Electric bed and electric wires

The electric bed design addresses the complex wiring challenge by fixing wires at specific points and using connectors and automatic winding to ensure secure, waterproof connections, reducing assembly burden and preventing wire damage.

JP7804306B2Active Publication Date: 2026-01-22PLATZ
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Patent Information

Application Number
JP2020217532
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2020-12-25
Publication Date
2026-01-22
Estimated Expiration
2040-12-25

AI Technical Summary

Technical Problem

The assembly of electric beds for nursing care requires complex wiring of electrical wires, which places a significant burden on workers due to the need to route and secure wires along a predetermined path to avoid pinching by movable mechanisms.

Method used

The electric bed design includes fixed points for electric wires on each part of the bed frame, with connectors positioned for easy connection during assembly, and features such as curled cords and automatic winding sections to prevent wire breakage and disconnection, along with waterproof mechanisms to protect the connections.

Benefits of technology

This design significantly reduces the wiring work and burden on workers by ensuring secure, efficient, and waterproof connections during assembly, preventing pinching and disconnection of wires, thus simplifying the assembly process.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

To provide an electric bed which can alleviate wiring work at assembling, and largely reduce a burden on a worker, and an electric wire.SOLUTION: A first motor electric wire 50 is fixed to a rear part of a fore-and-aft bar 110 of a base frame 11 at least at its one point, a first relay electric wire 52 is fixed to an outer face of a fore-and-aft bar 130 of a center frame 13 at least at its one point, and when the base frame 11 and the center frame 13 are assembled, a female relay connector 50C arranged at an end part of the first motor electric wire 50 and a male relay connector 52C arranged at an end part of the first relay electric wire 52 are located in the vicinity of a place in which the relay connectors can be connected to each other. Even if an X-link mechanism 11B (variable mechanism) is moved in a state that the female relay connector and the male relay connector are connected to each other, the first motor electric wire 50 and the first relay electric wire 52 are arranged so as not to cause disconnection.SELECTED DRAWING: Figure 3
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Description

[Technical Field]

[0001] The present invention relates to an electric bed and an electric wire. [Background technology]

[0002] Many electric beds are designed to be easily disassembled and reassembled for ease of transportation, storage, and loading / unloading into homes and buildings. Electric beds for nursing care, especially those used in hospitals and nursing care facilities, are structurally more complex, more expensive, and have a shorter lifespan than regular beds, so they are often rented to end users. Rental companies of electric beds for nursing care frequently disassemble and reassemble electric beds. Assembly work involves assembling the electric bed and wiring the electrical wires that connect to the electrical devices. Summary of the Invention [Problem to be solved by the invention]

[0003] However, this wiring work requires the worker to route the electric wire along a predetermined path while fixing the electric wire to the cord clip to prevent the electric wire from being pinched by the movable mechanism, which places a great burden on the worker.

[0004] SUMMARY OF THE INVENTION It is therefore an object of the present invention to provide an electric bed and electric wires that can reduce the wiring work during assembly and significantly reduce the burden on workers. [Means for solving the problem]

[0005] An electric bed according to one embodiment has at least one first part and a second part, which can be assembled and disassembled, wherein the first part has a first electric device and a movable mechanism driven by the first electric device, the second part has a second electric device that can be electrically connected to the first electric device and for driving the movable mechanism, a first electric wire is connected to the first electric device, and a second electric wire is connected to the second electric device, the first electric wire is fixed to the first part at at least one point, and the second electric wire is fixed to the second part at at least one point, and when the first part and the second part are assembled, a first connector provided on an end of the first electric wire and a second connector provided on an end of the second electric wire are positioned in close proximity to each other so that they can be connected to each other, and the first electric wire and the second electric wire are arranged so that they will not be broken even if the movable mechanism is moved with the first connector and the second connector connected.

[0006] The first connector and the second connector may be configured to be connected to each other simultaneously when the first component and the second component are assembled.

[0007] A part of the first electric wire and / or the second electric wire may be formed of a curled cord.

[0008] The first electric wire and / or the second electric wire may be provided with a winding section that automatically winds and stores the electric wire.

[0009] The first connector and / or the second connector may have a disconnection prevention mechanism that prevents disconnection after connection.

[0010] The first connector and the second connector may have a waterproof mechanism for preventing water from entering inside.

[0011] An electric bed according to one embodiment is an electric bed having an electric movable mechanism, and comprises a bed frame on which the movable mechanism is provided, a control unit provided on the bed frame and controlling the movable mechanism, and an electric wire for a hand switch connected to the controller, wherein the electric wire is branched, and one of the branches is fixed at least at one point to the bed frame on one side of the control unit in the width direction, and the other branch is fixed at least at one point to the bed frame on the other side of the control unit in the width direction.

[0012] An electric bed according to one embodiment has at least one first part and a second part, which can be assembled and disassembled, wherein the first part has a first electrical device and a movable mechanism driven by the first electrical device, the second part has a second electrical device that can be electrically connected to the first electrical device and for driving the movable mechanism, one end of an electric wire is connected to the second electrical device, and the second electrical device has a pull-out prevention mechanism that prevents the electric wire from being pulled out, and after the first part and the second part are assembled, the other end of the electric wire is connected to the first electrical device.

[0013] The electric wire may be fixed at least at one point to the second component.

[0014] A part of the electric wire may be formed of a curled cord.

[0015] The electric wire may be provided with a winding section that automatically winds and stores the electric wire.

