JP2010201813A - Mechanical pencil - Google Patents

Mechanical pencil Download PDF

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JP2010201813A
JP2010201813A JP2009050634A JP2009050634A JP2010201813A JP 2010201813 A JP2010201813 A JP 2010201813A JP 2009050634 A JP2009050634 A JP 2009050634A JP 2009050634 A JP2009050634 A JP 2009050634A JP 2010201813 A JP2010201813 A JP 2010201813A
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lead
lead core
chuck
tip guide
mechanical pencil
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JP5412144B2 (en
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Shohei Toyama
松平 外山
Yukihiro Tsukioka
之博 月岡
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Zebra Pen Corp
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Zebra Pen Corp
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a mechanical pencil capable of making a lead core into a projecting condition by a definite quantity by operating the pencil as a writing posture as it is without shifting it from one hand to the other. <P>SOLUTION: The mechanical pencil includes: a shaft cylinder 10; a lead core delivering mechanism A for delivering the lead core by a retreating operation and a forwarding operation opposing to the shaft cylinder 10; and an energizing member. The lead core delivering mechanism A is operated backward by a backward pushing pressure applied to the shaft cylinder 10, and when the pushing pressure is released, the lead core delivering mechanism A is operated forward by the energizing force of the energizing member. <P>COPYRIGHT: (C)2010,JPO&amp;INPIT

Description

本発明は、軸筒内の鉛芯を繰り出すようにしたシャープペンシルに関するものである。   The present invention relates to a mechanical pencil in which a lead core in a shaft cylinder is extended.

従来、この種のシャープペンシルは、特許文献1に記載されるもののように、後端側のノック部材(ノブ7)がノック操作されることで、軸筒(9)の前端部(口金10)から鉛芯(芯8)を繰り出すようにしたものが一般的である。
この従来技術の構造をより詳細に説明すれば、ノック部材(ノブ7)の前進に伴って、軸筒(9)内部で鉛芯(芯8)を挟持したチャック(2)が前進し、該チャック(2)が、所定量の前進の後に環状の締具(3)から外れて鉛芯(芯8)を解放する。
Conventionally, this type of mechanical pencil, like the one described in Patent Document 1, is operated by knocking a knock member (knob 7) on the rear end side, whereby the front end portion (base 10) of the shaft tube (9). In general, a lead core (core 8) is fed out from the core.
The structure of this prior art will be described in more detail. As the knock member (knob 7) advances, the chuck (2) holding the lead core (core 8) inside the shaft cylinder (9) advances, The chuck (2) disengages from the annular fastener (3) after a predetermined amount of advance and releases the lead core (core 8).

しかしながら、上記従来のシャープペンシルによれば、鉛芯(芯8)を突出させすぎた場合、ノック部材(ノブ7)を押圧してチャック(2)を解放状態に維持しながら、鉛芯(芯8)の前端を被筆記面に押圧する等して鉛芯を引っ込めた後、再度ノック部材(ノブ7)に対するノック操作をする必要があり、そのための操作が面倒であった。
また、筆記中に鉛芯(芯8)が消耗しきったり折れたりした場合には、軸筒(9)後端側のノック部材(ノブ7)をノック操作するために、筆記具を持ち替える必要があった。
However, according to the conventional mechanical pencil, when the lead core (core 8) is protruded too much, the lead core (core) is maintained while pressing the knock member (knob 7) to keep the chuck (2) open. After the lead core was retracted, for example, by pressing the front end of 8) against the writing surface, the knock member (knob 7) had to be knocked again, which was troublesome.
In addition, when the lead core (core 8) is completely consumed or broken during writing, it is necessary to change the writing instrument to knock the knock member (knob 7) on the rear end side of the shaft tube (9). It was.

特開2007−301914号公報JP 2007-301914 A

本発明は上記従来事情に鑑みてなされたものであり、その課題とする処は、持ち替えることなく筆記姿勢のままの操作により、鉛芯を定量だけ突出した状態にすることができるシャープペンシルを提供することにある。   The present invention has been made in view of the above-described conventional circumstances, and a problem to be solved by the present invention is to provide a mechanical pencil in which a lead core can be protruded only by a fixed amount by an operation in a writing posture without being changed. There is to do.

上記課題を解決するための技術的手段は、軸筒と、該軸筒に相対する後退動作と前進動作により鉛芯を繰出す鉛芯繰出し機構と、付勢部材とを具備したシャープペンシルであって、鉛芯に加えられる後方への押圧力により前記鉛芯繰出し機構を後退動作させ、前記押圧力が解除された際に前記付勢部材の付勢力によって同鉛芯繰出し機構を前進動作させるようにしたことを特徴とする。
この構成によれば、鉛芯に対し後方への押圧力が加えられると、その押圧力によって鉛芯繰出し機構が軸筒に相対する後退動作をする。そして、前記押圧力が解除されると、付勢部材の付勢力によって同鉛芯繰出し機構が軸筒に相対する前進動作をする。よって、鉛芯繰出し機構は、前記後退動作と前記前進動作により鉛芯を繰出す。
The technical means for solving the above problems is a mechanical pencil comprising a shaft cylinder, a lead core feeding mechanism for feeding out the lead core by a backward movement and a forward movement relative to the shaft cylinder, and an urging member. The lead core feeding mechanism is moved backward by the backward pressing force applied to the lead core, and the lead core feeding mechanism is moved forward by the biasing force of the biasing member when the pressing force is released. It is characterized by that.
According to this configuration, when a backward pressing force is applied to the lead core, the lead core feeding mechanism performs a retreat operation relative to the shaft tube by the pressing force. And if the said pressing force is cancelled | released, the lead lead feeding mechanism will carry out the advance operation | movement facing a shaft cylinder with the urging | biasing force of an urging member. Therefore, the lead lead feeding mechanism feeds the lead lead by the backward movement and the forward movement.

更なる技術的手段では、前記鉛芯繰出し機構は、鉛芯繰出し方向には鉛芯保持を解除し、鉛芯没入方向には筆圧に耐え得る程度の保持力で鉛芯を保持し、保持した鉛芯に対しその前方側から筆圧よりも大なる力が加わった場合には前記保持力を解除するチャック機構と、前記チャック機構よりも前方側に設けられ、前後移動可能であるとともに、所定の保持力にて鉛芯を保持可能に形成される鉛芯保持機構とを具備し、前記付勢部材は、前記チャック機構と前記鉛芯保持機構とを離間方向へ付勢するように設けられている、こと特徴とする請求項1記載のシャープペンシル。
この構成によれば、鉛芯に対し前方側から筆圧よりも大きな力が加わると、チャック機構が解除される。そのため、鉛芯は、チャック機構に対し後退する。この後退に伴って、鉛芯を保持している鉛芯保持機構が、付勢部材の付勢力に抗して後退する。
鉛芯に対する前方側からの力が除去されると、鉛芯保持機構が、鉛芯を保持した状態のまま、付勢部材に付勢されて、チャック機構に相対する前進をする。したがって、鉛芯保持機構の前進に伴って鉛芯も前進する。
In a further technical means, the lead lead feeding mechanism releases the lead lead in the lead lead feeding direction, and holds and holds the lead lead with a holding force capable of withstanding the pen pressure in the lead lead immersion direction. When a force greater than the writing pressure is applied to the lead core from the front side, the chuck mechanism that releases the holding force is provided on the front side of the chuck mechanism, and is movable back and forth. A lead core holding mechanism formed to hold the lead core with a predetermined holding force, and the biasing member is provided to bias the chuck mechanism and the lead core holding mechanism in the separating direction. The mechanical pencil according to claim 1, wherein the mechanical pencil is used.
According to this configuration, when a force larger than the writing pressure is applied to the lead core from the front side, the chuck mechanism is released. Therefore, the lead core moves backward with respect to the chuck mechanism. Along with this retreat, the lead core holding mechanism holding the lead core moves backward against the biasing force of the biasing member.
When the force from the front side with respect to the lead core is removed, the lead core holding mechanism is urged by the urging member while holding the lead core, and moves forward relative to the chuck mechanism. Therefore, the lead core advances with the advancement of the lead core holding mechanism.

更なる技術的手段では、前記鉛芯繰出し機構は、前記軸筒内で所定量進退するように設けられるとともに、前進した際に鉛芯を後退不能且つ前進可能に挟持し、所定の解放位置まで後退した際には同鉛芯を解放するチャック機構と、該チャック機構から繰り出される鉛芯を挿通して前方へ導くとともに、軸筒に相対し所定量進退可能であって、前記チャック機構に牽引されて後退するように設けられた先端ガイド部材と、鉛芯を前記チャック機構の挟持力よりも弱い力で保持するとともに、前記先端ガイド部材と前記チャック機構との間で進退するように設けられた鉛芯保持機構と、前記先端ガイド部材の後退に連動して、前記鉛芯保持機構を前記先端ガイド部材に相対し後退させる後退連動手段と、を具備し、前記付勢部材は、前記チャック機構を軸筒に相対し前方へ付勢する第一付勢部材と、前記鉛芯保持機構を前記チャック機構に相対し前方へ付勢する第二付勢部材とを具備してなることを特徴とする。
この構成によれば、例えば、先端ガイド部材から突出している鉛芯が押圧されて後退すると、鉛芯と共に該鉛芯を挟持しているチャック機構も、第一付勢部材の付勢力に抗して後退する。そして、チャック機構に牽引されて先端ガイド部材も後退する。
先端ガイド部材の後退に伴い、後退連動手段が、先端ガイド部材に相対し鉛芯保持機構を後退させる。
この鉛芯保持機構の後退の際、該鉛芯保持機構の保持力がチャック機構の挟持力よりも弱いため、鉛芯保持機構は、鉛芯に相対し滑りながら後退する。
更に鉛芯が後退すると、その鉛芯と共に所定量後退したチャック機構が解放位置となり、該チャック機構が鉛芯を解放する。したがって、鉛芯が後退可能な状態となる。
更に鉛芯が押圧されると、該鉛芯は、チャック機構から解放されているため、先端ガイド部材、鉛芯保持機構、及びチャック機構に対し、滑って後方へ移動する。
この解放状態において、鉛芯に対する前方からの押圧力が除去された場合には、チャック機構が第一付勢部材の付勢力によって前進するとともに、鉛芯保持機構が第二付勢部材の付勢力によりチャック機構に相対して前進する。
この鉛芯保持機構の前進に伴い、鉛芯保持機構に保持されている鉛芯も前進する。この際、鉛芯はチャック機構に挟持された状態で前進可能であるため、該鉛芯の前進がチャック機構によって阻まれることはない。
鉛芯保持機構は先端ガイド部材に当接するまで前進し、鉛芯保持機構と共に前進する鉛芯は、先端ガイド部材に相対しても前進するため、先端ガイド部材の前端から鉛芯が繰り出される。
In a further technical means, the lead core feeding mechanism is provided so as to advance and retract by a predetermined amount within the shaft cylinder, and when it moves forward, the lead core is clamped so as not to be retractable and advanceable to a predetermined release position. When retreating, the chuck mechanism that releases the lead core and the lead core that is fed out from the chuck mechanism are inserted and guided forward, and can move forward and backward by a predetermined amount relative to the shaft cylinder, and is pulled by the chuck mechanism. The tip guide member provided to retreat and the lead core are held with a force weaker than the clamping force of the chuck mechanism, and are provided to advance and retract between the tip guide member and the chuck mechanism. A lead core holding mechanism and a retreat interlocking means for retreating the lead core holding mechanism relative to the tip guide member in conjunction with the retraction of the tip guide member, wherein the biasing member includes the chuck. A first urging member that urges the mechanism forward against the shaft cylinder and a second urging member that urges the lead core holding mechanism forward against the chuck mechanism. And
According to this configuration, for example, when the lead core protruding from the tip guide member is pressed and retracted, the chuck mechanism that holds the lead core together with the lead core also resists the biasing force of the first biasing member. And retreat. Then, the tip guide member is also retracted by being pulled by the chuck mechanism.
As the tip guide member is retracted, the retract interlocking means retracts the lead core holding mechanism relative to the tip guide member.
When the lead core holding mechanism is retracted, the holding force of the lead core holding mechanism is weaker than the clamping force of the chuck mechanism, so that the lead core holding mechanism moves backward while sliding against the lead core.
When the lead lead is further retracted, the chuck mechanism retracted by a predetermined amount together with the lead lead becomes the release position, and the chuck mechanism releases the lead lead. Therefore, the lead core can be retracted.
When the lead core is further pressed, the lead core is released from the chuck mechanism, and therefore slides and moves backward with respect to the tip guide member, the lead core holding mechanism, and the chuck mechanism.
In this released state, when the pressing force from the front with respect to the lead core is removed, the chuck mechanism is advanced by the biasing force of the first biasing member, and the lead core holding mechanism is biased by the second biasing member. To move forward relative to the chuck mechanism.
As the lead core holding mechanism advances, the lead core held by the lead core holding mechanism also advances. At this time, since the lead core can be advanced while being sandwiched by the chuck mechanism, the advancement of the lead core is not hindered by the chuck mechanism.
The lead core holding mechanism moves forward until it comes into contact with the tip guide member, and the lead core that moves forward together with the lead core holding mechanism moves forward even relative to the tip guide member, so that the lead core is fed out from the front end of the tip guide member.

