JP3221502U - Hand grip - Google Patents

Hand grip Download PDF

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JP3221502U
JP3221502U JP2019000946U JP2019000946U JP3221502U JP 3221502 U JP3221502 U JP 3221502U JP 2019000946 U JP2019000946 U JP 2019000946U JP 2019000946 U JP2019000946 U JP 2019000946U JP 3221502 U JP3221502 U JP 3221502U
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force application
application unit
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grip
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長佑 林
長佑 林
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【課題】造形が特殊で、かつ、ダンピング強度が調整できる握力器を提供する。【解決手段】第1力付与部10と、第2力付与部20と、連結部30とを備え、連結部30は、第1力付与部10と第2力付与部20との間に夾角θを形成させるように、一体成形方式で第1力付与部10と第2力付与部20との相互に対応する一側に連結され、第1力付与部10と第2力付与部20とは、それぞれ板状構造体であると共に、使用者の握持のために供され、連結部30は、第1力付与部10と第2力付与部20とを相互に対合して前記夾角θの角度値を縮小する場合、ダンピング効果を提供すると共に、第1力付与部10と第2力付与部20とが位置復帰する場合、所要の復元力を提供する。【選択図】図2To provide a grip having a special shape and capable of adjusting damping strength. SOLUTION: A first force applying unit 10, a second force applying unit 20, and a connecting unit 30 are provided, and the connecting unit 30 forms a depression angle between the first force applying unit 10 and the second force applying unit 20. The first force application unit 10 and the second force application unit 20 are connected to one side corresponding to each other of the first force application unit 10 and the second force application unit 20 by an integral molding method so as to form θ. These are plate-like structures, respectively, and are provided for gripping by the user, and the connecting unit 30 is configured such that the first force application unit 10 and the second force application unit 20 face each other to form the depression angle. When the angle value of θ is reduced, a damping effect is provided, and when the first force application unit 10 and the second force application unit 20 return in position, a required restoring force is provided. [Selected figure] Figure 2

Description

本考案は、握力器に係り、特に造形が特殊であり、かつダンピング強度が調整できる斬新な構造形態の開示に関するものである。   The present invention relates to a grip, and in particular to the disclosure of a novel structural form which is special in shape and in which the damping strength can be adjusted.

従来、手部の筋肉力を鍛練する目的を達成するために、握力器は、今までずっと多くの人々の1番望ましい選択肢である。而して、従来の握力器具とは、主にねじりバネの両端にそれぞれハンドルが固設されるものであり、使用者が力を加えて握持することで、握力を鍛練する目的を奏することができる。   Traditionally, in order to achieve the purpose of training the muscles of the hand, a hand grip is by far the most desirable option for many people. In the conventional grip equipment, handles are fixed mainly at both ends of the torsion spring, and the purpose of exerting the purpose of training the grip strength by the user applying and holding the grip Can.

ただし、このような従来の構造形態は、実際の使用経験において、依然として下記の問題点が存在することが発見された。
1.製造価格が高価である。習用の握力器の主要な構成部材は、線径が約3mmのねじりバネであり、その製造価格がかなり高額になってしまい、必ずしも一般の消費者に受け入れられるものではない。
2.ねじりが大きくて調整不能である。前記習用の握力器のねじりが非常に大きくて調整不能であると共に、子供、高齢者や握り強さが比較的に小さい女性などに相応しくなく、いつの間にかその消費者層が制限されてしまい、また、そのねじりが大きいので、使用時に少し不注意にしていると、手部の運動障害を非常に引き起こしやすいという問題があった。
3.機能が単一である。単一の部位のみを鍛練し、異なる部位に鍛練しようとすると、異なる握力器を用意しなければならないため、使用者にとっては相当に経済的とは言えない。
However, it has been discovered that such conventional structural forms still have the following problems in actual use experience.
1. The manufacturing cost is expensive. The main component of a conventional grip is a torsion spring with a wire diameter of about 3 mm, which is quite expensive to manufacture and is not necessarily acceptable to the general consumer.
2. Torsion is large and not adjustable. The twist of the conventional grip is very large and uncontrollable, and it is unsuitable for children, elderly people, women with relatively small grip strength, etc., and its consumer class is restricted for some time, and Because there is a large amount of twist, carelessness at the time of use has a problem that it is very likely to cause hand movement disorder.
3. Function is single. It is not economical for the user because it is necessary to prepare different grips when training only a single part and trying to train in different parts.