[0016] An electric wire according to one embodiment is an electric wire connected to an electric device for driving the moving mechanism of an electric bed, and comprises a cord, a first connector provided at one end of the cord for connecting to the electric device, and a second connector provided at the other end of the cord for connecting to a connector of another electric wire, and has a waterproof mechanism to prevent water from entering the interior.

[0017] The second connector may have a mechanism for preventing the second connector from coming off after being connected to the connector of another electric wire. [Effects of the Invention]

[0018] The present invention can provide an electric bed and electric wires that can reduce the wiring work during assembly and significantly reduce the burden on workers. [Brief explanation of the drawings]

[0019] [Figure 1] Schematic diagram of an electric bed according to this embodiment. [Figure 2] Exploded view of the electric bed in Figure 1 [Figure 3] FIG. [Figure 4] 1A and 1B are explanatory diagrams of the control unit, in which FIG. 1A shows a state in which the cover is open, and FIG. 1B shows a state in which the cover is closed. [Figure 5] 1A and 1B are perspective views of electric wires, in which FIG. 1A shows a state in which the motor electric wires and the relay electric wires are not connected, and FIG. 1B shows a state in which the motor electric wires and the relay electric wires are connected. [Figure 6] FIG. 10 is an explanatory diagram of a wiring path of an electric wire according to a modified example. [Figure 7] 10A and 10B are perspective views of a first motor electric wire according to a modified example, in which FIG. 10A shows a state in which the cover is open, and FIG. 10B shows a state in which the cover is closed. [Figure 8] FIG. 10 is an explanatory diagram of a second relay wire according to a modified example. [Figure 9] FIG. 10 is an explanatory diagram of a second relay wire according to a modified example. [Figure 10] FIG. 10 is an explanatory diagram of an electric wire according to a modified example. DETAILED DESCRIPTION OF THE INVENTION

[0020] Hereinafter, an embodiment of the present invention will be described with reference to the drawings.

[0021] FIG. 1 is a schematic diagram of an electric bed 1 according to this embodiment. FIG. 2 is an exploded view of the electric bed 1 of FIG. FIG. 3 is an exploded view of the frame portion 10. As shown in FIG.

[0022] 1 and 2, an electric bed 1 according to one embodiment is a nursing bed used in, for example, a hospital or a nursing care facility. The electric bed 1 is formed in a vertically elongated, approximately rectangular shape in a plan view to support the body of a recumbent person.

[0023] The electric bed 1 has a frame 10 placed on the floor (not shown), a bottom 20 provided on the top of the frame 10, a headboard 30 and a footboard 31 respectively provided at the front and rear ends of the frame 10, and a hand switch 2 for operating a movable mechanism (described later). In the following description, the "front-rear direction" refers to the direction from the upper left to the lower right in FIG. 1, i.e., the length direction of the electric bed 1, with the upper left being the front and the lower right being the rear in FIG. 1. The "left-right direction" refers to the direction from the lower left to the upper right in FIG. 1, i.e., the width direction of the electric bed 1, with the lower left being the left and the upper right being the right in FIG. 1. The "up-down direction" refers to the direction from the top to the bottom in FIG. 1, i.e., the vertical direction of the electric bed 1, with up being up and down being down. Axes indicating directions will be shown in the figures as appropriate below.

[0024] As shown in Figures 2 and 3, the frame section (bed frame) 10 has a base frame 11, a head frame 12, a center frame 13, and a foot frame 14 provided on the upper part of the base frame 11, and four fixed legs 15 placed on the floor (not shown) and attached to the four corners of the base frame 11. The fixed legs 15 stand on the floor and support the base frame 11 from below. The base frame 11, head frame 12, center frame 13, and foot frame 14 are made of steel, and their detailed configurations will be described later.

[0025] As shown in Figures 1 and 2, the bottom 20 supports a bed mattress (not shown) from below and has a plurality of bottom elements, such as a back bottom 21, a waist bottom 22, a knee bottom 23, and a leg bottom 24. The angles between the bottom elements 21 to 24 are variable, which allows the bottom 20 to bend. For example, the angles of the back bottom 21, the knee bottom 23, and the leg bottom 24 relative to the waist bottom 22 are variable. The bottom 20 is made of, for example, steel or synthetic resin.

[0026] When transporting or storing the electric bed 1, it is disassembled into a number of main parts, such as a base frame 11, a head frame 12, a center frame 13, a foot frame 14, a back bottom 21, a waist bottom 22, a knee bottom 23, and a leg bottom 24, as well as other parts (description of which is omitted). When these separated parts are interconnected, the completed electric bed 1 is assembled as shown in Figure 1.

[0027] Next, the base frame 11, the head frame 12, the center frame 13, and the foot frame 14 will be described.

[0028] As shown in FIG. 3, the base frame 11 includes a first base portion 11A that is placed on the floor (installation surface), an X-link mechanism 11B that serves as a lifting mechanism (moving mechanism), and a first actuator 11C.

[0029] The first base 11A has a pair of front-rear bars 110 that extend in the front-rear direction and are arranged at a predetermined interval in the left-right direction, and a pair of left-right bars 111 that are provided at the front and rear of the front-rear bars 110 and connect the front-rear bars 110. Fixed legs 15 (FIG. 2) are attached to the front and rear ends of the front-rear bars 110, respectively, as shown in FIG. 1. A guide member 112 is provided on the rear inside of the pair of front-rear bars 110. The guide member 112 supports a connecting bar 115A of the X link mechanism 11B relative to the first base 11A so that the connecting bar 115A can slide in the front-rear direction.