更なる技術的手段では、前記後退連動手段は、軸筒と前記先端ガイド部とのうちの一方に設けられた第一凸部と、その他方に設けられて後方斜め周方向へ傾斜する第一傾斜部と、前記先端ガイド部と前記鉛芯保持機構とのうちの一方に設けられた第二凸部と、その他方に設けられて後方斜め逆周方向へ傾斜する第二傾斜部とを備えるとともに、前記鉛芯保持機構を軸筒に対し進退可能且つ回動不能に係合し、第一凸部と第一傾斜部との係合により、軸筒に相対して後退する際の前記先端ガイド部をその後退に伴って回転させるとともに、第二凸部と第二傾斜部との係合により、前記鉛芯保持機構を前記先端ガイド部に相対して後退させるようにしたことを特徴とする。
なお、前記凹部には、貫通孔や有底穴を含む。
この構成によれば、先端ガイド部材の後退に伴い、該先端ガイド部材が第一凸部と第一傾斜部との係合により回転する。先端ガイド部材の前記回転に伴い、第二凸部と第二傾斜部との係合により、鉛芯保持機構が先端ガイド部に相対して後退する。
In a further technical means, the backward interlocking means includes a first convex portion provided on one of the shaft tube and the tip guide portion, and a first convex portion provided on the other side and inclined in the oblique rearward circumferential direction. An inclined portion, a second convex portion provided on one of the tip guide portion and the lead core holding mechanism, and a second inclined portion provided on the other side and inclined in the backward oblique reverse circumferential direction. In addition, the front end when the lead core holding mechanism is engaged with the shaft cylinder so as to be movable back and forth and is not rotatable, and is retracted relative to the shaft cylinder by engagement between the first convex portion and the first inclined portion. The guide portion is rotated in accordance with the retreat thereof, and the lead core holding mechanism is retreated relative to the tip guide portion by engagement between the second convex portion and the second inclined portion. To do.
The recess includes a through hole and a bottomed hole.
According to this configuration, as the tip guide member moves backward, the tip guide member rotates due to the engagement between the first convex portion and the first inclined portion. With the rotation of the tip guide member, the lead core holding mechanism moves backward relative to the tip guide portion by the engagement of the second convex portion and the second inclined portion.

更なる技術的手段では、前記鉛芯保持機構は、先端ガイド部に対して進退可能に係合するスライド部と、該スライド部内で鉛芯の外周面に弾性的に圧接される弾性圧接部とからなることを特徴とする。
この構成によれば、スライド部が先端ガイド部に相対して進退するとともに、弾性圧接部が鉛芯の外周面を適宜な圧接力で保持する。
In a further technical means, the lead core holding mechanism includes a slide portion that is movably engaged with the tip guide portion, and an elastic pressure contact portion that is elastically pressed against the outer peripheral surface of the lead core within the slide portion. It is characterized by comprising.
According to this configuration, the slide portion advances and retreats relative to the tip guide portion, and the elastic pressure contact portion holds the outer peripheral surface of the lead core with an appropriate pressure contact force.

更なる技術的手段では、前記チャック機構は、軸筒内で進退可能であって前記第一付勢部材によって前方へ付勢されるように設けられた略筒状のスリーブと、前記第二付勢部材によって後方へ付勢されるとともに前記スリーブに対しその前方側から嵌り合い縮径して鉛芯を挟持するチャック部と、前記チャック部に相対して進退不能に設けられるとともに所定量後退した際の前記チャック部に当接して前記チャック部の挟持状態を緩める当接部とを備えていることを特徴とする。
この構成によれば、スリーブ及びチャック部が所定量後退し、チャック部が当接部に当接すると、チャック部がスリーブに相対して前進して緩む。
According to a further technical means, the chuck mechanism is capable of advancing and retracting in a shaft cylinder, and is provided with a substantially cylindrical sleeve provided to be urged forward by the first urging member, and the second attachment. A chuck portion that is urged rearward by the biasing member and fits from the front side of the sleeve to reduce the diameter and sandwiches the lead core, and is provided so as not to be able to advance and retreat relative to the chuck portion and is retracted by a predetermined amount And an abutting portion that abuts on the chuck portion and loosens the clamping state of the chuck portion.
According to this configuration, when the sleeve and the chuck part are retracted by a predetermined amount and the chuck part comes into contact with the contact part, the chuck part moves forward relative to the sleeve and loosens.

更なる技術的手段では、操作部を軸筒後端部又は軸筒外周部から露出した状態で軸筒に対し所定量進退可能に設けられるノック部材と、該ノック部材を後方へ付勢する第三付勢部材とを備え、前記当接部を前記ノック部材の前端側に形成して、前記ノック部材の進退により前記先端ガイド部から鉛芯が繰り出されるようにしたことを特徴とする。
この構成によれば、操作部への押圧操作によりノック部を前進させれば、ノック部前端側の当接部がチャック部に当接し、チャック部が略筒状のスライド部に相対して前進して緩む。
According to a further technical means, a knock member provided so as to be able to advance and retract by a predetermined amount with respect to the shaft cylinder in a state where the operation portion is exposed from the rear end portion of the shaft cylinder or the outer peripheral portion of the shaft cylinder, and a first member for urging the knock member rearward. And a contact portion is formed on a front end side of the knock member, and a lead core is drawn out from the tip guide portion by the advancement and retreat of the knock member.
According to this configuration, when the knock portion is advanced by a pressing operation to the operation portion, the contact portion on the front end side of the knock portion contacts the chuck portion, and the chuck portion advances relative to the substantially cylindrical slide portion. Then relax.

本発明は、以上説明したように構成されているので、以下に記載されるような作用効果を奏する。
先端ガイド部から鉛芯が突出しすぎている場合や、先端ガイド部から突出する鉛芯が短すぎる場合、該鉛芯が先端ガイド部の前端と面一である場合に、鉛芯を強く筆記面に押付ける等して、該鉛芯に押圧力を加えて、該鉛芯を後退させた後、その押圧力を解除すれば、該鉛芯が先端ガイド部の前端から定量突出する。
よって、持ち替えることなく筆記姿勢のままの操作により、鉛芯を定量だけ突出した状態にすることができ、ひいては、鉛芯の突出量が長すぎたり短すぎたりした場合や、筆記中に鉛芯が消耗しきったり折れたりした場合などに、鉛芯を簡単に定量だけ突出した状態にすることができる。
Since the present invention is configured as described above, the following effects can be obtained.
If the lead core protrudes too far from the tip guide, or if the lead core protruding from the tip guide is too short, or if the lead core is flush with the front end of the tip guide, If the pressing force is applied to the lead core and the lead core is retracted, and then the pressing force is released, the lead core protrudes quantitatively from the front end of the tip guide portion.
Therefore, it is possible to make the lead core protrude by a certain amount by the operation in the writing posture without changing it, and as a result, when the protruding amount of the lead core is too long or too short, When the lead is exhausted or broken, the lead core can be easily protruded by a fixed amount.

本発明に係わるシャープペンシルの一例を示すシャープペンシルの縦断面図である。It is a longitudinal cross-sectional view of the mechanical pencil which shows an example of the mechanical pencil concerning this invention. 同シャープペンシルの一例について、図1における(II)−(II)線に沿う断面を示す横断面図である。It is a cross-sectional view which shows the cross section which follows the (II)-(II) line | wire in FIG. 1 about an example of the mechanical pencil. 同シャープペンシルの一例について、図1における(III)−(III)線に沿う断面を示す横断面図である。It is a cross-sectional view which shows the cross section which follows the (III)-(III) line | wire in FIG. 1 about an example of the mechanical pencil. 同シャープペンシルの一例について、(a)は軸筒10前端側部分を示す要部縦断面図であり、(b)は同部分を外周面側から示す要部展開図である。(A) is a principal part longitudinal cross-sectional view which shows the front-end side part of the axial cylinder 10, and (b) is a principal part expanded view which shows the part from an outer peripheral surface side about an example of the mechanical pencil. 同シャープペンシルの一例について、(a)は先端ガイド部材の一例を示す縦断面図であり、(b)は同先端ガイド部材を外周面側から示す要部展開図である。(A) is a longitudinal cross-sectional view which shows an example of a front-end | tip guide member about an example of the mechanical pencil, (b) is a principal part expanded view which shows the front-end | tip guide member from an outer peripheral surface side. 同シャープペンシルの一例について、(a)は鉛芯保持機構を示す縦断面図であり、(b)は同鉛芯保持機構を外周面側から示す要部展開図である。(A) is a longitudinal cross-sectional view which shows a lead core holding mechanism about an example of the mechanical pencil, (b) is a principal part expanded view which shows the lead core holding mechanism from the outer peripheral surface side. 同シャープペンシルの一例について、(1a)〜(3a)は突出する鉛芯が押圧された際の動作を示す縦断面図であり、前の状態に対し移動した部分のみをハッチングとしている。同図中の(1b)〜(3b)は同動作を示す要部展開図である。About an example of the mechanical pencil, (1a) to (3a) are longitudinal sectional views showing an operation when a protruding lead core is pressed, and only a portion moved with respect to the previous state is hatched. (1b)-(3b) in the figure are the principal part expanded views which show the operation | movement. 同シャープペンシルの一例について、(4a)〜(6a)は図7に続く動作を示す縦断面図であり、前の状態に対し移動した部分のみをハッチングとしている。同図中の(4b)〜(6b)は同動作を示す要部展開図である。About an example of the mechanical pencil, (4a) to (6a) are longitudinal sectional views showing the operation following FIG. 7, and only the portion moved with respect to the previous state is hatched. (4b)-(6b) in the figure are the principal part expanded views which show the operation | movement. 同シャープペンシルの一例について、(1a)〜(3a)は先端ガイド部材が押圧された際の動作を示す縦断面図であり、前の状態に対し移動した部分のみをハッチングとしている。同図中の(1b)〜(3b)は同動作を示す要部展開図である。About an example of the mechanical pencil, (1a) to (3a) are longitudinal sectional views showing the operation when the tip guide member is pressed, and only the portion moved with respect to the previous state is hatched. (1b)-(3b) in the figure are the principal part expanded views which show the operation | movement. 同シャープペンシルの一例について、(a)〜(b)は後端ノックされた際の動作を示す縦断面図であり、前の状態に対し移動した部分のみをハッチングとしている。About an example of the mechanical pencil, (a) to (b) are longitudinal sectional views showing the operation when the rear end is knocked, and only the part moved with respect to the previous state is hatched. 同シャープペンシルの一例について、(c)〜(d)は図10に続く動作を示す縦断面図であり、前の状態に対し移動した部分のみをハッチングとしている。(C)-(d) is a longitudinal cross-sectional view which shows the operation | movement following FIG. 10 about an example of the mechanical pencil, and only the part which moved with respect to the previous state is hatched. 本発明に係わるシャープペンシルの他例を示すシャープペンシルの縦断面図である。It is a longitudinal cross-sectional view of the mechanical pencil which shows the other examples of the mechanical pencil concerning this invention. 同シャープペンシルの他例について、(1a)〜(5a)は突出する鉛芯が押圧された際の動作を示す縦断面図であり、前の状態に対し移動した部分のみをハッチングとしている。同図中の(1b)〜(5b)は同動作を示す要部展開図である。About other examples of the mechanical pencil, (1a) to (5a) are longitudinal sectional views showing the operation when the protruding lead core is pressed, and only the portion moved with respect to the previous state is hatched. (1b)-(5b) in the figure are the principal part expanded views which show the operation | movement. 同シャープペンシルの他例について、(a)〜(d)は後端ノックされた際の動作を示す縦断面図であり、前の状態に対し移動した部分のみをハッチングとしている。About other examples of the mechanical pencil, (a) to (d) are longitudinal sectional views showing the operation when the rear end is knocked, and only the portion moved with respect to the previous state is hatched.