このほか、他の握力器業者が開発した環状の握力器もあり、この握力器は、通常、シリコンと類似する材質から作製され、材料自身の弾性のみを抵抗として利用し、それに提供される運動(鍛練)効果にかなり限界がある。また、この類の材質は、日照や空気接触による酸化現象が生じやすくなり、その使用寿命に影響を及ぼすおそれがある。しかも、このタイプの握力器は、通常、単一の材質から作製されるので、勿論、運動強度を調整する機能を提供することもできない。   There are also annular grips developed by other grip contractors, which are usually made of a material similar to silicon and which only uses the elasticity of the material itself as a resistance and the movement provided to it (Training) The effect is quite limited. In addition, this kind of material is likely to cause oxidation due to sunlight or air contact, which may affect the service life. Moreover, since this type of grip is usually made of a single material, it can not, of course, also provide the function of adjusting the exercise intensity.

本考案は、握力器を提供することを主な目的とし、その解決しようとする技術的課題は、如何にして生き生きとした造形を持ち、より理想的で実用性のある握力器のオリジナルな構造形態を研究開発するかを目標として革新突破を思案することである。   The present invention mainly aims to provide a grip, and the technical problem to be solved is the original structure of a more ideal and practical grip having a vividly shaped figure It is to think about innovation breakthrough with the goal of researching and developing forms.

本考案の課題を解決するための技術的特長は、主としてかかる握力器は、第1力付与部と、第2力付与部と、連結部とを備え、その中、前記連結部は、前記第1力付与部と前記第2力付与部との間に夾角を形成させるように、一体成形方式で前記第1力付与部と前記第2力付与部との相互に対応する一側に連結され、前記第1力付与部と前記第2力付与部とは、それぞれ板状構造体であると共に、使用者の握持のために供され、前記連結部は、前記第1力付与部と第2力付与部とを相互に対合して前記夾角の角度値を縮小する場合、ダンピング効果を提供すると共に、前記第1力付与部と第2力付与部とが位置復帰する場合、所要の復元力を提供する。   The technical features of the invention for solving the problems of the present invention are mainly that such a handgrip includes a first force applying unit, a second force applying unit, and a connecting unit, wherein the connecting unit is the first one. The first force application portion and the second force application portion are connected to mutually corresponding one sides by an integral molding method so as to form a depression angle between the first force application portion and the second force application portion. The first force application unit and the second force application unit are each a plate-like structure, and are provided for gripping of the user, and the connection unit includes the first force application unit and the first force application unit. When reducing the angle value of the depression angle by mutually opposing the two force applying units, a damping effect is provided, and when the first force applying unit and the second force applying unit return in position, a required value is obtained. Provide resiliency.

この斬新な独特の設計によれば、本考案は、従来の技術に比較すると、弾性体を取替える技術手段と生き生きと活発な造形設計を利用することができ、ダンピング値の総合値を調整して握力器の適用範囲を拡大すること、及び消費者の注目を引き付けることなどが達成できる、実用進歩性と好適な産業経済(利用)利益を得ることができる。   According to this novel and unique design, the present invention can utilize the technical means to replace the elastic body and the lively and lively design design compared with the prior art, and adjust the overall value of the damping value It is possible to achieve practical inventive step and favorable industrial economic (utilization) benefits that can be achieved such as expanding the scope of the hand grip and attracting consumer attention.

本考案の第1の好適な実施例の外観斜視図である。FIG. 1 is an external perspective view of a first preferred embodiment of the present invention. 使用者が本考案の第1の好適な実施例を握持した側面図である。FIG. 2 is a side view of the user holding the first preferred embodiment of the present invention. 本考案の第1の好適な実施例の使用状態参考図である。FIG. 5 is a reference view of the usage state of the first preferred embodiment of the present invention. 本考案の第2の好適な実施例の外観斜視図である。FIG. 5 is an external perspective view of a second preferred embodiment of the present invention. 本考案の第2の好適な実施例の分解斜視図である。FIG. 7 is an exploded perspective view of a second preferred embodiment of the present invention. 本考案の第2の好適な実施例の前面図である。FIG. 7 is a front view of a second preferred embodiment of the present invention. 使用者が本考案の第2の好適な実施例を握持した側面図である。FIG. 7 is a side view of the user holding the second preferred embodiment of the present invention. 本考案の第2の好適な実施例の使用状態参考図である。FIG. 5 is a reference view of a second preferred embodiment of the present invention in use. 本考案の第3の好適な実施例の外観斜視図である。FIG. 7 is an external perspective view of a third preferred embodiment of the present invention. 本考案の第4好適な実施例の外観斜視図である。FIG. 7 is an external perspective view of a fourth preferred embodiment of the present invention.

