TECHNICAL FIELD
[0001] The invention relates generally to massage machines and, more particularly, to a
massage machine capable of adjusting massage strength.
BACKGROUND ART
[0002] Massage machines with functions for adjusting massage strength have been traditionally
provided (see e.g., Japanese Patent Application Publication No.
2002-369854). In such a massage machine, the arrival position of a treatment element is changed
by changing a start position in massage operation of the treatment element. Relative
movement distance of the treatment element from its start position to arrival position
is the same even if the strength is changed.
[0003] Accordingly, it is difficult to provide multiple adjustment levels of massage strength,
resulting in monotone massage operation.
DISCLOSURE OF THE INVENTION
[0004] The present invention is provided in view of the conventional problem described above,
and an object is to provide a massage machine capable of having more ample variations
(strong and weak levels).
[0005] A massage machine of the present invention comprises a treatment element to be contacted
with a human body, and is configured to change an extending length of the treatment
element to the human body side to give a massage of variable strength to the human
body. The massage machine also comprises a control circuit configured to control cyclic
movement of the treatment element in an extending direction of the treatment element
to the human body side so that the treatment element extends from a first position
to a second position to return to the first position. In an aspect of the invention,
the control circuit is configured to change at least one of the first position and
the second position so that movement distance from the first position to the second
position is changed in accordance with an instruction for changing massage strength.
Preferably, the control circuit is further configured to change both the first position
and the second position while keeping the movement distance from the first position
to the second position in accordance with an instruction for changing massage strength.
[0006] In this invention, the movement distance from the first position to the second position
can be changed. Accordingly, it is possible to have more ample variations (strong
and weak levels) concerning massage strength adjustment in comparison with prior art
massage machine that shifts first and second positions while keeping the movement
distance.
[0007] In an embodiment, the control circuit is configured to move the treatment element
based on time varying target positions. In this embodiment, the memory of the control
circuit can be reduced, and multiple strength adjustments can be performed at a moderate
price.
[0008] In an embodiment, the control circuit is configured to move the treatment element
based on time varying target positions in a plurality of directions. In this embodiment,
the treatment element can be operated by a time function with respect to axes, and
accordingly it is possible to increase variations of treatment operations in a plurality
of directions at a moderate price.
[0009] In an embodiment, the control circuit is configured to determine the second position
based on massage force detected with a massage force detecting means. In this embodiment,
the second position can be set by massage force, and accordingly force pushing the
human body is prevented from being too large in safety.
[0010] In an embodiment, the control circuit is configured to determine the second position
based on a position of the treatment element detected with a treatment element position
sensing means. In this embodiment, the treatment element is driven up to a predetermined
second position, and accordingly even if body weight is heavy, change of strength
level can be easily understood.
[0011] In an embodiment, the control circuit is configured to change the first position
and the second position in response to each region of the subject's human body. In
this embodiment, an appropriate massage can be given to each region of the human body.
[0012] In an embodiment, the control circuit is configured to change the first position
and the second position in three-dimensional directions in response to each region
of the subject's human body. In this embodiment, the first positions and the second
positions are changed in three-dimensional directions, and thereby treatment direction
can be varied.
[0013] In an embodiment, the massage machine comprises an operating portion for change instruction
of the massage strength. The operating portion is configured capable of setting massage
strength on each region of the human body. In this embodiment, a subject can adjust
massage strength level by region per se. Accordingly, distastefulness due to strong
or weak massage on only specific region is resolved. Subject can receive a massage
having the favorite strength with respect to every region.
[0014] In an embodiment, the control circuit is configured to set, in response to massage
strength setting or a region to be massaged, strength adjustment that the second position
is fixed and only the first position is changed, and strength adjustment that the
first position is fixed and only the second position is changed. In this embodiment,
it is possible to perform an optimum massage operation in response to a region and
massage strength.
[0015] In an embodiment, the massage machine of claim 1, comprising a plurality of automatic
courses for automatically massaging the whole body in accordance with procedures of
a preset probarm. The control circuit is configured to change the first position and
the second position by course. In this embodiment, strength difference in the automatic
courses is easily understandable. In a strong course, strong feel is easily obtained.
