FULL BODY ROBOTIC MASSAGE SYSTEMS AND METHODS BODY STRETCHING
20200281806 · 2020-09-10
Assignee
Inventors
- Kevin Le (Richland Hills, TX, US)
- Thanh Le (Arlington, TX, US)
- Matthew Palmore (Grand Prairie, TX, US)
Cpc classification
A61H1/00
HUMAN NECESSITIES
A61H2230/065
HUMAN NECESSITIES
A61H2230/855
HUMAN NECESSITIES
A61H2230/203
HUMAN NECESSITIES
A61H9/0078
HUMAN NECESSITIES
A61H2230/305
HUMAN NECESSITIES
A61H2230/201
HUMAN NECESSITIES
A47C7/72
HUMAN NECESSITIES
A61H2015/0028
HUMAN NECESSITIES
A61H2230/505
HUMAN NECESSITIES
International classification
A61H15/00
HUMAN NECESSITIES
A47C31/12
HUMAN NECESSITIES
Abstract
A massage chair includes a back massage system and a thigh massage system with a roller mechanism configured to move a roller in a three dimensional orbital motion. The roller mechanism is driven by a single motor that can change the direction in operation. Also included is a roller motion drive element within the roller mechanism. A shaft is configured to pass through the roller motion drive element in an offset non-perpendicular angle relative to the end face thereby forming an angle between the shaft and the end face that is less than 85 degrees. The offset causes the orbital motion of the roller when rotated. The electronics of the massage chair facilitate facial recognition and a medical assessment device to detect bodily characteristics. The backrest of the massage chair can elongate to stretch the user. A plurality of airbags are also available for the twisting of the user.
Claims
1. A massage chair, comprising: a back massage system and a thigh massage system with a roller mechanism configured to move a roller in a three dimensional orbital motions, the roller mechanism being driven by a single motor that can be changed the direction and controlled for different roller motions; and a roller motion drive element to hold or support a driving ball bearing, the roller motion drive element having an aperture for a driving shaft to pass through; wherein said driving shaft configured to pass through the roller motion drive element in an offset non-perpendicular angle relative to the driving ball bearing side face, and the shaft passes through the said ball bearing side face at a location in an offset to ball bearing's center point.
2. The massage chair of claim 1, wherein the roller mechanism includes an arm coupled to the roller motion drive element.
3. The massage chair of claim 1, further comprising: a brushless motor and a ball joint coupled to an arm at the roller motion drive element, whereas, the ball joint and arm material is metal for improving the product lifetime.
4. The massage chair of claim 1, further comprising an actuator wherein the length of said actuator can be adjusted and locked.
5. The massage chair of claim 1, further comprising: a neck roller mechanism located in a headrest pillow attached to the backrest of the massage chair, the neck rollers move in a three-dimensional motion, and rollers are driven by a single motor.
6. The massage chair of claim 1, further comprising: an electronic circuit board having an embedded software program for monitoring the performance of the back massage system and the thigh massage system, the electronic circuit board configured to transmit to and receive data from manufacture via internet or a network for the trouble shooting and service of the massage chair.
7. The massage chair of claim 1, further comprising: a second roller mechanism, the second roller mechanism coupled to a frame of the massage chair. The first and second roller mechanisms comprise sensors and can communicate directly or via a chair electronic circuit board to avoid collision during operation.
8. The massage chair of claim 1, further comprising: a virtual reality system and an electronic circuit board, the virtual reality system and the electronic circuit board configured to relay data so as to sync operational performance of the massage chair with visual data displayed to a user.
9. The massage chair of claim 1, further comprising: a camera associated with an electronic circuit board, the camera configured to capture an image of a user, can process facial recognition, the circuit board configured to process the image and relate it to a user profile.
10. The massage chair of claim 1, further comprising: an integrated smart medical device configured to include a sensor to measure bodily characteristics of a user from a finger tip, wherein, the bodily characteristics are at least any of the following: blood pressure, heart rate, body temperature, blood sugar, and oxygen level, data regarding the bodily characteristics are displayed on a screen.
11. A massage chair, comprising: a back massage system and a thigh massage system with a roller mechanism configured to move a roller in a three dimensional orbital motion, the roller mechanism being driven by a single motor that can be changed the direction and controlled for different roller motions; a roller motion drive element to hold or support a driving ball bearing, the roller motion drive element having an aperture for a driving shaft to pass through; and whereas, said driving shaft configured to pass through the roller motion drive element in an offset non-perpendicular angle relative to the driving ball bearing side face; and a sliding or extendable mechanism coupled to a frame of the massage chair, the extendable mechanism configured to selectively extend and retract the frame, the extendable mechanism powered by an actuator during body stretching so as to induce a spinal decompression effect.
