WO2009081868A1 - Electric tool - Google Patents

Electric tool Download PDF

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Publication number
WO2009081868A1
WO2009081868A1 PCT/JP2008/073209 JP2008073209W WO2009081868A1 WO 2009081868 A1 WO2009081868 A1 WO 2009081868A1 JP 2008073209 W JP2008073209 W JP 2008073209W WO 2009081868 A1 WO2009081868 A1 WO 2009081868A1
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WO
WIPO (PCT)
Prior art keywords
brush holder
housing
tool
axis direction
long axis
Prior art date
Application number
PCT/JP2008/073209
Other languages
French (fr)
Japanese (ja)
Inventor
Hironori Ogura
Original Assignee
Makita Corporation
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Makita Corporation filed Critical Makita Corporation
Priority to CN200880120330.7A priority Critical patent/CN101896318B/en
Publication of WO2009081868A1 publication Critical patent/WO2009081868A1/en

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Classifications

    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02KDYNAMO-ELECTRIC MACHINES
    • H02K5/00Casings; Enclosures; Supports
    • H02K5/04Casings or enclosures characterised by the shape, form or construction thereof
    • H02K5/14Means for supporting or protecting brushes or brush holders
    • H02K5/143Means for supporting or protecting brushes or brush holders for cooperation with commutators
    • H02K5/148Slidably supported brushes

Definitions

  • the present invention relates to an electric tool provided with a motor for driving a tip tool, and more particularly to a technique for fixing a brush holder.
  • Patent Document 1 discloses a technique for fixing a brush holder in an electric tool.
  • the brush holder fixing structure described in the above publication is set by inserting the brush holder from the long axis direction between opposing reinforcing plates formed at the rear end portion in the long axis direction of the motor housing constituting the tool body, When the cover is attached to the rear end portion of the motor housing from the long axis direction, the brush holder is fixed by pressing the brush holder from the long axis direction with a pin provided on the cover.
  • about one brush holder among several brush holders it is set as the structure which pushes and fixes a brush holder toward the commutator side using the rib provided in the cover.
  • a reinforcing plate extending along the long axis direction is provided at the rear end portion of the motor housing in the long axis direction so as to face the motor housing, and the brush holder is mounted in a groove formed between the reinforcing plates. It is configured to be inserted and installed from the long axis direction of the housing. For this reason, it is effective in a configuration in which the end region of the motor housing is opened, that is, in a configuration in which there is no functional part in the end region of the motor housing that obstructs the mounting of the brush holder from the motor housing longitudinal direction .
  • a brush holder in an electric power tool, can be attached to an intermediate region that extends inward in the long axis direction from an end region of the tool housing, and the brush holder is stably fixed to the intermediate region.
  • the purpose is to provide a technology that makes it possible.
  • a preferred form of the electric tool according to the present invention is a tool housing in which functional parts used for driving the tip tool are arranged on one end side and the other end side in the long axis direction, And a motor housed in the tool housing, and the tip tool is driven by the motor, thereby causing the tip tool to perform a predetermined machining operation.
  • the “functional component arranged at one end” in the present invention typically includes a power switch for starting or stopping the motor, an operation lever (knob) for operating the power switch, and a motor-side terminal.
  • a switch wiring mechanism unit that incorporates a switch-side terminal that can be connected to a brush corresponds to this, and as a “functional component arranged on the other end side”, typically a rotational output of a motor is applied to a tip tool.
  • a rotational output of a motor is applied to a tip tool.
  • the “power tool” in the present invention typically corresponds to a power tool using a motor such as a disk grinder used for grinding work or polishing work as a drive source.
  • the tool housing has a brush holder accommodating space in an intermediate region between one end side and the other end side in the long axis direction of the tool housing.
  • the motor has a brush holder that is mounted by being inserted into the brush holder housing space from a direction that intersects the long axis direction of the tool housing, that is, from the outside in the radial direction.
  • the brush holder includes a cylindrical portion that accommodates the brush, and is integrally provided with a pressed portion adjacent to the cylindrical portion.
  • the tool housing has a cover attached to one end side in the long axis direction of the tool housing.
  • the cover is formed in a hollow shape with one end opened, and has an inner space in the tool housing major axis direction that is continuous with the opening, and a protrusion that extends in the major axis direction of the tool housing from the opening side in the inner space.
  • the tool housing covers one end outer surface and the intermediate region outer surface of the tool housing from the opening along the longitudinal direction of the tool housing, whereby the one end outer surface and the intermediate region outer surface of the tool housing are accommodated in the internal space. It is supposed to be configured.
  • the cover covers the outer surface of one end of the tool housing and the outer surface of the intermediate region, the protruding portion of the inner space comes into contact with the pressed portion of the brush holder inserted into the brush holder housing space, and the brush holder is inserted in the insertion direction. That is, it was set as the structure pressed in the direction (radial direction) which cross
  • the term “adjacent to the cylinder part” in the present invention suitably includes both an aspect arranged directly on the outer surface of the cylinder part and an aspect arranged around the cylinder part.
  • the brush holder is configured to be inserted into the tool housing by inserting the brush holder in the direction intersecting the long axis direction of the tool housing, that is, from the radially outer diameter side to the inner diameter side.
  • the brush holder can be mounted in a brush holder housing space in an intermediate region between the respective end portions in the long axis direction, that is, a region entering inward from one end portion of the tool housing.
  • the brush holder inserted into the brush holder housing space of the tool housing includes a pressed portion, and the pressing portion is pressed in the insertion direction by the protrusion of the cover attached to one end of the tool housing from the long axis direction. It is configured.
  • the brush holder generally has a brush biasing spring that presses a brush accommodated in a cylindrical portion of the brush holder toward the commutator. For this reason, the urging force of the urging spring is always applied to the brush holder in the direction opposite to the insertion direction, that is, in the pulling direction. Therefore, the brush holder can be stably fixed in the brush holder accommodating space.
  • the protrusion is provided in one of the brush holder accommodation space and the brush holder, and the recessed part engaged with the said protrusion is provided in the other, and the brush holder is a brush.
  • the protrusion and the recess are engaged to hold the brush holder in the brush holder housing space.
  • the urging force of the brush urging spring that presses the brush toward the commutator acts in the direction opposite to the insertion direction, that is, the removal direction, in the brush holder inserted into the brush holder housing space.
  • the brush holder inserted into the brush holder housing space can be held in the brush holder housing space by the engagement between the protrusion and the concave portion, when the cover is assembled to the tool housing, the operator holds the brush holder with fingers.
  • the operation of holding the brush holder in the brush holder accommodation space becomes unnecessary, and the assembly workability of the brush holder and the cover can be improved.
  • the protruding portion of the cover when the cover is mounted so that the cover covers the outer surface of the one end portion and the intermediate region in the long axis direction of the tool housing, the protruding portion of the cover is It has a deformable tapered guide part that guides it to abut.
  • the cover when the cover is attached to the outer surface of one end in the longitudinal direction of the tool housing and the outer surface of the intermediate region by providing the tapered guide portion on the pressed portion, the protruding portion of the cover is pressed against the pressed portion. It becomes possible to make it contact
  • a brush holder in an electric power tool, can be attached to an intermediate region that extends inward in the long axis direction from the end region of the tool housing, and the brush holder is stably fixed to the intermediate region.
  • FIGS. 1 shows the overall configuration of the electric disc grinder 101 by an external view
  • FIG. 2 shows the overall configuration of the electric disc grinder 101 by a sectional view
  • FIG. 3 further shows the entire configuration of the electric disc grinder 101 in an exploded view. It is shown by a cross-sectional view. 4 is an enlarged view of part A in FIG. 2
  • FIG. 5 is an enlarged view of part B in FIG. 3
  • FIG. 6 is a perspective view showing the rear cover.
  • the electric disc grinder 101 generally includes a main body 103 that forms an outline of the electric disc grinder 101, and a grindstone 119 that is disposed in a tip region of the main body 103.
  • the main body 103 is mainly composed of a motor housing 105, a gear housing 107, and a rear cover 109.
  • the main body 103 corresponds to the “tool housing” in the present invention
  • the grindstone 119 corresponds to the “tip tool” in the present invention.
  • the grindstone 119 side is referred to as the front and the opposite side is referred to as the rear in the major axis direction of the main body 103.
  • the motor housing 105 is formed in a substantially cylindrical shape, and a drive motor 121 is accommodated in the internal space of the motor housing 105.
  • the drive motor 121 corresponds to the “motor” in the present invention.
  • the drive motor 121 is arranged such that the rotation axis direction electric power is in the long axis direction of the disc grinder 101, that is, the long axis direction of the main body 103.