以下、本発明の実施の形態を図面に基づいて説明する。
なお、本明細書中、「前方」とは、シャープペンシル1が鉛芯pを繰り出す方向を意味し、「後方」とはその逆の方向を意味する。
Hereinafter, embodiments of the present invention will be described with reference to the drawings.
In the present specification, “front” means the direction in which the mechanical pencil 1 extends the lead core p, and “rear” means the opposite direction.

このシャープペンシル1は、軸筒10と、該軸筒10に相対する後退動作と前進動作により鉛芯を繰出す鉛芯繰出し機構Aと、付勢部材とを具備したシャープペンシルであって、鉛芯pに加えられる後方への押圧力により鉛芯繰出し機構Aを後退動作させ、前記押圧力が解除された際に前記付勢部材の付勢力によって同鉛芯繰出し機構Aを前進動作させて、鉛芯繰出し機構Aから前方へ鉛芯pを繰出す。   This mechanical pencil 1 is a mechanical pencil comprising a shaft cylinder 10, a lead core feeding mechanism A for feeding out a lead core by a retreat operation and a forward operation relative to the shaft cylinder 10, and an urging member. The lead lead feeding mechanism A is moved backward by the backward pressing force applied to the lead p, and the lead lead feeding mechanism A is moved forward by the biasing force of the biasing member when the pressing force is released, Lead lead p is fed forward from lead lead feeding mechanism A.

鉛芯繰出し機構Aは、軸筒10内で鉛芯pを挟持したり解放したりするチャック機構20と、該チャック機構20から繰り出される鉛芯pを挿通して前方へ導く先端ガイド部材40と、鉛芯pを前記チャック機構20の挟持力よりも弱い力で保持するとともに、前記先端ガイド部材40と前記チャック機構20との間で進退するように設けられた鉛芯保持機構50とを備える。
また、上記付勢部材は、チャック機構20を軸筒10に相対し前方へ付勢する第一付勢部材31と、該鉛芯保持機構50を前記チャック機構20に相対し前方へ付勢する第二付勢部材32とからなる。
また、本実施の形態の鉛芯繰出し機構Aでは、操作部61を軸筒10後端部から露出した状態で軸筒10に対し所定量進退可能に設けられるノック部材60と、該ノック部材60を後方へ付勢する第三付勢部材33とを具備し、ノック部材60に対する後方側からのノック操作によっても鉛芯pを繰出すことができる。
The lead lead feeding mechanism A includes a chuck mechanism 20 that clamps and releases the lead lead p in the shaft tube 10, and a tip guide member 40 that guides the lead lead p inserted from the chuck mechanism 20 to the front. And a lead core holding mechanism 50 provided to hold the lead core p with a force weaker than the clamping force of the chuck mechanism 20 and to move back and forth between the tip guide member 40 and the chuck mechanism 20. .
In addition, the biasing member biases the chuck mechanism 20 to the shaft cylinder 10 and biases it forward, and the lead core holding mechanism 50 to the chuck mechanism 20 and biases it forward. And a second urging member 32.
Further, in the lead core feeding mechanism A of the present embodiment, a knock member 60 provided so as to be able to advance and retract by a predetermined amount with respect to the shaft tube 10 with the operation portion 61 exposed from the rear end portion of the shaft tube 10, and the knock member 60 And a third urging member 33 that urges the lead member rearward, and the lead core p can be extended also by a knocking operation from the rear side with respect to the knock member 60.

軸筒10は、当該シャープペンシル1の略全長にわたる長尺筒状に形成され、その内部前端側に鉛芯保持機構50と係合する係合溝11を有し、該係合溝11よりも後部側にチャック機構20と係合する段部12を有する。
また、軸筒10内部の後部側には、第一付勢部材31及び第三付勢部材33を受けるバネ受部13が固定され、該バネ受部13よりも更に後端側には、ノック部材60を構成する鉛芯挿通部材62の後方への移動を規制する段部14が形成されている。
この軸筒10は、図示例によれば、バネ受部13よりも前側の前軸10aと、バネ受部13よりも後側の後軸10bとをバネ受部13を介して接続する構造としているが、一体筒状の態様や、3個以上の筒状部材からなる態様等とすることが可能である。
また、他例としては、バネ受部13を省くとともに、第一付勢部材31及び第三付勢部材33に置換して、これら第一付勢部材31及び第三付勢部材33の機能を併せ持つ付勢部材を設けるようにしてもよい。より具体的に説明すれば、この場合の前記付勢部材は、例えば、後側スリーブ21bの後端と鉛芯挿通部材62の鍔部62c1との間にわたるとともに、バネ荷重を適宜に設定したコイルスプリングとすればよい。
The shaft cylinder 10 is formed in a long cylindrical shape covering substantially the entire length of the mechanical pencil 1, and has an engagement groove 11 that engages with the lead core holding mechanism 50 on the inner front end side thereof. The rear portion has a step portion 12 that engages with the chuck mechanism 20.
A spring receiving portion 13 that receives the first urging member 31 and the third urging member 33 is fixed to the rear side of the shaft tube 10, and a knocking end is further provided on the rear end side of the spring receiving portion 13. A step portion 14 is formed that restricts the rearward movement of the lead core insertion member 62 constituting the member 60.
According to the illustrated example, the shaft tube 10 has a structure in which a front shaft 10 a on the front side of the spring receiving portion 13 and a rear shaft 10 b on the rear side of the spring receiving portion 13 are connected via the spring receiving portion 13. However, it is possible to adopt an integrally cylindrical aspect, an aspect including three or more cylindrical members, and the like.
As another example, the spring receiving portion 13 is omitted, and the first urging member 31 and the third urging member 33 are replaced with the functions of the first urging member 31 and the third urging member 33. You may make it provide the urging member to have together. More specifically, the biasing member in this case is, for example, a coil that extends between the rear end of the rear sleeve 21b and the flange portion 62c1 of the lead core insertion member 62 and has a spring load set appropriately. A spring can be used.

係合溝11は、軸筒10の前端側内周面に形成された溝であり、図4(b)に特によく示されるように、軸筒後方へ直線状に向かう第一ストレート凹部11aと、該第一ストレート凹部11aの後方側に連接されて後方斜め周方向へ傾斜する第一傾斜部11bと、該第一傾斜部11bの後方側に連接されて軸筒後方へ直線状に向かう第二ストレート凹部11cとから構成される。
なお、この係合溝11は、図示例によれば凹溝状に形成しているが、他例としては軸筒10周壁を貫通する孔状に形成してもよい。
The engagement groove 11 is a groove formed on the inner peripheral surface of the front end side of the shaft tube 10 and, as particularly shown in FIG. The first inclined portion 11b connected to the rear side of the first straight recess 11a and inclined rearwardly in the circumferential direction, and the first inclined portion 11b connected to the rear side of the first inclined portion 11b and linearly moved to the rear of the shaft cylinder. It is comprised from the 2 straight recessed part 11c.
In addition, although this engagement groove | channel 11 is formed in the concave groove shape according to the example of illustration, you may form in the hole shape which penetrates the axial cylinder 10 surrounding wall as another example.

段部12は、軸筒10の内周面を後方へ向かって階段状に拡径してなり、後述するチャック機構20の前方への移動を規制する。   The step portion 12 is formed by expanding the inner peripheral surface of the shaft tube 10 stepwise toward the rear, and restricts forward movement of the chuck mechanism 20 described later.

バネ受部13は、前側部分により第一付勢部材31の後端座部を受けるとともに、後側部分により第三付勢部材33の前端座部を受けている。
このバネ受部13の軸心側部分には、後述する鉛芯挿通部材62が進退可能に挿通されている。
The spring receiving portion 13 receives the rear end seat portion of the first biasing member 31 by the front side portion, and receives the front end seat portion of the third biasing member 33 by the rear side portion.
A lead core insertion member 62, which will be described later, is inserted through the axial center side portion of the spring receiving portion 13 so as to be able to advance and retract.

段部14は、軸筒10の内周面を後方へ向かって階段状に縮径するように形成され、後述する鉛芯挿通部材62の後方への移動を規制する。   The step portion 14 is formed so as to reduce the diameter of the inner peripheral surface of the shaft tube 10 in a stepwise manner toward the rear, and restricts rearward movement of a lead core insertion member 62 described later.

また、チャック機構20は、軸筒10内で所定量進退するとともに、前進した際に鉛芯pを後退不能且つ前進可能に挟持し、所定の解放位置まで後退した際には同鉛芯を解放する機構である。
このチャック機構20は、鉛芯繰出し方向には鉛芯保持を解除し、鉛芯没入方向には筆圧に耐え得る程度の保持力で鉛芯pを保持し、保持した鉛芯pに対しその前方側から筆圧よりも大なる力が加わった場合には前記保持力を解除するように構成される。
Further, the chuck mechanism 20 moves forward and backward by a predetermined amount in the shaft cylinder 10, holds the lead core p so that it cannot move backward and can move forward when moving forward, and releases the lead core when retracted to a predetermined release position. It is a mechanism to do.
The chuck mechanism 20 releases the lead lead holding in the lead lead feeding direction, holds the lead lead p with a holding force capable of withstanding the writing pressure in the lead lead immersion direction, and holds the lead lead p against the held lead lead p. When a force greater than the writing pressure is applied from the front side, the holding force is released.

より具体的に説明すれば、このチャック機構20は、軸筒10内で進退可能であって第一付勢部材31によって前方へ付勢されるように設けられた略筒状のスリーブ21と、第二付勢部材32によって後方へ付勢されるとともにスリーブ21に対しその前方側から嵌り合い縮径して鉛芯を挟持するチャック部22と、チャック部22をスリーブ21に対しスムーズに係脱させるボール23とを備える。
このチャック機構20は、所定量後退した際に、チャック部22の後端を、該チャック部22に相対して不動な当接部62b1(後述するノック部材60の前端側に設けられた部分)に当接させることで、チャック部22を解放する。
More specifically, the chuck mechanism 20 has a substantially cylindrical sleeve 21 that is movable forward and backward in the shaft cylinder 10 and is urged forward by the first urging member 31; The chuck portion 22 that is urged rearward by the second urging member 32 and fits and contracts from the front side of the sleeve 21 to sandwich the lead core, and the chuck portion 22 is smoothly engaged with and disengaged from the sleeve 21. And a ball 23 to be moved.
When the chuck mechanism 20 is retracted by a predetermined amount, the rear end of the chuck portion 22 is fixed to the abutment portion 62b1 (a portion provided on the front end side of a knock member 60 described later) that is stationary relative to the chuck portion 22. The chuck portion 22 is released by being brought into contact with.

スリーブ21は、軸筒10内周面の段部12よりも前側の部分に対し進退可能に遊嵌する前側スリーブ21aと、同軸筒10内周面の段部12よりも後側の部分に対し進退可能に遊嵌する後側スリーブ21bとから構成されている。   The sleeve 21 has a front sleeve 21a that is loosely fitted to a front portion of the inner peripheral surface of the shaft tube 10 so as to be able to advance and retreat, and a rear portion of the inner peripheral surface of the coaxial tube 10 that is closer to the rear portion. The rear sleeve 21b is loosely fitted so as to be able to advance and retreat.

前側スリーブ21aは、前端側外周面と後端側外周面が縮径された略段付筒状を呈し、その前端側の外周面を縮径するとともに、該縮径部分の前端部に拡径方向へ突出する掛止突起21a1を有する。   The front sleeve 21a has a substantially stepped cylindrical shape in which the outer peripheral surface of the front end side and the outer peripheral surface of the rear end side are reduced in diameter, the outer peripheral surface on the front end side thereof is reduced in diameter, and the diameter is increased at the front end portion of the reduced diameter portion. It has a latching protrusion 21a1 protruding in the direction.

前記掛止突起21a1は、周方向において等間隔となるように複数(図示例によれば二つ)設けられる。
この掛止突起21a1は、後述する先端ガイド部材40に係合し、後方へ移動した際に先端ガイド部材40を牽引して後退させる。
A plurality (two in the illustrated example) of the latching protrusions 21a1 are provided at equal intervals in the circumferential direction.
This latching protrusion 21a1 engages with a tip guide member 40 described later, and pulls the tip guide member 40 backward when it moves rearward.