12. The massage chair of claim 11, wherein said sliding or extendable mechanism is powered by an actuator, wherein the length of said actuator can be adjusted or calibrated and locked.
13. The massage chair of claim 11, further comprising: an electronic circuit board having an embedded software program for monitoring the performance of the back massage system and the thigh massage system, the electronic circuit board configured to transmit to and receive data from manufacture via internet or a network for the trouble shooting and service of the massage chair.
14. The massage chair of claim 11, further comprising: a second roller mechanism, the second roller mechanism coupled to a frame of the massage chair. The first and second roller mechanisms comprise sensors and can communicate directly or via a chair electronic circuit board to avoid collision during operation.
15. The massage chair of claim 11, further comprising: a virtual reality system and an electronic circuit board, the virtual reality system and the electronic circuit board configured to relay data so as to sync operational performance of the massage chair with visual data displayed to a user.
16. The massage chair of claim 11, further comprising: a camera associated with an electronic circuit board, the camera configured to capture an image of a user, can process facial recognition, the circuit board configured to process the image and relate it to a user profile.
17. The massage chair of claim 11, further comprising: an integrated smart medical device configured to include a sensor to measure bodily characteristics of a user. wherein the bodily characteristics are at least any of the following: blood pressure, heart rate, body temperature, blood sugar, and oxygen level, data regarding the bodily characteristics are displayed on a screen.
18. The massage chair of claim 11, wherein a backrest and a seat of the massage chair includes a plurality of airbags, wherein a body twisting stretch is induced by inflating a first diagonal pair air bags between the backrest and the seat followed by a release of the air therein and subsequently then inflating the second diagonal pair of airbags between the backrest and the seat followed by releasing the air.
19. The massage chair of claim 11, further comprising: a brushless motor and a ball joint coupled to an arm at the roller motion drive element, whereas, the ball joint and arm material is metal for improving the product lifetime.
20. A massage chair, comprising: a chair frame having a back portion and a seat portion; a sliding or extendable mechanism coupled to the back portion of the chair frame, the extendable mechanism configured to selectively extend and retract the back portion, the extendable mechanism powered by an actuator during body stretching so as to induce a spinal decompression effect, the length of the actuator being adjustable; a plurality of airbags configured to selectively inflate and deflate, the plurality of airbags in communication with at least one of the back portion and the seat portion, the selective operation of the airbags configured to induce a twisting or stretching effect upon the user; and an electronic circuit board having an embedded software program for regulating the position of the extendable mechanism, the electronic circuit board communicating with a compressor and a valve to regulate operation of the plurality of airbags, the electronic circuit board configured to perform a body scan with a roller mechanism using motor current sensing.
21. The massage chair of claim 20, further comprising: a neck roller mechanism located in a headrest pillow attached to the backrest of the massage chair, the neck rollers move in a three-dimensional motion, and rollers are driven by a single motor.
22. The massage chair of claim 20, wherein the electronic circuit board is configured to transmit and receive data for the trouble shooting and service of the massage chair.
23. The massage chair of claim 20, further comprising: a pair of roller mechanisms coupled to the chair frame.
24. The massage chair of claim 20, further comprising: a virtual reality system in communication with the electronic circuit board, the virtual reality system and the electronic circuit board configured to relay data so as to sync operational performance of the massage chair with visual data displayed to a user.
25. The massage chair of claim 20, further comprising a configuration of four airbags located on the backrest and the seat of the massage chair, whereas, a body twisting stretch is induced by Inflating a first diagonal pair air bags followed by a release of the air; subsequently then inflating the second diagonal pair of airbags then releasing the air.
26. The massage chair of claim 20, wherein said sliding or extendable mechanism is powered by an actuator, wherein the length of said actuator can be adjusted or calibrated and locked.
27. The massage chair of claim 26, wherein the bodily characteristics are at least any of the following: blood pressure, heart rate, body temperature, blood sugar, and oxygen level, data regarding the bodily characteristics are displayed on a screen.
28. A method for body scanning in a massage chair, comprising: driving a mechanism along the body of the user; poking on the user's back with a roller as the mechanism is moving, the roller moving forward and backward by driving an intensity control motor; recording a current from the intensity control motor along with a correlated distance at which the roller moves out from a base line; and processing the recorded current data to generate a body shape by locating shoulder, neck, lower back, mid back, and upper back positions of the user.
29. The method of claim 28, further comprising: adjusting a massage routine or profile of the user in accordance with the detected body size of the user.