[0030] The X-link mechanism 11B is provided on the first base 11A. The X-link mechanism 11B mainly includes a pair of first and second links 113 and 114, and multiple connecting bars 115A, 115B, and 115C. Each of the first and second links 113 and 114 extends in the front-rear direction, and is rotatably connected to each other at approximately the center in the front-rear direction by a pin 116. In other words, the pair of first and second links 113 and 114 is connected to each other in an X-shape in side view, with the pin 116 as the axis center. A pair of the first and second links 113 and 114 is provided, spaced apart in the left-right direction.

[0031] Each second ring Q1 The rear ends of the second rings 14 are connected to a connecting bar 115A extending in the left-right direction. The connecting bar 115A is supported by the guide member 112 so as to be slidable in the front-rear direction. Q1 The front ends of first links 114 are connected to connecting bar 115B extending in the left-right direction. The rear ends of each first link 113 are connected to connecting bar 115C extending in the left-right direction. The front ends of each first link 113 are rotatably connected to the front left-right bars 111.

[0032] A support bar 117 is connected to the front-rear bar 110 at the rear side of the rear left-right bar 111. A first actuator 11C for driving the X-link mechanism 11B is provided at the center of the support bar 117. The first actuator 11C has a first electric motor 118A and a first rod 118B that is movable forward and backward by the first electric motor 118A. The tip of the first rod 118B is connected to the rear end of the first link 113 via the connecting bar 115C. Therefore, the forward and backward movement of the first rod 118B of the first actuator 11C moves the connecting bar 115C up and down. This drives the X-link mechanism, and the vertical positions of the upper ends of the first links 113 and second links 114 change in unison. In this way, the first links 113 and second links 114 rotate and rise, and the center frame 13 rises relative to the base frame 11.

[0033] The first electric motor 118A is connected to a first motor electric wire 50. The first motor electric wire 50 will be described in detail later.

[0034] The head frame 12 includes a second base portion 12A, an arm mechanism 12B as a raising / lowering mechanism (movable mechanism), and a second actuator 12C.

[0035] The second base 12A has a pair of front and rear bars 120 extending in the front-to-rear direction and arranged at a predetermined distance in the left-to-right direction, and a pair of left and right bars 121 provided at the front and center of the front and rear bars 120, respectively, and connecting these front and rear bars 120.

[0036] The arm mechanism 12B is provided at the center of the left and right bar 121 located on the rear side. The arm mechanism 12B includes a back-raising arm 122, a shaft 123, and a pair of rollers 124. The back-raising arm 122 extends in the front-to-rear direction and is rotatably provided at the center of the rear left and right bar 121. The shaft 123 is provided at the tip of the back-raising arm 122. Each roller 124 is rotatably provided at both ends of the shaft 123.

[0037] The second actuator 12C has a second electric motor 125 and a second rod 126 that is movable forward and backward by the second electric motor 125. The tip of the rod 126 is attached to the center of the back-raising arm 122 so as to be able to rotate freely. No. 2 Actuator 12 C The back-raising arm 122 is rotated and raised or lowered by the forward and backward movement of the rod 126. Since the back-raising arm supports the back bottom 21 from below, the back bottom 21 can be raised or lowered by the second actuator 12C.

[0038] A first engagement portion 127 is provided at the rear end of each front-rear bar 120. The first engagement portion 127 is formed in a concave shape that opens rearward, and engages to accommodate a front protrusion 134A on the outer surface of each front-rear bar 130. Each front-rear bar 120 is formed with a through-hole 120a that penetrates in the left-right direction.

[0039] A second motor electric wire 51 is connected to the second electric motor 125. The second motor electric wire 51 will be described in detail later.

[0040] The center frame 13 includes a third base portion 13A and a control portion 13B.

[0041] The third base 13A has a pair of front and rear bars 130 extending in the front-to-rear direction and arranged at a predetermined interval in the left-to-right direction, and a pair of left and right bars 131 provided at the rear and center of the front and rear bars 130 and connecting these front and rear bars 130.

[0042] A guide member 132 is provided on the inside of the rear portion of each front-rear bar 130. A guided portion 113A at the rear end of the first link 113 is engaged with the guide member 132 so as to be slidable in the front-rear direction. A shaft holding portion 133 is provided on the inside of the front end of each front-rear bar 130. The shaft holding portion 133 has an opening facing downward. The shaft holding portion 133 engages with both ends of the connecting bar 115B so as to cover the both ends from above.

[0043] Each front and rear bar 130 has a front protrusion 134A and a rear protrusion 134B that protrude outward on its outer surface. The front protrusion 134A is a protrusion for attaching the head frame 12 to the center frame 13. The rear protrusion 134B is a protrusion for attaching the foot frame 14 to the center frame 13.

[0044] A front through-hole 135A and a rear through-hole 135B that penetrate in the left-right direction are formed in each front and rear bar 130. The front through-hole 135A is a hole for fixing the head frame 12 to the center frame 13. The rear through-hole 135B is a hole for fixing the foot frame 14 to the center frame 13.

[0045] A leg lifting bar 137 extending rearward from the left and right bars 131 is connected to the center of the front left and right bars 131. A back-leg interlocking link 136 extending forward is connected to the leg lifting bar 137.

