JP6059994B2 - Massage machine - Google Patents

Massage machine Download PDF

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JP6059994B2
JP6059994B2 JP2013010689A JP2013010689A JP6059994B2 JP 6059994 B2 JP6059994 B2 JP 6059994B2 JP 2013010689 A JP2013010689 A JP 2013010689A JP 2013010689 A JP2013010689 A JP 2013010689A JP 6059994 B2 JP6059994 B2 JP 6059994B2
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drive mechanism
base
unit
user
backrest
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JP2014050670A (en
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久富 仁
仁 久富
久保 晃一
晃一 久保
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Hitachi Maxell Energy Ltd
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Description

本発明は、揉み玉等の施療子の被施療者側への進退させるマッサージ機に関し、特に駆動機構部の構造に関する。   The present invention relates to a massage machine for advancing and retracting a treatment element such as a kneading ball toward a user, and more particularly to a structure of a drive mechanism unit.

被施療者の身体を支持しつつマッサージ動作を実行する椅子型のマッサージ機では、通常、その背もたれ部に設けられる施療子としての揉み玉を、背もたれ部にもたれた被施療者に対し進退可能とし、被施療者の所望する施療の強さが得られる構成を有している。こうしたマッサージ機で、揉み玉を進退させる機構としては、揉み玉をその駆動機構部ごと傾動可能に支持し、駆動機構部を所定の傾動機構で傾動させることで一体の揉み玉も傾動させ、これにより揉み玉を被施療者の前後方向に位置変化させて、揉み玉が被施療者に対し進退調整される状況を得る仕組みが一般的に用いられていた。このような揉み玉の進退機構を採用したマッサージ機の一例として、特開2007−6975号公報に開示されるものがある。   In a chair-type massage machine that performs a massage operation while supporting the body of the user, the massaging ball as a treatment element usually provided on the backrest part can be moved forward and backward with respect to the user leaning on the backrest part. The treatment strength desired by the user can be obtained. With such a massage machine, the mechanism for advancing and retracting the kneading balls is supported so that the kneading balls can be tilted together with the drive mechanism, and the driving mechanism is tilted by a predetermined tilting mechanism, so that the integral kneading balls can be tilted. In general, a mechanism has been used in which the kneading balls are repositioned in the front-rear direction of the user to obtain a situation in which the kneading balls are adjusted to advance or retreat with respect to the user. One example of a massage machine that employs such a kneading ball advance / retreat mechanism is disclosed in Japanese Patent Application Laid-Open No. 2007-6975.

特開2007−6975号公報JP 2007-6975 A

特許文献に示す従来のマッサージ機においては、左右取付台を軸により連結したベースに駆動機構部を支持させていたので、ベース部の構成が複雑となり重量化の一因となっていた。   In the conventional massage machine shown in the patent document, the drive mechanism portion is supported by the base in which the left and right mounting bases are connected to each other by a shaft, which complicates the configuration of the base portion and contributes to the weight increase.

本発明は前記課題を解消するためになされたもので、ベース部を一枚の金属板の折曲げで形成して、構造を簡略化できると共に軽量化も図れるマッサージ機を提供することを目的とする。   The present invention has been made to solve the above problems, and has an object to provide a massage machine that can be simplified in structure and light in weight by forming a base portion by bending a single metal plate. To do.

本発明に係るマッサージ機は、背もたれ部に当該背もたれ部の上下方向に昇降移動可能として内蔵され、被施療者に対し施療子を動かして施療を実行する施療機構を備えるマッサージ機において、前記施療機構が、背もたれ部内部のガイドフレームに昇降移動可能に支持されるベース部を有し、このベース部は、中央に貫通孔を有する一枚の金属平板における外周部分の一部及び前記貫通孔周縁部の一部を、曲げ加工で、メカユニットの支持状態で被施療者に面しない側となる方へ起立状態とすることにより、略矩形状の外周形状及び略矩形状の開口部を有する成形体とされるものである。   A massage machine according to the present invention is incorporated in a backrest part so as to be movable up and down in the vertical direction of the backrest part, and includes a treatment mechanism for performing treatment by moving a treatment element for a user, the treatment mechanism However, the base portion is supported by the guide frame inside the backrest portion so as to be movable up and down, and this base portion is a part of the outer peripheral portion of one metal flat plate having a through hole in the center and the peripheral portion of the through hole. A molded body having a substantially rectangular outer peripheral shape and a substantially rectangular opening by bending a part of the armature into a standing state toward the side that does not face the user in the support state of the mechanical unit. It is supposed to be.

このように本発明によれば、ベース部を一枚の金属板の折曲げで形成し、駆動機構部を取囲む各部を当初から一体としつつ、曲げで生じさせた起立部分により剛性を確保することで、構造を簡略化できると共に軽量化も図れる。   As described above, according to the present invention, the base portion is formed by bending a single metal plate, and the portions surrounding the drive mechanism portion are integrated from the beginning, and the rigidity is ensured by the raised portions generated by the bending. Thus, the structure can be simplified and the weight can be reduced.

また、本発明の参考となるマッサージ機は、背もたれ部に当該背もたれ部の上下方向に昇降移動可能として内蔵され、被施療者に対し施療子を動かして施療を実行する施療機構を備えるマッサージ機において、前記施療機構が、背もたれ部内部のガイドフレームに昇降移動可能に支持されるベース部と、ベース部に対し傾動可能に取付けられて施療子を作動させる駆動機構部と、ベース部に対して駆動機構部を傾動させ、施療子の被施療者側への突出量を調整可能とする傾動機構と、前記駆動機構部のベース部に対する傾動角度変位を検出するロータリエンコーダとを有し、前記駆動機構部が、前記ベース部に支持される軸に取付けられて、当該軸を傾動中心として傾動可能に配設され、前記ロータリエンコーダが、前記駆動機構部側に取付けられるスケール部と、前記ベース部側に取付けられる検出部とからなり、スケール部のベース部に対する傾動角度変位を検出部で検出し、前記スケール部が、前記駆動機構部の側方で駆動機構部に対し固定されると共に、一部を前記軸の円筒面状の外周面に常に摺接させて、駆動機構部と共に傾動しつつ、前記軸周りの回動以外の移動の自由度を有しない状態とされるものである。   In addition, a massage machine that is a reference of the present invention is a massage machine that is built in the backrest part so that it can be moved up and down in the vertical direction of the backrest part, and has a treatment mechanism that moves the treatment element to the user to perform treatment. The treatment mechanism includes a base portion that is supported by a guide frame inside the backrest portion so as to be movable up and down, a drive mechanism portion that is tiltably attached to the base portion and operates the treatment element, and is driven with respect to the base portion. The drive mechanism includes a tilt mechanism that tilts the mechanism portion and makes it possible to adjust the amount of protrusion of the treatment element toward the user, and a rotary encoder that detects a tilt angle displacement of the drive mechanism portion with respect to the base portion. Is attached to a shaft supported by the base portion, and is arranged to be tiltable about the shaft as a tilting center. The rotary encoder is attached to the drive mechanism portion side. And a detection unit attached to the base unit side, the tilt angle displacement of the scale unit with respect to the base unit is detected by the detection unit, and the scale unit is located on the side of the drive mechanism unit. A state in which a part of the shaft is always in sliding contact with the outer peripheral surface of the cylindrical surface of the shaft and tilted with the drive mechanism portion, and has no freedom of movement other than rotation around the shaft. It is supposed to be.

このように本発明の参考となるマッサージ機によればベース部に対する駆動機構部の傾動角度を検出するロータリエンコーダのスケール部が、駆動機構部の傾動中心となる軸に摺接し、駆動機構部が傾動する際に、スケール部が軸外周の円筒面に接触しながら傾動する状態となって、その傾動に係る動きを軸で拘束され、移動の自由度をこの軸周りの回動のみに制限されることにより、駆動機構部の傾動と同時に傾動するスケール部が、正確に駆動機構部の傾動中心周りに傾動することとなり、ロータリエンコーダでの傾動角度の検出に際し、仮に、駆動機構部各部の部品精度や組立精度の影響で、駆動機構部の軸周りの傾動に他の動き成分が加わる状態になったとしても、そうした動きの変化がスケール部に反映されず、スケール部が検出部に対し適切な位置関係を維持しつつ駆動機構部の傾動に対応して傾動でき、ロータリエンコーダとして適切に傾動角度の検出を行って、施療子の進退に係る制御の正確な実行が図れる。   Thus, according to the massage machine that is a reference of the present invention, the scale portion of the rotary encoder that detects the tilt angle of the drive mechanism portion with respect to the base portion is in sliding contact with the shaft that is the tilt center of the drive mechanism portion, and the drive mechanism portion is When tilting, the scale part tilts while contacting the cylindrical surface on the outer periphery of the shaft, and the movement related to the tilt is constrained by the shaft, and the freedom of movement is limited only to rotation around this shaft. As a result, the scale portion that tilts simultaneously with the tilting of the drive mechanism portion is tilted accurately around the tilt center of the drive mechanism portion. When the tilt angle is detected by the rotary encoder, the components of each part of the drive mechanism portion are temporarily assumed. Even if other movement components are added to the tilt of the drive mechanism around the axis due to the accuracy and assembly accuracy, the change in the movement is not reflected in the scale and the scale detects it. To be tilted in response to the tilt drive mechanism unit while maintaining a proper positional relationship, performs appropriate tilt angle of the detection as a rotary encoder, thereby an accurate execution of the control according to the advancing and retracting of the treatment element.

