JP4762607B2 - Guide device for cutting machine - Google Patents

Guide device for cutting machine Download PDF

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JP4762607B2
JP4762607B2 JP2005161329A JP2005161329A JP4762607B2 JP 4762607 B2 JP4762607 B2 JP 4762607B2 JP 2005161329 A JP2005161329 A JP 2005161329A JP 2005161329 A JP2005161329 A JP 2005161329A JP 4762607 B2 JP4762607 B2 JP 4762607B2
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guide
cutting
screw
convex portion
cutting machine
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JP2006334886A (en
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修司 青山
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Makita Corp
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Makita Corp
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この発明は、作業者が手に持って移動させて切断材を切断する携帯型の切断機を直線移動させるための案内装置に関する。   The present invention relates to a guide device for linearly moving a portable cutting machine that an operator holds in his hand and cuts a cutting material.

作業者が切断機本体を切断材に載置して移動させることにより、切断材の上面に当接させたベースから下方へ突き出した切断刃により切断材が切断される携帯型の切断機には、切断機本体を直線に沿って真っ直ぐに移動させるための案内装置を備えたものが提供されている。
一般に、この案内装置は、切断方向に延びる直線形状の案内凸部を上面側に備えた案内板と、上記ベース側に設けた案内凹部を備え、この案内凹部に案内凸部を進入させた状態で当該切断機を案内板の上面側で移動させることにより、当該切断機を切断方向に沿って真っ直ぐに移動させることができるように構成されている。
このような案内装置においては、案内凸部と案内凹部との間の摺動性を確保するために適切なクリアランス(隙間)が必要となるが、このクリアランスが大きいと切断方向に直交する方向のガタツキとなって切断機本体の直進性が損なわれる。
従来この問題を解消するための技術が、例えば特開平11−300703号公報に開示されている。この従来技術を、同公報の図2を援用した図8に示した。この従来技術によれば、切断機のベース側にブラケット35を介して取り付けた案内部材36の案内凹部36a内に調整部品31を切断方向に直交する方向に移動可能に設け、この調整部品31を移動させることにより当該案内凹部30aの幅(案内幅L)を調整して案内板34の上面に切断方向に沿って設けた案内凸部32との間のガタツキを解消する構成を備えていた。
特開平11−300702号公報
A portable cutting machine in which a cutting material is cut by a cutting blade protruding downward from a base that is in contact with the upper surface of the cutting material when an operator places the cutting machine body on the cutting material and moves it. There is provided a guide provided with a guide device for moving a cutting machine body straightly along a straight line.
In general, the guide device includes a guide plate having a linear guide convex portion extending in the cutting direction on the upper surface side and a guide concave portion provided on the base side, and the guide convex portion is inserted into the guide concave portion. By moving the cutting machine on the upper surface side of the guide plate, the cutting machine can be moved straight along the cutting direction.
In such a guide device, an appropriate clearance (gap) is required to ensure the slidability between the guide convex portion and the guide concave portion, but if this clearance is large, the direction perpendicular to the cutting direction is required. It becomes rattling and the straightness of the cutting machine body is impaired.
Conventionally, a technique for solving this problem is disclosed in, for example, Japanese Patent Application Laid-Open No. 11-300703. This prior art is shown in FIG. 8 using FIG. 2 of the publication. According to this prior art, the adjustment component 31 is provided in the guide recess 36a of the guide member 36 attached to the base side of the cutting machine via the bracket 35 so as to be movable in a direction perpendicular to the cutting direction. By moving, the width of the guide recess 30a (guide width L) is adjusted, and the backlash between the guide protrusion 32 provided on the upper surface of the guide plate 34 along the cutting direction is eliminated.
JP-A-11-300702