[0046] The front end of the back-leg interlocking link 136 is configured to be connectable to the back-raising arm 122. When the front end of the back-leg interlocking link 136 engages with and is connected to the back-raising arm 122, the back-leg interlocking link 136 moves in the front-rear direction in conjunction with the rotation of the back-raising arm 122, and as a result, the back-leg interlocking link 136 and the leg-raising bar 137 rotate.

[0047] A roller 138 is rotatably fixed to the tip (rear end) of the leg lifting bar 137. This roller 138 abuts against the underside of the knee bottoms 23 and leg bottoms 24 near the joints thereof, and therefore, as the leg lifting bar 137 rotates, the roller 138 pushes up the knee bottoms 23 and leg bottoms 24 from below, thereby raising and lowering the knee bottoms 23 and leg bottoms 24.

[0048] The rear side of the head frame 12 is connected to the center frame 13. The front and rear bars 120 and 130 are overlapped in a side view, the first engagement portions 127 are engaged with the front protrusions 134A, and the knob bolts 40 are passed through the through holes 120a and screwed into the front through holes 135A.

[0049] The center frame 13 is connected to the base frame 11. The guide members 132 of the center frame 13 accommodate the guided portions 113A at the rear ends of the first links 113 so that they can slide in the front-to-rear direction, and the shaft holding portions 133 of each front-to-rear bar 130 engage with both ends of the connecting bar 115B so as to cover them from above, thereby connecting the center frame 13 to the base frame 11. When the center frame 13 moves up and down, the guided portions 113A slide within the guide members 132.

[0050] FIG. 4 is an explanatory diagram of the control unit 13B, where (a) shows a state in which the cover 139B is open, and (b) shows a state in which the cover 139B is closed.

[0051] The control unit 13B is attached to the left and right bars 131 on the front side. The control unit 13B has a control box 139 and a control board (not shown). The control box 139 has a roughly rectangular parallelepiped shape and has a main body 139A and a cover 139B. An opening 139c is formed in a part of the main body 139A, and a control board (not shown) and a plurality of sockets (connectors) (not shown) are provided inside the main body 139A. Concave and recessed portions 139D are provided on the front end and left and right sides of the opening 139c of the main body 139A. Main connectors 52B and 53B (described below) are inserted into the sockets (not shown), and cords 52A and 53A (described below) are inserted into the recesses of the concave and recessed portions 139D. Book Two engagement holes 139e are formed at the front end of the body 139A below the uneven portion 139D, penetrating the front end.

[0052] Cover 139B is Book It is configured to cover the opening 139c of the body 139A, Book The cover 139B is rotatably attached to the body 139A. Two engaging claws 139F are provided at the end of the cover 139B. The cover 139B is configured to close the opening 139c by rotating it to cover the opening 139c and engaging the engaging claws 139F with the engaging holes 139e. When the cover 139B closes the opening 139c, notches 139g are formed in the front end and left and right sides of the cover 139B, preventing the cover 139B from pinching the cords 52A and 53A. The cover 139B and the uneven portion 139D prevent the first relay electric wire 52 and the second relay electric wire 53 from coming off the control unit 13B. Therefore, the cover 139B and the uneven portion 139D function as a mechanism for preventing the cords 52A and 53A from coming off the control unit 13B.

[0053] A first relay electric wire 52, a second relay electric wire 53, and a hand switch electric wire 54 (FIG. 3) are connected to the control unit 13B. The configurations of these electric wires will be described later.

[0054] As shown in Figure 3, the foot frame 14 has a pair of front and rear bars 140 extending in the front-rear direction and arranged at a predetermined interval in the left-right direction, and a left-right bar 141 located approximately in the center of the front and rear bars 140 and connecting these front and rear bars 140.

[0055] A second engagement portion 142 is provided at the front end of each front-rear bar 140. The second engagement portion 142 is formed in a concave shape that opens forward, and engages to accommodate the rear protrusion 134B on the outer surface of each front-rear bar 130. Each front-rear bar 140 is formed with a through-hole 143 that penetrates in the left-right direction.

[0056] The front side of the foot frame 14 is connected to the center frame 13. The front and rear bars 130 and 140 are arranged to overlap each other in a side view, the second engagement portions 142 are engaged with the rear protrusions 134B, and the knob bolts 41 are passed through the through holes 143 and screwed into the rear through holes 135B.

[0057] Next, the first motor electric wire 50, the second motor electric wire 51, the first relay electric wire 52, the second relay electric wire 53, and the hand switch electric wire 54 will be described with reference to FIGS.

[0058] FIG. 5 is an oblique view of each electric wire 50, 51, 52, 53, where (a) shows a state in which the motor electric wires 50, 51 and the relay electric wires 52, 53 are not connected to each other, and (b) shows a state in which the motor electric wires 50, 51 and the relay electric wires 52, 53 are connected to each other.

[0059] As shown in FIG. 5, the first motor electric wire 50 includes a cord 50A, a main connector 50B, and a female relay connector 50C. The main connector 50B is connected to one end of the cord 50A, and the relay connector 50C is connected to the other end of the cord 50A. The main connector 50B is connected to the first electric motor 118A. The female relay connector 50C is connected to a male relay connector 52C (described later). The female relay connector 50C includes a main body 50D and a cover 50E. The main body 50D has a rectangular parallelepiped shape with an opening 50f. The cover 50E is rotatable relative to the main body 50D, and when rotated, it can be positioned so that a portion of the cover covers the opening 50f as shown in FIG. 5(b) or is spaced apart from the opening 50f and does not cover the opening 50f as shown in FIG. 5(a).