また、本発明の参考となるマッサージ機は必要に応じて、前記ロータリエンコーダのスケール部が、前記駆動機構部における施療子とは離れた側で且つ前記軸と直交する向きから軸に近接して摺接状態とされると共に、当該摺接状態で当接した駆動機構部の所定箇所に対し軸と直交する他の向きから所定の係止部材を用いて係止されて、駆動機構部に固定されるものである。   In addition, in the massage machine that is a reference of the present invention, the scale part of the rotary encoder is located on the side away from the treatment element in the drive mechanism part and close to the axis from the direction orthogonal to the axis as necessary. The sliding mechanism is brought into a sliding contact state, and is locked to a predetermined position of the drive mechanism portion that is in contact with the sliding contact state by using a predetermined locking member from another direction orthogonal to the axis and fixed to the driving mechanism portion. It is what is done.

このように本発明の参考となるマッサージ機によれば、ロータリエンコーダのスケール部を駆動機構部の傾動中心の軸に対し所定方向から近接させて摺接させると共に、当接した駆動機構部の所定箇所に係止部材で係止し固定して、スケール部を駆動機構部と一体に傾動し且つ軸による拘束を受ける状態とすることにより、既に駆動機構部が傾動可能に配設されている状況で、後からスケール部を適切な位置に無理なく配設することができ、駆動機構部の傾動角度を高い精度で検出可能としつつ、当初から駆動機構部にスケール部を一体に固定しない分、駆動機構部のベース部への組付けが容易となり、後からの駆動機構部へのスケール部の固定も容易であることと合わせて、組立ての能率を高められ、製造コストの低減が図れる。   As described above, according to the massage machine which is a reference of the present invention, the scale portion of the rotary encoder is brought into sliding contact with the axis of the tilting center of the drive mechanism portion in a predetermined direction, and the predetermined amount of the contacted drive mechanism portion is determined. A situation in which the drive mechanism is already tiltable by locking and fixing to the location with a locking member, and tilting the scale unit integrally with the drive mechanism unit and receiving the restraint by the shaft. Therefore, the scale portion can be easily disposed at an appropriate position later, and the tilt angle of the drive mechanism portion can be detected with high accuracy, while the scale portion is not fixed integrally to the drive mechanism portion from the beginning, The assembly of the drive mechanism portion to the base portion is facilitated, and the scale portion can be easily fixed to the drive mechanism portion later. In addition, the assembly efficiency can be increased, and the manufacturing cost can be reduced.

また、本発明の参考となるマッサージ機は必要に応じて、前記ベース部が、中央に貫通孔を有する所定形状の金属平板における外周部分の複数箇所及び前記貫通孔周縁部の複数箇所を、曲げ加工で少なくとも板厚より大きい高さ寸法分、起立状態として得られる、略矩形状の外周形状及び略矩形開口形状の開口部を有する成形体とされ、前記ベース部の外周における各起立部分は、折曲げ線方向の長さを、起立部分の折曲げ線と略平行となる開口部の辺の略全長に相当する寸法以上となるようにして折曲げ形成されてなり、前記駆動機構部が、前記軸へ取付けられた状態で、前記ベース部の開口部を通って傾動可能とされるものである。   Further, in the massage machine which is a reference of the present invention, the base portion bends a plurality of locations in the outer peripheral portion and a plurality of locations in the peripheral portion of the through hole in a metal plate having a predetermined shape having a through hole in the center as necessary. It is a molded body having a substantially rectangular outer peripheral shape and an opening of a substantially rectangular opening shape, which is obtained as a standing state at least by a height dimension larger than the plate thickness by processing, and each standing part on the outer periphery of the base portion is The length in the direction of the fold line is folded so as to be equal to or greater than the length corresponding to the substantially entire length of the side of the opening that is substantially parallel to the fold line of the standing part, In a state of being attached to the shaft, it can be tilted through the opening of the base portion.

このように本発明の参考となるマッサージ機によれば、ベース部を金属板の折曲げで略矩形状の外周形状及び略矩形状の開口部を有するものとして形成し、シンプル且つ軽量ながら十分な剛性を確保できる構造が得られることにより、駆動機構部の傾動や施療子の作動に伴い駆動機構部が力を受けても、ベース部では各起立部分が曲げ応力に対する抵抗材として働くこととなり、ベース部の変形を確実に抑えられ、駆動機構部とベース部との位置関係を不用意に変化させず、ロータリエンコーダによる駆動機構部の傾動角度の検出に悪影響が及ばない。また、ベース部が金属板からなる一体構造で、剛性を高めつつも軽量で簡略な構造にでき、製造コストも抑えられる。   Thus, according to the massage machine that is a reference of the present invention, the base portion is formed by bending a metal plate so as to have a substantially rectangular outer peripheral shape and a substantially rectangular opening, which is sufficient while being simple and lightweight. By obtaining a structure that can ensure rigidity, even if the drive mechanism part receives force due to tilting of the drive mechanism part or operation of the treatment element, each standing part works as a resistance material against bending stress in the base part, The deformation of the base portion can be reliably suppressed, the positional relationship between the drive mechanism portion and the base portion is not changed carelessly, and the detection of the tilt angle of the drive mechanism portion by the rotary encoder is not adversely affected. In addition, the base part is made of an integral structure made of a metal plate, so that it can be made light and simple while increasing rigidity, and the manufacturing cost can be reduced.

また、本発明の参考となるマッサージ機は必要に応じて、前記ベース部の外周における起立部分のうち、前記軸と直交する向きの二つの起立部分からそれぞれ外方に突出する所定の軸周りに回動可能として複数のローラが配設され、前記施療機構の昇降移動に伴い、前記複数のローラのうち、第一の組をなす複数のローラが、前記ガイドフレームの所定の一面に接触して転動すると共に、第二の組をなす複数のローラが、ガイドフレームの前記一面の反対側となる他面に接触して転動するものである。   In addition, the massage machine that is a reference of the present invention, as necessary, around a predetermined axis that protrudes outward from two standing parts in the direction perpendicular to the axis among the standing parts on the outer periphery of the base part. A plurality of rollers are arranged so as to be rotatable, and as the treatment mechanism moves up and down, a plurality of rollers of the first set out of the plurality of rollers come into contact with a predetermined surface of the guide frame. In addition to rolling, the plurality of rollers forming the second set roll in contact with the other surface of the guide frame opposite to the one surface.

このように本発明の参考となるマッサージ機によれば、ベース部外周の起立部分に配設した複数のローラがガイドフレームを挟んだ状態で転動しつつ、施療機構の昇降移動がなされることで、施療機構とガイドフレームとの位置関係が変化せず、背もたれ部で施療機構を適切に昇降移動させられると共に、ガイドフレームで確実に施療機構を支持して正確に施療を実行できる。さらに、ベース部が確実にガイドフレームに位置決めされた状態で支持され、駆動機構部の傾動に際しベース部が不用意に動くことはなく、ロータリエンコーダでの傾動角度の検出に悪影響を与えるのを防止できる。   As described above, according to the massage machine that is a reference of the present invention, the treatment mechanism is moved up and down while the plurality of rollers arranged on the standing portion of the outer periphery of the base portion roll with the guide frame interposed therebetween. Thus, the positional relationship between the treatment mechanism and the guide frame does not change, and the treatment mechanism can be appropriately moved up and down by the backrest portion, and the treatment mechanism can be reliably supported by the guide frame and treatment can be executed accurately. Furthermore, the base part is supported in a state where it is securely positioned on the guide frame, so that the base part does not inadvertently move when the drive mechanism part tilts, and prevents the rotary encoder from having an adverse effect on the tilt angle detection. it can.

本発明の一実施形態に係るマッサージ機の斜視図である。It is a perspective view of a massage machine concerning one embodiment of the present invention. 本発明の一実施形態に係るマッサージ機のブロック図である。It is a block diagram of a massage machine concerning one embodiment of the present invention. 本発明の一実施形態に係るマッサージ機におけるメカユニットの正面図である。It is a front view of the mechanical unit in the massage machine concerning one embodiment of the present invention. 本発明の一実施形態に係るマッサージ機におけるメカユニットの背面図である。It is a rear view of the mechanical unit in the massage machine concerning one embodiment of the present invention. 本発明の一実施形態に係るマッサージ機におけるメカユニット側端部とガイドフレームとの位置関係説明図である。It is positional relationship explanatory drawing of the mechanical unit side edge part and guide frame in the massage machine which concerns on one Embodiment of this invention. 本発明の一実施形態に係るマッサージ機におけるメカユニットの駆動ローラとガイドフレームのラックとの噛合状態説明図である。It is mesh | engagement explanatory drawing of the drive roller of the mechanical unit in the massage machine which concerns on one Embodiment of this invention, and the rack of a guide frame. 図3のA−A断面図である。It is AA sectional drawing of FIG. 本発明の一実施形態に係るマッサージ機における駆動機構部へのスケール部取付状態説明図である。It is scale part attachment state explanatory drawing to the drive mechanism part in the massage machine concerning one embodiment of the present invention. 図3のB−B断面図である。It is BB sectional drawing of FIG. 本発明の一実施形態に係るマッサージ機のメカユニットにおけるベース部の平面図である。It is a top view of the base part in the mechanical unit of the massage machine concerning one embodiment of the present invention. 本発明の一実施形態に係るマッサージ機のメカユニットにおけるベース部の正面図である。It is a front view of the base part in the mechanical unit of the massage machine concerning one embodiment of the present invention. 本発明の一実施形態に係るマッサージ機のメカユニットにおけるベース部の底面図である。It is a bottom view of the base part in the mechanical unit of the massage machine concerning one embodiment of the present invention. 本発明の一実施形態に係るマッサージ機のメカユニットにおけるベース部の右側面図である。It is a right view of the base part in the mechanical unit of the massage machine which concerns on one Embodiment of this invention. 図11のC−C断面図である。It is CC sectional drawing of FIG.