しかしながら、上記従来の案内装置30では、主としてその操作性について改善すべき点があった。すなわち、上記従来の案内装置30における調整部材31は、切断方向前後に設けた固定ねじ37,37(一方は図示省略されいる)を緩めることにより案内凹部36a内をその幅方向に移動させて案内幅Lを調整することができ、さらにこの調整した状態の調整部材31の位置を保持しつつ前後の固定ねじ37,37を締め込むことにより当該調整部材31の位置を固定して案内幅Lを固定する構成となっていた。このため、前後の固定ねじ37,37を緩めたり締め込む操作、あるいは調整部材31の調整位置を保持しつつ固定ねじ37,37を締め込む操作が面倒であり、この点で操作性(使い勝手)を改善する必要があった。
本発明は、この問題を解消するためになされたもので、操作性のよいガタツキ調整機構を備えた案内装置を提供することを目的とする。
However, the conventional guide device 30 has a point to be improved mainly in operability. That is, the adjusting member 31 in the conventional guide device 30 is guided by moving the inside of the guide recess 36a in the width direction by loosening the fixing screws 37, 37 (one is not shown) provided in the front and rear of the cutting direction. The width L can be adjusted, and the position of the adjusting member 31 is fixed by tightening the front and rear fixing screws 37 while holding the position of the adjusting member 31 in the adjusted state. The configuration was fixed. For this reason, the operation of loosening or tightening the front and rear fixing screws 37, 37, or the operation of tightening the fixing screws 37, 37 while holding the adjustment position of the adjusting member 31 is troublesome. In this respect, operability (usability) There was a need to improve.
The present invention has been made to solve this problem, and an object of the present invention is to provide a guide device including a shaki adjustment mechanism with good operability.

本発明は、この課題を解決するために、特許請求の範囲の各請求項に記載した構成の案内装置とした。
請求項1記載の案内装置によれば、調整ねじを締め込み方向に回転操作すれば規制部材が案内凸部に押し付けられることにより、当該案内凸部と案内凹部との間の隙間を極力小さくすることができるので切断幅方向のガタツキが抑制されて、切断機を切断幅方向にガタツキのない状態で移動させることができる。このようにガタツキ調整機構の調整ねじを回転操作するのみの簡単な操作で案内凸部と案内凹部との間の隙間を極力小さくし若しくはなくすことができるので、当該ガタツキ調整機構の操作性を従来よりもよくすることができる。
請求項2記載の案内装置によれば、径方向に弾性力を有する弾性リングを使用することで簡単な構成により上記の作用効果を得ることができる。
In order to solve this problem, the present invention provides a guide device having a configuration described in each claim.
According to the guide device of the first aspect, when the adjusting screw is rotated in the tightening direction, the regulating member is pressed against the guide convex portion, thereby minimizing the gap between the guide convex portion and the guide concave portion. Therefore, backlash in the cutting width direction is suppressed, and the cutting machine can be moved in the cutting width direction without backlash. As described above, the gap between the guide convex portion and the guide concave portion can be minimized or eliminated by a simple operation by simply rotating the adjustment screw of the rattle adjustment mechanism. Can be better.
According to the guide device of the second aspect, the above-described effects can be obtained with a simple configuration by using an elastic ring having an elastic force in the radial direction.