  • the motor housing 105 constitutes a grip portion that an operator grips with one hand when the electric disc grinder 101 is operated to perform a machining operation.
  • a power transmission mechanism 111 for transmitting the rotational output of the drive motor 121 to the grindstone 119 is accommodated in the gear housing 107 connected to the front end portion of the motor housing 105.
  • the power transmission mechanism 111 includes a small bevel gear 113 as a driving side gear that is rotationally driven by a drive motor 121, a large bevel gear 115 as a driven side gear that meshes and engages with the small bevel gear 113, and a spindle 117 that rotates together with the large bevel gear 115.
  • the grindstone 119 is detachably attached to the tip of the spindle 117.
  • the grindstone 119 is arranged on one end side (front side) of the motor housing 105 in the major axis direction (major axis direction of the main body 103) so that the rotation axis thereof is orthogonal to the rotation axis of the drive motor 121.
  • the drive motor 121 in this embodiment is driven by electric power supplied from a power source (outlet) using a power cord.
  • the drive motor 121 includes an output shaft 123, a cooling fan 124 that rotates integrally with the output shaft 123, an armature 125 that rotates integrally with the output shaft 123, a stator 127 fixed to the motor housing 105, and a rear end side of the output shaft 123.
  • a commutator 129 provided on the opposite side of the cooling fan 124, two brushes 133 that supply current by sliding contact with the outer peripheral surface of the commutator 129, and two brush holders 131 that house the brushes 133 are mainly configured. Is done.
  • the output shaft 123 is supported by a front bearing 126 at the front end and is supported by a rear bearing 128 at the rear end so that the output shaft 123 can rotate.
  • the output shaft 123, the armature 125, and the commutator 129 constitute a rotor.
  • the rear housing 106 is connected to the rear end of the motor housing 105. As shown in FIGS. 2 and 3, the rear housing 106 is configured so that the motor housing 105 and the stator 127 are moved in the long axis direction with the front end portion in the long axis direction fitted in the rear end opening of the motor housing 105. It is fastened together by a plurality of mounting screws 105a extending therethrough.
  • the rear housing 106 is disposed so as to cover the commutator 129 and the rear bearing 128, and a switch wiring mechanism 151 is attached to the rear of the rear housing 106.
  • the switch wiring mechanism 151 includes a switch block 153 made of non-conductive synthetic resin, a motor drive power switch (not shown for convenience), and an operation lever 155 (on / off operation for the power switch).
  • a terminal connected to a power cord for supplying current from an external power source a terminal connected to a motor side terminal, a terminal connected to a brush 133, and the like are incorporated.
  • the rear housing 106 is formed separately from the motor housing 105 in consideration of the assembly property of the drive motor 121 with respect to the motor housing 105, but may be formed integrally.
  • FIGS. 7 to 9 show the overall configuration of the brush holder
  • FIG. 10 shows a perspective view of the brush holder accommodating portion in a state before the brush holder 131 is mounted
  • FIG. The part is shown enlarged.
  • FIG. 12 shows a process in which the brush holder is inserted into the brush holder accommodating portion
  • FIG. 13 shows a state seen from the direction of arrow D in FIG. 14 shows a state in which the brush holder is inserted into the brush holder housing portion
  • FIG. 15 shows a state seen from the direction of arrow E in FIG.
  • the brush holder 131 is inserted from the direction intersecting the long axis direction of the rear housing 106 and attached to the rear housing 106.
  • the rear housing 106 is formed with a radially concave brush holder housing 141 that opens outward.
  • the brush holder accommodating portion 141 corresponds to the “brush holder accommodating space” in the present invention. As shown in FIG.
  • two brush holder accommodating portions 141 are set in a region facing the commutator 129 at a predetermined interval (180 degrees in the present embodiment) in the circumferential direction.
  • a region facing the commutator 129 in the rear housing 106 corresponds to an “intermediate region” in the present invention.
  • each brush holder 131 is mounted by being inserted into the brush holder accommodating portion 141 from the direction intersecting the major axis direction of the rear housing 106, that is, from the radial direction. 7 to 9 show the overall configuration of the brush holder 131.
  • FIG. The brush holder 131 is formed in a predetermined shape by processing a conductive metal plate.
  • the brush holder 131 is integrally formed with a cylindrical portion 132 having a substantially rectangular cross section for accommodating the brush 133.
  • the cylindrical portion 132 extends in the insertion direction of the brush holder 131, and as shown in FIG. 4, when the brush holder 131 is inserted into the brush holder accommodating portion 141, the cylindrical hole is in the brush holder accommodating portion 141.
  • a brush 133 is slidably accommodated in the cylindrical portion 132.
  • the brush 133 is brought into contact with the outer peripheral surface of the commutator 129 through the opening 141a at a substantially right angle from the radial direction, and is attached to the brush holder 131.
  • the spiral spring 134 is slidably pressed against the outer peripheral surface of the commutator 129.
  • the spiral spring 134 is a brush biasing spring, one end of which is fixed to the locking piece 131a of the brush holder 131, and the other end is biased toward the commutator 129 when viewed from the brush holder insertion direction. .
  • the brush holder 131 is integrally provided with two insertion pieces 135a and 135b that are formed to face each other on one end side in a direction (housing major axis direction) intersecting the tube hole direction of the tube portion 132. Yes.
  • the insertion piece 135a on one side (upper side in FIGS. 7 and 8) is formed in a substantially inverted U shape when viewed from the insertion direction, and the insertion piece 135b on the other side (lower side in FIGS. 7 and 8) It is formed in a substantially L shape from the direction.
  • These two insertion pieces 135a and 135b are inserted into correspondingly shaped slits 142a and 142b formed in the brush holder accommodating portion 141 shown in FIG. 10 and FIG. It is arranged at a predetermined position.
  • Each of the slits 142a and 142b is formed by a plurality of plate-like members 143 that are formed to face each other at a predetermined interval in the brush holder accommodating portion
  • a hemispherical protrusion 137 is integrally formed on each of the insertion pieces 135a and 135b (see FIG. 13).
  • the protrusion 137 engages with a hemispherical recess (or groove) 144 (see FIGS. 11 and 13) formed in the plate-like member 143.
  • the brush holder 131 is held at a predetermined position of the brush holder accommodating portion 141 (see FIGS. 14 and 15).
  • the brush holder 131 When the brush holder 131 is inserted into the brush holder housing 141 and the brush 133 is pressed against the outer peripheral surface of the commutator 129, the brush holder 131 is provided with a spiral spring 134 that urges the brush 133 to press against the commutator 129.
  • the force acts as a reaction force in the direction opposite to the insertion direction, that is, in the withdrawal direction.
  • the engagement between the protrusion 137 and the recess 144 allows the brush holder 131 to be held at a predetermined position against the reaction force acting on the brush holder 131.
  • the brush holder 131 disposed in the brush holder accommodating portion 141 is configured to be pressed and fixed from the back side in the insertion direction by a rear cover 109 mounted so as to cover the rear housing 106 (see FIG. 4). .
  • the rear cover 109 corresponds to a “cover” in the present invention.
  • the rear cover 109 is formed in a substantially cylindrical shape with one end (front end) opened, and two ribs 145 extending in the major axis direction on the inner wall surface 109a of the cylinder hole. Are integrally formed at intervals of 180 degrees in the circumferential direction.
  • the rib 145 also functions as a reinforcing member.
  • the cylindrical hole corresponds to the “internal space” in the present invention
  • the rib 145 corresponds to the “ridge portion” in the present invention.
  • the protruding piece 139 protrudes in an inclined manner with respect to the covering direction (mounting direction) of the rear cover 109 and can be deformed. As a result, the end of the rib 145 is guided so as to come into contact with the protruding piece 139.
  • the protruding piece 139 protrudes in an inclined shape, thereby forming the “tapered guiding portion” in the present invention.
  • the rear cover 109 that covers the rear housing 106 has an opening end fitted to the outer periphery of the front end of the rear housing 106, and is fastened to the rear housing 106 by a fastening screw 147 in the fitted state (FIG. 2). reference).
  • the rear housing 106, the brush holder 131 and the switch block 153 are accommodated in the rear cover 109.
  • the operation lever 155 assembled to the switch block 153 protrudes outside through an opening (not shown for convenience) formed in the rear end portion of the rear cover 109 so that the operator can operate it. It is possible.
  • the operator grips the motor housing 105 and energizes the drive motor 121 through the operation of the operation lever 155 to rotationally drive the grindstone 119 through the power transmission mechanism 111, so that the workpiece Grinding and polishing operations or cutting operations can be performed as appropriate.