以下、本発明の一実施形態に係るマッサージ機を前記図1ないし図14に基づいて説明する。
前記各図において本実施形態に係るマッサージ機1は、着座した被施療者を支える椅子状のものであり、詳細には、床面上に載置されて椅子全体を安定的に支持する基台部11と、この基台部11の上方で被施療者の臀部を支える座部12と、この座部12の後側で被施療者の背中を支える背もたれ部13と、座部12の左右両側で被施療者の肘や前腕部を支える肘掛部14と、座部12の前側で被施療者の脚を支える脚支持部15と、マッサージ動作に係る各種操作入力を受付けるリモコン30と、搭載されている複数の施療機構によるマッサージ動作を操作入力や記録情報等の内容に基づいて制御する制御部40とを備える構成である。
Hereinafter, a massage machine according to an embodiment of the present invention will be described with reference to FIGS.
In each of the drawings, the massage machine 1 according to the present embodiment is a chair-like body that supports a seated user, and in detail, is a base that is placed on the floor and stably supports the entire chair. Part 11, a seat part 12 that supports the user's buttocks above the base part 11, a backrest part 13 that supports the user's back on the back side of the seat part 12, and both left and right sides of the seat part 12 The armrest 14 that supports the elbow and forearm of the user, the leg support 15 that supports the leg of the user on the front side of the seat 12, and the remote controller 30 that receives various operation inputs related to the massage operation. And a control unit 40 that controls the massage operation by the plurality of treatment mechanisms based on the contents of operation input, recorded information, and the like.

前記基台部11は、椅子各部をなす前記座部12、背もたれ部13、肘掛部14、及び脚支持部15を一体に取付けられてこれらを支持するものである。また、前記座部12は、基台部11に対し座面の傾斜角度を調整可能として取付けられ、座面にて被施療者の臀部や太腿部を支えつつ内蔵の施療機構でマッサージを実行するものである。この座部12の施療機構としては、空気の給排で動作する臀部用エアセル71、及び太腿用エアセル72を備える構成である。これらエアセルを空気の給排で動作させるエアポンプ70が座部12下側のスペースに配設される。   The base 11 is configured to integrally support the seat 12, the backrest 13, the armrest 14, and the leg support 15 that constitute each part of the chair. The seat portion 12 is attached to the base portion 11 so that the inclination angle of the seat surface can be adjusted, and massage is performed by a built-in treatment mechanism while supporting the user's buttocks and thighs on the seat surface. To do. As a treatment mechanism of this seat part 12, it is the structure provided with the air cell 71 for hips which operate | moves by supply and discharge of air, and the air cell 72 for thighs. An air pump 70 that operates these air cells by supplying and discharging air is disposed in a space below the seat portion 12.

前記背もたれ部13は、人の背中形状に合せた表面形状とされて前記基台部11及び座部12に対し傾斜角度を調整可能として配設され、その内部に、マッサージを実行する施療機構を備える構成である。
背もたれ部13内部には、施療子としての左右一対の揉み玉51とこれを動作させる駆動機構部60が一体となったメカユニット50と、このメカユニット50を背もたれ部13上下方向に移動可能に支持しつつ、背もたれ部の各部を内部から支える枠状の背もたれ部フレーム13aと、前記エアポンプ70による空気の給排で動作する背中用エアセル73及び腰用エアセル74とがそれぞれ配設される構成である。このうちメカユニット50、背中用エアセル73、及び腰用エアセル74が、それぞれマッサージを実行する施療機構をなす。
The backrest portion 13 has a surface shape that matches the shape of the human back and is arranged so that the inclination angle can be adjusted with respect to the base portion 11 and the seat portion 12, and a treatment mechanism for performing massage is provided therein. It is the composition provided.
Inside the backrest part 13 is a mechanical unit 50 in which a pair of left and right kneading balls 51 as a treatment element and a drive mechanism part 60 for operating the same are integrated, and the mechanical unit 50 can be moved in the vertical direction of the backrest part 13. A frame-shaped backrest frame 13a that supports each part of the backrest portion from the inside while supporting, and a back air cell 73 and a waist air cell 74 that are operated by supplying and discharging air by the air pump 70 are provided. . Of these, the mechanical unit 50, the back air cell 73, and the waist air cell 74 each constitute a treatment mechanism for performing massage.

なお、この背もたれ部13の左右両側部には、被施療者に面する内面側にエアセル等の施療機構を設けた一対の側壁部を突出配設して、被施療者の上腕部等に対して側方からマッサージを行えるようにすることもできる。   In addition, a pair of side wall portions provided with a treatment mechanism such as an air cell on the inner surface facing the user is provided on both the left and right sides of the backrest portion 13 so as to protrude from the upper arm of the user. You can also make it possible to massage from the side.

前記背もたれ部フレーム13aは、メカユニット50を背もたれ部13上下方向に移動可能とし且つ他方向への動きは拘束して支持する左右一対のガイドフレーム20間に、複数の横フレームを横方向に掛渡して一体に連結して、略梯子状のフレーム構造とされるものである。   The backrest frame 13a hangs a plurality of horizontal frames in a horizontal direction between a pair of left and right guide frames 20 that allow the mechanical unit 50 to move in the vertical direction of the backrest 13 and restrain the movement in the other direction. It is handed over and connected together to form a substantially ladder-like frame structure.

前記ガイドフレーム20は、略コ字状の断面形状を有すると共に、人の背中形状に合せた背もたれ部13の表面に沿う長手方向形状とされてなり、一対を背もたれ部内部左右にそれぞれ配設される構成である。この対をなす二つのガイドフレーム20に挟まれる配置で、前記メカユニット50がガイドフレーム20に沿って移動可能に配設される。このガイドフレーム20の内周に、樹脂製のラック21がメカユニット50の上下動範囲にわたる長さとして配設される。   The guide frame 20 has a substantially U-shaped cross-sectional shape and is formed in a longitudinal shape along the surface of the backrest portion 13 in accordance with the shape of a human back, and a pair is disposed on the left and right inside the backrest portion. This is a configuration. The mechanical unit 50 is disposed so as to be movable along the guide frame 20 so as to be sandwiched between the two guide frames 20 forming a pair. A resin rack 21 is disposed on the inner periphery of the guide frame 20 as a length that extends over the vertical movement range of the mechanical unit 50.

前記メカユニット50は、揉み、叩き等の刺激を被施療者に与える施療子としての左右一対の揉み玉51と、この揉み玉51を突出状態で支持する左右一対の揉み玉支持アーム52と、この揉み玉支持アーム52を介して揉み玉51を揉み、叩き等のマッサージ動作に対応させて駆動する駆動機構部60と、背もたれ部上下方向に直交する軸線を中心として駆動機構部60を傾動可能に支持するベース部53と、駆動機構部60のベース部53に対する傾動状態を検出するロータリエンコーダ54と、ベース部53側端部に回動可能に配設され、駆動源としての昇降モータ57により回転駆動されてガイドフレーム20を上下に走行し、ベース部53をガイドフレーム20に対し移動させる駆動ローラ55と、ベース部53側部に駆動ローラ55の回転中心軸と平行な軸を中心に回動可能として取付けられ、ガイドフレーム20の外周面に転がり接触する弾性材製のローラ56a、56bとを備える構成である。   The mechanical unit 50 includes a pair of left and right rubbing balls 51 as a treatment element that gives a user a stimulus such as rubbing and hitting, and a pair of left and right rubbing ball support arms 52 that support the rubbing balls 51 in a protruding state. It is possible to tilt the drive mechanism 60 around the axis perpendicular to the vertical direction of the backrest portion and the drive mechanism portion 60 which is driven by the kneading ball 51 via the kneading ball support arm 52 and corresponding to massage operation such as hitting. And a rotary encoder 54 that detects a tilting state of the drive mechanism 60 with respect to the base 53, and is rotatably disposed at an end on the side of the base 53, and by a lifting motor 57 as a drive source. A driving roller 55 that is driven to rotate and travels up and down on the guide frame 20 to move the base portion 53 relative to the guide frame 20, and a driving roller on the side of the base portion 53. About a central axis parallel to the axis rotation of 5 is mounted as rotatable, a structure having an elastic member made of rollers 56a for rolling contact with the outer peripheral surface of the guide frame 20, and 56b.

前記駆動機構部60は、ベース部53に対し傾動可能に支持されるハウジング61と、このハウジング61と一体に配設され、制御部40の制御に基づいて揉み玉51に揉み動作を行わせるための駆動力を発生させる揉みモータ62と、同じくハウジング61と一体に配設され、制御部40の制御に基づいて揉み玉51に叩き動作を行わせるための駆動力を発生させる叩きモータ63と、ハウジング61に内蔵されて、これら揉みモータ62、叩きモータ63からの運動を揉み玉支持アーム52を介して揉み玉51に伝達する揉み機構及び叩き機構(図示を省略)とを備える、公知のマッサージ機に用いられるものと同様の機構であり、詳細な説明を省略する。   The drive mechanism 60 is disposed integrally with the housing 61 so as to be tiltable with respect to the base 53, and causes the kneading balls 51 to perform a kneading operation based on the control of the control unit 40. A kneading motor 62 that generates a driving force for the kneading ball 51 that is arranged integrally with the housing 61 and that causes the kneading balls 51 to perform a tapping operation based on the control of the control unit 40; A known massage comprising a kneading mechanism and a tapping mechanism (not shown) incorporated in the housing 61 and transmitting the motion from the kneading motor 62 and the tapping motor 63 to the kneading balls 51 via the kneading ball support arm 52. The mechanism is the same as that used in the machine, and detailed description is omitted.

なお、ハウジング61には、駆動機構部60の傾動中心を同じく中心とする所定ピッチ円径で且つ所定円弧長さの、歯車の一部を切出した形状の歯部67が固定配設される。この歯部67は、駆動機構部60と一体に傾動する揉み玉51に対し、背もたれ部13にもたれた場合の被施療者の背面位置を越えて突出可能となる傾動範囲を与えることのできる、十分な円弧長さとして形成される。   Note that the housing 61 is fixedly provided with a toothed portion 67 having a predetermined pitch circle diameter and a predetermined arc length centered on the tilting center of the drive mechanism 60 and having a shape obtained by cutting a part of the gear. The tooth portion 67 can give a tilting range that allows the toothed ball 51 tilting integrally with the drive mechanism portion 60 to protrude beyond the back position of the user when leaning against the backrest portion 13. It is formed as a sufficient arc length.