次に、本発明の実施形態を図1〜図7に基づいて説明する。図1は、以下説明する案内装置10を備えた切断機1の全体を示している。以下説明する実施形態では、切断機の一例としていわゆるプランジマルノコと称される携帯形の丸鋸盤を例示する。
この切断機1は、電動モータ4により回転する円形の鋸刃(図では見えていない)を備えた切断機本体2と、この切断機本体2を上面側に支持するベース3を備えている。本実施形態において切断機本体2については従来構成と同様で足り、特に変更を要しないので詳細な説明は省略する。なお、図中符号5は、切断機本体2のブレードケースを示している。このブレードケース5内に、円形の鋸刃が回転可能に収容されている。鋸刃は、ベース3に設けた窓部を経てその下面側に突き出されている。また、ブレードケース5の背面側(図1において手前側)から電動モータ4が突き出されている。この電動モータ4の上部には、作業者が把持するハンドル部6が設けられれている。また、図示は省略されているが、鋸刃の下側は、ベース3の下面から突き出されている。作業者は図1において切断機1の右側に位置し、この位置でハンドル部6を把持して当該切断機1を切断材(図では省略されている)の上面に沿って図示左側に移動させることにより、鋸刃のベース3の下面側に突き出された部分で切断材が切断されていく。
さて、本実施形態における案内装置10は、切断作業時に切断材の上面に載せ掛けられる案内板11と、切断機1のベース3に設けられた案内部12を備えている。
案内板11は、図示するように切断方向に長い矩形の平板形状をなすもので、その上面に案内凸部11aが設けられている。この案内凸部11aは、案内板11の切断方向前端から後端に至る全範囲にわたって連続して設けられている。本実施形態では、この案内板11は、アルミニウムの引き抜き材を素材として製作されている。
この案内板11の上面に切断機1が載せ掛けられている。図1では見えていないが、切断機1の切断刃は、ベース3の窓部を経てこの案内板11の側方から下方へ突き出されている。
案内板11の上面にベース3が重ね合わせられている。ベース3の下面には、下方に開放するコ字形の案内凹部3aが切断方向に沿って設けられている。この案内凹部3a内に、案内板11の案内凸部11aが嵌り込んでいる。相対的に案内凸部11aが案内凹部3a内において移動することにより、切断機1が案内凸部11aに沿って案内される。案内凸部11aの両側面は、相互に平行な平坦面に形成されており、それぞれ予め精確に直線に沿って形成されている。
Next, an embodiment of the present invention will be described with reference to FIGS. FIG. 1 shows an entire cutting machine 1 provided with a guide device 10 described below. In the embodiment described below, a portable circular saw called so-called plunge marnoco is illustrated as an example of a cutting machine.
The cutting machine 1 includes a cutting machine main body 2 provided with a circular saw blade (not shown in the figure) that is rotated by an electric motor 4, and a base 3 that supports the cutting machine main body 2 on the upper surface side. In the present embodiment, the cutting machine main body 2 is the same as that of the conventional configuration and does not need to be changed in detail, and thus detailed description thereof is omitted. In addition, the code | symbol 5 in the figure has shown the blade case of the cutting machine main body 2. FIG. A circular saw blade is rotatably accommodated in the blade case 5. The saw blade protrudes to the lower surface side through a window provided in the base 3. In addition, the electric motor 4 protrudes from the back side of the blade case 5 (front side in FIG. 1). On the upper part of the electric motor 4, a handle portion 6 that is held by an operator is provided. Although not shown, the lower side of the saw blade protrudes from the lower surface of the base 3. The operator is located on the right side of the cutting machine 1 in FIG. 1 and grips the handle portion 6 at this position to move the cutting machine 1 to the left side in the drawing along the upper surface of the cutting material (not shown in the figure). As a result, the cutting material is cut at the portion protruding to the lower surface side of the base 3 of the saw blade.
Now, the guide device 10 in the present embodiment includes a guide plate 11 that is placed on the upper surface of the cutting material during a cutting operation, and a guide portion 12 that is provided on the base 3 of the cutting machine 1.
As shown in the figure, the guide plate 11 has a rectangular flat plate shape that is long in the cutting direction, and a guide convex portion 11a is provided on the upper surface thereof. The guide convex portion 11a is provided continuously over the entire range from the front end to the rear end of the guide plate 11 in the cutting direction. In this embodiment, the guide plate 11 is manufactured using an aluminum drawing material as a material.
The cutting machine 1 is placed on the upper surface of the guide plate 11. Although not visible in FIG. 1, the cutting blade of the cutting machine 1 protrudes downward from the side of the guide plate 11 through the window portion of the base 3.
The base 3 is superimposed on the upper surface of the guide plate 11. On the lower surface of the base 3, a U-shaped guide recess 3a that opens downward is provided along the cutting direction. The guide convex portion 11a of the guide plate 11 is fitted in the guide concave portion 3a. By relatively moving the guide convex portion 11a in the guide concave portion 3a, the cutting machine 1 is guided along the guide convex portion 11a. Both side surfaces of the guide convex portion 11a are formed as flat surfaces parallel to each other, and each is formed in advance along a straight line accurately.

