easy chair
The easy chair integrates a movable ottoman with an electric actuator and control unit for posture and muscle training, addressing the need for muscle training without increasing complexity or cost.
Patent Information
- Application Number
- JP2022077030
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2022-05-09
- Publication Date
- 2025-11-06
- Estimated Expiration
- 2042-05-09
AI Technical Summary
Existing easy chairs lack integrated muscle training functionality, and adding such features often results in increased complexity, cost, and space requirements.
An easy chair with a movable part (e.g., ottoman) driven by an electric actuator and controlled by a microcomputer, allowing for posture change and muscle training modes, utilizing a speed reduction mechanism to minimize additional moving parts and provide adjustable resistance.
Enables muscle training without significantly increasing the chair's complexity or cost, offering a lightweight and space-efficient way to enhance seating functionality.
Smart Images

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Abstract
Description
[Technical Field]
[0001] The present disclosure relates to an easy chair. [Background technology]
[0002] As shown in Patent Document 1, an easy chair is provided with a movable part for changing the seating position. [Prior art documents] [Patent documents]
[0003] [Patent Document 1] Japanese Patent Application Publication No. 5-137630 Summary of the Invention [Problem to be solved by the invention]
[0004] In recent years, the health and fitness related market has been attracting attention, and the present disclosure discloses an example of an invention in consideration of this point. [Means for solving the problem]
[0005] An easy chair having a movable part (7) for changing the seating position preferably has at least one of the following constituent features. That is, the constituent elements are a movable mechanism (9) that displaces the movable part (7), the movable mechanism (9) having at least an electric actuator (9A), and a control unit (10) that controls the operation of the electric actuator (9A), and that is capable of executing a posture change mode that displaces the movable part (7) to change the seating posture, and a muscle training mode for muscle training that utilizes the movable resistance generated when the user applies force to the movable part (7) to displace the movable part (7).
[0006] This allows the user of the armchair to use the movable part (7) to change the seating position for strength training. Furthermore, since the movable part (7) is used to change the seating position, the increase in the number of movable parts dedicated to strength training can be suppressed. As a result, strength training functionality can be added to an armchair in a lightweight, space-saving, and inexpensive manner.
[0007] The easy chair may have the following configuration, for example. That is, the electric actuator (9A) is an electric motor, the movable mechanism (9) has a speed reduction mechanism (9B), the speed reduction mechanism (9B) is a gear mechanism having multiple gears and reducing the rotation of the electric motor (9A) before outputting it to the movable part (7), and further, the movable resistance is preferably a rotational resistance that occurs when a rotational force is applied to the output side of the speed reduction mechanism (9B) to rotate the multiple gears. This makes it possible to prevent an increase in the number of movable parts dedicated to muscle training in the easy chair.
[0008] When the strength training mode is executed, the control unit 10 preferably rotates the electric motor 9A so as to assist the displacement of the movable unit 7. This makes it possible to easily change and control the load (hereinafter also referred to as the training load) when the strength training mode is executed.
[0009] It is preferable that the vehicle includes an external force detection unit (10A) that detects an external force acting on the movable unit (7), and the control unit (10) rotates the electric motor (9A) using the magnitude of the external force detected by the external force detection unit (10A).It is also preferable that the vehicle includes a fixed unit (11) that is fixed directly or indirectly to the vehicle.
[0010] Incidentally, the symbols in each of the parentheses above are examples showing the correspondence with the specific configurations, etc. described in the embodiments described below, and the present disclosure is not limited to the specific configurations, etc. shown by the symbols in the parentheses above. [Brief explanation of the drawings]
[0011] [Figure 1]1 is a diagram showing an easy chair according to a first embodiment. FIG. [Figure 2] 1A to 1C are diagrams illustrating the operation of the easy chair according to the first embodiment. [Figure 3] 10 is a graph showing an example of the relationship between external force and motor output. DETAILED DESCRIPTION OF THE INVENTION
[0012] The following "embodiments of the invention" are examples of embodiments that fall within the technical scope of the present disclosure. In other words, the invention-specific matters described in the claims are not limited to the specific configurations and structures shown in the following embodiments.
[0013] In this embodiment, an easy chair according to the present disclosure is applied to a seat (hereinafter referred to as a vehicle seat) mounted on a vehicle such as a car. Arrows and diagonal lines indicating directions are added to each figure to make it easier to understand the relationship between the figures and the shapes of components or parts.
[0014] Therefore, the easy chair is not limited to the orientation shown in each drawing, which is the orientation when the vehicle seat according to this embodiment is assembled in a vehicle.
[0015] At least one of each element or portion designated by a symbol and described is provided unless otherwise specified. In other words, unless otherwise specified, two or more elements may be provided. The easy chair shown in this disclosure includes at least the elements or portions designated by a symbol and described, as well as the structural elements shown in the drawings.