また、前側スリーブ21aの内周面の前端側には、後方へ向かって徐々に縮径する傾斜面21a2が形成され、この傾斜面21a2は、前方からボール23を介して嵌め合わせられるチャック部22を、徐々に縮径させる。
また、前側スリーブ21aの内周面の傾斜面21a2よりも後側には、軸筒求心方向へ突出する突部21a3が設けられる。この突部21a3は、後述するチャック部22の後端側外面の係止突部22b1と係合して、チャック部22が前側スリーブ21aから前方へ引き抜けてしまうのを阻む。
In addition, an inclined surface 21a2 that gradually decreases in diameter toward the rear is formed on the front end side of the inner peripheral surface of the front sleeve 21a. The inclined surface 21a2 is a chuck portion 22 that is fitted through the ball 23 from the front. Is gradually reduced in diameter.
Further, a protrusion 21a3 protruding in the shaft tube centripetal direction is provided on the rear side of the inclined surface 21a2 of the inner peripheral surface of the front sleeve 21a. This protrusion 21a3 engages with a locking protrusion 22b1 on the outer surface of the rear end side of the chuck portion 22 described later, thereby preventing the chuck portion 22 from being pulled out forward from the front sleeve 21a.

また、前側スリーブ21aの外周面の後部側は、段部21a4を境に、その後部側が前部側よりも縮径された縮径部21a5となっている。
前記段部21a4は、後側スリーブ21bが前進した際に、該後側スリーブ21bの前端によって当接される当接面として作用する。
縮径部21a5は、後側スリーブ21b内で若干弾性的に拡径可能なように、後側スリーブ21b内周面との間に隙間を有する外径に形成される。
この縮径部21a5の内周面の後端側には、後述する鉛芯挿通部材62外周面の前端側の凹部に対し嵌り合うように凸部21a6が形成されている。
In addition, the rear side of the outer peripheral surface of the front sleeve 21a is a reduced diameter portion 21a5 whose rear side is smaller than the front side with the stepped portion 21a4 as a boundary.
The step portion 21a4 functions as a contact surface that is contacted by the front end of the rear sleeve 21b when the rear sleeve 21b moves forward.
The reduced diameter portion 21a5 is formed to have an outer diameter having a gap with the inner peripheral surface of the rear sleeve 21b so that the diameter can be slightly elastically increased in the rear sleeve 21b.
On the rear end side of the inner peripheral surface of the reduced diameter portion 21a5, a convex portion 21a6 is formed so as to fit into a concave portion on the front end side of the outer peripheral surface of the lead core insertion member 62 described later.

また、後側スリーブ21bは、全長にわたって略同径の筒状を呈し、前進した際に、前端部を軸筒10内の段部12に当接する。
この後側スリーブ21bの後方への移動は、バネ受部13に当接することで規制されるようになっている。
The rear sleeve 21b has a cylindrical shape with substantially the same diameter over the entire length, and abuts the front end portion against the stepped portion 12 in the shaft tube 10 when the rear sleeve 21b moves forward.
The rearward movement of the rear sleeve 21 b is regulated by contacting the spring receiving portion 13.

また、チャック部22は、弾性を有する合成樹脂材料又は金属材料から形成され、鉛芯pの周囲に位置するように同芯状に配置された複数(例えば2又は3)の爪部22aと、該爪部22aを後端側で連結する筒部22bとからなる。
このチャック部22は、爪部22aを縮径した際に鉛芯pを挟持し、同爪部22aを拡径した際には鉛芯pを解放する。
The chuck portion 22 is made of a synthetic resin material or metal material having elasticity, and a plurality of (for example, 2 or 3) claw portions 22a arranged concentrically so as to be located around the lead core p; It consists of the cylinder part 22b which connects this nail | claw part 22a by the rear end side.
The chuck portion 22 holds the lead core p when the diameter of the claw portion 22a is reduced, and releases the lead core p when the diameter of the claw portion 22a is increased.

爪部22aは、弾性力によって拡径するように筒部22b前端側に接続されている。この爪部22aの軸筒遠心方向側の面には、略球状のボール23を遊嵌するための凹部22a1が設けられる(図7(1a)参照)。   The nail | claw part 22a is connected to the cylinder part 22b front end side so that it may expand in diameter by elastic force. A concave portion 22a1 for loosely fitting a substantially spherical ball 23 is provided on the surface of the claw portion 22a on the axial tube centrifugal direction side (see FIG. 7 (1a)).

筒部22bは、その外周面の後端側に、前側スリーブ21a内周面の突部21a3に係止される係止突部22b1を有する。
筒部22bの内周面は、鉛芯pの外周面との間に隙間を有する内径に形成される。この隙間には、後述する鉛芯挿通部材62の前端部分が嵌り合うようになっている。
The cylindrical portion 22b has a locking protrusion 22b1 that is locked to the protrusion 21a3 on the inner peripheral surface of the front sleeve 21a on the rear end side of the outer peripheral surface thereof.
The inner peripheral surface of the cylindrical portion 22b is formed to have an inner diameter having a gap with the outer peripheral surface of the lead core p. A front end portion of a lead core insertion member 62, which will be described later, is fitted in this gap.

上記構成のチャック部22は、前側スリーブ21aに相対して後退し、前側スリーブ21aの前端側内周面の傾斜面21a2に嵌り合うことで、複数の爪部22aを閉じて鉛芯pを挟持する。
この挟持状態において、鉛芯pが後方へ押圧された場合には、爪部22aによる挟持力が更に増すため、押圧された鉛芯pの後退が阻まれる。
同挟持状態において、鉛芯pが前方へ引かれた場合には、複数の爪部22aがボール23の作用によって前側スリーブ21aからスムーズに離脱するため、鉛芯pの前進を阻まない。
The chuck portion 22 configured as described above is retracted relative to the front sleeve 21a and is fitted to the inclined surface 21a2 on the inner peripheral surface of the front end of the front sleeve 21a, thereby closing the plurality of claws 22a and sandwiching the lead core p. To do.
In this clamping state, when the lead core p is pressed backward, the clamping force by the claw portion 22a is further increased, so that the pressed lead core p is prevented from moving backward.
In this clamping state, when the lead core p is pulled forward, the plurality of claw portions 22a are smoothly detached from the front sleeve 21a by the action of the ball 23, so that the advancement of the lead core p is not hindered.

また、第一付勢部材31,第二付勢部材32,第三付勢部材33の各々は、図示例によれば、コイルスプリングである。
第一付勢部材31は、その後端座部がバネ受部13に受けられるとともに、その前端座部を後側スリーブ21b後端に当接させることで、後側スリーブ21bを前方へ付勢している。
この第一付勢部材31の付勢力は、該第一付勢部材31が通常の筆記状態で加わる筆圧によって収縮することのないように、その付勢力が適宜に設定されている。
Moreover, according to the example of illustration, each of the 1st biasing member 31, the 2nd biasing member 32, and the 3rd biasing member 33 is a coil spring.
The first urging member 31 has a rear end seat portion received by the spring receiving portion 13 and urges the rear sleeve 21b forward by bringing the front end seat portion into contact with the rear end of the rear sleeve 21b. ing.
The urging force of the first urging member 31 is appropriately set so that the first urging member 31 does not contract due to the writing pressure applied in a normal writing state.

第二付勢部材32は、鉛芯保持機構50を前方へ押圧するとともに、チャック部22を後方へ付勢している。換言すれば、この第二付勢部材32は、鉛芯保持機構50とチャック機構20のチャック部22とを離間方向へ付勢している。
この第二付勢部材32の付勢力は、第一付勢部材31の付勢力よりも弱くなるように、適宜に設定されている。
The second biasing member 32 presses the lead core holding mechanism 50 forward and biases the chuck portion 22 backward. In other words, the second urging member 32 urges the lead core holding mechanism 50 and the chuck portion 22 of the chuck mechanism 20 in the separating direction.
The urging force of the second urging member 32 is appropriately set so as to be weaker than the urging force of the first urging member 31.

第三付勢部材33は、その前端座部がバネ受部13に受けられるとともに、その後端座部を鉛芯挿通部材62の鍔部62c1に当接させて、鉛芯挿通部材62を後方へ付勢している。   The third urging member 33 has its front end seat portion received by the spring receiving portion 13, and its rear end seat portion is brought into contact with the flange portion 62 c 1 of the lead core insertion member 62 to move the lead core insertion member 62 rearward. Energized.

また、先端ガイド部材40は、該チャック機構20から繰り出される鉛芯pを挿通して前方へ導くとともに、軸筒10に相対し所定量進退可能であって、前記チャック機構20に牽引されて後退するように設けられている。
より詳細に説明すれば、この先端ガイド部材40は、軸筒10前端から前方へ突出する突出管部41と、該突出管部41の後端に接続された筒部42とから一体に形成される。
The tip guide member 40 is inserted through the lead core p fed from the chuck mechanism 20 and guided forward, and can move forward and backward by a predetermined amount relative to the shaft tube 10, and is retracted by being pulled by the chuck mechanism 20. It is provided to do.
More specifically, the tip guide member 40 is integrally formed from a projecting tube portion 41 projecting forward from the front end of the shaft tube 10 and a tube portion 42 connected to the rear end of the projecting tube portion 41. The

突出管部41は、軸筒10前端から前方へ突出して露出されるとともに、その軸心側に鉛芯pを挿通させるように管状(図示例によれば前方へ向かって段付状に縮径する段付管状)に形成される。   The protruding tube portion 41 is exposed to protrude forward from the front end of the shaft tube 10 and is tubular so that the lead core p is inserted through the axial center side (in accordance with the illustrated example, the diameter is reduced stepwise toward the front). Stepped tube).

筒部42は、その内部に後述する鉛芯保持機構50を進退及び回転可能に嵌め合わせる略円筒状に形成される。この筒部42には、図5に示すように、第一凸部42aと、第二傾斜部42b1と、複数の係合孔部42cとを有する(図5参照)。   The cylindrical portion 42 is formed in a substantially cylindrical shape in which a lead core holding mechanism 50 described later is fitted so as to be able to advance and retract and rotate. As shown in FIG. 5, the cylindrical portion 42 includes a first convex portion 42a, a second inclined portion 42b1, and a plurality of engaging hole portions 42c (see FIG. 5).

第一凸部42aは、筒部42の前端側外周面から遠心方向へ突出する略円柱状に形成され、軸筒10内周面の係合溝11に対し遊嵌する。   The first convex portion 42a is formed in a substantially columnar shape protruding in the centrifugal direction from the outer peripheral surface of the front end side of the cylindrical portion 42, and is loosely fitted into the engaging groove 11 on the inner peripheral surface of the shaft cylinder 10.

第二傾斜部42b1は、軸筒10内周面の係合溝11の第一傾斜部11bに対し、左右対称に傾斜する傾斜面である。
この第二傾斜部42b1は、図示例によれば、先端ガイド部材40の筒部42に平面視三角形状の係合孔42bを設けることで、この係合孔42b内面の前端側の部分とされる。
The second inclined portion 42b1 is an inclined surface inclined symmetrically with respect to the first inclined portion 11b of the engaging groove 11 on the inner peripheral surface of the shaft cylinder 10.
According to the illustrated example, the second inclined portion 42b1 is formed as a portion on the front end side of the inner surface of the engagement hole 42b by providing an engagement hole 42b having a triangular shape in plan view in the cylindrical portion 42 of the tip guide member 40. The

係合孔部42cは、スリーブ21の掛止突起21a1を遊嵌させるように複数設けられている。
各係合孔部42cは、内在する掛止突起21a1を前後方向へ移動可能に形成され、図示例によれば、掛止突起21a1よりも前後方向(図中上下方向)の長さが長い略矩形状に形成される。
この係合孔部42cは、図示例では貫通孔としているが、有底状の凹部とすることが可能である。
A plurality of engagement holes 42c are provided so that the latching protrusions 21a1 of the sleeve 21 are loosely fitted.
Each engaging hole portion 42c is formed so that the underlying latching protrusion 21a1 can move in the front-rear direction. According to the illustrated example, the length in the front-rear direction (vertical direction in the figure) is longer than the latching protrusion 21a1. It is formed in a rectangular shape.
The engagement hole portion 42c is a through hole in the illustrated example, but can be a bottomed concave portion.