この案内凹部3aの切断方向前寄り及び後ろ寄りの2箇所には、ガタツキ調整機構13,13が設けられている。両ガタツキ調整機構13,13は同じ構成を備えている。図2には切断方向前寄り(図1において左側)のガタツキ調整機構13の詳細が示されている。
ベース3の上面であって、案内凹部3aの側部には、円筒形状の壁部3bが形成されている。この円筒壁部3bの中心にはボス部3cが設けられている。このボス部3cの中心にはねじ孔3dが形成されている。このねじ孔3dには、指先で摘んでねじ締め方向又はねじ緩め方向に回転操作する調整ねじ16のねじ軸16bがねじ込まれている。この調整ねじ16をねじ締め込み方向に回転させると、ねじ軸16bがボス部3cのねじ孔3dに対して締め込まれるため、当該調整ねじ16が下方(円筒壁部3b内に進入する方向)へ変位する。調整ねじ16をねじ緩め方向に回転させると、ねじ軸16bがねじ孔3dに対して緩められるので、調整ねじ16が上方(円筒壁部3b内から出る方向)へ変位する。
調整ねじ16の下側外周角部には、その全周にわたって傾斜面16aが形成されている。傾斜面16aは、ねじ軸16bに対してほぼ45°に傾斜している。この傾斜面16aと、円筒壁部3bの内側底部との間に、規制部材17が挟み込まれている。本実施形態では、この規制部材17に、径方向に弾性を有するゴム製の弾性リングが用いられている。また、円筒壁部3bの底部付近には、一部が欠落されてなる規制窓部3eが形成されている。この規制窓部3eを経て、円筒壁部3bの内側が前記案内凹部3aに連通されている。この規制窓部3eを経て上記規制部材17が案内凹部3a側に露出されている。
本実施形態において、上記調整ねじ16、ねじ軸16b、規制部材17、円筒壁部3bの規制窓部3e等がガタツキ調整機構13を構成している。
The backlash adjustment mechanisms 13 and 13 are provided at two locations near the front and rear in the cutting direction of the guide recess 3a. Both the backlash adjustment mechanisms 13, 13 have the same configuration. FIG. 2 shows details of the backlash adjustment mechanism 13 closer to the front in the cutting direction (left side in FIG. 1).
A cylindrical wall 3b is formed on the upper surface of the base 3 and on the side of the guide recess 3a. A boss 3c is provided at the center of the cylindrical wall 3b. A screw hole 3d is formed at the center of the boss 3c. A screw shaft 16b of an adjusting screw 16 that is picked by a fingertip and rotated in a screw tightening direction or a screw loosening direction is screwed into the screw hole 3d. When the adjusting screw 16 is rotated in the screw tightening direction, the screw shaft 16b is tightened into the screw hole 3d of the boss portion 3c, so that the adjusting screw 16 is downward (in the direction of entering the cylindrical wall portion 3b). Displace to When the adjustment screw 16 is rotated in the screw loosening direction, the screw shaft 16b is loosened with respect to the screw hole 3d, so that the adjustment screw 16 is displaced upward (in the direction of exiting from the cylindrical wall portion 3b).
An inclined surface 16a is formed on the lower outer peripheral corner of the adjustment screw 16 over the entire circumference. The inclined surface 16a is inclined at approximately 45 ° with respect to the screw shaft 16b. A regulating member 17 is sandwiched between the inclined surface 16a and the inner bottom portion of the cylindrical wall portion 3b. In the present embodiment, a rubber elastic ring having elasticity in the radial direction is used for the restricting member 17. Further, a restricting window portion 3e is formed in the vicinity of the bottom of the cylindrical wall portion 3b. The inner side of the cylindrical wall 3b is communicated with the guide recess 3a through the restricting window 3e. The restriction member 17 is exposed to the guide recess 3a side through the restriction window 3e.
In the present embodiment, the adjustment screw 16, the screw shaft 16b, the regulating member 17, the regulating window 3e of the cylindrical wall 3b, and the like constitute the backlash adjusting mechanism 13.