[0060] The first relay wire 52 includes a cord 52A, a main connector 52B, and a male relay connector 52C. The main connector 52B is connected to one end of the cord 52A, and the relay connector 52C is connected to the other end of the cord 52A. The main connector 52B is connected to the control unit 13B (see FIG. 4). The male relay connector 52C is inserted into and connected to an opening 50f of the female relay connector 50C. With the male relay connector 52C and the female relay connector 50C connected, the cover 50E is rotated so that the opening 50f and the end face of the male relay connector 52C facing the main connector 52B are covered by the end wall that constitutes the cover 50E. This prevents the male relay connector 52C from coming off the female relay connector 50C. The cover 50E functions as a disconnection prevention mechanism.

[0061] The second motor electric wire 51 has the same configuration as the first motor electric wire 50. That is, the second motor electric wire 51 includes a cord 51A, a main connector 51B, and a female relay connector 51C. The main connector 51B is connected to the second electric motor 125. The female relay connector 51C is connected to a male relay connector 53C, which will be described later. The female relay connector 51C includes a main body 51D and a cover 51E. The main body 51D is shaped like a rectangular parallelepiped and has an opening 51f.

[0062] The second relay wire 53 has the same configuration as the first relay wire 52. That is, the second relay wire 53 includes a cord 53A, a main connector 53B, and a male relay connector 53C. The main connector 53B is connected to the control unit 13B (see FIG. 4). The male relay connector 53C is inserted into and connected to an opening 51f of the female relay connector 51C. The cover 51E prevents the male relay connector 53C from coming off the female relay connector 51C. The cover 51E functions as a mechanism for preventing coming off.

[0063] 3, the first motor electric wire 50 has a stretchable curled cord 50G as a part of the cord 50A. At least one point of the cord 50A is fixed to the base frame 11. In this embodiment, at least one point of the cord 50A is fixed to the rear of the front-rear bar 110 of the base frame 11 by a cord clip (not shown).

[0064] The cord 51A of the second motor electric wire 51 has at least one location fixed to the head frame 12. In this embodiment, the cord 51A is fixed at least one location to the outer surface (upper surface, lower surface, or side surface) of the front-rear bar 120 of the head frame 12 by a cord clip (not shown). As a result, the cord 51A is arranged to extend from the second electric motor 125 to the front-rear bar 120 and extend rearward along the front-rear bar 120.

[0065] The cord 52A of the first relay wire 52 has at least one location fixed to the center frame 13. In this embodiment, the cord 52A is fixed at least one location to the outer surface (top, bottom, or side) of the front-rear bar 130 of the center frame 13 by a cord clip (not shown). As a result, the cord 52A extends from the control unit 13B to the front-rear bar 130 and is arranged to extend rearward along the front-rear bar 130.

[0066] The cord 53A of the second relay wire 53 has at least one location fixed to the center frame 13. In this embodiment, the cord 53A is fixed at least one location to the outer surface (top, bottom, or side) of the front-rear bar 130 of the center frame 13 by a cord clip (not shown). As a result, the cord 53A extends from the control unit 13B to the front-rear bar 130 and is arranged to extend forward along the front-rear bar 130.

[0067] When the base frame 11, head frame 12, center frame 13, and foot frame 14 are assembled, the female relay connector 50C of the first motor electric wire 50 and the male relay connector 52C of the first relay electric wire 52 are configured to be positioned in close proximity so that they can be connected to each other, and the female relay connector 51C of the second motor electric wire 51 and the male relay connector 53C of the second relay electric wire 53 are configured to be positioned in close proximity so that they can be connected to each other.

[0068] The first motor electric wire 50, the second motor electric wire 51, the first relay electric wire 52, and the second relay electric wire 53 are fixed to each frame by cord clips so that even if the movable mechanism (X-link mechanism 11B and arm mechanism 12B) is moved while they are connected to each other, they will not be pinched or pulled too hard, causing breakage.

[0069] The hand switch electric wire 54 includes a cord 54A, a main connector (not shown), and two relay connectors (not shown). The main connector (not shown) is connected to one end of the cord 54A. The cord 54A has a single wire extending from the main connector (not shown) and two branch wires branching off from the single wire. The two relay connectors (not shown) are connected to the ends of the two branch wires. One of the branch wires is fixed at least at one point to the front-rear bar 130 of the center frame 13 on one side in the width direction relative to the control unit 13B. The other branch wire is fixed at least at one point to the front-rear bar 130 of the center frame 13 on the other side in the width direction relative to the control unit 13B. A hand switch 2 can be connected to each relay connector of the hand switch electric wire 54.

[0070] The base frame 11 and the head frame 12 correspond to the first part. The center frame 13 corresponds to the second part. The first electric motor 118A corresponds to the first electric device. The second electric motor 125 corresponds to the first electric device. The control unit 13B corresponds to the second electric device. The first motor electric wire 50 and the second motor electric wire 51 correspond to the first electric wire. The first relay electric wire 52 and the second relay electric wire 53 correspond to the second electric wire. The female relay connector 50C and the female relay connector 51C correspond to the first connector. The male relay connector 52C and the male relay connector 53C correspond to the second connector. The frame unit 10 corresponds to the bed frame.