In a weak course, weak feel is easily obtained.
[0016] In an embodiment, the massage machine comprises a favorite course capable of selecting
a favorite massage with respect to a favorite region. The control circuit is configured
to change the first position and the second position at each of the automatic courses
and the favorite course. In this embodiment, strength levels can be set more finely
at one of the automatic courses and the favorite course, thereby making ample massage
strength variations.
[0017] In an embodiment, the massage machine comprises a display part configured to display
the first position and the second position. In this embodiment, it is possible to
indicate, to a subject, which position a massage is started from and which position
the treatment element is extended up to.
BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Preferred embodiments of the invention will now be described in further details.
Other features and advantages of the present invention will become better understood
with regard to the following detailed description and accompanying drawings where:
FIG. 1 is an explanatory diagram of operation of a massage machine in accordance with
an embodiment of the present invention;
FIG. 2A is a schematic diagram showing a sectional view of the massage machine, and
FIG. 2B is an explanatory diagram of movement of a treatment element in the massage
machine;
FIG. 3 is an explanatory diagram of control of the treatment element;
FIGS. 4A and 4B are an explanatory diagram of control of the treatment element each;
FIG. 5 is an explanatory diagram of control of the treatment element;
FIG. 6 is an explanatory diagram of control of the treatment element;
FIG. 7 is an explanatory diagram of force control of the treatment element;
FIG. 8 illustrates each operation of treatment elements in the massage machine;
FIG. 9 illustrates each operation of treatment elements in the massage machine;
FIG. 10 is a front view of an operating portion in the massage machine; and
FIG. 11 shows a display example of the operating portion in the massage machine.
BEST MODE FOR CARRYING OUT THE INVENTION
[0019] The present invention is explained based on embodiments in the accompanying drawings.
FIG. 2 shows a massage machine located in a backrest 5 of a chair (e.g., massage chair).
The massage machine is configured so that each of treatment element (massage heads)
1 extending forward of the backrest 5 performs movement for changing its own extending
length to a human body and thereby the machine gives the human body a variable strength
massage. In the example of FIG. 2A, the massage machine includes two treatment elements
1 located at right and left.
[0020] The massage machine includes a driver 2, a control circuit 3, an operating portion
4 and so on. The driver 2 is configured to drive each treatment element 1. The control
circuit 3 is configured to control the operation of the driver 2 so that each treatment
element 1 gives a massage to a subject. The operating portion 4 is configured so that
the subject can operate (adjust) massage strength. That is, if the subject adjusts
the massage strength through the operating portion 4, the massage strength can be
adjusted. As shown in FIG. 2B, a treatment element's (1) movement in one cycle for
giving a massage takes a track that the treatment element 1 extends from a start position
P1 (a first position) to an arrival position P2 (a second position) and then return
from the arrival position P2 to the start position P1. FIGS. 2A and 2B show only the
operation in an extending direction of the treatment element toward a human body,
but each treatment element 1 may be moved in other directions.
[0021] The control circuit 3 is configured to change both of the start position P1 and the
arrival position P2 while keeping distance constant in accordance with an instruction
for adjusting (changing) massage strength from the operating portion 4, like conventional
massage machines. The aforementioned distance is relative movement distance from the
start position P1 to the arrival position P2. In an aspect of the present invention,
the control circuit 3 is also configured to change at least one of the start position
P1 and the arrival position P2 to change relative movement distance from the start
position P1 to the arrival position P2 in accordance with an instruction for changing
massage strength. For example, the start position P1 is kept and the arrival position
P2 is changed, or both of the start position P1 and the arrival position P2 are changed.
Thereby, the relative movement distance from P1 to P2 is changed. FIG. 1 shows tracks
of each treatment element 1 giving massages by the massage machine's adjusted strength.
[0022] In the strength level 1 and the strength level 2 in the figure, they are the same
distance (start position to arrival position) and only each start position P1 is changed.