  • the brush holder 131 is mounted by being inserted into the brush holder accommodating portion 141 of the rear housing 106 from the long axis direction of the rear housing 106, that is, the direction intersecting the long axis direction of the main body portion 103. .
  • the brush holder 131 can be reasonably assembled to the middle region in the long axis direction.
  • the rib 145 of the rear cover 109 attached to the rear housing 106 from the long axis direction contacts the protruding piece 139 of the brush holder 131 and presses it in the insertion direction of the brush holder 131.
  • the configuration is fixed.
  • the brush holder 131 can be stably fixed in a state in which the brush holder 131 is prevented from being detached from the brush holder accommodating portion 141.
  • the projecting piece 139 protrudes in an inclined manner with respect to the mounting direction of the rear cover 109 and can be deformed, so that even if there is a variation in the relative position in the insertion direction between the rib 145 and the projecting piece 139, the variation is prevented. Can be worn while absorbing.
  • the insertion pieces 135a and 135b of the brush holder 131 are inserted into the slits 142a and 142b while being guided by the plate-like member 143 that forms the slits 142a and 142b of the brush holder accommodating portion 141.
  • the insertion work of the brush holder 131 into the brush holder accommodating portion 141 can be easily performed.
  • the brush holder 131 when the brush holder 131 is inserted into the brush holder accommodating portion 141, the protrusions 137 provided on the insertion pieces 135a and 135b engage with the concave portion 144 on the brush holder accommodating portion 141 side. As a result, the brush holder 131 is held at a predetermined position against the biasing force of the spiral spring 134 that biases the brush 133. Therefore, when attaching the rear cover 109 to the rear housing 106, the operator does not need to hold the brush holder 131 in the brush holder housing 141 with his / her fingers, and the workability of assembling the brush holder 131 and the rear cover 109 can be improved. it can.
  • the electric disc grinder 101 has been described as an example of the electric tool.
  • the rear end of the rear housing 106 includes the brush holder 131 at the rear end of the rear housing 106 at the rear end of the rear housing 106.
  • Any power tool can be used as long as it has a member that obstructs the mounting method facing forward.
  • FIG. 1 is an external view showing an overall configuration of an electric disc grinder according to an embodiment of the present invention. It is sectional drawing which shows the whole structure of an electric disc grinder. It is an exploded sectional view showing the whole composition of an electric disc grinder. It is the A section enlarged view of FIG. It is the B section enlarged view of FIG. It is a perspective view which shows a rear cover. It is a perspective view which shows the structure of a brush holder. It is a perspective view which similarly shows the structure of a brush holder. It is a side view which similarly shows the structure of a brush holder. It is a perspective view which shows the brush holder accommodating part before a brush holder is inserted. It is the C section enlarged view of FIG.

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  • Engineering & Computer Science (AREA)
  • Power Engineering (AREA)
  • Portable Power Tools In General (AREA)
  • Motor Or Generator Current Collectors (AREA)

Abstract

A tool housing (103) has a brush holder receiving space (141) in an intermediate region in the longitudinal direction of the tool housing (103). A motor (121) has a brush holder (131) inserted and mounted in the brush holder receiving space (141) from a direction intersecting the longitudinal direction of the tool housing (103). The brush holder (131) has a tube section (132) for receiving a brush (133) and is integrally provided with a pressing receiving portion (139) adjacent to the tube section (132). A cover (109) is attached to the outer surface of one end of the tool housing (103) so as to cover the tool housing (103) along the longitudinal direction of the tool housing (103). The cover (109) has in its inner space a ridge (145) extending in the longitudinal direction, and the ridge (145) abuts against the pressing receiving portion (139) of the brush holder (131), inserted in the brush holder receiving space (141), to press the brush holder (131) in the inserting direction.

Description

電動工具Electric tool
 本発明は、先端工具を駆動するモータを備えた電動工具に関し、詳しくはブラシホルダの固定技術に関する。 The present invention relates to an electric tool provided with a motor for driving a tip tool, and more particularly to a technique for fixing a brush holder.
 実開平7-27274号公報(特許文献1)には、電動工具におけるブラシホルダの固定技術が開示されている。上記公報に記載のブラシホルダ固定構造は、工具本体を構成するモータハウジングの長軸方向の後端部に形成された対向する補強板間に長軸方向からブラシホルダを差し込んでセットし、その後、モータハウジングの後端部にカバーを長軸方向から被せて装着する際、当該カバーに設けたピンによってブラシホルダを長軸方向から押さえ込むことによって固定する構成である。また、複数のブラシホルダのうち、1つのブラシホルダについては、カバーに設けたリブを利用してブラシホルダを整流子側に向って押し込んで固定する構成としている。 Japanese Utility Model Laid-Open No. 7-27274 (Patent Document 1) discloses a technique for fixing a brush holder in an electric tool. The brush holder fixing structure described in the above publication is set by inserting the brush holder from the long axis direction between opposing reinforcing plates formed at the rear end portion in the long axis direction of the motor housing constituting the tool body, When the cover is attached to the rear end portion of the motor housing from the long axis direction, the brush holder is fixed by pressing the brush holder from the long axis direction with a pin provided on the cover. Moreover, about one brush holder among several brush holders, it is set as the structure which pushes and fixes a brush holder toward the commutator side using the rib provided in the cover.
 上記のブラシホルダ固定構造は、モータハウジングの長軸方向の後端部に、当該長軸方向に沿って延びる補強板を対向状に設け、この補強板間に形成される溝にブラシホルダをモータハウジングの長軸方向から差し込んで装着する構成としている。このため、モータハウジングの端部領域が開放された構成、すなわちモータハウジングの端部領域に当該ブラシホルダのモータハウジング長軸方向からの装着を妨害するような機能部品が存在しない構成において有効である。
 しかしながら、モータハウジングの端部にブラシホルダの長軸方向装着を妨害するような機能部品が存在するような構成の場合、つまりブラシホルダをモータハウジングの端部よりも長軸方向内方に入り込んだ中間領域に装着しようとすると、公報に記載されたようなブラシホルダの装着方式は適用し難いものであり、この点でなお改良の余地がある。
実開平7-27274号公報
In the above brush holder fixing structure, a reinforcing plate extending along the long axis direction is provided at the rear end portion of the motor housing in the long axis direction so as to face the motor housing, and the brush holder is mounted in a groove formed between the reinforcing plates. It is configured to be inserted and installed from the long axis direction of the housing. For this reason, it is effective in a configuration in which the end region of the motor housing is opened, that is, in a configuration in which there is no functional part in the end region of the motor housing that obstructs the mounting of the brush holder from the motor housing longitudinal direction .
However, in the case where there is a functional part that obstructs the mounting of the brush holder in the long axis direction at the end of the motor housing, that is, the brush holder is inserted inward in the long axis direction from the end of the motor housing. If it is intended to be mounted in the intermediate region, the brush holder mounting method described in the publication is difficult to apply, and there is still room for improvement in this respect.
Japanese Utility Model Publication No. 7-27274
 本発明は、電動工具において、工具ハウジングの端部領域から長軸方向の内方に入り込んだ中間領域にブラシホルダを装着することが可能で、かつ当該中間領域にブラシホルダを安定に固定することを可能とした技術を提供することを目的とする。 According to the present invention, in an electric power tool, a brush holder can be attached to an intermediate region that extends inward in the long axis direction from an end region of the tool housing, and the brush holder is stably fixed to the intermediate region. The purpose is to provide a technology that makes it possible.
 上記課題を達成するため、本発明に係る電動工具の好ましい形態は、先端工具の駆動に用いられる機能部品が、長軸方向の一端側と他端側とのそれぞれに配置された工具ハウジングと、工具ハウジングに収容されたモータと、を備え、モータにより先端工具を駆動させ、これにより先端工具に所定の加工作業を遂行させる構成とされる。なお、本発明における「一端側に配置される機能部品」としては、典型的にはモータを起動または停止するための電源スイッチ、及び当該電源スイッチを操作する操作レバー(ノブ)、またモータ側端子あるいはブラシと接続可能なスイッチ側端子等が組み込まれたスイッチ配線機構部がこれに該当し、また「他端側に配置される機能部品」としては、典型的には先端工具にモータの回転出力を伝達する動力伝達機構がこれに該当する。また、本発明における「電動工具」は、典型的には、研削作業や研磨作業に用いられるディスクグラインダのようなモータを駆動源とする電動工具がこれに該当する。 In order to achieve the above object, a preferred form of the electric tool according to the present invention is a tool housing in which functional parts used for driving the tip tool are arranged on one end side and the other end side in the long axis direction, And a motor housed in the tool housing, and the tip tool is driven by the motor, thereby causing the tip tool to perform a predetermined machining operation. The “functional component arranged at one end” in the present invention typically includes a power switch for starting or stopping the motor, an operation lever (knob) for operating the power switch, and a motor-side terminal. Alternatively, a switch wiring mechanism unit that incorporates a switch-side terminal that can be connected to a brush corresponds to this, and as a “functional component arranged on the other end side”, typically a rotational output of a motor is applied to a tip tool. This applies to the power transmission mechanism that transmits power. In addition, the “power tool” in the present invention typically corresponds to a power tool using a motor such as a disk grinder used for grinding work or polishing work as a drive source.