また、鉛芯保持機構50は、チャック機構20よりも前方側に設けられ、前後移動可能であるとともに、所定の保持力にて鉛芯pを保持可能となるように構成される。
より具体的に説明すれば、この鉛芯保持機構50は、先端ガイド部材40に対して進退可能に係合するスライド部51と、該スライド部51内で鉛芯の外周面に弾性的に圧接される弾性圧接部52とからなる。(図6参照)
The lead core holding mechanism 50 is provided in front of the chuck mechanism 20 and is configured to be movable back and forth and to hold the lead core p with a predetermined holding force.
More specifically, the lead core holding mechanism 50 includes a slide portion 51 that is movably engaged with the tip guide member 40, and an elastic pressure contact with the outer peripheral surface of the lead core within the slide portion 51. The elastic pressure contact portion 52 is formed. (See Figure 6)

スライド部51は、先端ガイド部材40の筒部42内に嵌り合う略円筒状に形成される。このスライド部51の外周面には、先端ガイド部材40の第二傾斜部42b1に対し係合する第二凸部51aと、前進した際の前側スリーブ21aに当接される当接部51bとが設けられる。   The slide part 51 is formed in a substantially cylindrical shape that fits into the cylinder part 42 of the tip guide member 40. On the outer peripheral surface of the slide portion 51, there are a second convex portion 51a that engages with the second inclined portion 42b1 of the tip guide member 40, and an abutting portion 51b that abuts on the front sleeve 21a when it moves forward. Provided.

第二凸部51aは、スライド部51の外周面から遠心方向へ突出する略円柱状の突起であり、先端ガイド部材40の係合孔42bに遊嵌され、該係合孔42b内の第二傾斜部42b1に摺接するとともに、その突端側で軸筒10内面の係合溝11に対しても係合する。   The second convex portion 51a is a substantially columnar protrusion that protrudes in the centrifugal direction from the outer peripheral surface of the slide portion 51, and is loosely fitted in the engagement hole 42b of the distal end guide member 40, and the second protrusion 51a in the engagement hole 42b. While being in sliding contact with the inclined portion 42b1, it engages with the engaging groove 11 on the inner surface of the shaft tube 10 on the protruding end side.

当接部51bは、スライド部51の後端外周面から遠心方向へ突出する突起であり、図示例によれば、スライド部51の略全周にわたる環状に突設される。
この当接部51bは、前側スリーブ21aが前進した際に、該前側スリーブ21a前端の掛止突起21a1を、その前方側から受ける(図7(3a)参照)。
The contact part 51b is a protrusion that protrudes in the centrifugal direction from the outer peripheral surface of the rear end of the slide part 51.
When the front sleeve 21a moves forward, the contact portion 51b receives the latching protrusion 21a1 at the front end of the front sleeve 21a from the front side (see FIG. 7 (3a)).

そして、スライド部51の内周面には、前端側から順に、鉛芯p外周面に近接又は接触するように該鉛芯pを挿通する鉛芯挿通孔51cと、弾性圧接部52を進退不能に嵌め合わせる嵌合孔51dと、第二付勢部材32の前端側を受けるバネ受部51eとが、後方へ向かって段階的に拡径する断面略階段状に配設される。   Further, the lead core insertion hole 51c through which the lead core p is inserted and the elastic pressure contact portion 52 cannot be advanced and retracted on the inner peripheral surface of the slide portion 51 in order from the front end side so as to approach or contact the outer peripheral surface of the lead core p. A fitting hole 51d to be fitted to the first biasing member 32 and a spring receiving portion 51e that receives the front end side of the second urging member 32 are arranged in a substantially stepped cross section that gradually increases in diameter toward the rear.

また、弾性圧接部52は、ゴムやエラストマー樹脂等の弾性体により形成される。この弾性圧接部52外周面の後部側は、スライド部51内に嵌合され、その前部側は、前方へ向かって徐々に縮径している。
この弾性圧接部52内面の後部側は、前方へ向かって徐々に縮径し、その前部側は、鉛芯p外周面に対し弾性的に圧接される略内面円筒状に形成される。
この弾性圧接部52によれば、挿通される鉛芯pは、所定の保持力で保持されることになる。
なお、図示例の弾性圧接部52は、当業者により芯ブレーカと呼称される場合がある。
また、弾性圧接部52は、インサート成形等の要領で、スライド部51に対し一体に成形することも可能である。
The elastic pressure contact portion 52 is formed of an elastic body such as rubber or elastomer resin. The rear side of the outer peripheral surface of the elastic pressure contact portion 52 is fitted into the slide portion 51, and the front side is gradually reduced in diameter toward the front.
The rear side of the inner surface of the elastic pressure contact portion 52 is gradually reduced in diameter toward the front, and the front side is formed in a substantially inner cylindrical shape that is elastically pressed against the outer peripheral surface of the lead core p.
According to the elastic pressure contact portion 52, the lead core p to be inserted is held with a predetermined holding force.
In addition, the elastic pressure contact part 52 of the example of illustration may be called a core breaker by those skilled in the art.
Further, the elastic pressure contact portion 52 can be integrally formed with the slide portion 51 in the manner of insert molding or the like.

また、ノック部材60は、軸筒10の後端から後方へ突出して露出された押圧操作部61と、該押圧操作部61の前側に連結されて押圧操作部61と一体的に進退動作する鉛芯挿通部材62とから構成される(図1参照)。   The knock member 60 includes a pressing operation portion 61 that is exposed by protruding rearward from the rear end of the shaft tube 10, and a lead that is connected to the front side of the pressing operation portion 61 and moves forward and backward integrally with the pressing operation portion 61. It is comprised from the core insertion member 62 (refer FIG. 1).

押圧操作部61は、鉛芯挿通部材62の後端に嵌脱可能に嵌め合わせられたキャップ状の部材である。   The pressing operation unit 61 is a cap-shaped member that is detachably fitted to the rear end of the lead core insertion member 62.

鉛芯挿通部材62は、チャック部22の後端側内部へ挿入される挿入部62aと、該挿入部62aの後方側で前側スリーブ21a内周面に対し係合する係合筒部62bと、該係合筒部62bよりも後方側で複数の鉛芯pを内在可能な芯タンク部62cとを具備する。   The lead core insertion member 62 includes an insertion portion 62a inserted into the rear end side inside the chuck portion 22, an engagement cylinder portion 62b engaged with the inner peripheral surface of the front sleeve 21a on the rear side of the insertion portion 62a, A lead tank part 62c capable of containing a plurality of lead cores p is provided on the rear side of the engaging cylinder part 62b.

挿入部62aは、チャック部22の筒部22b内周面と鉛芯p外周面との間に遊挿可能な略円筒状に形成される。   The insertion portion 62a is formed in a substantially cylindrical shape that can be loosely inserted between the inner peripheral surface of the cylindrical portion 22b of the chuck portion 22 and the outer peripheral surface of the lead core p.

係合筒部62bは、挿入部62aよりも一回り程大径であって、前側スリーブ21aの縮径部21a5内周面と鉛芯p外周面との間に遊挿可能な略円筒状に形成される。
この係合筒部62bと挿入部62aとの境目となる段部は、所定量後退した際のチャック部22に当接してチャック部22の挟持状態を緩める当接部62b1として機能する(図7参照)。
The engagement cylinder part 62b has a substantially larger diameter than the insertion part 62a and is substantially cylindrical so that it can be loosely inserted between the inner peripheral surface of the reduced diameter part 21a5 of the front sleeve 21a and the outer peripheral surface of the lead core p. It is formed.
The step portion serving as the boundary between the engagement cylinder portion 62b and the insertion portion 62a functions as an abutment portion 62b1 that abuts against the chuck portion 22 when it is retracted by a predetermined amount to loosen the clamping state of the chuck portion 22 (FIG. 7). reference).

係合筒部62bの長さ方向中途位置における外周面には、前側スリーブ21a後端側の凸部21a6に対し係合する係合凹部62b2(図7参照)が形成されている。
この係合凹部62b2は、内在する凸部21a6を前後方向へ所定量移動可能な長さに形成される。この係合凹部62b2の後端部は、凸部21a6を弾性的に拡径させながら後方へ乗り上がらせるように傾斜している(図11(c)参照)。
An engagement recess 62b2 (see FIG. 7) that engages with the protrusion 21a6 on the rear end side of the front sleeve 21a is formed on the outer peripheral surface of the engagement cylinder portion 62b in the middle in the length direction.
The engagement recess 62b2 is formed to have a length that allows a predetermined amount of movement of the underlying protrusion 21a6 in the front-rear direction. The rear end portion of the engaging recess 62b2 is inclined so as to ride up rearward while elastically expanding the protrusion 21a6 (see FIG. 11C).

芯タンク部62cは、係合筒部62bよりも更に一回り程大径であって、その内部に複数本の鉛芯pを内在可能な略筒状に形成される。
この芯タンク部62cの後端側外周面には、第三付勢部材33の後端部を受けるための鍔部62c1が環状に突出している。
この芯タンク部62cにおけるバネ受部13よりも前側の部分には、第一付勢部材31を環装し、バネ受部13よりも後側の部分には、第三付勢部材33を環装している。
そして、芯タンク部62cは、バネ受部13内に挿通されて該バネ受部13内周面に摺接させるとともに、前記鍔部62c1の外周面が軸筒10内周面に摺接れることで、前後方向へ案内される。
なお、図示を省略するが、鉛芯挿通部材62(詳細には芯タンク部62c)の後端には、必要に応じて消しゴムを装着するようにしてもよい。
The lead tank part 62c has a larger diameter than the engaging cylinder part 62b, and is formed in a substantially cylindrical shape in which a plurality of lead cores p can be contained.
A flange portion 62c1 for receiving the rear end portion of the third urging member 33 projects in an annular shape on the rear end side outer peripheral surface of the core tank portion 62c.
A first urging member 31 is mounted around a portion of the core tank portion 62c on the front side of the spring receiving portion 13, and a third urging member 33 is attached to a portion on the rear side of the spring receiving portion 13. Disguise.
The core tank portion 62c is inserted into the spring receiving portion 13 to be in sliding contact with the inner peripheral surface of the spring receiving portion 13, and the outer peripheral surface of the flange portion 62c1 is in sliding contact with the inner peripheral surface of the shaft tube 10. Then, it is guided in the front-rear direction.
In addition, although illustration is abbreviate | omitted, you may make it attach an eraser to the rear end of the lead core insertion member 62 (specifically core tank part 62c) as needed.

次に、上記構成のシャープペンシル1について、その特徴的な作用効果を説明する。
最初に、先端ガイド部材40前端から突出する鉛芯pの量が長すぎた場合に、その鉛芯pの突出量を適量にする操作について説明する。なお、図7及び図8の(1a)〜(6a)において、ハッチングを施した部分は、その前の状態に対し動いた部分を示しており、前の状態に対し動かなかった部分についてはハッチングを省略している。
Next, the characteristic effect of the mechanical pencil 1 having the above-described configuration will be described.
First, description will be given of an operation for adjusting the protruding amount of the lead core p when the amount of the lead core p protruding from the front end of the tip guide member 40 is too long. In FIGS. 7 and 8 (1a) to (6a), the hatched portion indicates the portion that has moved relative to the previous state, and the portion that has not moved relative to the previous state is hatched. Is omitted.

図7(1a)(1b)は、当該シャープペンシル1が操作される前の状態であって、鉛芯pが先端ガイド部材40の前端から通常よりも長く突出した静止状態を示している。   7 (1a) and (1b) show a stationary state in which the lead pencil p protrudes longer than usual from the front end of the tip guide member 40 before the mechanical pencil 1 is operated.

先ず、鉛芯pが通常の筆記状態の筆圧以上の力でもって被筆記面qに押圧されると、鉛芯pは、チャック部22により挟持されているため、該チャック部22及びボール23を後方へ押動するとともに、チャック部22を挟持状態に保持している前側スリーブ21a、及び該前側スリーブ21aの後端に当接される後側スリーブ21bを、第一付勢部材31の付勢力に抗して、一体的に後退させる。
この後退の際、後側スリーブ21bは、ノック部材60に相対して後退するため、後側スリーブ21b後端側の凸部21a6と、ノック部材60前端側の係合凹部62b2との係合状態が外れる。
First, when the lead core p is pressed against the writing surface q with a force equal to or higher than the writing pressure in a normal writing state, the lead core p is sandwiched between the chuck portion 22 and the chuck portion 22 and the ball 23. The first urging member 31 is attached to the front sleeve 21a that holds the chuck portion 22 in a sandwiched state and the rear sleeve 21b that is in contact with the rear end of the front sleeve 21a. Retreat in unison against the forces.
At the time of the retreat, the rear sleeve 21b retreats relative to the knock member 60. Therefore, the engagement state between the convex portion 21a6 on the rear end side of the rear sleeve 21b and the engagement concave portion 62b2 on the front end side of the knock member 60. Comes off.