In the strength level 2 and the strength level 3, they are the same start position
P1 and each arrival position P2 is changed. That is, in the strength level 2 and the
strength level 3, the treatment elements 1 have different movement distance. Also,
Each treatment element 1 may be moved from the start position P1 same as that of the
strength level 1 to the arrival position P2 in the strength level 3.
[0023] Operation control of each treatment element 1 for changing both of its own start
position P1 and arrival position P2 so as to change its own movement distance is now
explained.
[0024] FIG. 3 is a graph showing the time varying target position of a treatment element
1. A target position is given by a polynomial time function. For example, target positions
z(t) are given through the time function as:

[0025] In this example, the polynomial time function for defining target positions is a
quintic expression and the default position of the target positions is 0. For example,
plus direction of 10 mm is operated if 2.0 seconds, and minus direction of 10 mm is
operated if 3.0 seconds. That is, the start position and the arrival position are
0 mm and 10 mm, respectively. The total time that the treatment element 1 moves from
P1 to P2 and then returns to P1 is 5 seconds. If the coefficients 10 and -10 in the
expressions 1 and 2 are changed, the arrival position can be changed.
[0026] FIGS. 4A and 4B show an example of the time varying target positions of a treatment
element 1. The control circuit 3 is configured to drive each treatment element 1 in
different directions through the driver 2. In the examples of FIG. 4, in accordance
with the time varying target positions, a treatment element 1 is driven so that it
moves along each of two axes. In the examples, the two axes are x and y axes, and
x and y components of the target positions are given by an independent polynomial
time function each. For example, the coordinate of each start position is (0, 0),
and three laps in an x-y plane constitute one cycle of the massage operation. These
are synthesized in the x-y plane and then becomes the track as shown in FIG. 5, so
that a two-dimensional track of the treatment element can be produced.
[0027] FIG. 6 shows an example of position control for a treatment element 1 in an x-y plane.
The massage machine further includes position sensing devices 6 (treatment element
position sensing means) located at the treatment elements 1, respectively. Each position
sensing device 6 is configured to detect each position on x and y axes of the corresponding
treatment element 1. The control circuit 3 is configured to decide each arrival position
P2 of the treatment elements 1 based on each position of the treatment elements 1
detected with the position sensing devices 6. For example, each position sensing device
6 has resolution performance of 10 levels with respect to each of the x and y axes.
Accordingly, each of the start position and the arrival position in the x-y plane
is previously defined to any position in 10 levels of each or x and y axes. The treatment
element 1 is moved from the start position P1 to the arrival position P2 by a velocity
pattern per n-rotation of a motor in the driver 2. The treatment element 1 subsequently
reaches the arrival position P2, and then is returned toward the start position P1.
In this instance, the start position P1 and the arrival position P2 are limited to
positions detected with the position sensing device.
[0028] The start position P1 is defined with the position sensing device, but when the arrival
position P2 is decided by polynomial time function(s) as described above, the arrival
position P2 can be set voluntarily by changing coefficient(s) of the polynomial time
function(s).
[0029] When the velocity pattern per n-rotation of a motor is previously provided as described
above, changing movement distance of a treatment element 1 requires another velocity
pattern as well as a larger memory on the control circuit 3. If the movement distance
is changed by calculating the time function(s) in real time during control and also
changing coefficient(s) of the time function(s), such larger memory on the control
circuit 3 is unnecessary.
[0030] The aforementioned control can be also applied to the control in which the operation
of the treatment elements 1 is controlled in response to each massage force given
by the treatment elements 1. In this instance, the massage machine is provided with
a plurality of massage force detecting means 7 configured to detect massage force
given to a human body with the treatment elements 1, respectively. The detecting means
7 (pressure sensors) are each located at the treatment elements 1 or other places
in each of which massage force can be detected. The control circuit 3 is configured
to decide each arrival position P2 based on each massage force detected with the massage
force detecting means 7. That is, the control circuit 3 performs feed back control
by force detected with the detecting means 7, and decides whether or not, based on
detected force, a corresponding treatment element 1 reaches the arrival position P2.