[0071] As described above, according to the electric bed 1, the first motor electric wire 50 is fixed at least at one point to the rear of the front-rear bar 110 of the base frame 11, and the first relay electric wire 52 is fixed at least at one point to the outer surface of the front-rear bar 130 of the center frame 13. When the base frame 11 and the center frame 13 are assembled, the female relay connector 50C provided at the end of the first motor electric wire 50 and the male relay connector 52C provided at the end of the first relay electric wire 52 are positioned close enough to be connected to each other, and the first motor electric wire 50 and the first relay electric wire 52 are arranged so that they will not break even if the X-link mechanism 11B (movable mechanism) is moved with the female relay connector 50C and the male relay connector 52C connected.

[0072] As a result, when assembling the electric bed 1, there is no need to check the instruction manual or fix the electric wires to the frame with cord clips or route them along a predetermined path to prevent them from getting pinched by the moving mechanism. In other words, the electric bed 1 prevents incorrect wiring and reduces the wiring work, which simplifies the assembly work of the electric bed 1 and significantly reduces the burden on the worker.

[0073] Regarding the second motor electric wire 51 and the second relay electric wire 53, when the head frame 12 and the center frame 13 are assembled, the female relay connector 51C provided at the end of the second motor electric wire 51 and the male relay connector 53C provided at the end of the second relay electric wire 53 are positioned close enough to be connected to each other, and even if the arm mechanism 12B (movable mechanism) is moved with the female relay connector 51C and the male relay connector 53C connected, no disconnection will occur in the second motor electric wire 51 and the second relay electric wire 53. Therefore, the second motor electric wire 51 and the second relay electric wire 53 also achieve the same effects as the first motor electric wire 50 and the first relay electric wire 52.

[0074] A portion of the first motor electric wire 50 is configured by a curl cord 50G. This prevents the first motor electric wire 50 from sagging and touching the floor, and even if the first motor electric wire 50 is pulled by driving the X link mechanism 11B (movable mechanism), the curl cord 50G stretches, preventing the first motor electric wire 50 from breaking.

[0075] The cover 50E of the first motor electric wire 50 is configured to rotate to cover the end face of the male relay connector 52C when the male relay connector 52C and the female relay connector 50C are connected. This prevents the user from accidentally getting caught on the electric wire and the male relay connector 52C from coming loose from the female relay connector 50C. This prevents the first motor electric wire 50 from becoming disconnected from the first relay electric wire 52, causing the electric bed 1 to stop moving.

[0076] The cord 54A has a single wire extending from a main connector (not shown) and two branch wires branching off from the single wire. One of the branch wires is fixed at least in one location to the front-rear bar 130 of the center frame 13 on one widthwise side relative to the control unit 13B. The other branch wire is fixed at least in one location to the front-rear bar 130 of the center frame 13 on the other widthwise side relative to the control unit 13B.

[0077] This allows the hand switch 2 to be placed on the side desired by the user. Because the branch line is fixed to the center frame 13, there is no need to route the branch line after assembling the electric bed 1. This simplifies the assembly work of the electric bed 1 and reduces the burden on the worker.

[0078] The present invention is not limited to the above-described embodiments, and those skilled in the art will be able to make various additions and modifications within the scope of the present invention.

[0079] Fig. 6 is an explanatory diagram of the wiring paths of the electric wires 50, 51, 52, and 53 according to the modified example. In Fig. 6, the hand switch electric wire 54 is not shown.

[0080] The wiring paths of the first motor electric wire 50, the second motor electric wire 51, the first relay electric wire 52, and the second relay electric wire 53 may be the wiring paths shown in Fig. 6. That is, the cord 50A of the first motor electric wire 50 is fixed at least at one point to the first rod 118B by a cord clip (not shown) and is disposed along the first rod 118B. The cord 52A of the first relay electric wire 52 extends rearward from the control unit 13B and is fixed to the rear left and right bars 131.

[0081] No. 2 relay electric wire 5 3 The first stay 6 provided on the center frame 13 1 The first stay 6 is arranged along the 1 The second part is fixed to a support part that supports the control part 13B, and is composed of a part that extends forward, a part that extends diagonally upward from the end of the first part, and a part that extends forward from the end of the first part. relay electric wire 5 3 Code 5 3 A extends from the control section 13B and is connected to the first stay 6 1 It extends along the periphery to near its front end. motor electric wire 5 1 Head Frame 1 2 The second stay 6 0 The second stay 6 is arranged along the 0The second motor electric wire 5 is fixed to the rear left and right bars 121 and is composed of a portion extending forward, a portion extending diagonally downward from the end of the first portion, and a portion extending forward from the end of the first portion to the vicinity of the second electric motor 125. 1 Code 5 1 A extends from the second electric motor 125 and vinegar The 6th 0 It extends along the stern to near its rear end.

[0082] As in the above embodiment, when the base frame 11, head frame 12, center frame 13, and foot frame 14 are assembled, the female relay connector 50C of the first motor electric wire 50 and the male relay connector 52C of the first relay electric wire 52 are positioned in mutually connectable proximity, and the female relay connector 51C of the second motor electric wire 51 and the male relay connector 53C of the second relay electric wire 53 are positioned in mutually connectable proximity. Even when the X-link mechanism 11B (movable mechanism) is moved with the female relay connector 50C and the male relay connector 52C connected, no disconnection occurs in the first motor electric wire 50 or the first relay electric wire 52. Also, even when the arm mechanism 12B (movable mechanism) is moved with the female relay connector 51C and the male relay connector 53C connected, no disconnection occurs in the second motor electric wire 51 or the second relay electric wire 53. Therefore, this modified example can also achieve the same effects as the electric bed 1 of the above embodiment.