また、前記後退の際、前側スリーブ21a前端側の掛止突起21a1が先端ガイド部材40の係合孔部42cに掛止されているため、前記後退に連動して、先端ガイド部材40及び鉛芯保持機構50も、図7に示す寸法x1だけ後退する。   Further, since the latching protrusion 21a1 on the front end side of the front sleeve 21a is latched by the engaging hole portion 42c of the tip guide member 40 during the retreat, the tip guide member 40 and the lead core are interlocked with the retreat. The holding mechanism 50 is also retracted by the dimension x1 shown in FIG.

前記のようにして先端ガイド部材40が後退すると、図7(2b)に示すように、先端ガイド部材40の第一凸部42aが、軸筒10内周面の第一傾斜部11bに当接する。   When the tip guide member 40 is retracted as described above, as shown in FIG. 7B, the first convex portion 42a of the tip guide member 40 contacts the first inclined portion 11b of the inner peripheral surface of the shaft tube 10. .

次に、軸筒10と鉛芯保持機構50と先端ガイド部材40の係合関係が、先端ガイド部材40の後退に連動して、鉛芯保持機構50を先端ガイド部材40に相対し後退させる後退連動手段として形成される。
詳細に説明すれば、鉛芯pに対する押圧力が維持され、先端ガイド部材40の後退が継続すると、第一凸部42aと第一傾斜部11bとの摺接により、先端ガイド部材40が、図7(2b)に示す状態から図7(3b)に示す状態まで回転しながら寸法x2だけ後退することになる。
また、先端ガイド部材40の前記回転及び後退に伴い、鉛芯保持機構50の第二凸部51aが先端ガイド部材40の第二傾斜部42b1に摺接されるため、鉛芯保持機構50(詳細にはスライド部51及び弾性圧接部52)は、先端ガイド部材40に相対して寸法s1(図7(3a)参照)だけ後退することになる。
Next, the engagement relationship among the shaft cylinder 10, the lead core holding mechanism 50 and the tip guide member 40 is retracted to retract the lead core holding mechanism 50 relative to the tip guide member 40 in conjunction with the retract of the tip guide member 40. Formed as interlocking means.
More specifically, when the pressing force against the lead core p is maintained and the backward movement of the distal end guide member 40 is continued, the distal end guide member 40 is moved by the sliding contact between the first convex portion 42a and the first inclined portion 11b. 7 (2b) is retracted by a dimension x2 while rotating from the state shown in FIG. 7 (2b) to the state shown in FIG. 7 (3b).
Further, as the tip guide member 40 is rotated and retracted, the second convex portion 51a of the lead core holding mechanism 50 is slidably contacted with the second inclined portion 42b1 of the tip guide member 40. In other words, the slide portion 51 and the elastic pressure contact portion 52) are retracted by the dimension s1 (see FIG. 7 (3a)) relative to the tip guide member 40.

そして、鉛芯保持機構50の当接部51bは、前記後退によって前側スリーブ21a前端側の掛止突起21a1に当接し(図7(3a)(3b)参照)、略同時に、鉛芯pと共に後退したチャック部22の後端が鉛芯挿通部材62前端の当接部62b1に当接する(図7(3a)参照)。   The contact portion 51b of the lead core holding mechanism 50 contacts the latching protrusion 21a1 on the front end side of the front sleeve 21a by the retreat (see FIGS. 7 (3a) and (3b)), and retreats with the lead core p substantially simultaneously. The rear end of the chuck portion 22 contacts the contact portion 62b1 at the front end of the lead core insertion member 62 (see FIG. 7 (3a)).

したがって、鉛芯pに対する押圧が継続すると、チャック部22は、当接部62b1に当接され後退しないため、前側スリーブ21aに相対し前進したことになり、鉛芯pに対する挟持力を緩めた解放状態となる。
そのため、鉛芯pのみが後退して、図8(4a)に示すように、該鉛芯pの前端と、先端ガイド部材40前端とが、面一になる。
Therefore, if the pressing against the lead core p is continued, the chuck portion 22 is abutted against the abutting portion 62b1 and does not retreat, so that the chuck portion 22 has moved forward relative to the front sleeve 21a, and the release force that loosened the clamping force against the lead core p is released. It becomes a state.
Therefore, only the lead core p is retracted, and the front end of the lead core p is flush with the front end of the tip guide member 40 as shown in FIG. 8 (4a).

なお、前記鉛芯pのみの後退の際、鉛芯pと弾性圧接部52とが弾性的な圧接状態であるため、鉛芯pは、弾性圧接部52内面を滑って後退することが可能である。すなわち、鉛芯pの後退は、弾性圧接部52に阻まれない。   Since the lead core p and the elastic pressure contact portion 52 are in an elastic pressure contact state when only the lead core p is retracted, the lead core p can slide back on the inner surface of the elastic pressure contact portion 52. is there. That is, the retraction of the lead core p is not blocked by the elastic pressure contact portion 52.

そして、更に鉛芯pに対する押圧が継続すると、その押圧力は鉛芯p及び先端ガイド部材40の前端に加わる(図8(4a)参照)。
したがって、先端ガイド部材40の後方への押圧力が鉛芯保持機構50に伝達し、更に鉛芯保持機構50の後方へ押圧力が前側スリーブ21a及び後側スリーブ21bに伝達する。
よって、鉛芯p、先端ガイド部材40、鉛芯保持機構50、前側スリーブ21a、及び後側スリーブ21bが一体的に後退し、後側スリーブ21bとバネ受部13の隙間s2が狭まり、更には後側スリーブ21bがバネ受部13に当接した状態(図8(5a)参照)となる。この際の後退量は図中寸法x3となる。
And if the press with respect to the lead core p continues further, the pressing force will be added to the front end of the lead core p and the front-end | tip guide member 40 (refer FIG. 8 (4a)).
Therefore, the pressing force to the rear of the tip guide member 40 is transmitted to the lead core holding mechanism 50, and further the pressing force is transmitted to the rear of the lead core holding mechanism 50 to the front sleeve 21a and the rear sleeve 21b.
Therefore, the lead core p, the tip guide member 40, the lead core holding mechanism 50, the front sleeve 21a, and the rear sleeve 21b are integrally retracted, and the gap s2 between the rear sleeve 21b and the spring receiving portion 13 is narrowed. The rear sleeve 21b comes into contact with the spring receiving portion 13 (see FIG. 8 (5a)). The amount of retreat at this time is the dimension x3 in the figure.

次に、鉛芯pに対する押圧力が解除された場合には、第一付勢部材31の付勢力により、後側スリーブ21b及び前側スリーブ21aが前進を開始する。
それと略同時に、第二付勢部材32の付勢力により、チャック部22に相対し、鉛芯保持機構50が鉛芯pを保持したまま前進を開始する。
そして、この際前進する鉛芯保持機構50は、第二凸部51aを先端ガイド部材40の第二傾斜部42b1に摺接させる(図8(5b)参照)。
そのため、先端ガイド部材40は、後退時と逆の回転方向(図8(5b)(6b)の展開図上では右方向)へ回転しながら前進する。
Next, when the pressing force against the lead core p is released, the urging force of the first urging member 31 causes the rear sleeve 21b and the front sleeve 21a to start moving forward.
At substantially the same time, the urging force of the second urging member 32 opposes the chuck portion 22 and the lead core holding mechanism 50 starts moving forward while holding the lead wick p.
Then, the lead core holding mechanism 50 moving forward at this time causes the second convex portion 51a to slide in contact with the second inclined portion 42b1 of the tip guide member 40 (see FIG. 8 (5b)).
Therefore, the distal end guide member 40 moves forward while rotating in the direction of rotation opposite to that at the time of reverse movement (rightward in the developed views of FIGS. 8 (5b) and 6b).

よって、前記前進の際に、鉛芯pを保持した鉛芯保持機構50が先端ガイド部材40に接近するとともに、先端ガイド部材40の前端から鉛芯pが突出されてゆくことになる。
なお、この前進中、鉛芯pが鉛芯保持機構50によって前方へ引っ張られることで、チャック部22が前側スリーブ21aに相対し若干前進して緩むため、鉛芯pの前進がチャック部22の挟持力により阻まれることはない。
Accordingly, during the advancement, the lead core holding mechanism 50 holding the lead core p approaches the tip guide member 40 and the lead core p is projected from the front end of the tip guide member 40.
During this advancement, the lead core p is pulled forward by the lead core holding mechanism 50, so that the chuck portion 22 is slightly advanced and loosened relative to the front sleeve 21a. It is not obstructed by the clamping force.

図8中において、寸法x4は、前記のようにして鉛芯pに対する押圧力が解除された後に先端ガイド部材40が前進する量を示し、寸法x5は、鉛芯pの前進量(すなわち先端ガイド部材40前端から突出した量)を示す。
なお、鉛芯pの前進量x5(突出量)は、先端ガイド部材40及び鉛芯保持機構50の後退時に、先端ガイド部材40と鉛芯保持機構50との間に形成される隙間s1(図8(5a)参照)と略同じになる。
In FIG. 8, the dimension x4 indicates the amount by which the tip guide member 40 advances after the pressing force against the lead core p is released as described above, and the dimension x5 indicates the amount by which the lead core p advances (that is, the tip guide). The amount protruding from the front end of the member 40 is shown.
The advance amount x5 (protrusion amount) of the lead core p is a clearance s1 (see FIG. 5) formed between the tip guide member 40 and the lead core holding mechanism 50 when the tip guide member 40 and the lead core holding mechanism 50 are retracted. 8 (see 5a)).

図7及び図8に示す作用は、突出しすぎた鉛芯pを適量突出した状態にするための操作として説明したが、本実施の形態によれば、突出量が少なすぎた場合(先端ガイド部材40前端と鉛芯p前端とが面一の場合を含む)の鉛芯pを、前記と略同様の操作により、適量突出した状態にすることができる。
すなわち、面一にある鉛芯pの前端(図9(1a)参照)、あるいは突出量の少なすぎた鉛芯pの前端(図示せず)を、被筆記面qに対し筆圧以上の力で押圧し、鉛芯p及び先端ガイド部材40を後退させ(図9(2a))、その後に前記押圧力を解除すればよい(図9(3a))。
この場合も、上述した図7〜図8に示す動作と略同様にして、鉛芯p及び先端ガイド部材40の寸法x1’の後退に伴い鉛芯保持機構50が滑り[又は移動し](図9(2a)参照)、その後に鉛芯pへの押圧力が除去されと、先端ガイド部材40が寸法x2’だけ前進するとともに、鉛芯pが鉛芯保持機構50と共に先端ガイド部材40に相対して前進し、鉛芯pの突出量x3’が適量となる(図9(3a)参照)。なお、この突出量x3’は、先端ガイド部材40と鉛芯保持機構50が後退した際の間隔s1と略同じとなる。
The operation shown in FIGS. 7 and 8 has been described as an operation for setting the lead core p protruding too much in an appropriate amount, but according to the present embodiment, the amount of protrusion is too small (the tip guide member). The lead core p (including the case where the front end of the lead 40 and the front end of the lead core p are flush with each other) can be made to protrude by an appropriate amount by the same operation as described above.
That is, the front end of the lead core p (see FIG. 9 (1a)) that is flush with the front end (not shown) of the lead core p with a small amount of protrusion is applied to the writing surface q with a force that is greater than the writing pressure. The lead core p and the tip guide member 40 are retracted (FIG. 9 (2a)), and then the pressing force is released (FIG. 9 (3a)).
Also in this case, in substantially the same manner as the operations shown in FIGS. 7 to 8 described above, the lead core holding mechanism 50 slides [or moves] as the lead core p and the tip guide member 40 are retreated by the dimension x1 ′ (see FIG. 7). 9 (2a)), when the pressing force to the lead core p is subsequently removed, the tip guide member 40 moves forward by the dimension x2 ′, and the lead core p moves relative to the tip guide member 40 together with the lead core holding mechanism 50. As a result, the protrusion amount x3 ′ of the lead core p becomes an appropriate amount (see FIG. 9 (3a)). The protruding amount x3 ′ is substantially the same as the interval s1 when the tip guide member 40 and the lead core holding mechanism 50 are retracted.