[0031] FIG. 7 shows temporal response, during a massage cycle, between treatment element's
(1) position and the massage force. The massage machine (driver 2 and control circuit
3) moves each treatment element 1 from a start position P1. If massage force reaches
"massage force threshold for determining arrival position (Th)", the machine judges
that the treatment element 1 reaches the arrival position P2, and stops the extending
operation of the treatment element 1. The machine then moves the treatment element
1 to the start position P1. A cycle of the massage operation may be a predetermined
constant time, but the cycle may be shortened by the value of the threshold Th. In
this instance, if massage force reaches the threshold Th, a corresponding treatment
element 1 have only to be immediately returned to the start position P1.
[0032] When the cycle of the massage operation is a constant time, the time reaching the
arrival position P2 is suitably set as a temporal value. If massage force reaches
the threshold Th at a time earlier than the temporal value, it is desirable that the
treatment element 1 is stopped up to the temporal value, and then returned from the
position to the start position P1 in the time obtained by subtracting the temporal
value from the cycle.
[0033] On the contrary, if the massage force reaches the threshold Th at a time later than
the temporal value, it is desirable that the position at a time point that becomes
the temporal value is regarded as the arrival position P2, and then the operation
for returning to the massage start position P1 is performed.
[0034] When the arrival position P2 is decided based on massage force, desired massage force
may not be obtained. Accordingly, the method to decide whether or not each treatment
element 1 reaches the arrival position P2 based on its own position or arrival time
to the arrival position may be used at the same time.
[0035] In addition, by changing each treatment element's position and the threshold Th for
determining the arrival position P2, it is possible to provide more various strength
levels
[0036] FIG. 8 shows an example that arrival positions P2 can be varied in response to regions
of a subject, respectively. In this example, the arrival positions P2 from the shoulders
to the waist become longer in a stepwise fashion. In the figure, each start position
P1 is the same position. However, both a start position P1 and an arrival position
P2 may be varied.
[0037] FIG. 9 shows an example that start positions P1 and arrival positions P2 can be varied
in three-dimensional directions in response to regions of a subject. The start positions
P1 and arrival positions P2 are in three-dimensional directions so that when a massage
is given to the shoulders, it is given in a direction pushing the shoulders from above,
and also when a massage is given to the back, the massage is given in a direction
pushing the back. When a massage is given to the neck, it is desirable to set start
positions P1 and arrival positions P2 in directions in which the neck is intervened
(not shown). Anyhow, if start positions P1 and arrival positions P2 can be varied
in three-dimensional directions, treatment directions can be varied.
[0038] FIG. 10 shows a concrete example of the operating portion 4. In this example, the
operating portion 4 is configured to adjust, by region, massage strength individually
with respect to regions to be massaged. When massage strength is strengthened with
the operating portion 4, it is possible to set strength level with respect to each
of the regions by setting various arrangements of the start potions P1 and the arrival
positions P2, such as: setting the start potions P1 toward directions of the human
body; setting the arrival positions P2 toward directions of the human body; setting
the start potions P1 and the arrival positions P2 toward directions of the human body;
or the like.
[0039] In the present invention, it is possible to adaptively use, based on region(s) to
be massaged, massage strength setting that only start potion(s) P1 is changed, or
massage that start potion(s) P1 is fixed and only arrival position(s) P2 is changed
like strength levels 2 and 3 shown in FIG. 2. For example, when a massage is given
in a direction pushing shoulders from above, if start potion(s) P1 approaches the
shoulders to be too near to them, the massage strength may be too strong from the
start of the massage. In this instance, the start potion(s) P1 is fixed and only arrival
position(s) P2 is changed, and thereby the massage strength can be prevented from
being too strong from the start of the massage. In the setting that the start potion(s)
P1 is apart from a human body to be located slightly above the shoulders, the minimum
massage force of zero is obtained, and it is possible to provide stronger and weaker
massage.