[0083] In addition, when the base frame 11, the head frame 12, the center frame 13, and the foot frame 14 are assembled, the female relay connector 50C of the first motor electric wire 50 and the male relay connector 52C of the first relay electric wire 52 may be configured to be connected to each other at the same time as the assembly, and the female relay connector 51C of the second motor electric wire 51 and the male relay connector 53C of the second relay electric wire 53 may be configured to be connected to each other at the same time as the assembly.

[0084] 7A and 7B are perspective views of a first motor electric wire 50 according to a modified example, in which (a) shows a state in which the cover part 50E is open, and (b) shows a state in which the cover part 50E is closed.

[0085] While the cover 50E of the first motor electric wire 50 functions as a mechanism for preventing disconnection, the cover 50E may also function as a waterproof mechanism for preventing water from entering the main body 50D. In this case, as shown in FIG. 7(a), an oblong hole 50g is formed in the cover 50E, and a protrusion 50H provided on the main body 50D is inserted into the oblong hole 50g. The cover 50E is rotated to cover the opening 50f, and the cover 50E is slid toward the cord 50A, whereby a sealing member 50J provided on the cover 50E seals the opening 50f (FIG. 7(b)). This prevents water from entering the main body 50D when the electric bed 1 is disassembled for cleaning. Alternatively, a rectangular annular packing may be fitted to opening 50f of main body 50D, so that when male relay connector 52C is inserted into main body 50D, the packing will come into close contact with male relay connector 52C to prevent water from entering main body 50D. This makes it possible to prevent water from entering main body 50D even when female relay connector 50C and male relay connector 52C are connected.

[0086] The main connector 50B of the first motor electric wire 50 may be configured to have both a disconnection prevention mechanism and a waterproof mechanism. The main connector 51B of the second motor electric wire 51 may be configured to have a disconnection prevention mechanism and / or a waterproof mechanism. The main connector 52B of the first relay electric wire 52 and the main connector 53B of the second relay electric wire 53 may be configured to have a waterproof mechanism.

[0087] The first motor electric wire 50 has a stretchable curled cord 50G in a part of the cord 50A, but for example, as shown in Fig. 8, the cord 53A of the second relay electric wire 53 may have a curled cord 53D. Similarly, the second motor electric wire 51 and the first relay electric wire 52 may have curled cords.

[0088] 9, the cord 53A of the second relay electric wire 53 may have a winding section 53E that automatically winds and stores the cord 53A, instead of the curled cord 53D. This prevents the second relay electric wire 53 from sagging and prevents a user from getting caught on the cord 53A. Furthermore, even if the second relay electric wire 53 is pulled by driving the arm mechanism 12B (movable mechanism), the cord 53A in the winding section 53E is pulled out, thereby preventing the second relay electric wire 53 from being damaged or broken. Similarly, the first motor electric wire 50, the second motor electric wire 51, and the first relay electric wire 52 may each have a winding section.

[0089] As shown in FIG. 10, the second motor electric wire 51 and the second relay electric wire 53 may be configured by a single electric wire 151. The electric wire 151 includes a cord and two main connectors connected to both ends of the cord. One of the main connectors is connected to the control unit 13B of the center frame 13 before assembly. The cord of the electric wire 151 has at least one point Center The other main connector may be fixed to the front and rear bars 130 of the frame 13. The remaining portions of the electric wires 151 are bundled. When the head frame 12 and the center frame 13 are assembled, the other main connector is connected to the second electric motor 125.

[0090] This configuration can prevent the worker from inserting the main connector of the electric wire 151 into the wrong socket of the control unit 13B. This can simplify the assembly work of the electric bed 1 and reduce the burden on the worker.

[0091] In this modified example, the cord of the electric wire 151 is fixed at least at one point to the front-rear bar 130 of the main frame 13, but it does not have to be fixed to the front-rear bar 130. A part of the electric wire 151 may be configured as a curled cord, or the electric wire 151 may be provided with a winding section that automatically winds and stores the cord.

[0092] The cord 50A of the first motor electric wire 50 may be passed through the inside of the base frame 11, the cord 50A of the second motor electric wire 51 may be passed through the inside of the head frame 12, the cord 50A of the first relay electric wire 52 may be passed through the inside of the center frame 13, and the cord 50A of the second relay electric wire 53 may be passed through the inside of the center frame 13.

[0093] In the above embodiment, the first and second motor electric wires 50 and 51 have female relay connectors 50C and 51C, and the first and second relay electric wires 52 and 53 have male relay connectors 52C and 53C. However, the first and second motor electric wires 50 and 51 may have male relay connectors 52C and 53C, and the first and second relay electric wires 52 and 53 may have female relay connectors 50C and 51C. While the cover 50E is provided on the first motor electric wire 50 as a waterproofing mechanism, a cover having a waterproofing mechanism may be provided on the first relay electric wire 52. Furthermore, caps may be inserted into the multiple sockets (connectors) on the main body 139A of the control unit 13B when the electric bed 1 is disassembled and cleaned. The caps may be detachably provided on the cover 139B or may be provided as separate components. This prevents water from entering the sockets during cleaning. [Explanation of symbols]