前記ベース部53は、一枚の金属平板の曲げ加工で得られる、略矩形状の外周形状及び略矩形状の開口部53bを有する成形体であり、中央部分の開口部53bに配置した駆動機構部60を傾動可能に支持する構成である。この他、ベース部53には、制御部40の制御に基づいてメカユニット昇降用の駆動力を発生させる昇降モータ57と、駆動機構部60を傾動させる駆動力を発生させる進退モータ58とが取付けられる構成である。   The base 53 is a molded body having a substantially rectangular outer peripheral shape and a substantially rectangular opening 53b, which is obtained by bending a single metal flat plate, and is disposed in the opening 53b in the central portion. It is the structure which supports the part 60 so that tilting is possible. In addition, an elevating motor 57 that generates a driving force for raising and lowering the mechanical unit based on the control of the control unit 40 and an advance / retreat motor 58 that generates a driving force that tilts the driving mechanism unit 60 are attached to the base unit 53. It is the structure which is made.

このベース部53による駆動機構部60の詳細な支持構成を説明すると、ベース部53に、昇降用回転軸53aがその軸方向を背もたれ部上下方向に対し直交する向きとして回動可能に軸支されてなり、この昇降用回転軸53a周りに駆動機構部60のハウジング61が相対回動可能に支持されることで、ベース部53が駆動機構部60を、昇降用回転軸53aを傾動中心として、開口部53bを通って傾動可能となるように支持する仕組みである。   The detailed support structure of the drive mechanism 60 by the base 53 will be described. The lift shaft 53a is pivotally supported on the base 53 so as to be rotatable with its axial direction perpendicular to the backrest vertical direction. Thus, the housing 61 of the drive mechanism 60 is supported around the ascending / descending rotation shaft 53a so as to be relatively rotatable, so that the base 53 has the drive mechanism 60 as a tilting center and the ascending / descending rotation shaft 53a as a tilting center. This is a mechanism for supporting the tilting through the opening 53b.

このベース部53自体は、詳細には、中央に貫通孔を有する一枚の金属平板における外周部分の一部及び前記貫通孔周縁部の一部を、曲げ加工で、メカユニット50の支持状態で被施療者に面しない側となる方へ起立状態とすることにより、略矩形状の外周形状及び略矩形状の開口部53bを有する成形体とされるものである。素材としての金属平板の外周部分における四箇所を折曲げることで、最終形状における矩形状の外形をなす各辺に、金属板の板厚を大きく上回る所定高さ寸法の起立部分53c、53d、53e、53fが配置される形状となっている。   Specifically, the base portion 53 itself is formed by bending a part of the outer peripheral part and a part of the peripheral part of the through hole in a single metal flat plate having a through hole in the center in a state where the mechanical unit 50 is supported. The molded body having a substantially rectangular outer peripheral shape and a substantially rectangular opening 53b is formed by standing up toward the side not facing the user. By bending four locations on the outer peripheral portion of the metal flat plate as a material, upright portions 53c, 53d, and 53e having a predetermined height greatly exceeding the thickness of the metal plate are formed on each side forming a rectangular outer shape in the final shape. , 53f are arranged.

これらのベース部53の外周における各起立部分53c、53d、53e、53fは、折曲げ線方向の長さを、起立部分の折曲げ線と略平行となる開口部53bの辺の略全長に相当する寸法以上となるようにして折曲げ形成される。詳細には、金属平板の外周部分のうち対向する二箇所が、外周縁から貫通孔周縁に至る範囲を起立部分53c、53dとして折曲げられており、起立部分53c、53dが直接前記開口部53bに面する状態とされる。これら外周であり且つ開口部53bに面する二箇所の起立部分53c、53dが、ベース部53における背もたれ部上下方向の端部となる。この他の外周の二箇所の起立部分53e、53fは、ベース部53の側端部としてガイドフレーム20に面する。   The upright portions 53c, 53d, 53e, and 53f on the outer periphery of the base portion 53 have a length in the fold line direction corresponding to substantially the entire length of the side of the opening 53b that is substantially parallel to the fold line of the upright portion. It is bent and formed so as to be larger than the dimension to be made. Specifically, two opposing portions of the outer peripheral portion of the metal flat plate are bent as standing portions 53c and 53d in a range from the outer peripheral edge to the through hole peripheral edge, and the standing portions 53c and 53d are directly connected to the opening 53b. It is supposed to be in a state facing. These two standing portions 53c and 53d that are the outer periphery and face the opening 53b serve as end portions in the vertical direction of the backrest portion of the base portion 53. The other two standing portions 53 e and 53 f on the outer periphery face the guide frame 20 as side end portions of the base portion 53.

さらに、外周部分であり且つ貫通孔周縁である二箇所を折曲げて起立部分53c、53dを形成する一方で、別途対向する貫通孔周縁部の二箇所をそれぞれ折曲げて起立部分53g、53hを形成することで、略矩形状の開口部53bを生じさせ、この開口部53bの周縁となる各辺に起立部分53c、53d、53g、53hが配置された形状を得ている。   Further, the standing portions 53c and 53d are formed by bending two portions which are the outer peripheral portion and the periphery of the through hole, while the standing portions 53g and 53h are respectively bent by bending two portions of the through hole peripheral portion which are separately opposed. By forming, a substantially rectangular opening 53b is generated, and a shape is obtained in which standing portions 53c, 53d, 53g, and 53h are arranged on each side that becomes the periphery of the opening 53b.

これらのベース部53の開口部53b周縁における各起立部分53c、53d、53g、53hは、折曲げ線方向の長さを、少なくとも起立部分53c、53d、53g、53hのある開口部の辺の略全長に相当する寸法となるようにして折曲げ形成されてなり、このうち外周であり且つ開口部53bに面する上下方向端部の二箇所の起立部分53c、53dは、その長さを外周の一辺全体に及ぶものとされて、開口部の辺を超える長さとなっている。   The standing portions 53c, 53d, 53g, and 53h at the periphery of the opening portion 53b of the base portion 53 have a length in the fold line direction, and are approximately the sides of the opening portions having the standing portions 53c, 53d, 53g, and 53h. It is formed by bending so as to have a dimension corresponding to the entire length. Of these, two upright portions 53c and 53d, which are the outer periphery and face the opening 53b, have the lengths of the outer periphery. The length extends over the entire side and exceeds the side of the opening.

なお、ベース部53における背もたれ部上下方向の端部となる各起立部分53c、53dには、金属平板での貫通孔形状の設定で、横方向の中央部分で折曲げ部分を切欠き除去したような凹部53iを配置することにより、このベース部端部の各起立部分53c、53dが駆動機構部60や揉み玉51、被施療者の首部分等と接触するのを避けられる。   In addition, it seems that each of the standing portions 53c and 53d, which are the vertical ends of the back portion of the base portion 53, has a through-hole shape set in a metal flat plate, and the bent portion is cut out and removed at the central portion in the horizontal direction. By arranging the concave portion 53i, it is possible to prevent the standing portions 53c and 53d at the end portion of the base portion from coming into contact with the drive mechanism portion 60, the kneading balls 51, the neck portion of the user, and the like.

さらに、このうちの背もたれ部下方向の端部となる起立部分53dの先端側所定範囲を、所定の傾斜角度で他部分に対し折曲げて傾斜部53jとしている。この傾斜部53jにより、誤ってメカユニット50とマッサージ機座部との間の隙間に何かの物体が入り込んだ場合でも、傾斜部の存在により、物体が過剰に隙間の奥側へ向うのを阻止でき、物体が隙間からスムーズに抜けられることとなり、下降するメカユニットと座部とで物体、特に人の頭部等を挟むような危険な事態に至るのを防止できる。   Further, a predetermined range on the front end side of the standing portion 53d, which is an end portion in the downward direction of the backrest portion, is bent with respect to other portions at a predetermined inclination angle to form an inclined portion 53j. Even if an object enters the gap between the mechanical unit 50 and the massage machine seat by mistake, the inclined portion 53j prevents the object from excessively moving toward the back of the gap due to the presence of the inclined portion. The object can be smoothly removed from the gap, and it is possible to prevent a dangerous situation in which an object, particularly a human head, is sandwiched between the descending mechanical unit and the seat.

この他、ベース部53の側端部となる左右の起立部分53e、53fには、外方に突出する状態に折曲げ形成されるストッパ部53kが設けられており、このストッパ部53kはガイドフレーム20の外面に接触可能な突出量とされる。ベース部53側部をガイドフレーム20に係合させる駆動ローラ55等が破損してメカユニット50がガイドフレーム20の拘束を受けにくい事態に至っても、ストッパ部53kがガイドフレーム20に接触することで、ベース部53をはじめとするメカユニット50が背もたれ部13の被施療者に接する表面側に動くことはなく、安全を確保できる。   In addition, left and right standing portions 53e and 53f which are side end portions of the base portion 53 are provided with stopper portions 53k which are bent so as to protrude outwardly. The stopper portions 53k are provided as guide frames. It is set as the protrusion amount which can contact 20 outer surface. Even when the driving roller 55 and the like that engage the side portion of the base portion 53 with the guide frame 20 are damaged and the mechanical unit 50 is not easily restrained by the guide frame 20, the stopper portion 53k comes into contact with the guide frame 20. The mechanical unit 50 including the base portion 53 does not move to the surface side of the backrest portion 13 that contacts the user, and safety can be ensured.