図1と図2を参照し、これらの図に示すのは、本考案の握力器の第1の好適な実施例だが、これらの実施例は説明のみに用いられるもので、実用新案登録請求の際、それらの構造に制限されないものとする。   Referring to FIGS. 1 and 2, it is the first preferred embodiment of the grip according to the present invention, which is used for the purpose of illustration only, and it is the utility model registration request In any case, they shall not be restricted to their structure.

かかる握力器は、第1力付与部10と、第2力付与部20と、連結部30とを備え、その中、前記連結部30は、前記第1力付与部10と前記第2力付与部20との間に夾角θを形成させるように、一体成形方式で前記第1力付与部10と前記第2力付与部20との相互に対応する一側に連結され、前記第1力付与部10と前記第2力付与部20とは、それぞれ板状構造体であると共に、使用者の握持のために供され、前記連結部30は、前記第1力付与部10と第2力付与部20とを相互に対合して前記夾角θの角度値を縮小する場合、ダンピング効果を提供すると共に、前記第1力付与部10と第2力付与部20とが位置復帰する場合、所要の復元力を提供する。   The grip includes a first force application unit 10, a second force application unit 20, and a connection unit 30, wherein the connection unit 30 includes the first force application unit 10 and the second force application. The first force application unit 10 and the second force application unit 20 are connected to mutually corresponding one sides in an integral molding method so as to form a depression angle θ with the unit 20, and the first force application is performed. The unit 10 and the second force application unit 20 are each a plate-like structure, and are provided for gripping the user, and the connection unit 30 is a first force application unit 10 and a second force. When reducing the angle value of the depression angle θ by mutually opposing the applying unit 20, the damping effect is provided, and the positions of the first force applying unit 10 and the second force applying unit 20 return. Provide the required resiliency.

前記第1力付与部10と、前記第2力付与部20と、前記連結部30とは、可撓性材質から作製される。前記第1力付与部10と前記第2力付与部20との内部にそれぞれ第1強化構造11と第2強化構造21とが設置される。前記第1力付与部10と第2力付与部20との上にそれぞれ複数の凹部12,22が設置され、前記複数の凹部12,22は、使用者が前記第1力付与部10と前記第2力付与部20とを握持する時の指先方向に向かって延伸するものであり、使用者が前記第1力付与部10と前記第2力付与部20とを容易に握持することができる。   The first force application unit 10, the second force application unit 20, and the connection unit 30 are made of a flexible material. The first reinforcement structure 11 and the second reinforcement structure 21 are installed inside the first force application unit 10 and the second force application unit 20, respectively. A plurality of recesses 12 and 22 are respectively installed on the first force application unit 10 and the second force application unit 20, and the plurality of recesses 12 and 22 are used by the user for the first force application unit 10 and the first force application unit 10 It extends in the direction of the fingertip when gripping the second force application unit 20, and the user can easily grasp the first force application unit 10 and the second force application unit 20. Can.

上記の構造組立設計により、本考案の使用作動態様について以下のように説明する。図2に示すように、まず、使用者の親指と他の4本の指でそれぞれ前記第1力付与部10と前記第2力付与部20を軽く握持し、かつ使用者の手の各指頭でそれぞれ相対応の凹部12,22の底部を押圧し、かつ使用者の指先が前記第1力付与部10と第2力付与部20との自由端部の方向に向かって延伸する。さらに、図3に示すように、前記第1力付与部10と前記第2力付与部20を押圧したり、解放したりする動作を繰り返すことにより、握力を鍛練する目的を達成することができる。   The above-described structural assembly design will be described as follows for the use operation mode of the present invention. As shown in FIG. 2, first, the first force application unit 10 and the second force application unit 20 are lightly held by the user's thumb and the other four fingers, respectively, and each of the user's hands The bottoms of the corresponding recesses 12 and 22 are pressed by the finger tips, and the user's fingertips extend in the direction of the free ends of the first force application unit 10 and the second force application unit 20. Furthermore, as shown in FIG. 3, by repeating the operations of pressing and releasing the first force application unit 10 and the second force application unit 20, the purpose of training the grip can be achieved. .