以上のように構成した案内装置10によれば、切断機1のベース3に設けた案内凹部3a内に、案内板11の案内凸部11aが、切断方向の少なくとも前後2箇所において切断方向に直交する方向にほぼ隙間のない状態若しくは極力隙間を小さくした状態に嵌め込まれており、この状態で当該切断機1が案内板11の上面に載せ掛けられている。このため、切断機1を切断方向に移動させると、案内凹部3aが案内凸部11aに案内されることにより、当該切断機1を精確に直線に沿って移動させることができ、これにより高精度の直線切りを行うことができる。
しかも、本実施形態の案内装置10によれば、調整ねじ16を締め込み方向に回転操作すると、ねじ軸16bがねじ孔3dに締め込まれて当該調整ねじ16が下方へ変位する。調整ねじ16が下方へ変位すると、その傾斜面16aが下方へ変位する。調整ねじ16の傾斜面16aが下方へ変位すると、当該傾斜面16aと円筒壁部3bの底部との間に挟み込まれた規制部材17が傾斜面16aの傾斜作用により押し広げられて拡径する。規制部材17は、拡径されると、その一部が規制窓部3eを経て案内凹部3a内に入り込む。規制部材17は拡径してその一部が案内凹部3a内に入り込むと、案内凸部11aに側部に押し付けられる。
このように切断方向の前後2箇所に設けたガタツキ調整機構13,13の調整ねじ16,16の回転操作によりそれぞれ規制部材17が案内凸部11aの一方の側部に押し付けられることにより、結果的に案内凸部11aの他方の側部に案内凹部3aの側部が押し付けられ、これにより案内凸部11aの側部と案内凹部3aの両側部との間の隙間をゼロにすることができ、若しくは可能な限り隙間を小さくすることができる。切断方向の前後2箇所において案内凸部11aと案内凹部3aとの隙間がなくなることから、案内凸部11aに対する案内凹部3aの切断方向に直交する方向のガタツキが抑制若しくは除去されるので、切断機1を切断幅方向にガタツキなく精確に直線に沿って移動させることができ、ひいては高精度の直線切りを行うことができる。
以上のことから、本実施形態によれば、切断方向の前後2箇所に設けたガタツキ調整機構13,13の調整ねじ16,16を回転させる操作のみによって案内凸部11aに対する案内凹部3aのガタツキをなくすことができることから、当該ガタツキ調整機構13,13の操作性を従来よりも高めることができる。
According to the guide device 10 configured as described above, the guide convex portion 11a of the guide plate 11 is orthogonal to the cutting direction at least at two front and rear sides in the cutting direction in the guide concave portion 3a provided in the base 3 of the cutting machine 1. The cutting machine 1 is fitted in a state in which there is almost no gap in the direction to be cut or in a state where the gap is made as small as possible, and the cutting machine 1 is placed on the upper surface of the guide plate 11 in this state. For this reason, when the cutting machine 1 is moved in the cutting direction, the guide concave part 3a is guided by the guide convex part 11a, whereby the cutting machine 1 can be accurately moved along a straight line. Can be cut straight.
Moreover, according to the guide device 10 of the present embodiment, when the adjustment screw 16 is rotated in the tightening direction, the screw shaft 16b is tightened into the screw hole 3d and the adjustment screw 16 is displaced downward. When the adjustment screw 16 is displaced downward, the inclined surface 16a is displaced downward. When the inclined surface 16a of the adjusting screw 16 is displaced downward, the regulating member 17 sandwiched between the inclined surface 16a and the bottom portion of the cylindrical wall portion 3b is expanded by the inclination action of the inclined surface 16a to increase the diameter. When the diameter of the restricting member 17 is increased, a part of the restricting member 17 enters the guide recess 3a through the restricting window 3e. When the diameter of the restricting member 17 expands and a part of the restricting member 17 enters the guide recessed portion 3a, the restricting member 17 is pressed against the side of the guide protruded portion 11a.
As described above, the regulating member 17 is pressed against one side portion of the guide convex portion 11a by the rotation operation of the adjusting screws 16 and 16 of the backlash adjusting mechanisms 13 and 13 provided at two places in the front and rear in the cutting direction. The side portion of the guide concave portion 3a is pressed against the other side portion of the guide convex portion 11a, so that the gap between the side portion of the guide convex portion 11a and both side portions of the guide concave portion 3a can be made zero, Alternatively, the gap can be made as small as possible. Since there is no gap between the guide convex portion 11a and the guide concave portion 3a at two places in the front and rear in the cutting direction, rattling in the direction orthogonal to the cutting direction of the guide concave portion 3a with respect to the guide convex portion 11a is suppressed or eliminated. 1 can be accurately moved along the straight line in the cutting width direction without rattling, and as a result, highly accurate straight line cutting can be performed.
From the above, according to the present embodiment, the guide recess 3a is not rattled with respect to the guide protrusion 11a only by the operation of rotating the adjustment screws 16 and 16 of the backlash adjustment mechanisms 13 and 13 provided at the two front and rear positions in the cutting direction. Since it can be eliminated, the operability of the backlash adjustment mechanisms 13 and 13 can be improved as compared with the conventional case.