こうしてベース部53を一枚の金属板の折曲げで形成し、駆動機構部60を取囲む各部を当初から一体としつつ、曲げで生じさせた起立部分により剛性を確保することで、構造を簡略化できると共に軽量化も図れる。   Thus, the base portion 53 is formed by bending a single metal plate, and the structure surrounding the drive mechanism portion 60 is integrated from the beginning, and the rigidity is ensured by the raised portion generated by bending, thereby simplifying the structure. As well as weight reduction.

このベース部53に取付けられる昇降モータ57は、昇降用回転軸53aを介してベース部53側端部の駆動ローラ55を回転駆動し、駆動ローラ55がガイドフレーム20を上下に走行するようにして、メカユニット50をガイドフレーム20に対し昇降移動させるものである。また、進退モータ58は、制御部40の制御に基づいて、連動する傾動用歯車58aを回転させ、この傾動用歯車58aと噛合している駆動機構部60側の歯部67を移動させることで、駆動機構部60をベース部53に対し傾動させ、これにより揉み玉51位置を被施療者に対し進退させ、揉み玉51の被施療者側への突出量、すなわち、施療の強さを調整するものである。   The elevating motor 57 attached to the base 53 rotates the drive roller 55 at the end on the side of the base 53 via the elevating rotary shaft 53a so that the drive roller 55 runs up and down the guide frame 20. The mechanical unit 50 is moved up and down relative to the guide frame 20. Further, the advance / retreat motor 58 rotates the interlocking gear 58a and moves the tooth portion 67 on the drive mechanism 60 side engaged with the tilting gear 58a based on the control of the control unit 40. The drive mechanism 60 is tilted with respect to the base 53, thereby causing the position of the massaging ball 51 to move forward and backward with respect to the user, and adjusting the amount of the massaging ball 51 protruding toward the user, that is, the strength of treatment. To do.

前記ロータリエンコーダ54は、駆動機構部60の側方となるベース部53の開口部周縁部に取付けられる検出部54aと、駆動機構部60の側部に取付けられる略扇形板状のスケール部54bとからなり、スケール部54bの傾動した量を検出部54aで検出して制御部40へ信号を出力し、制御部40で駆動機構部60のベース部53に対する傾動角度から揉み玉51の進退量を取得可能とするものである。   The rotary encoder 54 includes a detection portion 54a attached to the peripheral edge portion of the opening of the base portion 53 on the side of the drive mechanism portion 60, and a substantially fan-shaped scale portion 54b attached to the side portion of the drive mechanism portion 60. The amount of tilting of the scale portion 54b is detected by the detecting portion 54a and a signal is output to the control portion 40, and the control portion 40 determines the advance / retreat amount of the kneading balls 51 from the tilt angle with respect to the base portion 53 of the drive mechanism portion 60. It can be acquired.

このスケール部54bの、最も昇降用回転軸53aから離れた位置となる円弧状外周部分近傍には、公知のロータリエンコーダの場合と同様に、スリット等の被検出部54cが、傾動角度検出の分解能に対応する大きさ及び間隔で放射状に複数配設される構成である。これら被検出部54cの配置の中心は、スケール部54bの取付状態で昇降用回転軸53aの中心位置、すなわち駆動機構部60の傾動中心と一致することとなる。また、スケール部54bにおける略扇形の要となる部分には略半円筒面状の摺動面54dが形成される構成である。   As in the case of a known rotary encoder, a detected portion 54c such as a slit is provided at the resolution of the tilt angle detection in the vicinity of the arc-shaped outer peripheral portion of the scale portion 54b that is farthest from the ascending / descending rotary shaft 53a. A plurality of pieces are arranged radially with a size and interval corresponding to. The center of the arrangement of the detected parts 54c coincides with the center position of the ascending / descending rotary shaft 53a in the attached state of the scale part 54b, that is, the tilting center of the drive mechanism part 60. Further, a sliding surface 54d having a substantially semi-cylindrical surface is formed at a portion of the scale portion 54b which is a substantial fan shape.

スケール部54bは、駆動機構部60のハウジング61側部に突出する取付部61aに取付けられると共に、駆動機構部60の傾動中心に一致する前記昇降用回転軸53aの外周面に対し、摺動面54dを常に接触させた状態とされる。   The scale portion 54b is attached to an attachment portion 61a that protrudes on the side of the housing 61 of the drive mechanism portion 60, and is a sliding surface with respect to the outer peripheral surface of the elevating rotary shaft 53a that coincides with the tilting center of the drive mechanism portion 60. 54d is always in contact.

詳細には、スケール部54bは、ベース部53に支持された状態の駆動機構部60における揉み玉51から離れた背面側で且つ昇降用回転軸53aと直交する向きから、昇降用回転軸53aに近接して摺動面54dと昇降用回転軸53aとを摺接状態とされると共に、この軸への摺接状態で当接した駆動機構部60の取付部61aに対し、軸に近接させた方向とは略直角となる、昇降用回転軸53aと直交する他の向きから、係止部材としてのねじ61bを用いてねじ止めされて、駆動機構部60に固定される仕組みである。   More specifically, the scale portion 54b is connected to the ascending / descending rotation shaft 53a from the back side away from the kneading balls 51 in the drive mechanism portion 60 supported by the base portion 53 and from the direction orthogonal to the ascending / descending rotation shaft 53a. The sliding surface 54d and the ascending / descending rotary shaft 53a are brought into sliding contact with each other, and the mounting portion 61a of the drive mechanism portion 60 that is in contact with the shaft in sliding contact with the shaft is brought close to the shaft. This is a mechanism that is fixed to the drive mechanism unit 60 by being screwed using a screw 61b as a locking member from another direction orthogonal to the direction and orthogonal to the lifting rotary shaft 53a.

こうして、スケール部54bの摺動面54dと昇降用回転軸53aの外周面とが常に接触する状態とされることで、スケール部54bは軸周りに回動する動き以外を行わないよう拘束される、すなわち、スケール部54bが昇降用回転軸53a周りの回動以外の移動の自由度を有しない状態とされる構成である。   In this way, the sliding surface 54d of the scale portion 54b and the outer peripheral surface of the lifting rotary shaft 53a are always in contact with each other, so that the scale portion 54b is restrained from performing any movement other than rotating around the axis. In other words, the scale portion 54b is configured not to have a degree of freedom of movement other than rotation around the ascending / descending rotary shaft 53a.

なお、検出部54aとスケール部54bの被検出部54cとの組合わせによる傾動角度の検出は、光や磁気などその用いる検出手段は問わず、選択した検出手段に応じた検出部54aと被検出部54cを採用することができる。   The detection of the tilt angle by the combination of the detection unit 54a and the detected unit 54c of the scale unit 54b is performed regardless of the detection unit used, such as light or magnetism, and the detection unit 54a corresponding to the selected detection unit. The part 54c can be employed.

また、スケール部54bにおいて、昇降用回転軸53aを中心として放射状に配置された状態となるスリット等の被検出部54cを、公知のロータリエンコーダに見られるように、径方向に複数組設けると共に、対応する検出部54aの検出機構も、被検出部54cに合せて複数組設けるようにして、検出結果から傾動の方向を識別したり、可動範囲の限界位置を把握できるようにしてもよい。   Further, in the scale portion 54b, a plurality of detected portions 54c such as slits that are radially arranged around the ascending / descending rotary shaft 53a are provided in the radial direction as seen in a known rotary encoder, A plurality of detection mechanisms of the corresponding detection unit 54a may be provided in accordance with the detected unit 54c so that the direction of tilting can be identified from the detection result or the limit position of the movable range can be grasped.

さらに、ベース部53には、前記昇降モータ57及び昇降用回転軸53aと共に、昇降用回転軸53aの回転を減速して伝達されて回転するスケール歯車57aと、ロータリエンコーダ54の検出部54aと並べて取付けられて、スケール歯車57aの回転変位を検出する昇降変位検出部57bとが配設される構成である。スケール歯車57aの回転した量を昇降変位検出部57bで検出して制御部40へ信号を出力すると、昇降用回転軸53a及び駆動ローラ55の回転数に対応しているスケール歯車57aの回転変位から、制御部40がガイドフレーム20上におけるメカユニット50の昇降に係る変位を取得可能となる仕組みである。   Further, the base unit 53 is aligned with the lifting motor 57 and the lifting rotary shaft 53a along with the scale gear 57a that rotates by reducing the rotation of the lifting rotary shaft 53a and the detection unit 54a of the rotary encoder 54. A lifting / lowering displacement detector 57b that is attached and detects the rotational displacement of the scale gear 57a is disposed. When the amount of rotation of the scale gear 57a is detected by the elevation displacement detector 57b and a signal is output to the controller 40, the rotation displacement of the scale gear 57a corresponding to the number of revolutions of the elevation shaft 53a and the drive roller 55 is detected. In this mechanism, the control unit 40 can acquire the displacement associated with the raising and lowering of the mechanical unit 50 on the guide frame 20.

このように駆動機構部60の側方となるベース部53の開口部周縁部に、ロータリエンコーダ54の検出部54aと並べて昇降変位検出部57bを設けるようにすることで、ロータリエンコーダ54の検出部54aからの信号と昇降変位検出部57bからの信号を制御部40にそれぞれ出力する各信号処理回路を、一つの回路基板53lにまとめてベース部53上に配置することができ、ベース部53上の各部品のレイアウトをより簡略にできると共に、回路基板53lと制御部40間の配線を大幅に省略、単純化可能となる。   As described above, the detection unit of the rotary encoder 54 is provided at the peripheral edge of the opening of the base unit 53 on the side of the drive mechanism unit 60 by arranging the elevation displacement detection unit 57b along with the detection unit 54a of the rotary encoder 54. Each signal processing circuit that outputs the signal from 54a and the signal from the vertical displacement detection unit 57b to the control unit 40 can be arranged on the base unit 53 in one circuit board 53l. The layout of each component can be simplified, and the wiring between the circuit board 531 and the control unit 40 can be largely omitted and simplified.