図4〜図6に示す本考案の第2の好適な実施例を参照して、この好適な実施例において、前記第1力付与部10Aと前記第2力付与部20Aとの間にさらに弾性体40Aが挟設され、前記第1力付与部10Aと第2力付与部20Aとを相互に対合して前記夾角θの角度値を縮小する場合、前記弾性体40Aを圧迫して本考案のダンピング効果を高め、握力の鍛練効果を強化する。   Referring to the second preferred embodiment of the present invention shown in FIGS. 4 to 6, in this preferred embodiment, a further elastic force is provided between the first force applying portion 10A and the second force applying portion 20A. When the body 40A is interposed and the first force application unit 10A and the second force application unit 20A are mutually opposed to reduce the angle value of the depression angle θ, the elastic body 40A is pressed to form the present invention. Enhance the damping effect of the body and strengthen the training effect of the grip strength.

前記第1力付与部10Aと前記第2力付与部20Aとの内面にそれぞれ第1当止構造13と第2当止構造23とが凸設され、前記第1力付与部10Aと前記第2力付与部20Aとを相互に対合して前記夾角θの角度値を縮小する場合、前記第1当止構造13と前記第2当止構造23とは、前記弾性体40Aに対して当止位置規制の機能を提供する。   A first abutment structure 13 and a second abutment structure 23 are provided on the inner surfaces of the first force application unit 10A and the second force application unit 20A, respectively. When the force application unit 20A is mutually opposed to reduce the angle value of the depression angle θ, the first holding structure 13 and the second holding structure 23 hold the elastic body 40A. Provide position control functions.

この好適な実施例において、前記弾性体40Aは、円球状の構造体であり、かつ前記第1力付与部10Aと前記第2力付与部20Aとの内面にそれぞれ第1凹弧部14と第2凹弧部24とがさらに形成され、前記弾性体40Aが前記第1凹弧部14と前記第2凹弧部24とに一部受容され、前記第1力付与部10Aと前記第2力付与部20Aとを相互に対合して前記夾角θの角度値を縮小する場合、前記第1力付与部10Aと前記第2力付与部20Aとの前記弾性体40Aに対して提供される当止位置規制の機能を強化する。このほか、異なる弾性係数を有する弾性体40Aを取替えることにより、本考案全体のダンピング値を調整する作用を果たし、本考案の適用範囲を拡大することができる。   In this preferred embodiment, the elastic body 40A is a spherical structure, and the first concave arc portion 14 and the first concave portion 14A are formed on the inner surfaces of the first force application portion 10A and the second force application portion 20A, respectively. A two concave arc portion 24 is further formed, the elastic body 40A is partially received by the first concave arc portion 14 and the second concave arc portion 24, and the first force application portion 10A and the second force are formed. When reducing the angle value of the depression angle θ by mutually opposing the applying unit 20A, it is possible to provide the elastic body 40A of the first force applying unit 10A and the second force applying unit 20A. Strengthen the stop position control function. Besides, by replacing the elastic body 40A having different elastic coefficients, it is possible to function to adjust the damping value of the present invention as a whole, and to expand the scope of application of the present invention.

上記の構造組立設計により、本考案の第2の好適な実施例の使用作動態様について以下のように説明する。図7、図8に示すように、本考案の第2の好適な実施例の握持方式と使用方式は、いずれも前述した第1の好適な実施例と同様だが、前記第1力付与部10Aと前記第2力付与部20Aとの間にさらに前記弾性体40Aが挟設されるため、使用者が前記第1力付与部10Aと前記第2力付与部20Aとを圧接触させる場合、前記連結部30は、前記弾性体40Aと同期にしてダンピング効果を提供するので、前述した第1の好適な実施例に比較すると、本考案の第2の好適な実施例は、より好ましい握力の訓練効率を提供することができる。   With the above structural assembly design, the use and operation of the second preferred embodiment of the present invention will be described as follows. As shown in FIGS. 7 and 8, the gripping method and use method of the second preferred embodiment of the present invention are both the same as the first preferred embodiment described above, but the first force application unit Since the elastic body 40A is further interposed between 10A and the second force application unit 20A, when the user brings the first force application unit 10A and the second force application unit 20A into pressure contact, Since the connecting portion 30 provides a damping effect in synchronization with the elastic body 40A, the second preferred embodiment of the present invention has a more favorable grip than the first preferred embodiment described above. Training efficiency can be provided.