[0016] (First embodiment) <1. Overview of easy chairs (vehicle seats)> As shown in Fig. 1, the easy chair 1 comprises at least a seat cushion 3, a seat back 5, and an ottoman 7. The seat cushion 3 is a part for supporting the buttocks of a seated person. The seat back 5 is a part for supporting the back of a seated person.
[0017] The ottoman 7 is a portion for supporting the legs (particularly the calves) of a seated person. In the easy chair 1 according to this embodiment, at least the seat back 5 and the ottoman 7 are displaceable relative to the seat cushion 3.
[0018] That is, the seat back 5 is disposed at the rear end side of the seat cushion 3 and is capable of swinging in the front-rear direction of the seat around the lower end side of the seat back 5. The ottoman 7 is disposed at the front end side of the seat cushion 3 and is capable of swinging in the front-rear direction of the seat around the upper end side of the ottoman 7.
[0019] This allows the occupant sitting in the easy chair 1 to select a sitting position that is comfortable for them. In other words, the seat back 5 and the ottoman 7 are examples of movable parts for changing the sitting position.
[0020] The seat back 5 and the ottoman 7 are displaced by receiving a driving force from an electric moving mechanism. For example, the moving mechanism 9 for the ottoman 7 is configured to include at least an electric motor 9A and a speed reduction mechanism 9B.
[0021] The electric motor 9A is an example of an electric actuator that generates a driving force. The speed reduction mechanism 9B has multiple gears and reduces the rotation speed of the electric motor 9A, thereby increasing the rotational force of the electric motor 9A and outputting it to the ottoman 7.
[0022] The speed reduction mechanism 9B according to this embodiment is made up of a worm 9C and a worm wheel (helical gear) 9D. The rotational force of the electric motor 9A is input to the worm 9C. The output of the worm wheel 9D is input to the ottoman 7.
[0023] The easy chair 1 according to this embodiment also includes a sliding device 11. The sliding device 11 is an example of a fixing part that directly or indirectly fixes the easy chair 1 to a vehicle. The sliding device 11 according to this embodiment is a mechanism that can switch between a case where the easy chair 1 is movable and a case where it is not movable.
[0024] <2. Control Unit> <2.1 Overview of the control unit, etc.> The easy chair 1 also includes a control unit 10 and a pressure sensor 10A. The control unit 10 controls the operation of the electric motor 9A. The control unit 10 is configured by a microcomputer having a CPU, ROM, RAM, etc.
[0025] The electric motor 9A is controlled by a CPU that executes software, which is stored in advance in a non-volatile storage unit (not shown) such as a ROM.
[0026] The pressure sensor 10A is an example of an external force detection unit that detects an external force acting on the ottoman 7. For example, when a seated person presses their calves against the ottoman 7, the pressure sensor 10A detects the pressure generated on the surface of the ottoman 7 by the action and transmits a signal corresponding to the pressure to the control unit 10.
[0027] <2.2. Control of the control unit> The control unit 10 can execute a posture change mode and a muscle training mode. A user of the easy chair 1, such as a seated person, can select either mode by operating a mode selection switch (not shown).
[0028] The posture change mode is a control mode in which the ottoman 7 is displaced to change the seated posture, and the muscle training mode is a control mode in which the resistance to movement generated when the ottoman 7 is displaced is used to increase muscle strength.
[0029] The movable resistance is a rotational resistance that occurs when a rotational force is applied to the output side of the reduction mechanism 9B and the worm 9C, the worm wheel 9D, and the rotor (not shown) of the electric motor 9A are rotated.
[0030] In the muscle training mode, a user, such as a seated person, applies force to the ottoman 7 (see FIG. 2). At this time, the control unit 10 rotates the electric motor 9A so as to assist the displacement of the ottoman 7.
[0031] Specifically, when a user applies force to the ottoman 7 in the direction indicated by the arrow in Figure 2, the control unit 10 uses the magnitude of the external force detected by the pressure sensor 10A to rotate the electric motor 9A so that the ottoman 7 is displaced in the direction of the arrow.
[0032] As shown in FIG. 3, the control unit 10 according to this embodiment controls the electric motor 9A so that the output (rotational force) of the electric motor 9A increases as the external force detected by the pressure sensor 10A increases.
[0033] <3. Features of the easy chair according to this embodiment> The armchair 1 according to this embodiment can operate in a posture change mode and a muscle training mode, allowing the user of the armchair 1 to perform muscle training by using a movable part (e.g., ottoman 7) for changing the sitting posture.
[0034] Furthermore, since the ottoman 7 is used to change the seating posture, the number of moving parts dedicated to muscle training can be reduced, making it possible to add muscle training functionality to the easy chair 1 in a lightweight, space-saving, and inexpensive manner.
[0035] In the strength training mode of the armchair 1, a training load is generated by utilizing the rotational resistance that occurs when the multiple gears that make up the speed reduction mechanism 9B are rotated, thereby making it possible to prevent the armchair 1 from increasing the number of moving parts dedicated to strength training.