以上は、鉛芯pを前方から押圧する操作により該鉛芯pを先端ガイド部材40から突出させる操作について説明したが、本実施の形態のシャープペンシル1によればノック部材60に対するノック操作によっても鉛芯pを突出させることができる。以下、その場合の動作を図10及び図11に基づき説明する。
なお、図10及び図11の(a)〜(d)において、ハッチングを施した部分は、その前の状態に対し動いた部分を示しており、前の状態に対し動かなかった部分についてはハッチングを省略している。
In the above, the operation of causing the lead core p to protrude from the tip guide member 40 by the operation of pressing the lead core p from the front has been described. However, according to the mechanical pencil 1 of the present embodiment, the operation of knocking the knock member 60 is also performed. The lead core p can be protruded. Hereinafter, the operation in that case will be described with reference to FIGS.
In FIGS. 10 and 11 (a) to 11 (d), hatched portions indicate portions that have moved relative to the previous state, and portions that have not moved relative to the previous state are hatched. Is omitted.

図10(a)は、当該シャープペンシル1が操作される前の状態であって、鉛芯pが先端ガイド部材40の前端から突出しない静止状態を示している。
この際、前側スリーブ21a前端と鉛芯保持機構50後端との間には、隙間s3が形成される。同時に、チャック部22後端と鉛芯挿通部材62の当接部62b1との間には隙間s4が形成される。
FIG. 10A shows a stationary state in which the lead pencil p does not protrude from the front end of the distal end guide member 40 before the mechanical pencil 1 is operated.
At this time, a gap s3 is formed between the front end of the front sleeve 21a and the rear end of the lead core holding mechanism 50. At the same time, a gap s4 is formed between the rear end of the chuck portion 22 and the contact portion 62b1 of the lead core insertion member 62.

図10(b)に示すように、ノック操作によりノック部材60が前進すると、前進するノック部材60前端側の係合凹部62b2が、前側スリーブ21a後端側の凸部21a6に掛止されているため、ノック部材60の前進に伴い前側スリーブ21aも前進する。   As shown in FIG. 10B, when the knock member 60 moves forward by the knocking operation, the engaging recess 62b2 on the front end side of the knock member 60 that moves forward is hooked on the convex portion 21a6 on the rear end side of the front sleeve 21a. Therefore, as the knock member 60 advances, the front sleeve 21a also advances.

この前進の際、チャック部22も前側スリーブ21aに押されて前進することになり、このチャック部22は、前側スリーブ21aに嵌り合っているため、チャック部22に挟持されている鉛芯pも前進し、該鉛芯pは先端ガイド部材40前端から適量突出した状態となる。   At the time of this advancement, the chuck portion 22 is also pushed forward by the front sleeve 21a, and the chuck portion 22 is fitted to the front sleeve 21a, so that the lead core p sandwiched between the chuck portions 22 is also included. The lead core p moves forward, and a proper amount projects from the front end of the tip guide member 40.

また、前進した前側スリーブ21aは、図10(b)に示すように、鉛芯保持機構50の後端に当接する。
なお、より詳細には、前側スリーブ21aの前進の際、前側スリーブ21a前端の掛止突起21a1が、先端ガイド部材40の係合孔部42c(図5参照)内を前方へ移動して、鉛芯保持機構50後端の当接部51bに当接する。
Further, the advanced front sleeve 21a abuts on the rear end of the lead core holding mechanism 50 as shown in FIG.
More specifically, when the front sleeve 21a moves forward, the latching protrusion 21a1 at the front end of the front sleeve 21a moves forward in the engagement hole portion 42c (see FIG. 5) of the tip guide member 40, and leads It contacts the contact portion 51b at the rear end of the core holding mechanism 50.

更に、ノック部材60の前進が継続すると、前側スリーブ21aが弾性的に拡径することで、該前側スリーブ21aの凸部21a6が、鉛芯挿通部材62の係合凹部62b2の後方へせり上がるようにして、これら凸部21a6と係合凹部62b2の掛合が外れる。したがって、鉛芯挿通部材62とチャック部22との隙間s4を狭めるようにして、前側スリーブ21aに相対し鉛芯挿通部材62が前進することになる。
すると、鉛芯挿通部材62の前部側の当接部62b1が、チャック部22の後端部に当接する(図11(c))。
Furthermore, when the knock member 60 continues to advance, the front sleeve 21a elastically expands so that the convex portion 21a6 of the front sleeve 21a rises to the rear of the engaging concave portion 62b2 of the lead core insertion member 62. Thus, the engagement between the convex portion 21a6 and the engaging concave portion 62b2 is released. Therefore, the lead core insertion member 62 moves forward relative to the front sleeve 21a so as to narrow the gap s4 between the lead core insertion member 62 and the chuck portion 22.
Then, the contact portion 62b1 on the front side of the lead core insertion member 62 contacts the rear end portion of the chuck portion 22 (FIG. 11C).

更に、ノック部材60の前進が継続すると、前進するノック部材60がチャック部22を押動し、チャック部22が前側スリーブ21aから外れるようにして前方へ移動することになる(図11(d)参照)。
よって、チャック部22は、鉛芯pを挟持しない解除状態となる。
Further, when the knock member 60 continues to advance, the advancing knock member 60 pushes the chuck portion 22 and moves forward so that the chuck portion 22 is disengaged from the front sleeve 21a (FIG. 11D). reference).
Therefore, the chuck portion 22 is in a released state where the lead core p is not sandwiched.

前記解除状態のまま、ノック部材60に対する押圧力が解除されると、ノック部材60は、第三付勢部材33の付勢力により後方へ移動する。同時に、第二付勢部材32によりチャック部22と鉛芯保持機構50とを離間させる。
この後方への移動により、ノック部材60前端側の係合凹部62b2が凸部21a6に掛止した状態に戻り、ノック部材60の更なる後退に追従して、前側スリーブ21aも後退する(図示省略)。
この後退の際、鉛芯pは、チャック部22の挟持力から解放されて鉛芯保持機構50に保持されているため、後方へは移動せず、先端ガイド部材40前端から適量突出した状態に維持される。
When the pressing force on the knock member 60 is released in the released state, the knock member 60 moves rearward by the urging force of the third urging member 33. At the same time, the chuck portion 22 and the lead core holding mechanism 50 are separated by the second urging member 32.
By this rearward movement, the engagement concave portion 62b2 on the front end side of the knock member 60 returns to the state of being hooked on the convex portion 21a6, and the front sleeve 21a also moves backward following the further backward movement of the knock member 60 (not shown). ).
At the time of this retraction, the lead core p is released from the clamping force of the chuck portion 22 and is held by the lead core holding mechanism 50, so that it does not move backward and protrudes from the front end of the tip guide member 40 by an appropriate amount. Maintained.

なお、上記実施の形態のシャープペンシル1は、チャック部22をボール23を介して前側スリーブ21aに嵌脱させる態様としているが、他例としては、図12に示すシャープペンシル2のようにしてもよい。
なお、シャープペンシル2は、上記シャープペンシル1に対し一部構成を変更したものであるため、シャープペンシル1と略同一に作用する部分については同一の符号を付けることで重複する詳細説明を省略する。
The mechanical pencil 1 according to the above embodiment is configured such that the chuck portion 22 is fitted to and detached from the front sleeve 21a via the ball 23. However, as another example, the mechanical pencil 2 shown in FIG. Good.
Note that the mechanical pencil 2 is a part of the mechanical pencil 1 whose structure is partially changed, and therefore, the same reference numerals are assigned to portions that operate substantially the same as the mechanical pencil 1, and the detailed description thereof is omitted. .

シャープペンシル2は、シャープペンシル1からボール23を省くとともに、チャック部22をチャック部22’に、前側スリーブ21aをスリーブ21a’に、鉛芯挿通部材62を鉛芯挿通部材62’に、それぞれ置換した構成とされる。   The mechanical pencil 2 omits the ball 23 from the mechanical pencil 1 and replaces the chuck portion 22 with the chuck portion 22 ′, the front sleeve 21a with the sleeve 21a ′, and the lead core insertion member 62 with the lead core insertion member 62 ′. The configuration is

チャック部22’は、鉛芯pの周囲に位置するように同芯状に配置された複数(例えば2又は3)の爪部22a’と、該爪部22a’を後端側で連結する筒部22bとからなる。
このチャック部22’の爪部22a’は、上記第一実施例のチャック部22から凹部22a1を省いた形状を呈するとともに、その外周の後部側に、後方へ向かって縮径する傾斜部を形成している。
The chuck portion 22 ′ is a cylinder that connects a plurality (for example, 2 or 3) of claw portions 22 a ′ arranged concentrically so as to be positioned around the lead core p, and the claw portion 22 a ′ on the rear end side. Part 22b.
The claw portion 22a ′ of the chuck portion 22 ′ has a shape in which the concave portion 22a1 is omitted from the chuck portion 22 of the first embodiment, and an inclined portion that is reduced in diameter toward the rear is formed on the rear side of the outer periphery. is doing.

また、スリーブ21a’は、上記前側スリーブ21aから後部側の縮径部21a5を省いた構成となっている。
このスリーブ21a’の内周面の前端側には、後方へ向かって徐々に縮径する傾斜面が形成され、この傾斜面は、前方から嵌め合わせられるチャック部22’を、徐々に縮径させる。
Further, the sleeve 21a ′ has a configuration in which the reduced diameter portion 21a5 on the rear side is omitted from the front sleeve 21a.
On the front end side of the inner peripheral surface of the sleeve 21a ', an inclined surface that gradually decreases in diameter toward the rear is formed, and this inclined surface gradually reduces the diameter of the chuck portion 22' that is fitted from the front. .

また、鉛芯挿通部材62’は、チャック部22’の後端側内部へ挿入される挿入部62aと、該挿入部62aよりも後方側で複数の鉛芯pを内在可能な芯タンク部62cとを具備し、挿入部62aと芯タンク部62cとの間の段部を、チャック部22’後端に当接させるための当接部62b1’としている。   The lead core insertion member 62 ′ includes an insertion portion 62a that is inserted into the rear end side inside the chuck portion 22 ′, and a core tank portion 62c that can contain a plurality of lead cores p behind the insertion portion 62a. And a step portion between the insertion portion 62a and the core tank portion 62c serves as a contact portion 62b1 ′ for contacting the rear end of the chuck portion 22 ′.

このシャープペンシル2は、鉛芯pが前方からノックされた際には、上記構成のシャープペンシル1と略同様に動作して、長すぎたり短すぎた場合の鉛芯pを、先端ガイド部材40の前端から適量だけ突出させた状態にすることができる(図13(1a)(1b)〜(5a)(5b)参照)。
なお、前記動作の際、シャープペンシル2では、シャープペンシル1の場合における後側スリーブ21b後端側の凸部21a6とノック部材60前端側の係合凹部62b2とを有さないため、これらの間の嵌脱動作(図7(1a)(2a)参照)が発生しない。
When the lead lead p is knocked from the front, the mechanical pencil 2 operates in substantially the same manner as the mechanical pencil 1 having the above-described configuration, and the lead lead p when it is too long or too short is used as the tip guide member 40. It can be made to be in a state where it protrudes from the front end by an appropriate amount (see FIGS. 13 (1a) (1b) to (5a) (5b)).
During the above operation, the mechanical pencil 2 does not have the convex portion 21a6 on the rear end side of the rear sleeve 21b and the engaging concave portion 62b2 on the front end side of the knock member 60 in the case of the mechanical pencil 1, Does not occur (see FIGS. 7 (1a) and (2a)).

また、このシャープペンシル2では、ノック部材60が後方からノックされた際には、上記構成のシャープペンシル1と略同様に動作して、先端ガイド部材40の前端から鉛芯pを適量だけ突出させることができる(図14(a)〜(d)参照)。
なお、前記動作の際、シャープペンシル2では、シャープペンシル1の場合における後側スリーブ21b後端側の凸部21a6とノック部材60前端側の係合凹部62b2とを有さないため、これらの間の嵌脱動作(図10(b)(c)参照)が発生しない。
Further, in this mechanical pencil 2, when the knock member 60 is knocked from behind, the lead pencil p protrudes from the front end of the tip guide member 40 by an appropriate amount by operating in substantially the same manner as the mechanical pencil 1 configured as described above. (See FIGS. 14A to 14D).
During the above operation, the mechanical pencil 2 does not have the convex portion 21a6 on the rear end side of the rear sleeve 21b and the engaging concave portion 62b2 on the front end side of the knock member 60 in the case of the mechanical pencil 1, Does not occur (see FIGS. 10B and 10C).