案内凸部11aの側部に対する案内凹部3aの側部の押し付け力及び規制部材17の押し付け力は、調整ねじ16の回転操作量ひいてはねじ軸16bのねじ孔3dに対する締め込み量によって任意に調整することができる。
調整ねじ16の締め込み方向の回転操作量を大きくすると、ねじ軸16bのねじ孔3dに対する締め込み量が大きくなって傾斜面16aがより下方へ変位することから、規制部材17がより大きく拡径して案内凸部11aに対してより大きな力で押し付けられる。このため、この場合には、案内凹部3aの側部が案内凸部11aの側部により大きな力で押し付けられることから、この押し付け力が摺動抵抗となって切断機1の案内板11に対する移動操作が重くなり、若しくは移動不能に固定することができる。
逆に、図4及び図5に示すように調整ねじ16の緩め方向の回転操作量を大きくすると、ねじ軸16bのねじ孔3dに対する締め込み量が小さくなって傾斜面16aが上方へ変位することから、規制部材17の拡径量が小さくなって案内凸部11aに対する押し付け力が小さくなり、これにより切断機1を軽い力で移動させることができる。
また、調整ねじ16をさらに緩め方向に回転操作して、傾斜面16aをさらに上方へ変位させると規制部材17の案内凸部11aに対する押し付けが解除される。
以上説明したように、本実施形態の案内装置10によれば、調整ねじ16の回転操作のみによって、案内凸部11aと案内凹部3aとの間の隙間がゼロ若しくは極力小さくなって切断幅方向のガタツキのない状態にすることができる。しかも、調整ねじ16の回転操作量(締め込み量)を適切に調整することにより、規制部材17の案内凸部11aに対する押し付け力を任意に調整することができ、ひいては切断作業時において切断機1を移動させるために必要な操作力を例えば作業内容や作業者の好みに応じて任意に調整することができる。
The pressing force of the side portion of the guide concave portion 3a and the pressing force of the regulating member 17 with respect to the side portion of the guide convex portion 11a are arbitrarily adjusted by the rotation operation amount of the adjusting screw 16 and the tightening amount of the screw shaft 16b with respect to the screw hole 3d. be able to.
When the amount of rotation operation in the tightening direction of the adjusting screw 16 is increased, the tightening amount of the screw shaft 16b with respect to the screw hole 3d is increased, and the inclined surface 16a is displaced further downward. Then, it is pressed against the guide convex portion 11a with a larger force. For this reason, in this case, since the side portion of the guide concave portion 3a is pressed with a large force by the side portion of the guide convex portion 11a, the pressing force becomes a sliding resistance and moves relative to the guide plate 11 of the cutting machine 1. The operation becomes heavy or can be fixed immovable.
On the contrary, as shown in FIGS. 4 and 5, when the amount of rotation of the adjusting screw 16 in the loosening direction is increased, the tightening amount of the screw shaft 16b with respect to the screw hole 3d is decreased and the inclined surface 16a is displaced upward. Therefore, the diameter expansion amount of the restricting member 17 is reduced and the pressing force against the guide convex portion 11a is reduced, whereby the cutting machine 1 can be moved with a light force.
Further, when the adjusting screw 16 is further rotated in the loosening direction to displace the inclined surface 16a further upward, the pressing of the regulating member 17 against the guide convex portion 11a is released.
As described above, according to the guide device 10 of the present embodiment, the clearance between the guide convex portion 11a and the guide concave portion 3a becomes zero or as small as possible only by the rotation operation of the adjustment screw 16, and the cutting width direction is reduced. It can be in a state without rattling. In addition, by appropriately adjusting the rotation operation amount (tightening amount) of the adjustment screw 16, the pressing force of the regulating member 17 against the guide convex portion 11a can be arbitrarily adjusted, and as a result, the cutting machine 1 during the cutting operation. The operating force required to move the can be arbitrarily adjusted according to, for example, the work content or the operator's preference.