前記駆動ローラ55は、ベース部53の側端部下寄りで、駆動機構部60の傾動の中心を兼ねる昇降用回転軸53aの端部に取付けられ、昇降用回転軸53aを中心としてベース部53に対し回動可能として配設され、ベース部53の起立部分53e、53f寄りの端部を円筒面状、残りの他部分を歯車状のピニオンギヤ部55aとして形成される構成である。この駆動ローラ55は、昇降モータ57が一体の減速機構を介して昇降用回転軸53aを回転駆動することにより、この昇降用回転軸53aと共に回転する仕組みである。   The drive roller 55 is attached to the end of the elevating rotary shaft 53a that also serves as the center of tilting of the drive mechanism 60 near the lower side end of the base 53, and is attached to the base 53 with the elevating rotary shaft 53a as a center. The base portion 53 is disposed so as to be rotatable, and the end portions of the base portion 53 near the standing portions 53e and 53f are formed as a cylindrical surface, and the other portion is formed as a gear-like pinion gear portion 55a. The drive roller 55 is a mechanism that rotates together with the lifting rotary shaft 53a when the lifting motor 57 rotates and drives the lifting rotary shaft 53a via an integral speed reduction mechanism.

この駆動ローラ55に加え、ベース部53側端部上側にはガイドローラ59がそれぞれ回動可能に取付けられている。これら駆動ローラ55とガイドローラ59をガイドフレーム20に挿嵌すると共に、駆動ローラ55のピニオンギヤ部55aをガイドフレーム20のラック21と噛合させることで、ベース部53側端部がガイドフレーム20に支持され、ベース部53は背もたれ部上下方向に移動可能で且つ他方向への動きを拘束されることとなる。   In addition to the drive roller 55, guide rollers 59 are rotatably attached to the upper side of the base 53 side end. The drive roller 55 and the guide roller 59 are inserted into the guide frame 20, and the pinion gear portion 55 a of the drive roller 55 is engaged with the rack 21 of the guide frame 20, so that the end portion on the base portion 53 side is supported by the guide frame 20. Thus, the base portion 53 can move in the vertical direction of the backrest portion and is restrained from moving in the other direction.

さらに、ベース部53側端部における駆動ローラ55とガイドローラ59の各近傍には、ローラ56a、56bが起立部分53e、53fで支持されつつ回動可能に配設される。これらローラ56a、56bは、駆動ローラ55とガイドローラ59がガイドフレーム20に挿嵌された状態で、ガイドフレーム20におけるラック21のある面の裏側にあたる外周面に転がり接触する。   Further, rollers 56a and 56b are rotatably disposed near the drive roller 55 and the guide roller 59 at the end on the side of the base 53 while being supported by the standing portions 53e and 53f. These rollers 56 a and 56 b are in rolling contact with the outer peripheral surface of the guide frame 20 on the back side of the surface with the rack 21 in a state where the drive roller 55 and the guide roller 59 are inserted into the guide frame 20.

各ローラ56a、56bは、ベース部53側端部における各駆動ローラ55と各ガイドローラ59にそれぞれ一つずつ対応させて配設され、各駆動ローラ55や各ガイドローラ59の配置位置に対し、これらの位置とガイドフレーム20を隔てた反対側に配設される。   Each of the rollers 56a and 56b is arranged corresponding to each drive roller 55 and each guide roller 59 at the end on the base 53 side, and with respect to the arrangement position of each drive roller 55 and each guide roller 59, These positions are arranged on the opposite side of the guide frame 20.

各ローラ56a、56bは、最も近い駆動ローラ55又はガイドローラ59との間隔をそれぞれ維持し、駆動ローラ55とガイドローラ59がガイドフレーム20に挿嵌される状態で、ガイドフレーム20の外周面に転がり接触し、駆動ローラ55とローラ56aとの間、並びに、ガイドローラ59とローラ56bとの間に、それぞれガイドフレーム20の一部が挟まれることで、駆動ローラ55とガイドローラ59がガイドフレーム20からの離隔を阻止され、ガイドフレーム20に接して動く状態が得られる。   Each of the rollers 56a and 56b maintains a distance from the nearest drive roller 55 or guide roller 59, and the drive roller 55 and the guide roller 59 are inserted into the guide frame 20 and are fitted to the outer peripheral surface of the guide frame 20. A part of the guide frame 20 is sandwiched between the driving roller 55 and the roller 56a and between the guide roller 59 and the roller 56b, so that the driving roller 55 and the guide roller 59 are guided to the guide frame. A state in which the guide frame 20 moves in contact with the guide frame 20 is obtained.

メカユニット50は、ベース部53の側端部における駆動ローラ55やガイドローラ59を一対のガイドフレーム20にそれぞれ上下移動可能に支持されることで、ガイドフレーム20に挟まれる配置状態となる。
そして、駆動ローラ55が、昇降モータ57による駆動に伴って回転することで、ラック21との噛合位置を変えてガイドフレーム20を走行する状態となり、同時にベース部53を含むメカユニット50全体をガイドフレーム20に沿って背もたれ部13の上下に移動させ、背もたれ部13における揉み玉51の位置(揉み玉による施療対象部位)を上下に変えられる仕組みとなっている。
The mechanical unit 50 is placed between the guide frame 20 by supporting the drive roller 55 and the guide roller 59 at the side end portion of the base portion 53 so as to be vertically movable by the pair of guide frames 20.
Then, the drive roller 55 rotates in accordance with the driving by the lifting motor 57, thereby changing the meshing position with the rack 21 and running the guide frame 20, and simultaneously guiding the entire mechanical unit 50 including the base portion 53. The mechanism is configured such that the position of the kneading balls 51 in the backrest 13 (the treatment target site by the kneading balls) can be changed up and down by moving the backrest 13 up and down along the frame 20.

そして、メカユニット50は、設定されたマッサージの内容に応じて、制御部40による制御で、昇降モータ57を作動させて背もたれ部13の上下に移動し、揉み玉51の上下位置を調整されると共に、進退モータ58の作動による揉み玉51と駆動機構部60の傾動で、揉み玉51の被施療者側への突出量を調整されて、揉み玉51をマッサージの対象箇所に位置させる。揉み玉51の移動後、又はこうした揉み玉51の移動と並行して、制御部40が、マッサージの種類に応じて、メカユニット50における駆動機構部60の揉み、叩き用のモータを作動させ、揉み玉51に設定された揉みや叩き等のマッサージに対応した動きを行わせることとなる。   Then, the mechanical unit 50 is moved up and down the backrest 13 by operating the elevating motor 57 under the control of the control unit 40 according to the set massage, and the vertical position of the kneading balls 51 is adjusted. At the same time, the amount of protrusion of the kneading balls 51 toward the user is adjusted by the tilting of the kneading balls 51 and the drive mechanism 60 by the operation of the advance / retreat motor 58, and the kneading balls 51 are positioned at the massage target location. After the movement of the kneading balls 51 or in parallel with the movement of the kneading balls 51, the control unit 40 activates the motor for kneading and hitting the drive mechanism 60 in the mechanical unit 50 according to the type of massage. The movement corresponding to massage such as itchiness and hitting set in the kneading balls 51 is performed.

前記肘掛部14は、座部12の両側に配設され、背もたれ部13がリクライニング角度を変化させたり、座部12が傾動した場合でも、被施療者の前腕を安定的に支持するよう形成される構成である。この肘掛部14にも、前記エアポンプ70による空気の給排で動作するエアセルを配設して、被施療者の前腕部に対しマッサージを行える構成としてかまわない。   The armrests 14 are disposed on both sides of the seat 12 and are configured to stably support the forearm of the user even when the backrest 13 changes the reclining angle or the seat 12 tilts. This is a configuration. The armrest portion 14 may also be configured such that an air cell that operates by supplying and discharging air by the air pump 70 can be provided to massage the forearm portion of the user.

前記脚支持部15は、座部12の前側に位置し、座部12前端付近を中心として傾動可能に配設され、内蔵のアクチュエータ(図示を省略)により傾斜角度を調整されるものである。この脚支持部15にも、前記エアポンプ70による空気の給排で動作する脚用エアセルや、上下に移動しつつ脚を押圧するローラ等の施療機構を配設するようにしてかまわない。   The leg support portion 15 is positioned on the front side of the seat portion 12 and is disposed so as to be tiltable about the vicinity of the front end of the seat portion 12, and the tilt angle is adjusted by a built-in actuator (not shown). A treatment mechanism such as a leg air cell that operates by supplying and discharging air by the air pump 70 and a roller that presses the leg while moving up and down may also be provided in the leg support portion 15.

前記リモコン30は、マッサージ機に対する各種操作入力を受付ける多数のスイッチや表示部を備え、マッサージ機1の側部におけるスタンド31に着脱自在に設置され、マッサージに係る操作入力を制御部40に送信するものである。なお、リモコン30のスイッチや表示部の位置を被施療者にとって最適位置とするために、スタンド31の位置は調整可能となっている。   The remote controller 30 includes a large number of switches and display units for receiving various operation inputs to the massage machine, is detachably installed on the stand 31 on the side of the massage machine 1, and transmits operation inputs related to massage to the control unit 40. Is. Note that the position of the stand 31 can be adjusted so that the position of the switch and the display unit of the remote controller 30 is the optimum position for the user.

前記制御部40は、あらかじめ被施療者の身体各部位置検出を実行して得られた検出結果に基づいて、施療機構やマッサージ機の他の各可動部分を被施療者に対応した状態に調整すると共に、施療機構や他の各可動部分に対し、リモコン操作やあらかじめ記録設定された施療内容、また前記検出結果の情報に基づいて、適切な施療の実行のための制御を行うものである。   The control unit 40 adjusts the other movable parts of the treatment mechanism and the massage machine to a state corresponding to the user based on the detection result obtained by detecting the positions of the body parts of the user in advance. At the same time, control for performing appropriate treatment is performed on the treatment mechanism and other movable parts based on the remote control operation, the treatment contents recorded and set in advance, and the information on the detection result.