本考案の別の設計特徴は、つまり消費者が伝統的な運動フィットネス器具に対する氷のように冷たく剛硬な既存のイメージを柔らげることにある。   Another design feature of the present invention is that the consumer softens the cold and stiff existing image as ice to a traditional exercise fitness device.

図1に示す第1の好適な実施例を参照して、前記連結部30を利用して相互に連結される前記第1力付与部10と前記第2力付与部20は、意図的に貝殻造形に設計され、また、図4〜図6に示す第2の好適な実施例において、前記第1力付与部10Aと前記第2力付与部20Aとにさらに挟設される前記円球状の弾性体40Aを貝殻内に生成される真珠と見なすので、本考案は、握力の訓練に提供されるのみならず、同時により生き生きとした視覚効果を提供する。売り場において、販売・展示時、消費者の注目を引き付けることができ、消費者の購買意欲を高めることができる。   Referring to the first preferred embodiment shown in FIG. 1, the first force application unit 10 and the second force application unit 20, which are mutually connected using the connection unit 30, are shell shells intentionally In the second preferred embodiment shown in FIG. 4 to FIG. 6, the spherical elastic elasticity further interposed between the first force application portion 10A and the second force application portion 20A. By considering the body 40A as a pearl produced in a shell, the present invention is not only provided for training in grip strength, but at the same time provides a more lively visual effect. At the point of sale, at the time of sales and display, it can attract the attention of the consumer, and can enhance the consumer's willingness to buy.

図9に示すように、本考案に掲示された第1力付与部10Bと前記第2力付与部20Bをさらに前記異なる造形の弾性体40Bに合わせて伝統的な軽食「刈包(台湾風ハンバーガー)」のような模様に設計することができ、生き生きと実物に近似の色調に合わせると、使用しない時にでも装飾品として置くことができる。   As shown in FIG. 9, according to the elastic body 40B of the different form, the first light application part 10B and the second power application part 20B displayed in the present invention are further combined with the elastic body 40B of the different shape. It can be designed in a pattern such as “), and when it is vividly matched to an actual color, it can be placed as an ornament even when not in use.

図10に示すように、本考案に掲示された第1力付与部10Cと第2力付与部20Cをさらに前記異なる造形の弾性体40Cに合わせてコンビニに販売されている「ビッグバイトホットドッグ」のような模様に設計することができ、このような造形は、軸線が比較的に長いため、甚だしい場合は前述した各実施例の片手使用モードと異なり、両手で同時に前記第1力付与部10Cと前記第2力付与部20Cを押圧すれば、半分の労力で倍の成果をあげうるという効果がある。   As shown in FIG. 10, the “big bite hot dog” is sold to a convenience store by combining the first force application unit 10C and the second force application unit 20C disclosed in the present invention with the elastic body 40C of the different shape. Such a shape can be designed in such a pattern, and since such a shape has a relatively long axis, unlike the one-hand use mode of each of the above-described embodiments, the first force application portion 10C can be simultaneously performed with both hands. By pressing the second force application unit 20C, it is possible to achieve a double result with a half effort.

10、10A、10B、10C:第1力付与部
11:第1強化構造
12:凹部
13:第1当止構造
14:第1凹弧部
20、20A、20B、20C:第2力付与部
21:第2強化構造
22:凹部
23:第2当止構造
24:第2凹弧部
30:連結部
40A、40B、40C:弾性体
θ:夾角
10, 10A, 10B, 10C: first force application unit 11: first reinforcing structure 12: recess 13: first abutment structure 14: first concave arc unit 20, 20A, 20B, 20C: second force application unit 21 : Second reinforcement structure 22: recess 23: second abutment structure 24: second concave arc 30: connection portions 40A, 40B, 40C: elastic body θ: depression angle

Claims (5)