[0036] In other words, the maximum training load in the strength training mode of the easy chair 1 is when there is no displacement assistance from the electric motor 9A. The greater the displacement assistance from the electric motor 9A, the smaller the training load. Therefore, in the strength training mode of the easy chair 1 according to this embodiment, the training load can be easily changed and controlled.
[0037] (Other embodiments) When the muscle strength training mode is executed, the control unit 10 according to the above embodiment rotates the electric motor 9A so as to assist the displacement of the ottoman 7. However, the present disclosure is not limited to this.
[0038] That is, in this disclosure, for example, the control unit 10 may control the electric motor 9A so that a braking force (regenerative braking force) is generated by the electric motor 9A. Note that in this control, the maximum training load can be made larger than in the above-described embodiment.
[0039] In the above-described embodiment, the pressure sensor 10A detects the external force acting on the movable part such as the ottoman 7. However, the present disclosure is not limited to this. That is, the disclosure may, for example, detect the displacement acceleration of the ottoman 7 and use the detected acceleration to detect the external force acting on the ottoman 7. Note that the displacement acceleration may be detected, for example, by using the magnitude of the back electromotive force generated in the electric motor 9A, or by providing an acceleration sensor in the ottoman 7.
[0040] In the above-described embodiment, the output of the electric motor 9A is controlled in accordance with the magnitude of the external force acting on the movable parts such as the ottoman 7. However, the present disclosure is not limited to this. That is, the present disclosure may be configured, for example, to control the electric motor 9A so that the training load is a training load preset by the user.
[0041] The easy chair 1 according to the above embodiment may be provided with a storage unit for storing exercise history data and a display that allows the user to easily visualize their exercise performance and progress. This configuration may increase the user's motivation.
[0042] In the above-described embodiment, the ottoman 7 is used as the movable part for the muscle training mode. However, the present disclosure is not limited to this. That is, the present disclosure may be configured such that the muscle training mode can be executed using other movable parts, such as a seat back.
[0043] In the above-described embodiment, the vehicle seat according to the present disclosure is applied to a vehicle. However, the application of the invention disclosed in this specification is not limited thereto. That is, the present disclosure can also be applied to seats used in vehicles such as railway cars, ships, and aircraft, as well as stationary seats used in theaters, homes, etc. Note that in stationary seats, the sliding device 11, which forms the fixed portion, may be eliminated.
[0044] Furthermore, the present disclosure is not limited to the above-described embodiments as long as it conforms to the spirit of the disclosure described in the above-described embodiments. Therefore, the present disclosure may be a configuration in which at least two of the above-described embodiments are combined, or a configuration in which any of the components illustrated or described with reference numerals in the above-described embodiments is eliminated. [Explanation of symbols]
[0045] 1. Easy chair 3. Seat cushion 5... Seat back 7. Ottoman 9… Movable mechanism 9A... Electric motor 9B… Reduction mechanism 9C... Warm 9D... Worm wheel 10... Control section 10A... Pressure sensor 11... Slide device
Claims
1. In an easy chair having a movable part for changing the sitting position, a movable mechanism for displacing the movable part, the movable mechanism including an electric motor and a gear mechanism including a plurality of gears that decelerates the rotation of the electric motor and outputs the reduced rotation to the movable part; a control unit that controls the operation of the electric motor and is capable of executing a posture change mode and a muscle strength training mode; the posture change mode is a control mode in which the movable part is displaced to change the seating posture, the muscle strength training mode is a control mode for muscle strength training that utilizes a moving resistance that is generated when a user applies a force to the movable part to displace the movable part, When the control unit is executing the muscle strength training mode, it controls the electric motor to assist the displacement of the movable part, so that the training load becomes maximum when there is no displacement assistance from the electric motor, and the greater the displacement assistance from the electric motor, the smaller the training load becomes.
2. an external force detection unit that detects an external force acting on the movable unit; 2. The easy chair according to claim 1, wherein the control unit rotates the electric motor by utilizing the magnitude of the external force detected by the external force detection unit.
3. 3. An easy chair according to claim 1 or 2, which has a fixing part that is fixed directly or indirectly to a vehicle.
4. In a vehicle seat to be mounted on a vehicle, A movable part for changing the seating position; a movable mechanism for displacing the movable part, the movable mechanism including an electric motor and a gear mechanism including a plurality of gears that decelerates the rotation of the electric motor and outputs the reduced rotation to the movable part; a control unit that controls the operation of the electric motor and is capable of executing a posture change mode and a muscle strength training mode; the posture change mode is a control mode in which the movable part is displaced to change the seating posture, the muscle strength training mode is a control mode for muscle strength training that utilizes a moving resistance that is generated when a user applies a force to the movable part to displace the movable part, When the control unit is executing the muscle strength training mode, it rotates the electric motor to assist the displacement of the movable part, so that the maximum training load in the muscle strength training mode is a state in which there is no displacement assistance from the electric motor, and the greater the displacement assistance from the electric motor, the smaller the training load.
Citation Information
Patent Citations
Easy chair
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