non-threaded holes) in the anchor plate 10 and tightened via the nuts above the anchor plate 10. The extension column 20 can be subjected to outer surface spray coating. In this way, the extension column cover provided outside the extension column may be, for example, omitted.
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(35) The mechanical brake 118 may comprise a threaded portion 1183 located outside (e.g., the side away from the shaft inner ring) when it is installed (e.g., when it is installed in the rotation shaft), a friction head 1181 located inside (i.e., the side toward the shaft inner ring) when it is installed, and a disc spring 1182 located between the threaded portion 1183 and the friction head 1181. When the mechanical brake 118 is to be installed in the rotation shaft, a screwdriver can be used to screw the mechanical brake 118 into the rotation shaft. When a certain torque is achieved, the friction head 1181, which may be affected (e.g., deformed or pressed or impacted or suffered) from the press of the disc spring 1182, may press tightly against the outer cylindrical surface of the shaft inner ring 111.
(36) It will be apparent to those skilled in the art that various modifications and variations can be made to the disclosed method and apparatus. Other embodiments will be apparent to those skilled in the art from consideration of the specification and practice of the disclosed method and apparatus. It is intended that the specification and the disclosed examples be considered as exemplary only, with a true scope being indicated by the following claims.