すなわち、シャープペンシル2の場合には、ノック部材60の当接部62c1’がチャック部22’後端に当接(図14(b)参照)して更に前進した際に、該チャック部22’の周囲に嵌合しているスリーブ21a’も前進する(図14(c)参照)。
そして、前進したスリーブ21a’は鉛芯保持機構50に当接し、チャック部22’が解放する(図14(d)参照)。
そのため、シャープペンシル2では、シャープペンシル1における凸部21a6及び係合凹部62b2が不要である。
That is, in the case of the mechanical pencil 2, when the abutting portion 62c1 'of the knock member 60 abuts on the rear end of the chuck portion 22' (see FIG. 14B) and further advances, the chuck portion 22 ' The sleeve 21a 'fitted around the periphery of the sleeve moves forward (see FIG. 14C).
Then, the advanced sleeve 21a ′ contacts the lead core holding mechanism 50, and the chuck portion 22 ′ is released (see FIG. 14D).
Therefore, in the mechanical pencil 2, the convex part 21a6 and the engagement concave part 62b2 in the mechanical pencil 1 are unnecessary.

しかしながら、前者のシャープペンシル1において、仮に凸部21a6及び係合凹部62b2を有さない場合には、前側スリーブ21aがボール23を介することでチャック部22の周囲に容易に離脱可能な状態で係合しているため、ノック部材60がチャック部22後端に当接して更に前進したとしても、チャック部22及びボール23のみが前側スリーブ21aと独立して前進してしまい、ひいては、チャック部22を鉛芯挟持状態のまま前進させることができなくなってしまう。
そこで、上記シャープペンシル1の場合には、凸部21a6及び係合凹部62b2の嵌合により、ノック部材60の前進に前側スリーブ21aを連動させ、前側スリーブ21aが鉛芯保持機構50に当接するまで、チャック部22による鉛芯挟持状態を維持するようにしている(図10(a)(b))。
However, if the former mechanical pencil 1 does not have the convex portion 21 a 6 and the engaging concave portion 62 b 2, the front sleeve 21 a is engaged with the ball 23 so that it can be easily detached around the chuck portion 22. Therefore, even if the knock member 60 abuts on the rear end of the chuck portion 22 and further moves forward, only the chuck portion 22 and the ball 23 move forward independently of the front sleeve 21a. Cannot be moved forward with the lead core sandwiched.
Therefore, in the case of the mechanical pencil 1, the front sleeve 21a is interlocked with the advancement of the knock member 60 by the fitting of the convex portion 21a6 and the engaging concave portion 62b2, and the front sleeve 21a is in contact with the lead core holding mechanism 50. The lead core is held between the chuck portions 22 (FIGS. 10A and 10B).

10:軸筒 11:係合溝
11b:第一傾斜部 20:チャック機構
21:スリーブ 22:チャック部
31:第一付勢部材 32:第二付勢部材
33:第三付勢部材 40:先端ガイド部材
42a:第一凸部 42b:係合孔
42b1:第二傾斜部 50:鉛芯保持機構
51:スライド部 51a:第二凸部
52:弾性圧接部 60:ノック部材
61:押圧操作部 62b1:当接部
A:鉛芯繰出し機構 p:鉛芯
10: Shaft cylinder 11: Engaging groove 11b: First inclined portion 20: Chuck mechanism 21: Sleeve 22: Chuck portion 31: First urging member 32: Second urging member 33: Third urging member 40: Tip Guide member 42a: 1st convex part 42b: Engagement hole 42b1: 2nd inclination part 50: Lead core holding mechanism 51: Slide part 51a: 2nd convex part 52: Elastic pressure contact part 60: Knock member 61: Press operation part 62b1 : Abutting part A: Lead lead feeding mechanism p: Lead lead

Claims (7)

軸筒と、該軸筒に相対する後退動作と前進動作により鉛芯を繰出す鉛芯繰出し機構と、付勢部材とを具備したシャープペンシルであって、
鉛芯に加えられる後方への押圧力により前記鉛芯繰出し機構を後退動作させ、前記押圧力が解除された際に前記付勢部材の付勢力によって同鉛芯繰出し機構を前進動作させるようにしたことを特徴とするシャープペンシル。
A mechanical pencil comprising a shaft cylinder, a lead core feeding mechanism for feeding out the lead core by a backward movement and a forward movement relative to the shaft cylinder, and an urging member,
The lead core feeding mechanism is moved backward by a backward pressing force applied to the lead core, and the lead core feeding mechanism is moved forward by the biasing force of the biasing member when the pressing force is released. A mechanical pencil characterized by that.
前記鉛芯繰出し機構は、
鉛芯繰出し方向には鉛芯保持を解除し、鉛芯没入方向には筆圧に耐え得る程度の保持力で鉛芯を保持し、保持した鉛芯に対しその前方側から筆圧よりも大なる力が加わった場合には前記保持力を解除するチャック機構と、
前記チャック機構よりも前方側に設けられ、前後移動可能であるとともに、所定の保持力にて鉛芯を保持可能に形成される鉛芯保持機構とを具備し、
前記付勢部材は、前記チャック機構と前記鉛芯保持機構とを離間方向へ付勢するように設けられている、
こと特徴とする請求項1記載のシャープペンシル。
The lead lead feeding mechanism is
Release the lead lead holding direction in the lead lead out direction, hold the lead lead with a holding force that can withstand the pen pressure in the lead lead immersion direction, and the lead pressure from the front side of the held lead lead is greater than the pen pressure. A chuck mechanism for releasing the holding force when a force is applied,
A lead core holding mechanism that is provided on the front side of the chuck mechanism, is movable back and forth, and is formed to be capable of holding a lead core with a predetermined holding force;
The urging member is provided to urge the chuck mechanism and the lead core holding mechanism in a separating direction.
The mechanical pencil according to claim 1.
前記鉛芯繰出し機構は、
前記軸筒内で所定量進退するように設けられるとともに、前進した際に鉛芯を後退不能且つ前進可能に挟持し、所定の解放位置まで後退した際には同鉛芯を解放するチャック機構と、
該チャック機構から繰り出される鉛芯を挿通して前方へ導くとともに、軸筒に相対し所定量進退可能であって、前記チャック機構に牽引されて後退するように設けられた先端ガイド部材と、
鉛芯を前記チャック機構の挟持力よりも弱い力で保持するとともに、前記先端ガイド部材と前記チャック機構との間で進退するように設けられた鉛芯保持機構と、
前記先端ガイド部材の後退に連動して、前記鉛芯保持機構を前記先端ガイド部材に相対し後退させる後退連動手段と、を具備し、
前記付勢部材は、前記チャック機構を軸筒に相対し前方へ付勢する第一付勢部材と、前記鉛芯保持機構を前記チャック機構に相対し前方へ付勢する第二付勢部材とを具備してなることを特徴とする請求項1記載のシャープペンシル。
The lead lead feeding mechanism is
A chuck mechanism which is provided so as to advance and retract by a predetermined amount within the shaft cylinder, holds the lead core so as not to be retractable and capable of advancing when advanced, and releases the lead core when retracted to a predetermined release position; ,
A lead guide member inserted through the lead lead from the chuck mechanism and guided forward, and capable of advancing and retreating by a predetermined amount relative to the shaft cylinder, and provided to be pulled back by the chuck mechanism;
A lead core holding mechanism provided to hold the lead core with a force weaker than the clamping force of the chuck mechanism, and to advance and retract between the tip guide member and the chuck mechanism;
Retreat interlocking means for retreating the lead core holding mechanism relative to the tip guide member in conjunction with the retraction of the tip guide member;
The biasing member includes a first biasing member that biases the chuck mechanism forward relative to the shaft cylinder, and a second biasing member that biases the lead core holding mechanism forward relative to the chuck mechanism; The mechanical pencil according to claim 1, comprising:
前記後退連動手段は、軸筒と前記先端ガイド部とのうちの一方に設けられた第一凸部と、その他方に設けられて後方斜め周方向へ傾斜する第一傾斜部と、前記先端ガイド部と前記鉛芯保持機構とのうちの一方に設けられた第二凸部と、その他方に設けられて後方斜め逆周方向へ傾斜する第二傾斜部とを備えるとともに、前記鉛芯保持機構を軸筒に対し進退可能且つ回動不能に係合し、
第一凸部と第一傾斜部との係合により、軸筒に相対して後退する際の前記先端ガイド部をその後退に伴って回転させるとともに、第二凸部と第二傾斜部との係合により、前記鉛芯保持機構を前記先端ガイド部に相対して後退させるようにしたことを特徴とする請求項3記載のシャープペンシル。
The retraction interlocking means includes a first convex portion provided on one of the shaft cylinder and the tip guide portion, a first inclined portion provided on the other side and inclined in a rearward oblique circumferential direction, and the tip guide And a second convex portion provided on one of the lead core holding mechanism and a second inclined portion provided on the other side and inclined rearwardly in the reverse circumferential direction, and the lead core holding mechanism Is engaged with the shaft cylinder so that it can advance and retreat and cannot rotate,
By engaging the first convex portion and the first inclined portion, the tip guide portion when retreating relative to the shaft tube is rotated along with the retraction, and the second convex portion and the second inclined portion are The mechanical pencil according to claim 3, wherein the lead core holding mechanism is retracted relative to the tip guide portion by engagement.
前記鉛芯保持機構は、先端ガイド部に対して進退可能に係合するスライド部と、該スライド部内で鉛芯の外周面に弾性的に圧接される弾性圧接部とからなることを特徴とする請求項3又は4記載のシャープペンシル。   The lead core holding mechanism includes a slide portion that is movably engaged with the tip guide portion, and an elastic pressure contact portion that is elastically pressed against the outer peripheral surface of the lead core within the slide portion. The mechanical pencil according to claim 3 or 4. 前記チャック機構は、軸筒内で進退可能であって前記第一付勢部材によって前方へ付勢されるように設けられた略筒状のスリーブと、
前記第二付勢部材によって後方へ付勢されるとともに前記スリーブに対しその前方側から嵌り合い縮径して鉛芯を挟持するチャック部と、
前記チャック部に相対して進退不能に設けられるとともに所定量後退した際の前記チャック部に当接して前記チャック部の挟持状態を緩める当接部とを備えていることを特徴とする請求項3乃至5何れか1項記載のシャープペンシル。
The chuck mechanism is capable of advancing and retracting in a shaft cylinder, and is provided with a substantially cylindrical sleeve provided to be urged forward by the first urging member;
A chuck portion that is urged rearward by the second urging member and fits from the front side to the sleeve to reduce the diameter and sandwich the lead core;
4. A contact portion that is provided so as not to be able to advance and retreat relative to the chuck portion, and a contact portion that abuts against the chuck portion when it is retracted by a predetermined amount to loosen a clamping state of the chuck portion. The mechanical pencil according to any one of 5 to 5.
操作部を軸筒後端部又は軸筒外周部から露出した状態で軸筒に対し所定量進退可能に設けられるノック部材と、該ノック部材を後方へ付勢する第三付勢部材とを備え、前記当接部を前記ノック部材の前端側に形成して、前記ノック部材の進退により前記先端ガイド部から鉛芯が繰り出されるようにしたことを特徴とする請求項6記載のシャープペンシル。   A knock member provided so as to be able to advance and retract by a predetermined amount with respect to the shaft cylinder in a state where the operation portion is exposed from the rear end portion of the shaft cylinder or the outer peripheral portion of the shaft cylinder, and a third urging member for urging the knock member backward. The mechanical pencil according to claim 6, wherein the abutting portion is formed on a front end side of the knock member, and a lead core is drawn out from the tip guide portion by the advance and retreat of the knock member.
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Publication number Priority date Publication date Assignee Title
CN104742576A (en) * 2013-12-26 2015-07-01 斑马株式会社 Writing instrument
US9573410B2 (en) 2014-08-06 2017-02-21 Zebra Co., Ltd. Writing utensil
JP2017080956A (en) * 2015-10-26 2017-05-18 株式会社パイロットコーポレーション mechanical pencil
JP2019069528A (en) * 2017-10-06 2019-05-09 ゼブラ株式会社 mechanical pencil

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JPH0726178U (en) * 1993-10-14 1995-05-16 華菱実業有限会社 mechanical pencil

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Publication number Priority date Publication date Assignee Title
CN104742576A (en) * 2013-12-26 2015-07-01 斑马株式会社 Writing instrument
TWI619621B (en) * 2013-12-26 2018-04-01 Zebra Co Ltd Writing tools
US9573410B2 (en) 2014-08-06 2017-02-21 Zebra Co., Ltd. Writing utensil
JP2017080956A (en) * 2015-10-26 2017-05-18 株式会社パイロットコーポレーション mechanical pencil
JP2019069528A (en) * 2017-10-06 2019-05-09 ゼブラ株式会社 mechanical pencil
JP7098297B2 (en) 2017-10-06 2022-07-11 ゼブラ株式会社 mechanical pencil

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