[0094] 1: electric bed, 2: hand switch, 10 frame part (bed frame), 11: base frame (first part), 11B: X-link mechanism, 12: head frame (first part), 12B: arm mechanism, 13: center frame (second part), 13B: control unit (second electric device), 50: first motor electric wire (first electric wire), 51: second motor electric wire (first electric wire), 50C, 51C: female relay connector (first connector), 50E, 51E: cover portion, 52: first relay wire (second wire), 53: second relay wire (second wire), 52C, 53C: male relay connector (second connector), 50G, 53D: curled cord, 53E: winding portion, 54: hand switch wire, 118A: first electric motor (first electric device), 125: second electric motor (first electric device), 139B: cover, 139D: uneven portion, 151: electric wire

Claims

1. An electric bed having at least one first part and a second part, which can be in an assembled state in which they are connected to each other, and in a disassembled state in which they are separated from each other, the first component includes a first electric device and a movable mechanism driven by the first electric device; the second component has a second electrical device electrically connectable to the first electrical device for driving the movable mechanism; In the decomposed state, the following (1), (2), (3), (4), (5), and (6): (1) One end of a first electric wire is connected to the first electric device, and the other end of the first electric wire has a first connector; (2) One end of a second electric wire is connected to the second electric device, and the other end of the second electric wire has a second connector; (3) The first electric wire is arranged on the first component in a first arrangement and is fixed to the first component at at least one location; (4) The second electric wire is arranged on the second component in a second arrangement and is fixed to the second component at at least one point; (5) the first connector and the second connector are separated from each other; (6) The first arrangement and the second arrangement are selected so that the first connector and the second connector are positioned in a proximity to each other so as to be connectable to each other in the assembled state, and so that even if the movable mechanism is moved in a state in which the first connector and the second connector are connected, breakage of the first electric wire and the second electric wire does not occur, the first component is a base frame having a lifting mechanism as the movable mechanism and an actuator for the lifting mechanism as the first electric device, and / or a first frame provided on an upper portion of the base frame and having a raising / lowering mechanism for raising the back as the movable mechanism and an actuator for the raising / lowering mechanism as the first electric device, the second component is a second frame provided on an upper portion of the base frame and having a control unit for the lifting mechanism and the raising / lowering mechanism as the second electric device; Electric bed.

2. The electric bed according to claim 1 , wherein when the first component and the second component are assembled, the first connector and the second connector are connected to each other simultaneously.

3. 3. The electric bed according to claim 1, wherein a part of the first electric wire and / or the second electric wire is formed of a curled cord.

4. 3. The electric bed according to claim 1, wherein the first electric wire and / or the second electric wire is provided with a winding section that automatically winds and stores the electric wire.

5. The electric bed according to claim 1 , wherein the first connector and / or the second connector has a mechanism for preventing disconnection after connection.

6. The electric bed according to claim 1 , wherein the first connector and the second connector have a waterproof mechanism for preventing water from entering the inside.

7. An electric bed having at least one first part and a second part, which can be in an assembled state in which they are connected to each other, and in a disassembled state in which they are separated from each other, the first component includes a first electric device and a movable mechanism driven by the first electric device; the second component has a second electric device electrically connectable to the first electric device and configured to control the actuation of the movable mechanism; In the decomposed state, the following (1) and (2): (1) One end of an electric wire is connected to the second electric device, the electric wire is arranged in a predetermined position on the second part, and at least one point of the electric wire is fixed to the second part; (2) The predetermined arrangement is selected so that the other end of the electric wire can be connected to the first electric device in the assembled state; the first component is a base frame having a lifting mechanism as the movable mechanism and an actuator for the lifting mechanism as the first electric device, and / or a first frame provided on an upper portion of the base frame and having a raising / lowering mechanism for raising the back as the movable mechanism and an actuator for the raising / lowering mechanism as the first electric device, the second component is a second frame provided on an upper portion of the base frame and having a control unit for the lifting mechanism and the raising / lowering mechanism as the second electric device; Electric bed.

8. The electric bed according to claim 7, wherein the second electric device has a mechanism for preventing the electric wires from coming loose.

9. 9. The electric bed according to claim 7, wherein a part of the electric wire is formed of a curled cord.

10. 9. The electric bed according to claim 7, wherein the electric wire is provided with a winding section that automatically winds and stores the electric wire.

11. The first component includes a pair of front-rear bars extending in the front-rear direction of the electric bed and arranged at a predetermined interval in the left-right direction, and a left-right bar connecting the pair of front-rear bars, The electric bed according to claim 1 , wherein the first electric wire is arranged along one of the pair of front and rear bars.

12. The second component includes a pair of front-rear bars extending in the front-rear direction of the electric bed and arranged at a predetermined interval in the left-right direction, and a left-right bar connecting the pair of front-rear bars, The electric bed according to claim 1 , wherein the second electric wire is arranged along one of the pair of front and rear bars.

13. The first component includes a pair of front-rear bars extending in the front-rear direction of the electric bed and arranged at a predetermined interval in the left-right direction, a left-right bar connecting the pair of front-rear bars, and a stay extending in the front-rear direction and fixed to the left-right bars, The electric bed according to claim 1 , wherein the first electric wire is arranged along the stay.

14. The second component includes a pair of front-rear bars extending in the front-rear direction of the electric bed and arranged at a predetermined interval in the left-right direction, a left-right bar connecting the pair of front-rear bars, and a stay extending in the front-rear direction and fixed to the left-right bars, The electric bed according to claim 1 , wherein the second electric wire is arranged along the stay.

Citation Information

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