この制御部40は、そのハードウェア構成として、CPUやメモリ、入出力インターフェース等を備えるコンピュータとなっており、メモリ等に格納されるプログラムにより、コンピュータを制御部40として動作させる仕組みである。この制御部40をなすコンピュータは、CPUやメモリ、ROM等を一体的に形成されたマイクロコンピュータとしてもかまわない。   The control unit 40 is a computer including a CPU, a memory, an input / output interface, and the like as its hardware configuration, and is a mechanism that causes the computer to operate as the control unit 40 by a program stored in the memory or the like. The computer constituting the control unit 40 may be a microcomputer in which a CPU, a memory, a ROM, and the like are integrally formed.

この制御部40をなすコンピュータのユニットは、座部12直下等のマッサージ機1内部の所定のスペースに配設され、リモコン30と通信可能な状態とされると共に、メカユニット50の各種モータや、座部12や背もたれ部13、脚支持部15を傾動させる各アクチュエータ、エアポンプ70とそれぞれ電気的に接続され、被施療者の身体各部位置検出の際にはあらかじめ設定された位置検出用プログラムに基づく制御信号出力により、また、マッサージ実行の際には設定されたマッサージのデータに基づく制御信号出力により、これらの駆動機構の作動を制御する。   The computer unit constituting the control unit 40 is disposed in a predetermined space inside the massage machine 1 such as directly under the seat 12 and is in a state where it can communicate with the remote controller 30, and various motors of the mechanical unit 50, The seat 12, the backrest 13, the actuators for tilting the leg support 15, and the air pump 70 are electrically connected to each other, and the position of each part of the body of the user is detected based on a preset position detection program. The operation of these drive mechanisms is controlled by the control signal output and by the control signal output based on the set massage data at the time of massage execution.

加えて、制御部40は、メカユニット50や各アクチュエータの変位量を出力するエンコーダ等の信号出力手段とも電気的に接続されており、メカユニット50の状態や、座部12、背もたれ部13、及び脚支持部15の傾斜等の状態を把握しつつ、モータやアクチュエータ等の駆動手段の作動制御を行うこととなる。   In addition, the control unit 40 is also electrically connected to signal output means such as an encoder that outputs the displacement amount of the mechanical unit 50 and each actuator, and the state of the mechanical unit 50, the seat portion 12, the backrest portion 13, In addition, the operation control of the driving means such as the motor and the actuator is performed while grasping the state of the leg support 15 such as the inclination.

この他、制御部40は、公知のマッサージ機と同様に、マッサージに先立つ被施療者の身体各部位置検出として、メカユニット50を制御し、メカユニット50を背もたれ部13における初期位置からガイドフレーム20に沿って移動させ、揉み玉51を被施療者に沿って動かす過程で、背もたれ部13にもたれた被施療者側からの揉み玉51に対する圧力の変化や揉み玉51の傾き変化等を順次取得し、この情報に基づいて、被施療者の肩位置、背骨のライン、腰位置を検出することもできる。   In addition, the control unit 40 controls the mechanical unit 50 to detect the position of each part of the body of the user prior to the massage, in the same manner as a known massage machine, and the guide unit 20 controls the mechanical unit 50 from the initial position in the backrest 13. In the process of moving the kneading balls 51 along the user, a change in pressure with respect to the kneading balls 51 from the user leaning against the backrest 13 and a change in the inclination of the kneading balls 51 are sequentially acquired. Based on this information, the shoulder position, spine line, and waist position of the user can also be detected.

次に、本実施形態に係るマッサージ機のメカユニットにおける駆動機構部の傾動調整状態について説明する。前提として、マッサージ機1に被施療者が着座して背中を背もたれ部13にもたれさせた状態で、マッサージ機1の主電源が入とされ、マッサージ機1が起動して、被施療者の体形検出などのマッサージ開始前の準備動作や、背もたれ部13等の傾斜角度調整等が完了し、さらに、被施療者によりマッサージコース等の動作状態指示が入力されて、制御部40が被施療者に対する揉み玉による施療を既に実行しているか、これから施療を実行しようとしているものとする。   Next, the tilt adjustment state of the drive mechanism unit in the mechanical unit of the massage machine according to the present embodiment will be described. As a premise, the main power of the massage machine 1 is turned on with the user seated on the massage machine 1 and the back leaning against the backrest 13, the massage machine 1 is activated, and the body shape of the user The preparation operation before the start of massage such as detection and the adjustment of the inclination angle of the backrest portion 13 and the like are completed, and the operation state instruction such as the massage course is input by the user, and the control unit 40 is directed to the user It is assumed that the treatment with the kneading balls has already been performed or the treatment is about to be performed.

揉み玉51による施療の場合、設定された施療内容に応じて、制御部40は、昇降モータ57を作動させて各駆動ローラ55を回転させ、ガイドフレーム20に対しメカユニット50全体を上下に移動させ、揉み玉51の上下位置を調整する。   In the case of treatment with the kneading balls 51, the control unit 40 operates the lifting motor 57 to rotate each drive roller 55 according to the set treatment content, and moves the entire mechanical unit 50 up and down relative to the guide frame 20. The vertical position of the kneading balls 51 is adjusted.

この際、駆動ローラ55とローラ56a、並びに、ガイドローラ59とローラ56bが、それぞれガイドフレーム20の一部を挟んだ状態としていることで、駆動ローラ55とラック21とがこれらローラ56a、56bで離隔を阻止されて噛合状態を確実に維持し、回転する駆動ローラ55がガイドフレーム20に対し確実に上下動できる。これにより、メカユニット50全体を正確に上下動させられ、揉み玉51を正確に所望の上下方向位置に調整できる。   At this time, the drive roller 55 and the roller 56a, and the guide roller 59 and the roller 56b sandwich the part of the guide frame 20, respectively, so that the drive roller 55 and the rack 21 are connected by these rollers 56a and 56b. The separation is prevented and the meshing state is reliably maintained, and the rotating driving roller 55 can move up and down reliably with respect to the guide frame 20. Thereby, the whole mechanical unit 50 can be moved up and down accurately, and the kneading balls 51 can be accurately adjusted to a desired vertical position.

そして、これらローラ56a、56bの存在でガイドフレーム20の形状精度に関わりなく駆動ローラ55をラック21寄りに位置させてピニオンギヤ部55aとラック21の噛合状態を維持できる。このため、ガイドフレームを高精度に形成し且つ外力に対しその形状を厳密に維持できる高い剛性を確保する必要がなく、ガイドフレーム構造の簡略化、軽量化が図れる。   The presence of these rollers 56a and 56b makes it possible to maintain the meshing state of the pinion gear portion 55a and the rack 21 by positioning the driving roller 55 closer to the rack 21 regardless of the shape accuracy of the guide frame 20. For this reason, it is not necessary to form the guide frame with high accuracy and to secure high rigidity capable of strictly maintaining the shape with respect to the external force, and the guide frame structure can be simplified and reduced in weight.

また、制御部40は、進退モータ58を作動させて駆動制御部60をベース部53に対し傾動させ、揉み玉51を被施療者に対し進退させて、揉み玉51の被施療者側への突出量を調整して、揉み玉51を施療対象箇所に位置させる。この後、又はこうした揉み玉51の移動と並行して、制御部40は、施療の種類に応じて、揉みモータ62及び/又は叩きモータ63を作動させ、設定された揉みや叩き等のマッサージに対応した動きを揉み玉51に行わせる。   In addition, the control unit 40 operates the advance / retreat motor 58 to tilt the drive control unit 60 with respect to the base unit 53 to advance and retract the kneading balls 51 with respect to the user, so that the kneading balls 51 are moved toward the user. The amount of protrusion is adjusted and the kneading balls 51 are positioned at the treatment target location. After this, or in parallel with the movement of the kneading balls 51, the control unit 40 operates the kneading motor 62 and / or the tapping motor 63 according to the type of treatment, and performs massage such as setting kneading and tapping. The kneading balls 51 are caused to perform the corresponding movement.

揉み玉51の被施療者側への突出量調整にあたり、制御部40は、あらかじめ設定された量、又は、被施療者による入力指示に従って調整された量だけ、揉み玉51を被施療者に対し進退させるように、進退モータ58を作動させて駆動制御部60を傾動させる。制御部40は、ロータリエンコーダ54からの信号出力で揉み玉51及び駆動制御部60の傾動角度を監視し、駆動制御部60が傾動終了位置に到達したと判定すると、進退モータ58に対し作動停止の制御指令を送出して、進退モータ58を停止状態とし、駆動機構部60の傾動を停止させて、揉み玉51を適切な位置に保持することとなる。   In adjusting the protrusion amount of the kneading balls 51 toward the user, the control unit 40 applies the kneading balls 51 to the user by a preset amount or an amount adjusted according to an input instruction by the user. The advancing / retreating motor 58 is operated to tilt the drive control unit 60 so as to advance and retreat. The control unit 40 monitors the tilt angles of the kneading balls 51 and the drive control unit 60 based on the signal output from the rotary encoder 54, and when the drive control unit 60 determines that the tilt end position has been reached, the operation of the advance / retreat motor 58 is stopped. Is sent to stop the advancing / retreating motor 58, and the tilting of the drive mechanism 60 is stopped to hold the kneading balls 51 in an appropriate position.