以上説明した実施形態には種々変更を加えることができる。例えば、規制部材17としてゴム製の弾性リングを例示したが、弾性リングの別形態として図6及び図7に示すように切り欠き18aを有するC字形の樹脂製リングを規制部材18として用いることができる。この規制部材18も拡径方向に弾性を有している。この規制リング18の外周面18cは、その中心軸線に対して平行な面に形成されている。このため、調整ねじ16の回転操作によりこの規制部材18を弾性に抗して拡径させて案内凸部11aの側面に線当たり状態で押圧することができるので、より確実に案内凸部11aに対する案内凹部3aのガタツキをなくすことができる。
また、この規制部材18の上面内周側に傾斜面18bを設けておくことにより、調整ねじ16の傾斜面16aに対して当該規制部材18を面当たり状態若しくは線当たり状態で係合させることができるので、当該規制部材18をスムーズに拡径若しくは縮径させることができ、この点で当該案内装置10の確実な動作を長期間にわたって確保することができる。
さらに、切断方向の前後2箇所にガタツキ調整機構13,13を設ける構成を例示したが、1箇所あるいは3箇所以上に設ける構成としてもよい。
Various modifications can be made to the embodiment described above. For example, although the rubber elastic ring is illustrated as the restricting member 17, as another form of the elastic ring, a C-shaped resin ring having a notch 18 a as shown in FIGS. 6 and 7 may be used as the restricting member 18. it can. This restricting member 18 also has elasticity in the diameter increasing direction. The outer peripheral surface 18c of the restriction ring 18 is formed in a plane parallel to the central axis. For this reason, it is possible to press the side surface of the guide convex portion 11a in a line-contact state by rotating the adjusting screw 16 so that the diameter of the restricting member 18 is increased against the elasticity, and more reliably against the guide convex portion 11a. The backlash of the guide recess 3a can be eliminated.
Further, by providing the inclined surface 18b on the inner peripheral side of the upper surface of the restricting member 18, the restricting member 18 can be engaged with the inclined surface 16a of the adjusting screw 16 in a surface contact state or a line contact state. Therefore, the restricting member 18 can be smoothly expanded or contracted in diameter, and in this respect, the reliable operation of the guide device 10 can be ensured over a long period of time.
Furthermore, although the structure which provides the rattling adjustment mechanisms 13 and 13 in two places before and behind in a cutting direction was illustrated, it is good also as a structure provided in one place or three places or more.

本発明の実施形態に係る案内装置を備えた切断機の全体斜視図である。It is the whole cutting machine perspective view provided with the guidance device concerning the embodiment of the present invention. 図1の(2)-(2)線断面矢視図であって、案内装置のガタツキ調整機構の縦断面図である。本図は、調整ツマミを締め込み方向に回転操作して規制部材を案内凸部に押し付け、これにより案内凹部との間のガタツキをなくした状態を示している。FIG. 2 is a cross-sectional view taken along line (2)-(2) in FIG. 1, and is a vertical cross-sectional view of a rattling adjustment mechanism of the guide device. This figure shows a state in which the adjustment knob is rotated in the tightening direction to press the regulating member against the guide convex portion, thereby eliminating backlash between the guide concave portion. ガタツキ調整機構を図2の(3)-(3)線断面矢視図である。FIG. 3 is a sectional view taken along line (3)-(3) of FIG. 案内装置のガタツキ調整機構の縦断面図である。本図は、調整ツマミを緩め方向に回転操作して規制部材の案内凸部に対する押し付けを解除した状態を示している。It is a longitudinal cross-sectional view of the rattling adjustment mechanism of the guide device. This figure shows a state where the adjustment knob is rotated in the loosening direction to release the pressing of the restricting member against the guide convex portion. ガタツキ調整機構を図4の(5)-(5)線断面矢視図である。FIG. 5 is a sectional view taken along line (5)-(5) of FIG. 本発明の別の実施形態に係るガタツキ調整機構の縦断面である。It is a longitudinal section of the rattling adjustment mechanism concerning another embodiment of the present invention. 図6に示した実施形態に用いる規制部材を単独で示した斜視図である。It is the perspective view which showed independently the control member used for embodiment shown in FIG. 従来の案内装置の斜視図である。本図は、特開平11−300702号公報の図2を援用した図である。It is a perspective view of the conventional guide apparatus. This figure is a drawing that uses FIG. 2 of Japanese Patent Laid-Open No. 11-300702.

符号の説明Explanation of symbols

1…切断機(プランジマルノコ)
2…切断機本体
3…ベース
3a…案内凹部、3b…円筒壁部、3c…ボス部、3d…ねじ孔、3e…規制窓部
4…電動モータ
5…ブレードケース
6…ハンドル部
10…案内装置
11…案内板、11a…案内凸部
12…案内部
13…ガタツキ調整機構
15…ねじ軸
16…調整ツマミ、16a…傾斜面
17…規制部材(ゴムリング)
18…規制部材(C形樹脂製リング)
30…従来の案内装置
31…調整部材
37…固定ねじ
L…案内幅(案内凹部の幅)
1 ... Cutting machine (Plunge Marnoko)
DESCRIPTION OF SYMBOLS 2 ... Cutting machine main body 3 ... Base 3a ... Guide recessed part, 3b ... Cylindrical wall part, 3c ... Boss part, 3d ... Screw hole, 3e ... Restriction window part 4 ... Electric motor 5 ... Blade case 6 ... Handle part 10 ... Guide apparatus DESCRIPTION OF SYMBOLS 11 ... Guide plate, 11a ... Guide convex part 12 ... Guide part 13 ... Backlash adjustment mechanism 15 ... Screw shaft 16 ... Adjustment knob, 16a ... Inclined surface 17 ... Restriction member (rubber ring)
18 ... Regulating member (C-shaped resin ring)
30 ... Conventional guide device 31 ... Adjusting member 37 ... Fixing screw L ... Guide width (width of guide recess)