 本発明の好ましい形態によれば、工具ハウジングは、当該工具ハウジングの長軸方向の一端側と他端側間の中間領域にブラシホルダ収容空間を有する。モータは、工具ハウジングの長軸方向と交差する方向、すなわち径方向外側からブラシホルダ収容空間に差し込んで装着されるブラシホルダを有する。ブラシホルダは、ブラシを収容する筒部を有するとともに、当該筒部に隣接して被押圧部を一体に備えている。また工具ハウジングは、当該工具ハウジングの長軸方向の一端側に取り付けられるカバーを有する。カバーは、一端が開口された中空状に形成されて当該開口に連なる工具ハウジング長軸方向の内部空間を有するとともに、内部空間には開口側から工具ハウジングの長軸方向に延在する突条部を有しており、工具ハウジングの長軸方向に沿って当該工具ハウジングの一端部外面及び中間領域外面に開口から被さり、これにより工具ハウジングの一端部外面及び中間領域外面が内部空間に収容される構成とされる。そして、内部空間の突条部は、カバーが工具ハウジングの一端部外面及び中間領域外面に被さる際、ブラシホルダ収容空間に差し込まれたブラシホルダの被押圧部に当接して当該ブラシホルダを差し込み方向、すなわち工具ハウジングの長軸方向と交差する方向(径方向)に押圧する構成とした。なお、本発明における「筒部に隣接」とは、筒部の外側面に直接に配置される態様、あるいは筒部周辺に配置される態様のいずれも好適に包含する。 According to a preferred embodiment of the present invention, the tool housing has a brush holder accommodating space in an intermediate region between one end side and the other end side in the long axis direction of the tool housing. The motor has a brush holder that is mounted by being inserted into the brush holder housing space from a direction that intersects the long axis direction of the tool housing, that is, from the outside in the radial direction. The brush holder includes a cylindrical portion that accommodates the brush, and is integrally provided with a pressed portion adjacent to the cylindrical portion. The tool housing has a cover attached to one end side in the long axis direction of the tool housing. The cover is formed in a hollow shape with one end opened, and has an inner space in the tool housing major axis direction that is continuous with the opening, and a protrusion that extends in the major axis direction of the tool housing from the opening side in the inner space. The tool housing covers one end outer surface and the intermediate region outer surface of the tool housing from the opening along the longitudinal direction of the tool housing, whereby the one end outer surface and the intermediate region outer surface of the tool housing are accommodated in the internal space. It is supposed to be configured. Then, when the cover covers the outer surface of one end of the tool housing and the outer surface of the intermediate region, the protruding portion of the inner space comes into contact with the pressed portion of the brush holder inserted into the brush holder housing space, and the brush holder is inserted in the insertion direction. That is, it was set as the structure pressed in the direction (radial direction) which cross | intersects the major axis direction of a tool housing. The term “adjacent to the cylinder part” in the present invention suitably includes both an aspect arranged directly on the outer surface of the cylinder part and an aspect arranged around the cylinder part.
 本発明の好ましい形態によれば、ブラシホルダを工具ハウジングの長軸方向と交差する方向、すなわち径方向の外径側から内径側へと差し込んで当該工具ハウジングに装着する構成としたので、工具ハウジングの長軸方向における各端部間の中間領域、すなわち工具ハウジングの一端部から内方に入り込んだ領域のブラシホルダ収容空間にブラシホルダを装着することが可能となった。これにより工具ハウジングの長軸方向の一端側に、例えばスイッチ配線機構部が配置され、他端側に動力伝達機構等が配置されている構成の電動工具において、工具ハウジングに対するブラシホルダの組み付けを合理的に実現できる。
 そして工具ハウジングのブラシホルダ収容空間に差し込まれたブラシホルダは、被押圧部を備え、当該押圧部が工具ハウジングの一端に長軸方向から装着されるカバーの突条部によって差し込み方向に押圧される構成としている。ブラシホルダは、一般に当該ブラシホルダの筒部に収容されたブラシを整流子に向って押し付けるブラシ付勢バネを有している。このため、ブラシホルダには常時に差し込み方向と反対方向、すなわち抜け方向に付勢バネの付勢力が作用しているが、本発明によれば、ブラシホルダの被押圧部をカバーの突条部により差し込み方向に押圧する構成のため、ブラシホルダをブラシホルダ収容空間に安定に固定することが可能となる。
According to a preferred embodiment of the present invention, the brush holder is configured to be inserted into the tool housing by inserting the brush holder in the direction intersecting the long axis direction of the tool housing, that is, from the radially outer diameter side to the inner diameter side. The brush holder can be mounted in a brush holder housing space in an intermediate region between the respective end portions in the long axis direction, that is, a region entering inward from one end portion of the tool housing. As a result, it is possible to rationalize the assembly of the brush holder to the tool housing in an electric tool having a configuration in which, for example, a switch wiring mechanism is disposed on one end side in the long axis direction of the tool housing and a power transmission mechanism is disposed on the other end side. Can be realized.
The brush holder inserted into the brush holder housing space of the tool housing includes a pressed portion, and the pressing portion is pressed in the insertion direction by the protrusion of the cover attached to one end of the tool housing from the long axis direction. It is configured. The brush holder generally has a brush biasing spring that presses a brush accommodated in a cylindrical portion of the brush holder toward the commutator. For this reason, the urging force of the urging spring is always applied to the brush holder in the direction opposite to the insertion direction, that is, in the pulling direction. Therefore, the brush holder can be stably fixed in the brush holder accommodating space.
 本発明に係る電動工具の更なる形態によれば、ブラシホルダ収容空間とブラシホルダの一方には突起が設けられ、他方には前記突起と係合する凹部が設けられており、ブラシホルダがブラシホルダ収容空間に差し込まれた際、突起と凹部が係合してブラシホルダがブラシホルダ収容空間に保持される構成とした。上述したように、ブラシホルダ収容空間に差し込まれた状態のブラシホルダには、ブラシを整流子に向って押し付けるブラシ付勢バネの付勢力が差し込み方向と反対方向、すなわち抜け方向に作用している。本発明によれば、ブラシホルダ収容空間に差し込まれたブラシホルダを突起と凹部との係合によって当該ブラシホルダ収容空間に保持できるため、工具ハウジングにカバーを組み付ける際、作業者が手指によりブラシホルダをブラシホルダ収容空間に保持する作業が不要となり、ブラシホルダ及びカバーの組付け作業性を向上することができる。 According to the further form of the electric tool which concerns on this invention, the protrusion is provided in one of the brush holder accommodation space and the brush holder, and the recessed part engaged with the said protrusion is provided in the other, and the brush holder is a brush. When inserted into the holder housing space, the protrusion and the recess are engaged to hold the brush holder in the brush holder housing space. As described above, the urging force of the brush urging spring that presses the brush toward the commutator acts in the direction opposite to the insertion direction, that is, the removal direction, in the brush holder inserted into the brush holder housing space. . According to the present invention, since the brush holder inserted into the brush holder housing space can be held in the brush holder housing space by the engagement between the protrusion and the concave portion, when the cover is assembled to the tool housing, the operator holds the brush holder with fingers. The operation of holding the brush holder in the brush holder accommodation space becomes unnecessary, and the assembly workability of the brush holder and the cover can be improved.
 本発明に係る電動工具の更なる形態によれば、被押圧部は、カバーが工具ハウジングの長軸方向の一端部外面及び中間領域外面に被さるように装着される際、カバーの突条部が当接するように誘導する変形可能なテーパ状の誘導部を有する。本発明によれば、被押圧部にテーパ状の誘導部を設けたことにより、カバーを工具ハウジングの長軸方向一端部外面及び中間領域外面に装着する際、カバーの突条部を被押圧部に確実に当接させることが可能となる。 According to the further form of the electric power tool according to the present invention, when the cover is mounted so that the cover covers the outer surface of the one end portion and the intermediate region in the long axis direction of the tool housing, the protruding portion of the cover is It has a deformable tapered guide part that guides it to abut. According to the present invention, when the cover is attached to the outer surface of one end in the longitudinal direction of the tool housing and the outer surface of the intermediate region by providing the tapered guide portion on the pressed portion, the protruding portion of the cover is pressed against the pressed portion. It becomes possible to make it contact | abut reliably.