30. The method of claim 28, further comprising: selecting a detection accuracy for the body scan by selecting the quantity of poking actions with the roller.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0019] The novel features believed characteristic of the application are set forth in the appended claims. However, the application itself, as well as a preferred mode of use, and further objectives and advantages thereof, will best be understood by reference to the following detailed description when read in conjunction with the accompanying drawings, wherein:
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[0044] While the embodiments and method of the present application is susceptible to various modifications and alternative forms, specific embodiments thereof have been shown by way of example in the drawings and are herein described in detail. It should be understood, however, that the description herein of specific embodiments is not intended to limit the application to the particular embodiment disclosed, but on the contrary, the intention is to cover all modifications, equivalents, and alternatives falling within the spirit and scope of the process of the present application as defined by the appended claims.
DETAILED DESCRIPTION OF THE INVENTION
[0045] Illustrative embodiments of the preferred embodiment are described below. In the interest of clarity, not all features of an actual implementation are described in this specification. It will of course be appreciated that in the development of any such actual embodiment, numerous implementation-specific decisions must be made to achieve the developer's specific goals, such as compliance with system-related and business-related constraints, which will vary from one implementation to another. Moreover, it will be appreciated that such a development effort might be complex and time-consuming but would nevertheless be a routine undertaking for those of ordinary skill in the art having the benefit of this disclosure.
[0046] In the specification, reference may be made to the spatial relationships between various components and to the spatial orientation of various aspects of components as the devices are depicted in the attached drawings. However, as will be recognized by those skilled in the art after a complete reading of the present application, the devices, members, apparatuses, etc. described herein may be positioned in any desired orientation. Thus, the use of terms to describe a spatial relationship between various components or to describe the spatial orientation of aspects of such components should be understood to describe a relative relationship between the components or a spatial orientation of aspects of such components, respectively, as the embodiments described herein may be oriented in any desired direction.
[0047] The embodiments and method will be understood, both as to its structure and operation, from the accompanying drawings, taken in conjunction with the accompanying description. Several embodiments of the assembly may be presented herein. It should be understood that various components, parts, and features of the different embodiments may be combined together and/or interchanged with one another, all of which are within the scope of the present application, even though not all variations and particular embodiments are shown in the drawings. It should also be understood that the mixing and matching of features, elements, and/or functions between various embodiments is expressly contemplated herein so that one of ordinary skill in the art would appreciate from this disclosure that the features, elements, and/or functions of one embodiment may be incorporated into another embodiment as appropriate, unless otherwise described.
[0048] Referring now to the Figures wherein like reference characters identify corresponding or similar elements in form and function throughout the several views. The following Figures describe embodiments of the present application and its associated features. With reference now to the Figures, embodiments of the present application are herein described. It should be noted that the articles a, an, and the, as used in this specification, include plural referents unless the content clearly dictates otherwise.
[0049] Referring now to
[0050] In particular with
[0051] Referring now also to
[0052] Sliding or extendable mechanism 115 includes a slider assembly 119 having a slider 121 and a coupler 120. The coupler 120 is coupled to rails 113. Frame 103 has a track 114 that is stationary within backrest 104. Rails 113 are configured to selectively translate along track 114 in a linear manner. It is understood that sliding tubes or rollers may be used to facilitate the translating motion of rails 113 with respect to the stationary track. Sliding or extendable mechanism 115 may be either located wholly within backrest 104 or may extend into a portion of seat portion 106. Line A in
[0053] Further included in Sliding or extendable mechanism 115 is actuator 117. Actuator 117 is located between rails 113 and engages a horizontal support bar at a first end and base 102 at a second end. Actuator 117 is selectively operated to elongate and or retract in length. This adjustment in length pushes or pulls on rails 113, thereby extending and retracting backrest 104. It is understood that many types of structural embodiments may be developed to facilitate the linear translation of backrest 104 and that the method depicted is only one such method. Actuator 117 may be located between any other portions of frame 103 as long as one portion is in communication with rails 113.
[0054] It should be understood that sliders 121 within slider assembly 119 are anchored to a stationary point in frame 103, such as the stationary track and/or seat portion 106 for example.