[0040] There is a massage machine with an automatic course treatment function that sequentially
performs different massage operations in accordance with the procedures of a preset
program. This massage machine is usually configured to have automatic courses, prepared
for subject's fatigue levels, from which the subject can select. In an embodiment,
the massage machine has a weak course and a strong course. In the weak course, the
start potion(s) P1 and arrival position(s) P2 are set at the massage machine side.
In the strong course, the start potion(s) P1 and arrival position(s) P2 are set at
a human body side. Thereby, the courses with different strength can be made.
[0041] There is a massage machine having, in addition to the aforementioned automatic course,
a favorite course for giving a favorite massage with respect to a favorite region
of a subject. For example, the start potion(s) P1 and arrival position(s) P2 can be
varied at each of the automatic course and the favorite course so that the favorite
course can have more detailed strength levels.
[0042] FIG. 11 shows an example that a start potion P1 and an arrival position P2 can be
displayed on a display part 30 included in the operating portion 4. The display part
30 is configured to correlate a start potion P1 and an arrival position P2 with subject's
human body figure to graphically display them. If a subject looks at the display,
the subject can understand which region is massaged, and from which position a massage
is performed and to which position. If concrete movement distance of a treatment element(s)
is displayed accessorily, the subject can easily understand the movement of the treatment
element. In conventional massage machines, a subject cannot understand which position
a massage is started from and which position a treatment element(s) is extended to.
[0043] Although the present invention has been described with reference to certain preferred
embodiments, numerous modifications and variations can be made by those skilled in
the art without departing from the true spirit and scope of this invention.
1. A massage machine, comprising a treatment element to be contacted with a human body,
wherein the massage machine is configured to change an extending length of the treatment
element to the human body side to give a massage of variable strength to the human
body,
wherein the massage machine comprises a control circuit configured to control cyclic
movement of the treatment element in an extending direction of the treatment element
to the human body side so that the treatment element extends from a first position
to a second position to return to the first position,
wherein the control circuit is configured to change at least one of the first position
and the second position so that movement distance from the first position to the second
position is changed in accordance with an instruction for changing massage strength.
2. The massage machine of claim 1, wherein the control circuit is further configured
to change both the first position and the second position while keeping the movement
distance from the first position to the second position in accordance with an instruction
for changing massage strength.
3. The massage machine of claim 1, wherein the control circuit is configured to move
the treatment element based on time varying target positions.
4. The massage machine of claim 1, wherein the control circuit is configured to move
the treatment element based on time varying target positions in a plurality of directions.
5. The massage machine of claim 1, wherein the control circuit is configured to determine
the second position based on massage force detected with a massage force detecting
means.
6. The massage machine of claim 1, wherein the control circuit is configured to determine
the second position based on a position of the treatment element detected with a treatment
element position sensing means.
7. The massage machine of claim 5, wherein the control circuit is configured to change
the first position and the second position in response to each region of the subject's
human body.
8. The massage machine of claim 7, wherein the control circuit is configured to change
the first position and the second position in three-dimensional directions in response
to each region of the subject's human body.
9. The massage machine of claim 1, comprising an operating portion for change instruction
of the massage strength,
wherein the operating portion is configured capable of setting massage strength on
each region of the human body.
10. The massage machine of claim 1, wherein the control circuit is configured to set,
in response to massage strength setting or a region to be massaged,
strength adjustment that the second position is fixed and only the first position
is changed, and
strength adjustment that the first position is fixed and only the second position
is changed.
11. The massage machine of claim 1, comprising a plurality of automatic courses for automatically
massaging the whole body in accordance with procedures of a preset probarm,
wherein the control circuit is configured to change the first position and the second
position by course.
12. The massage machine of claim 11, comprising a favorite course capable of selecting
a favorite massage with respect to a favorite region,
wherein the control circuit is configured to change the first position and the second
position at each of the automatic courses and the favorite course.
13. The massage machine of claim 1, comprising a display part configured to display the
first position and the second position.