 本発明によれば、電動工具において、工具ハウジングの端部領域から長軸方向の内方に入り込んだ中間領域にブラシホルダを装着することが可能で、かつ当該中間領域にブラシホルダを安定に固定することを可能とした技術が提供されることとなった。 According to the present invention, in an electric power tool, a brush holder can be attached to an intermediate region that extends inward in the long axis direction from the end region of the tool housing, and the brush holder is stably fixed to the intermediate region. The technology that made it possible to do this will be provided.
 以下、本発明の実施形態につき、図1~図15を参照しつつ、詳細に説明する。本実施の形態は、電動工具の一例として、金属、コンクリート、石材等の各種被加工材の研削作業あるいは研磨作業に用いられる手持ち式の電動ディスクグラインダを用いて説明する。図1には電動ディスクグラインダ101の全体構成が外観図によって示され、図2には電動ディスクグラインダ101の全体構成が断面図によって示され、更に図3には電動ディスクグラインダ101の全体構成が分解断面図によって示されている。また、図4は図2のA部拡大図、図5は図3のB部拡大図であり、図6はリアカバーを示す斜視図である。 Hereinafter, embodiments of the present invention will be described in detail with reference to FIGS. This embodiment will be described using a hand-held electric disc grinder used for grinding or polishing work of various workpieces such as metal, concrete and stone as an example of an electric tool. 1 shows the overall configuration of the electric disc grinder 101 by an external view, FIG. 2 shows the overall configuration of the electric disc grinder 101 by a sectional view, and FIG. 3 further shows the entire configuration of the electric disc grinder 101 in an exploded view. It is shown by a cross-sectional view. 4 is an enlarged view of part A in FIG. 2, FIG. 5 is an enlarged view of part B in FIG. 3, and FIG. 6 is a perspective view showing the rear cover.
 図1~図3に示すように、電動ディスクグラインダ101は、概括的に見て、電動ディスクグラインダ101の外郭を形成する本体部103と、本体部103の先端領域に配置される砥石119とを主体として構成される。本体部103は、モータハウジング105、ギアハウジング107及びリアカバー109を主体として構成される。本体部103は本発明における「工具ハウジング」に対応し、砥石119は本発明における「先端工具」に対応する。なお、説明の便宜上、本体部103の長軸方向につき、砥石119側を前、その反対側を後という。 As shown in FIGS. 1 to 3, the electric disc grinder 101 generally includes a main body 103 that forms an outline of the electric disc grinder 101, and a grindstone 119 that is disposed in a tip region of the main body 103. Configured as the subject. The main body 103 is mainly composed of a motor housing 105, a gear housing 107, and a rear cover 109. The main body 103 corresponds to the “tool housing” in the present invention, and the grindstone 119 corresponds to the “tip tool” in the present invention. For convenience of explanation, the grindstone 119 side is referred to as the front and the opposite side is referred to as the rear in the major axis direction of the main body 103.
 モータハウジング105は概ね円筒形状に形成され、当該モータハウジング105の内部空間には駆動モータ121が収容されている。駆動モータ121は、本発明における「モータ」に対応する。駆動モータ121は、その回転軸線方向電動がディスクグラインダ101の長軸方向、すなわち本体部103の長軸方向となるように配置されている。なお、モータハウジング105は、電動ディスクグラインダ101を操作して加工作業を行う際の、作業者が片手で握るグリップ部を構成している。 The motor housing 105 is formed in a substantially cylindrical shape, and a drive motor 121 is accommodated in the internal space of the motor housing 105. The drive motor 121 corresponds to the “motor” in the present invention. The drive motor 121 is arranged such that the rotation axis direction electric power is in the long axis direction of the disc grinder 101, that is, the long axis direction of the main body 103. Note that the motor housing 105 constitutes a grip portion that an operator grips with one hand when the electric disc grinder 101 is operated to perform a machining operation.
 図2及び図3に示すように、モータハウジング105の前端部に連接されるギアハウジング107内には、駆動モータ121の回転出力を砥石119に伝達する動力伝達機構111が収容されている。動力伝達機構111は、駆動モータ121によって回転駆動される駆動側ギアとしての小ベベルギア113、小ベベルギア113と噛み合い係合する被動側ギアとしての大ベベルギア115、及び大ベベルギア115と共に回転するスピンドル117を主体として構成され、スピンドル117の先端部に砥石119が着脱自在に装着される。砥石119は、モータハウジング105の長軸方向(本体部103の長軸方向)の一端側(前側)において、その回転軸線が駆動モータ121の回転軸線に対して直交するように配置される。 2 and 3, a power transmission mechanism 111 for transmitting the rotational output of the drive motor 121 to the grindstone 119 is accommodated in the gear housing 107 connected to the front end portion of the motor housing 105. The power transmission mechanism 111 includes a small bevel gear 113 as a driving side gear that is rotationally driven by a drive motor 121, a large bevel gear 115 as a driven side gear that meshes and engages with the small bevel gear 113, and a spindle 117 that rotates together with the large bevel gear 115. The grindstone 119 is detachably attached to the tip of the spindle 117. The grindstone 119 is arranged on one end side (front side) of the motor housing 105 in the major axis direction (major axis direction of the main body 103) so that the rotation axis thereof is orthogonal to the rotation axis of the drive motor 121.
 本実施の形態における駆動モータ121は、電源コードを用いて電源(コンセント)から供給される電力によって駆動される。駆動モータ121は出力軸123、出力軸123と一体に回転する冷却ファン124、出力軸123と一体に回転する電機子125、モータハウジング105に固定される固定子127、出力軸123の後端側(冷却ファン124の反対側)に設けられた整流子129、整流子129の外周面に摺接して電流を供給する2個のブラシ133、ブラシ133を収容する2つのブラシホルダ131を主体として構成される。出力軸123は前端部が前側の軸受126により支持され、後端部が後側の軸受128により支持されて回転自在とされる。なお、出力軸123、電機子125、整流子129によって回転子が構成されている。 The drive motor 121 in this embodiment is driven by electric power supplied from a power source (outlet) using a power cord. The drive motor 121 includes an output shaft 123, a cooling fan 124 that rotates integrally with the output shaft 123, an armature 125 that rotates integrally with the output shaft 123, a stator 127 fixed to the motor housing 105, and a rear end side of the output shaft 123. A commutator 129 provided on the opposite side of the cooling fan 124, two brushes 133 that supply current by sliding contact with the outer peripheral surface of the commutator 129, and two brush holders 131 that house the brushes 133 are mainly configured. Is done. The output shaft 123 is supported by a front bearing 126 at the front end and is supported by a rear bearing 128 at the rear end so that the output shaft 123 can rotate. The output shaft 123, the armature 125, and the commutator 129 constitute a rotor.
 モータハウジング105の後端には、リアハウジング106が連接されている。リアハウジング106は、図2及び図3に示すように、長軸方向の前端部がモータハウジング105の後端開口部に嵌入された状態で、当該モータハウジング105及び固定子127を長軸方向に貫通して延在する複数の取付ネジ105aによって共締めされている。リアハウジング106は、整流子129及び後側の軸受128を覆うように配置されており、当該リアハウジング106の後方には、スイッチ配線機構部151が取り付けられている。このスイッチ配線機構部151は、非導電性の合成樹脂からなるスイッチブロック153に、モータ駆動用の電源スイッチ(便宜上図示を省略する)、当該電源スイッチをオン・オフ操作するための操作レバー155(図1参照)、また便宜上図示を省略するが、外部電源から電流を供給する電源コードと接続される端子、モータ側端子と接続される端子、ブラシ133と接続される端子等が組み込まれることで構成される。なお、本実施の形態では、モータハウジング105に対する駆動モータ121の組付け性を考慮してリアハウジング106をモータハウジング105と別体で形成しているが、一体に形成しても構わない。 The rear housing 106 is connected to the rear end of the motor housing 105. As shown in FIGS. 2 and 3, the rear housing 106 is configured so that the motor housing 105 and the stator 127 are moved in the long axis direction with the front end portion in the long axis direction fitted in the rear end opening of the motor housing 105. It is fastened together by a plurality of mounting screws 105a extending therethrough. The rear housing 106 is disposed so as to cover the commutator 129 and the rear bearing 128, and a switch wiring mechanism 151 is attached to the rear of the rear housing 106. The switch wiring mechanism 151 includes a switch block 153 made of non-conductive synthetic resin, a motor drive power switch (not shown for convenience), and an operation lever 155 (on / off operation for the power switch). In addition, although illustration is omitted for convenience, a terminal connected to a power cord for supplying current from an external power source, a terminal connected to a motor side terminal, a terminal connected to a brush 133, and the like are incorporated. Composed. In the present embodiment, the rear housing 106 is formed separately from the motor housing 105 in consideration of the assembly property of the drive motor 121 with respect to the motor housing 105, but may be formed integrally.