Claims (2)

切断材の上面に載せ掛けられた案内板の上面に沿ってベースを移動させて前記切断材を切断する切断機を切断方向に沿って案内するための案内装置であって、
前記案内板の上面に、前記切断方向に沿って延びる案内凸部を備え、前記ベースの下面に、下方に開口して設けられて前記案内凸部が嵌め込まれる案内凹部を備え、前記ベースの上面に設けられ、前記案内凸部に対して規制部材を押し付けて該案内凸部と前記案内凹部との間のガタツキを規制するガタツキ調整機構を備えており、
該ガタツキ調整機構は、ねじ軸と該ねじ軸の締め込み方向に対して傾斜する傾斜面を備えた調整ねじを備え、該調整ねじの前記ベースの上面側からの回転操作による前記ねじ軸の締め込みに伴う前記傾斜面の作用により前記規制部材を、前記案内凹部を形成する壁部に設けた規制窓部を経て前記案内凸部に対して押し付ける構成とした案内装置。
A guiding device for the along the upper surface of the guide plate placed hung on the upper surface of the cutting member by moving the base cutting machine for cutting the cutting member along the cutting direction guide,
The upper surface of the guide plate, with a guide protrusion extending along the cutting direction, on the lower surface of the base, with a guide recess which the guide protrusions provided to open downwardly is fitted, the upper surface of the base to provided, equipped with a backlash adjustment mechanism you restrict rattling between said guide the guide protrusion presses the regulating member with respect to the convex portion and the guide recess,
The rattling adjustment mechanism includes an adjustment screw having a screw shaft and an inclined surface inclined with respect to a tightening direction of the screw shaft, and tightening the screw shaft by rotating the adjustment screw from the upper surface side of the base. A guide device configured to press the restricting member against the guide convex portion through a restricting window portion provided in a wall portion forming the guide concave portion due to the action of the inclined surface accompanying the insertion.
請求項1記載の案内装置であって、前記傾斜面は前記調整ねじの全周にわたって設け、該傾斜面の周囲に弾性リングを前記規制部材として配置し、前記調整ねじの締め込みによる前記傾斜面の変位により前記規制部材を弾性に抗して拡径させて前記案内凸部に押し付ける構成とした案内装置。
2. The guide device according to claim 1, wherein the inclined surface is provided over the entire circumference of the adjusting screw, an elastic ring is disposed as the regulating member around the inclined surface, and the inclined surface is formed by tightening the adjusting screw. The guide device is configured to expand the diameter of the restricting member against elasticity and press the guide member against the guide convex portion.
JP2005161329A 2005-06-01 2005-06-01 Guide device for cutting machine Expired - Fee Related JP4762607B2 (en)

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DE200610025137 DE102006025137B4 (en) 2005-06-01 2006-05-30 Cutting tools and guide device

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Cited By (1)

* Cited by examiner, † Cited by third party
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CN104511949A (en) * 2013-10-07 2015-04-15 罗伯特·博世有限公司 Hand-held machine tool guiding device

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JP4378378B2 (en) 2006-12-12 2009-12-02 アルプス電気株式会社 Antenna device
JP2013086277A (en) 2011-10-13 2013-05-13 Makita Corp Guide device for power tool
JP2013086278A (en) 2011-10-13 2013-05-13 Makita Corp Guide device for power tool
JP7315414B2 (en) 2019-08-28 2023-07-26 株式会社マキタ Portable processing machine guide ruler

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JPH11300702A (en) * 1998-04-24 1999-11-02 Hitachi Koki Co Ltd Electric circular saw
JP2003343555A (en) * 2002-05-23 2003-12-03 Ntn Corp Linear guide

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104511949A (en) * 2013-10-07 2015-04-15 罗伯特·博世有限公司 Hand-held machine tool guiding device
CN104511949B (en) * 2013-10-07 2021-01-05 罗伯特·博世有限公司 Hand-held machine tool guide

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