[0055] Referring now also to
[0056] Referring now also to
[0057] As seen in
[0058] Referring back to
[0059] Referring now also to
[0060] Airbags 111 are configured to be selectively filled and drained of air in an effort to effectuate a massage or treatment to the physical body of the user. Each airbag 111 is coupled in fluid communication to a bank of valves 203, wherein one or more valves are used to regulate the air pressure within the one or more airbags 111. Each valve in the bank of valves 203 is in fluid communication with air compressor 205. Board 209 is configured to regulate operation of valves 203 via electrical current to facilitate the passage of air through valves 203. Board 209 also regulates or controls the motors used with the frames and massagers of chair 101. Power supply 207 provides power. Remote control 211 is configured to provide a user interface to the control of system 201. Remote control 211 may be incorporated into a remote control device (see
[0061] Referring now to
[0062] Referring now also to
[0063] As stated previously, different methods of operation may exist to induce a body twisting effect during a massage on the user. Examples may include the following: During back stretching, inflating airbags 111c-111d will increase the stretching effect at lower back. During foot and leg stretching, inflating airbags 111e-111f will increase the intensity of foot and leg stretching effect. A body twisting stretch is induced by Inflating a first diagonal pair air bags (For example: airbags 111c and 111f) followed by a release of the air; subsequently then inflating the second diagonal pair of airbags 111d and 111e then releasing the air. The intensity of induced stretching can be controlled by the air valves discussed in
[0064] Referring now also to
[0065] Referring now also to
[0066] Driving motor 127 is used to operate a massage intensity control function. Motor 127 acts to move a gear 132 along a gear track 133 to alter the position of a roller drive assembly 137. Motor 127 rotates assembly 137 about a lower shaft that also provides rotating axis for wheels 134 and gears in
[0067] Referring now also to
[0068] Referring now also to
[0069] Referring now to
[0070] Referring now also to
[0071] Referring now also to
[0072] A ball joint 147 attaches to a distal end of arm 139. Joint 147 is a member having a ball at opposing ends with a rod therebetween. One ball is coupled to arm 139 and the other end is coupled to a portion of mechanism 109. The ball of joint 147 engaged with arm 139 sits within a socket (not shown) to allow rotational movement.
[0073] Roller assembly 137 also includes a controller 141 with a processor and software. The controller 141 is configured to interface with the motors and sensors of mechanism 109 for accurate massage control and to eliminate electro-magnetic noise interferences.
[0074] Referring now also to
[0075] Referring now also to
[0076] As seen, mechanism 153 includes a roller coupled to a movable arm. Also included are a plurality of airbags 111c coupled to a lower portion of headrest 112. When inflated, airbags 111c compress against the shoulders and neck area of a user. Airbags 111c are similar in form and function to that of airbags 111. A sensor 125d monitors the maximum and minimum width of the rollers. When a massage cycle is complete the roller are parked at a max width position so the user can rest comfortably against headrest 112.
[0077] Referring now also to
[0078] An exemplary manner in which system 155 may detect the size and/or shape of the user is as follows: An electronic control board or controller 141 is used to drive mechanism 109 along the body of the user. This may be from the lower back to the head for example. The massage rollers 135 are set to a max width. The rollers will poke on the user's back as mechanism 109 traverses along frame 103. Along the way, mechanism 109 will push the rollers forward and backward by driving the intensity control motor 127. During this process, the current of the intensity motor 127 is recorded along with the correlated distance at which rollers 135 move out from a base line. The distance is detected by a revolution counting sensor or by counting time elapsed. When the rollers pass the shoulder level, the rollers will experience a no or light load situation and the shoulder position is detected by this condition, the condition where the load substantially decreases. The recorded data is used to compute a body shape, and locate the shoulder, neck, lower back, mid back, and upper back positions of the user. This data is used by the chair software to adjust the massage routine or profile and to provide a massage profile that is best fit for the user sitting in the chair. The number of pokes by rollers 135 determine the resolution of the body scan. The higher number of pokes results a higher detection accuracy. The body detection data is displayed on a keypad or remote screen.
[0079] Referring now back to
[0080] Referring now also to
[0081] It is understood that chair 101 may be used in various different ways apart from those illustrated and disclosed herein while being within the scope and intent of the embodiments. Use may include a massage chair to provide massage effects to at least a user's body, feet, legs, and back areas. The massage chair uses a software algorithm with board 163 to control the procedures and operations of the chair 101. These may include inflating the airbags 111 to hold and squeeze the user's body or manipulate its movement.
[0082] It is understood that one or more computers or electronic devices may be associated and included within chair 101. Among these are electronic circuit boards that may include embedded software program for monitoring the performance of the back massage system and the thigh massage system, or any other system, device, sensor or component of chair 101. The computers and electronic circuit board are configured to transmit and receive data from one or more remote devices through wired or wireless methods. This data transmission is useful for trouble shooting and the service of the massage chair 101.
[0083] Referring now also to
[0084] The particular embodiments disclosed above are illustrative only, as the application may be modified and practiced in different but equivalent manners apparent to those skilled in the art having the benefit of the teachings herein. It is therefore evident that the particular embodiments disclosed above may be altered or modified, and all such variations are considered within the scope and spirit of the application. Accordingly, the protection sought herein is as set forth in the description. It is apparent that an application with significant advantages has been described and illustrated. Although the present application is shown in a limited number of forms, it is not limited to just these forms, but is amenable to various changes and modifications without departing from the spirit thereof.