 本実施の形態に係る2個のブラシホルダ131は、リアハウジング106に取り付けられる。なお、リアハウジング106は非導電性の合成樹脂によって形成されている。以下、ブラシホルダ131の構造及びその取り付け構造につき、主として図7~図15を参照して説明する。図7~図9にはブラシホルダの全体構成が示され、図10にはブラシホルダ131が装着される前の状態のブラシホルダ収容部が斜視図で示され、図11には図10のC部が拡大して示される。図12にはブラシホルダ収容部にブラシホルダが差し込まれる過程が示され、図13には図12のD矢印方向から見た状態が示される。また図14にはブラシホルダ収容部にブラシホルダが差し込まれた状態が示され、図15には図14のE矢印方向から見た状態が示される。 The two brush holders 131 according to the present embodiment are attached to the rear housing 106. The rear housing 106 is made of non-conductive synthetic resin. Hereinafter, the structure of the brush holder 131 and its mounting structure will be described mainly with reference to FIGS. FIGS. 7 to 9 show the overall configuration of the brush holder, FIG. 10 shows a perspective view of the brush holder accommodating portion in a state before the brush holder 131 is mounted, and FIG. The part is shown enlarged. FIG. 12 shows a process in which the brush holder is inserted into the brush holder accommodating portion, and FIG. 13 shows a state seen from the direction of arrow D in FIG. 14 shows a state in which the brush holder is inserted into the brush holder housing portion, and FIG. 15 shows a state seen from the direction of arrow E in FIG.
 上記のように、リアハウジング106の後方にスイッチブロック153が配置される構成においては、ブラシホルダ131をリアハウジング106の後方から長軸方向に沿うように差し込んで装着することが難しい。このことから、本実施の形態では、ブラシホルダ131をリアハウジング106の長軸方向と交差する方向から差し込んでリアハウジング106に装着する構成としている。このために、リアハウジング106には外側に向って開放する径方向に凹状のブラシホルダ収容部141が形成されている。ブラシホルダ収容部141は、本発明における「ブラシホルダ収容空間」に対応する。ブラシホルダ収容部141は、図3に示すように、整流子129と対向する領域に周方向に所定間隔(本実施の形態では180度)で2個設定されている。リアハウジング106における整流子129と対向する領域は、本発明における「中間領域」に対応する。 As described above, in the configuration in which the switch block 153 is disposed at the rear of the rear housing 106, it is difficult to insert the brush holder 131 from the rear of the rear housing 106 along the long axis direction. For this reason, in the present embodiment, the brush holder 131 is inserted from the direction intersecting the long axis direction of the rear housing 106 and attached to the rear housing 106. For this purpose, the rear housing 106 is formed with a radially concave brush holder housing 141 that opens outward. The brush holder accommodating portion 141 corresponds to the “brush holder accommodating space” in the present invention. As shown in FIG. 3, two brush holder accommodating portions 141 are set in a region facing the commutator 129 at a predetermined interval (180 degrees in the present embodiment) in the circumferential direction. A region facing the commutator 129 in the rear housing 106 corresponds to an “intermediate region” in the present invention.
 各ブラシホルダ131は、図3に示すようにリアハウジング106の長軸方向と交差する方向、すなわち径方向からブラシホルダ収容部141内に差し込まれて装着される。図7~図9にはブラシホルダ131の全体構成が示される。ブラシホルダ131は、導電性の金属板を加工することで所定形状に形成されている。ブラシホルダ131にはブラシ133を収容するための断面略矩形の筒部132が一体に形成されている。筒部132はブラシホルダ131の差し込み方向に延在しており、図4に示すように、ブラシホルダ131がブラシホルダ収容部141に差し込まれた状態では、筒孔がブラシホルダ収容部141の内壁面に形成された開口141aに臨むように配置される。筒部132にはブラシ133が摺動自在に収容されており、当該ブラシ133は開口141aを通して整流子129の外周面に径方向から略直角状に当接されるとともに、ブラシホルダ131に取り付けられた渦巻きバネ134によって整流子129の外周面に摺接可能に押付けられる。渦巻きバネ134はブラシ付勢バネであり、一端がブラシホルダ131の係止片131aに止着され、他端がブラシホルダ差し込み方向から見て、ブラシ133背面を整流子129に向って付勢する。 As shown in FIG. 3, each brush holder 131 is mounted by being inserted into the brush holder accommodating portion 141 from the direction intersecting the major axis direction of the rear housing 106, that is, from the radial direction. 7 to 9 show the overall configuration of the brush holder 131. FIG. The brush holder 131 is formed in a predetermined shape by processing a conductive metal plate. The brush holder 131 is integrally formed with a cylindrical portion 132 having a substantially rectangular cross section for accommodating the brush 133. The cylindrical portion 132 extends in the insertion direction of the brush holder 131, and as shown in FIG. 4, when the brush holder 131 is inserted into the brush holder accommodating portion 141, the cylindrical hole is in the brush holder accommodating portion 141. It arrange | positions so that it may face the opening 141a formed in the wall surface. A brush 133 is slidably accommodated in the cylindrical portion 132. The brush 133 is brought into contact with the outer peripheral surface of the commutator 129 through the opening 141a at a substantially right angle from the radial direction, and is attached to the brush holder 131. The spiral spring 134 is slidably pressed against the outer peripheral surface of the commutator 129. The spiral spring 134 is a brush biasing spring, one end of which is fixed to the locking piece 131a of the brush holder 131, and the other end is biased toward the commutator 129 when viewed from the brush holder insertion direction. .
 また、ブラシホルダ131は、筒部132の筒孔方向と交差する方向(ハウジング長軸方向)の一端側には、互いに対向状に形成された2つの差込片135a,135bを一体に備えている。一方(図7及び図8の上側)の差込片135aは、差し込み方向から見て略逆U形に形成され、他方の(図7及び図8の下側)の差込片135bは、差し込み方向から略L形に形成されている。これら2つの差込片135a,135bを、図10及び図11に示されるブラシホルダ収容部141に形成された対応する形状のスリット142a,142bに差し込むことによってブラシホルダ131がブラシホルダ収容部141の所定位置に配置される。各スリット142a,142bは、ブラシホルダ収容部141内において、所定間隔で対向状に形成される複数の板状部材143によって形成されている。 Further, the brush holder 131 is integrally provided with two insertion pieces 135a and 135b that are formed to face each other on one end side in a direction (housing major axis direction) intersecting the tube hole direction of the tube portion 132. Yes. The insertion piece 135a on one side (upper side in FIGS. 7 and 8) is formed in a substantially inverted U shape when viewed from the insertion direction, and the insertion piece 135b on the other side (lower side in FIGS. 7 and 8) It is formed in a substantially L shape from the direction. These two insertion pieces 135a and 135b are inserted into correspondingly shaped slits 142a and 142b formed in the brush holder accommodating portion 141 shown in FIG. 10 and FIG. It is arranged at a predetermined position. Each of the slits 142a and 142b is formed by a plurality of plate-like members 143 that are formed to face each other at a predetermined interval in the brush holder accommodating portion 141.