駆動機構部60を傾動させる中、仮に、駆動機構部各部の部品精度や組立精度が高くないことや、揉み玉51に被施療者側から強い力が加わり、駆動機構部60が傾動に対する抵抗あるいは傾動を促進させようとする力を受けて、駆動機構部自体に歪みを生じたことにより、駆動機構部60の傾動に他の動き成分が加わる状態になったとしても、ロータリエンコーダ54のスケール部54bは常に昇降用回転軸53aに摺接してこれに拘束され、軸周りの回動のみ行うものとなっていることで、スケール部54bは駆動機構部60の傾動以外の動きの影響を受けることなく傾動し、検出部54aに対し適切な位置関係を維持できることで、スケール部54bの傾動を検出部54aで正しく検出でき、制御部40において駆動機構部60の傾動角度に基づく揉み玉51の進退移動量を正確に取得可能となる。   While tilting the drive mechanism 60, it is assumed that the parts accuracy and assembly accuracy of each part of the drive mechanism are not high, or a strong force is applied to the kneading balls 51 from the user side, so that the drive mechanism 60 is resistant to tilting or Even if another motion component is added to the tilting of the drive mechanism 60 due to the distortion that occurs in the drive mechanism due to the force for promoting the tilt, the scale portion of the rotary encoder 54 54b is always in sliding contact with and constrained to the ascending / descending rotary shaft 53a and only rotates around the axis, so that the scale portion 54b is affected by movements other than tilting of the drive mechanism 60. Tilting and maintaining an appropriate positional relationship with respect to the detection unit 54a, the tilting of the scale unit 54b can be correctly detected by the detection unit 54a, and the control unit 40 tilts the drive mechanism unit 60. The can accurately obtain the forward and backward movement of the kneading balls 51 based on time.

また、駆動機構部60が力を受けるのに伴い、駆動機構部60を支える昇降用回転軸53a及びベース部53に強い応力が加わっても、ベース部53における開口部53b周囲に一体の起立部分53c、〜、53hを十分に配置した剛性の高い構造により、ベース部のゆがみが生じにくく、ロータリエンコーダ54による傾動角度の検出も問題なく行え、検出した傾動角度に基づいて制御部40で適切に傾動を制御できる。   Further, as the driving mechanism 60 receives a force, even if a strong stress is applied to the elevating rotary shaft 53a that supports the driving mechanism 60 and the base 53, an upright portion integrally formed around the opening 53b in the base 53. Due to the highly rigid structure in which 53c to 53h are sufficiently arranged, the base portion is hardly distorted, and the tilt angle can be detected by the rotary encoder 54 without any problem, and the control unit 40 can appropriately detect the tilt angle based on the detected tilt angle. Tilt can be controlled.

この他、駆動機構部60が傾動用歯車58aと歯部67との噛合に基づいて傾動させられる限界位置まで傾動した場合には、ロータリエンコーダ54の検出部54aが、スケール部54bにおける被検出部54cのうち、傾動限界点を示すものを検出して対応する信号を出力し、制御部40はこれを受けて傾動終了を判定し、進退モータ58を停止させ、揉み玉51及び駆動機構部60を停止させる。   In addition, when the drive mechanism unit 60 is tilted to a limit position where the drive mechanism unit 60 is tilted based on the meshing of the tilting gear 58a and the tooth portion 67, the detection unit 54a of the rotary encoder 54 is detected by the scale unit 54b. The controller 40 detects a tilt limit point out of 54c and outputs a corresponding signal. The control unit 40 receives this signal, determines the end of tilting, stops the forward / backward motor 58, stops the kneading balls 51 and the drive mechanism unit 60. Stop.

このように、本実施形態に係るマッサージ機は、ベース部53に対する駆動機構部60の傾動角度を検出するロータリエンコーダ54のスケール部54bが、駆動機構部60の傾動中心となる昇降用回転軸53aに常に摺接し、駆動機構部60が傾動する際に、スケール部54bが軸外周の円筒面に接触しながら傾動する状態となって、その傾動に係る動きを昇降用回転軸53aで拘束され、移動の自由度をこの軸周りの回動のみに制限されることから、駆動機構部60の傾動と同時に傾動するスケール部54bが、正確に駆動機構部60の傾動中心周りに傾動することとなり、ロータリエンコーダ54での傾動角度の検出に際し、仮に、駆動機構部60各部の低い部品精度や組立精度の影響、あるいは、揉み玉側から加わる力による駆動機構部60の歪みの影響で、駆動機構部60の軸周りの傾動に他の動き成分が加わる状態になったとしても、そうした動きの変化がスケール部54bに反映されず、スケール部54bが検出部54aに対し適切な位置関係を維持しつつ駆動機構部60の傾動に対応して傾動でき、ロータリエンコーダ54として適切に傾動角度の検出を行って、揉み玉51の進退に係る制御の正確な実行が図れる。   As described above, in the massage machine according to the present embodiment, the scale portion 54 b of the rotary encoder 54 that detects the tilt angle of the drive mechanism 60 with respect to the base 53 is the ascending / descending rotary shaft 53 a that is the tilt center of the drive mechanism 60. When the drive mechanism 60 tilts, the scale portion 54b is tilted while being in contact with the cylindrical surface of the outer periphery of the shaft, and the movement related to the tilt is restrained by the lifting rotary shaft 53a. Since the degree of freedom of movement is limited only to the rotation around this axis, the scale portion 54b that tilts simultaneously with the tilt of the drive mechanism portion 60 tilts accurately around the tilt center of the drive mechanism portion 60. When the tilt angle is detected by the rotary encoder 54, it is assumed that the drive mechanism 60 is affected by the low component accuracy and assembly accuracy of each part of the drive mechanism 60 or the force applied from the kneading ball side. Even if another movement component is added to the tilt around the axis of the drive mechanism 60 due to the distortion of the section 60, such a change in movement is not reflected in the scale section 54b, and the scale section 54b 54a can be tilted corresponding to the tilting of the drive mechanism unit 60 while maintaining an appropriate positional relationship, and the rotary encoder 54 appropriately detects the tilting angle and accurately executes control related to the advancement and retraction of the kneading balls 51. Can be planned.

1 マッサージ機
11 基台部
12 座部
13 背もたれ部
13a 背もたれ部フレーム
14 肘掛部
15 脚支持部
20 ガイドフレーム
21 ラック
30 リモコン
31 スタンド
40 制御部
50 メカユニット
51 揉み玉
52 揉み玉支持アーム
53 ベース部
53a 昇降用回転軸
53b 開口部
53c、53d 起立部分
53e、53f 起立部分
53g、53h 起立部分
53i 凹部
53j 傾斜部
53k ストッパ部
53l 回路基板
54 ロータリエンコーダ
54a 検出部
54b スケール部
54c 被検出部
54d 摺動面
55 駆動ローラ
55a ピニオンギヤ部
56 ローラ
57 昇降モータ
57a スケール歯車
57b 昇降変位検出部
58 進退モータ
58a 傾動用歯車
59 ガイドローラ
60 駆動機構部
61 ハウジング
61a 取付部
61b ねじ
62 揉みモータ
63 叩きモータ
67 歯部
70 エアポンプ
71 臀部用エアセル
72 太腿用エアセル
73 背中用エアセル
74 腰用エアセル
DESCRIPTION OF SYMBOLS 1 Massage machine 11 Base part 12 Seat part 13 Back part 13a Back part frame 14 Armrest part 15 Leg support part 20 Guide frame 21 Rack 30 Remote control 31 Stand 40 Control part 50 Mechanical unit 51 Kneading ball 52 Kneading ball support arm 53 Base part 53a Lifting shaft 53b Opening 53c, 53d Standing part 53e, 53f Standing part 53g, 53h Standing part 53i Recessed part 53j Inclined part 53k Stopper part 53l Circuit board 54 Rotary encoder 54a Detection part 54b Scale part 54c Detected part 54d Slided part 54d Surface 55 Drive roller 55a Pinion gear portion 56 Roller 57 Lift motor 57a Scale gear 57b Lift displacement detector 58 Advance / retreat motor 58a Tilt gear 59 Guide roller 60 Drive mechanism portion 61 Housing 61a Mounting part 61b Screw 62 Knitting motor 63 Tapping motor 67 Tooth part 70 Air pump 71 Hip cell air cell 72 Thigh air cell 73 Back air cell 74 Waist air cell

Claims (1)

背もたれ部に当該背もたれ部の上下方向に昇降移動可能として内蔵され、被施療者に対し施療子を動かして施療を実行する施療機構を備えるマッサージ機において、
前記施療機構が、背もたれ部内部のガイドフレーム20に昇降移動可能に支持されるベース部53を有し、
このベース部53は、中央に貫通孔を有する一枚の金属平板における外周部分の一部及び前記貫通孔周縁部の一部を、曲げ加工で、メカユニット50の支持状態で被施療者に面しない側となる方へ起立状態とすることにより、略矩形状の外周形状及び略矩形状の開口部を有する成形体とされるとともに、
前記ベース部53の背もたれ部下方向の端部となる起立部分53dの先端側所定範囲を、所定の傾斜角度で下方向へ折曲げて傾斜部53jとしたことを特徴とするマッサージ機。
In a massage machine equipped with a treatment mechanism that is built in the backrest part so that it can move up and down in the vertical direction of the backrest part, and moves the treatment element for the user to perform treatment,
The treatment mechanism has a base portion 53 supported so as to be movable up and down by the guide frame 20 inside the backrest portion;
The base 53 is formed by bending a part of the outer peripheral part and part of the peripheral part of the through-hole in a single metal flat plate having a through-hole at the center, while supporting the mechanical unit 50 to face the user. with standing state toward which the city side, Rutotomoni is a molded article having a substantially rectangular outer peripheral shape and a substantially rectangular opening,
A massaging machine characterized in that a predetermined range on the distal end side of the upright portion 53d, which is an end portion in the lower direction of the back portion of the base portion 53, is bent downward at a predetermined inclination angle to form an inclined portion 53j .
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