第1力付与部(10)と、第2力付与部(20)と、連結部(30)とを備える握力器であって、
前記連結部(30)は、前記第1力付与部(10)と前記第2力付与部(20)との間に夾角(θ)を形成させるように、一体成形方式で前記第1力付与部(10)と前記第2力付与部(20)との相互に対応する一側に連結され、前記第1力付与部(10)と前記第2力付与部(20)とは、それぞれ板状構造体であると共に、使用者の握持のために供され、前記連結部(30)は、前記第1力付与部(10)と前記第2力付与部(20)とを相互に対合して前記夾角(θ)の角度値を縮小する場合、ダンピング効果を提供すると共に、前記第1力付与部(10)と前記第2力付与部(20)とが位置復帰する場合、所要の復元力を提供し、かつ前記第1力付与部(10)と、前記第2力付与部(20)と、前記連結部(30)とは、可撓性材質から作製されることを特徴とする、握力器。
A grip having a first force application unit (10), a second force application unit (20), and a connection unit (30),
The connecting portion (30) applies the first force in an integral molding method so as to form an included angle (θ) between the first force applying portion (10) and the second force applying portion (20). The first force application unit (10) and the second force application unit (20) are respectively connected to corresponding one sides of the unit (10) and the second force application unit (20). And a coupling structure (30) for the first force application unit (10) and the second force application unit (20) to be paired with each other. In the case where the angle value of the depression angle (θ) is reduced, a damping effect is provided, and in the case where the first force application unit (10) and the second force application unit (20) return their positions, required The first force application unit (10), the second force application unit (20), and the connection unit (30) are flexible. A grip characterized in that it is made of a material.
前記第1力付与部(10)と前記第2力付与部(20)との外表面上にそれぞれ複数の凹部(12、22)が設置されることを特徴とする、請求項1に記載の握力器。   A plurality of recesses (12, 22) are provided on the outer surfaces of the first force application portion (10) and the second force application portion (20), respectively. Hand grip. 前記第1力付与部(10)と前記第2力付与部(20)との間にさらに弾性体(40A)が挟設され、前記第1力付与部(10)と前記第2力付与部(20)とを相互に対合して前記夾角(θ)の角度値を縮小する場合、前記弾性体(40A)を圧迫して前記握力器のダンピング効果を高め、握力の鍛練効果を強化することを特徴とする、請求項1又は2に記載の握力器。   An elastic body (40A) is further interposed between the first force application unit (10) and the second force application unit (20), and the first force application unit (10) and the second force application unit When the angle value of the depression angle (θ) is reduced by mutually opposing (20), the elastic body (40A) is compressed to enhance the damping effect of the grip and strengthen the training effect of the grip strength The grip according to claim 1 or 2, characterized in that. 前記第1力付与部(10)と前記第2力付与部(20)との内面にそれぞれ第1当止構造(13)と第2当止構造(23)とが凸設され、前記第1力付与部(10)と前記第2力付与部(20)とを相互に対合して前記夾角(θ)の角度値を縮小する場合、前記第1当止構造(13)と前記第2当止構造(23)とは、前記弾性体(40A)に対して当止位置規制の機能を提供することを特徴とする、請求項3に記載の握力器。   A first abutment structure (13) and a second abutment structure (23) are provided on the inner surfaces of the first force application portion (10) and the second force application portion (20), respectively, When the force application unit (10) and the second force application unit (20) are mutually paired to reduce the angle value of the depression angle (θ), the first stop structure (13) and the second A grip according to claim 3, characterized in that the stop structure (23) provides a function of stop position control to the elastic body (40A). 前記弾性体(40A)は、円球状の構造体であり、かつ前記第1力付与部(10)と前記第2力付与部(20)との内面にそれぞれ第1凹弧部(14)と第2凹弧部(24)とが形成され、前記弾性体(40A)が前記第1凹弧部(14)と前記第2凹弧部(24)とに一部受容され、前記第1力付与部(10)と前記第2力付与部(20)とを相互に対合して前記夾角θの角度値を縮小する場合、前記第1力付与部(10)と前記第2力付与部(20)との前記弾性体(40A)に対して提供される当止位置規制の機能を強化することを特徴とする、請求項4に記載の握力器。   The elastic body (40A) is a spherical structure, and the first concave arc portion (14) and the inner surface of the first force application portion (10) and the second force application portion (20), respectively. A second concave arc (24) is formed, the elastic body (40A) is partially received by the first concave arc (14) and the second concave arc (24), and the first force is generated. In the case where the application unit (10) and the second force application unit (20) mutually face each other to reduce the angle value of the depression angle θ, the first force application unit (10) and the second force application unit A grip according to claim 4, characterized in that it strengthens the function of the in-position control provided to the elastic body (40A) with (20).
JP2019000946U 2018-09-10 2019-03-18 Hand grip Expired - Fee Related JP3221502U (en)

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