 また、各差込片135a,135bには、半球面状の突部137が一体に形成されている(図13参照)。差込片135a,135bがスリット142a,142bに差し込まれた際、突部137が板状部材143に形成された半球面状の凹部(あるいは溝)144(図11及び図13参照)に係合し、これによりブラシホルダ131はブラシホルダ収容部141の所定位置に保持される(図14、及び図15参照)。ブラシホルダ131がブラシホルダ収容部141に差し込まれ、ブラシ133が整流子129の外周面に押し付けられるとき、当該ブラシホルダ131にはブラシ133を整流子129に押し付けるべく付勢する渦巻きバネ134の付勢力が、差し込み方向と反対方向、すなわち抜け方向に反力として作用する。しかるに、上記の突部137と凹部144との係合により、ブラシホルダ131に作用する反力に抗して当該ブラシホルダ131を所定位置に保持することが可能とされる。 Further, a hemispherical protrusion 137 is integrally formed on each of the insertion pieces 135a and 135b (see FIG. 13). When the insertion pieces 135a and 135b are inserted into the slits 142a and 142b, the protrusion 137 engages with a hemispherical recess (or groove) 144 (see FIGS. 11 and 13) formed in the plate-like member 143. As a result, the brush holder 131 is held at a predetermined position of the brush holder accommodating portion 141 (see FIGS. 14 and 15). When the brush holder 131 is inserted into the brush holder housing 141 and the brush 133 is pressed against the outer peripheral surface of the commutator 129, the brush holder 131 is provided with a spiral spring 134 that urges the brush 133 to press against the commutator 129. The force acts as a reaction force in the direction opposite to the insertion direction, that is, in the withdrawal direction. However, the engagement between the protrusion 137 and the recess 144 allows the brush holder 131 to be held at a predetermined position against the reaction force acting on the brush holder 131.
 また、ブラシホルダ収容部141に配置されたブラシホルダ131は、リアハウジング106に被さるように装着されるリアカバー109によって差し込み方向の背面側から押圧されて固定される構成とされる(図4参照)。リアカバー109は、本発明における「カバー」に対応する。リアカバー109は合成樹脂製であり、図6に示すように、一端(前端)が開口された略円筒状に形成され、その筒孔内壁面109aに長軸方向に延在する2個のリブ145が周方向に180度間隔で一体に形成されている。リブ145は補強部材としても機能する。筒孔は本発明における「内部空間」に対応し、リブ145は本発明における「突条部」に対応する。リアカバー109はリアハウジング106の長軸方向から当該リアハウジング106に被せるように装着する際、リブ145が各ブラシホルダ131に形成された突片139を差し込み方向の背面側から押圧する(図4及び図9の二点鎖線参照)。これによりブラシホルダ131は、ブラシホルダ収容部141に抜け止めされた状態でしっかりと固定される。突片139は本発明における「被押圧部」に対応する。突片139は筒部132に隣接する1つの差込片135aの差し込み方向背面側に一体に形成されている。 Further, the brush holder 131 disposed in the brush holder accommodating portion 141 is configured to be pressed and fixed from the back side in the insertion direction by a rear cover 109 mounted so as to cover the rear housing 106 (see FIG. 4). . The rear cover 109 corresponds to a “cover” in the present invention. As shown in FIG. 6, the rear cover 109 is formed in a substantially cylindrical shape with one end (front end) opened, and two ribs 145 extending in the major axis direction on the inner wall surface 109a of the cylinder hole. Are integrally formed at intervals of 180 degrees in the circumferential direction. The rib 145 also functions as a reinforcing member. The cylindrical hole corresponds to the “internal space” in the present invention, and the rib 145 corresponds to the “ridge portion” in the present invention. When the rear cover 109 is mounted so as to cover the rear housing 106 from the long axis direction of the rear housing 106, the rib 145 presses the protruding piece 139 formed on each brush holder 131 from the back side in the insertion direction (FIG. 4 and FIG. 4). (See the two-dot chain line in FIG. 9). Thereby, the brush holder 131 is firmly fixed in a state in which the brush holder 131 is prevented from being detached from the brush holder accommodating portion 141. The projecting piece 139 corresponds to the “pressed portion” in the present invention. The protruding piece 139 is integrally formed on the back side in the insertion direction of one insertion piece 135 a adjacent to the cylindrical portion 132.
 また突片139は、リアカバー109の被せ方向に(装着方向)に対して傾斜状に突出され、かつ変形可能とされている。これにより、リブ145の端部が突片139に当接するように誘導する。突片139が傾斜状に突出されることで本発明における「テーパ状の誘導部」が構成される。 Further, the protruding piece 139 protrudes in an inclined manner with respect to the covering direction (mounting direction) of the rear cover 109 and can be deformed. As a result, the end of the rib 145 is guided so as to come into contact with the protruding piece 139. The protruding piece 139 protrudes in an inclined shape, thereby forming the “tapered guiding portion” in the present invention.
 なお、リアハウジング106に被せられたリアカバー109は、その開口端部がリアハウジング106の前端外周に嵌合され、当該嵌合状態で止着ネジ147によってリアハウジング106に止着される(図2参照)。かくして、リアハウジング106、ブラシホルダ131及びスイッチブロック153は、リアカバー109に収容される。なお、スイッチブロック153に組み付けられた操作レバー155は、図1に示すように、リアカバー109の後端部に形成された開口(便宜上図示を省略する)から外部に突出され、作業者による操作が可能とされる。従って、作業者は、モータハウジング105を把持するとともに、操作レバー155の操作を介して駆動モータ121を通電駆動することにより、動力伝達機構111を介して砥石119を回転駆動し、被加工材の研削や研磨作業あるいは切断作業を適宜に行うことができる。 The rear cover 109 that covers the rear housing 106 has an opening end fitted to the outer periphery of the front end of the rear housing 106, and is fastened to the rear housing 106 by a fastening screw 147 in the fitted state (FIG. 2). reference). Thus, the rear housing 106, the brush holder 131 and the switch block 153 are accommodated in the rear cover 109. As shown in FIG. 1, the operation lever 155 assembled to the switch block 153 protrudes outside through an opening (not shown for convenience) formed in the rear end portion of the rear cover 109 so that the operator can operate it. It is possible. Therefore, the operator grips the motor housing 105 and energizes the drive motor 121 through the operation of the operation lever 155 to rotationally drive the grindstone 119 through the power transmission mechanism 111, so that the workpiece Grinding and polishing operations or cutting operations can be performed as appropriate.
 本実施の形態においては、ブラシホルダ131を、リアハウジング106の長軸方向、すなわち本体部103の長軸方向と交差する方向からリアハウジング106のブラシホルダ収容部141に差し込んで装着する構成としている。このため、リアハウジング106の後端部にスイッチ配線機構部151が配置され、ブラシホルダ131をリアハウジング106の後方から前方に向って装着することが妨げられるようなハウジング構造において、リアハウジング106の長軸方向中間領域にブラシホルダ131を合理的に組み付けることが可能となる。 In the present embodiment, the brush holder 131 is mounted by being inserted into the brush holder accommodating portion 141 of the rear housing 106 from the long axis direction of the rear housing 106, that is, the direction intersecting the long axis direction of the main body portion 103. . For this reason, in the housing structure in which the switch wiring mechanism 151 is disposed at the rear end of the rear housing 106 and the brush holder 131 is prevented from being mounted from the rear to the front of the rear housing 106, The brush holder 131 can be reasonably assembled to the middle region in the long axis direction.
 本実施の形態によれば、リアハウジング106に長軸方向から装着されるリアカバー109のリブ145が、ブラシホルダ131の突片139に当接し、これをブラシホルダ131の差し込み方向へと押圧して固定する構成としている。このため、ブラシホルダ131をブラシホルダ収容部141に抜け止めされた状態で安定に固定することができる。また突片139は、リアカバー109の装着方向に対して傾斜状に突出され、かつ変形可能とすることで、リブ145と突片139間の差し込み方向に関し相対位置にバラツキがあっても当該バラツキを吸収しつつ装着可能となる。 According to the present embodiment, the rib 145 of the rear cover 109 attached to the rear housing 106 from the long axis direction contacts the protruding piece 139 of the brush holder 131 and presses it in the insertion direction of the brush holder 131. The configuration is fixed. For this reason, the brush holder 131 can be stably fixed in a state in which the brush holder 131 is prevented from being detached from the brush holder accommodating portion 141. Further, the projecting piece 139 protrudes in an inclined manner with respect to the mounting direction of the rear cover 109 and can be deformed, so that even if there is a variation in the relative position in the insertion direction between the rib 145 and the projecting piece 139, the variation is prevented. Can be worn while absorbing.
 また本実施の形態では、ブラシホルダ131の差込片135a,135bが、ブラシホルダ収容部141のスリット142a,142bを形成する板状部材143に案内されつつ当該スリット142a,142bに差し込まれるため、ブラシホルダ131のブラシホルダ収容部141に対する差し込み作業を容易に行うことができる。 In the present embodiment, the insertion pieces 135a and 135b of the brush holder 131 are inserted into the slits 142a and 142b while being guided by the plate-like member 143 that forms the slits 142a and 142b of the brush holder accommodating portion 141. The insertion work of the brush holder 131 into the brush holder accommodating portion 141 can be easily performed.
 また、ブラシホルダ131がブラシホルダ収容部141に差し込まれると、差込片135a,135bに設けた突部137がブラシホルダ収容部141側の凹部144に係合する。これによりブラシホルダ131はブラシ133を付勢する渦巻きバネ134の付勢力に抗して所定位置に保持される。従って、リアカバー109をリアハウジング106に取り付ける際、作業者が手指によりブラシホルダ131をブラシホルダ収容部141に保持する作業が不要となり、ブラシホルダ131及びリアカバー109の組付け作業性を向上することができる。 Further, when the brush holder 131 is inserted into the brush holder accommodating portion 141, the protrusions 137 provided on the insertion pieces 135a and 135b engage with the concave portion 144 on the brush holder accommodating portion 141 side. As a result, the brush holder 131 is held at a predetermined position against the biasing force of the spiral spring 134 that biases the brush 133. Therefore, when attaching the rear cover 109 to the rear housing 106, the operator does not need to hold the brush holder 131 in the brush holder housing 141 with his / her fingers, and the workability of assembling the brush holder 131 and the rear cover 109 can be improved. it can.
 なお、本実施の形態では、電動工具の一例として電動ディスクグラインダ101を用いて説明したが、リアハウジング106の後端部に、スイッチ配線機構部151のようにブラシホルダ131の、リアハウジング106後方から前方に向う装着方式の妨げとなる部材が存在する構成の電動工具であれば、適用可能である。 In the present embodiment, the electric disc grinder 101 has been described as an example of the electric tool. However, the rear end of the rear housing 106 includes the brush holder 131 at the rear end of the rear housing 106 at the rear end of the rear housing 106. Any power tool can be used as long as it has a member that obstructs the mounting method facing forward.
本発明の実施形態に係る電動ディスクグラインダの全体構成を示す外観図である。1 is an external view showing an overall configuration of an electric disc grinder according to an embodiment of the present invention. 電動ディスクグラインダの全体構成を示す断面図である。It is sectional drawing which shows the whole structure of an electric disc grinder. 電動ディスクグラインダの全体構成を示す分解断面図である。It is an exploded sectional view showing the whole composition of an electric disc grinder. 図2のA部拡大図である。It is the A section enlarged view of FIG. 図3のB部拡大図である。It is the B section enlarged view of FIG. リアカバーを示す斜視図である。It is a perspective view which shows a rear cover. ブラシホルダの構成を示す斜視図である。It is a perspective view which shows the structure of a brush holder. 同じくブラシホルダの構成を示す斜視図である。It is a perspective view which similarly shows the structure of a brush holder. 同じくブラシホルダの構成を示す側面図である。It is a side view which similarly shows the structure of a brush holder. ブラシホルダが差し込まれる前のブラシホルダ収容部を示す斜視図である。It is a perspective view which shows the brush holder accommodating part before a brush holder is inserted. 図10のC部拡大図である。It is the C section enlarged view of FIG. ブラシホルダ収容部にブラシホルダが差し込まれる過程を示す図である。It is a figure which shows the process in which a brush holder is inserted in a brush holder accommodating part. 図12のD矢視図である。It is D arrow line view of FIG. ブラシホルダ収容部にブラシホルダが差し込まれた状態を示す図である。It is a figure which shows the state by which the brush holder was inserted in the brush holder accommodating part. 図14のE矢視図である。It is E arrow line view of FIG.
符号の説明Explanation of symbols
101 電動ディスクグラインダ(電動工具)
103 本体部(工具ハウジング)
105 モータハウジング
105a 取付ネジ
106 リアハウジング
107 ギアハウジング
109 リアカバー(カバー)
109a 筒孔内壁面
111 動力伝達機構
113 小ベベルギア
115 大ベベルギア
117 スピンドル
119 砥石(先端工具)
121 駆動モータ(モータ)
123 出力軸
124 冷却ファン
125 電機子
126 軸受
127 固定子
128 軸受
129 整流子
131 ブラシホルダ
132 筒部
133 ブラシ
134 渦巻きバネ
135a,135b 差込片
137 突部
139 突片(被押圧部)
141 ブラシホルダ収容部(ブラシホルダ収容空間)
141a 開口
142a,142b スリット
143 板状部
144 凹部
145 リブ(突条部)
147 止着ネジ
151 スイッチ配線機構部
153 スイッチブロック
155 操作レバー
101 Electric disc grinder (Electric tool)
103 Main body (tool housing)
105 Motor housing 105a Mounting screw 106 Rear housing 107 Gear housing 109 Rear cover (cover)
109a Tube hole inner wall surface 111 Power transmission mechanism 113 Small bevel gear 115 Large bevel gear 117 Spindle 119 Grinding wheel (tip tool)
121 Drive motor
123 Output shaft 124 Cooling fan 125 Armature 126 Bearing 127 Stator 128 Bearing 129 Commutator 131 Brush holder 132 Tube part 133 Brush 134 Spiral spring 135a, 135b Insertion piece 137 Projection part 139 Projection piece (Pressed part)
141 Brush holder housing (brush holder housing space)
141a Openings 142a, 142b Slit 143 Plate-like part 144 Recessed part 145 Rib (projection part)
147 Fixing screw 151 Switch wiring mechanism 153 Switch block 155 Operation lever

Claims (3)

  1.  先端工具の駆動に用いられる機能部品が、長軸方向の一端側と他端側とのそれぞれに配置された工具ハウジングと、
     前記工具ハウジングに収容され、先端工具を駆動させて所定の加工作業を遂行させるモータと、
     前記工具ハウジングにおいて、長軸方向の一端側と他端側間の中間領域に形成されたブラシホルダ収容空間と、
     前記モータに設けられ、前記工具ハウジングの長軸方向と交差する方向から前記ブラシホルダ収容空間に差し込んで装着され、ブラシを収容する筒部を有するとともに、当該筒部に隣接して被押圧部を一体に備えたブラシホルダと、
     前記工具ハウジングの長軸方向の一端側に取り付けられるカバーと、を有する電動工具であって、
     前記カバーは、一端が開口された中空状に形成されて当該開口に連なる前記工具ハウジング長軸方向の内部空間を有するとともに、前記内部空間には前記開口側から前記工具ハウジングの長軸方向に延在する突条部を有し、前記工具ハウジングの長軸方向に沿って当該工具ハウジングの一端部外面及び中間領域外面に前記開口から被さり、これにより前記一端部外面及び中間領域外面が内部空間に収容される構成とされ、
     前記突条部は、前記ブラシホルダ収容空間に差し込まれた前記ブラシホルダの被押圧部に当接して当該ブラシホルダを前記工具ハウジングの長軸方向と交差する差し込み方向へと押圧する構成としたことを特徴とする電動工具。
    A functional housing used for driving the tip tool is disposed on each of one end side and the other end side in the long axis direction;
    A motor that is housed in the tool housing and drives a tip tool to perform a predetermined machining operation;
    In the tool housing, a brush holder accommodating space formed in an intermediate region between one end side and the other end side in the long axis direction;
    Provided in the motor and inserted into the brush holder housing space from a direction intersecting with the long axis direction of the tool housing, and has a cylindrical portion for accommodating the brush, and a pressed portion is adjacent to the cylindrical portion. An integrated brush holder;
    A power tool having a cover attached to one end side in the long axis direction of the tool housing,
    The cover is formed in a hollow shape with one end opened, and has an inner space in the tool housing long axis direction that extends to the opening, and the inner space extends from the opening side in the long axis direction of the tool housing. And has one end outer surface and an intermediate region outer surface of the tool housing covering from the opening along the longitudinal direction of the tool housing, whereby the one end outer surface and the intermediate region outer surface are in the internal space. It is configured to be accommodated,
    The protrusion is configured to abut against a pressed portion of the brush holder inserted into the brush holder accommodating space and press the brush holder in an insertion direction intersecting with a long axis direction of the tool housing. An electric tool characterized by
  2.  請求項1に記載の電動工具であって、
     前記ブラシホルダ収容空間と前記ブラシホルダの一方には突起が設けられ、他方には前記突起と係合する凹部が設けられており、前記ブラシホルダが前記ブラシホルダ収容空間に差し込まれた際、前記突起と前記凹部が係合して前記ブラシホルダが前記ブラシホルダ収容空間に保持される構成としたことを特徴とする電動工具。
    The electric tool according to claim 1,
    One of the brush holder accommodation space and the brush holder is provided with a protrusion, and the other is provided with a recess that engages with the protrusion, and when the brush holder is inserted into the brush holder accommodation space, An electric tool characterized in that a projection and the recess are engaged to hold the brush holder in the brush holder accommodating space.
  3.  請求項1に記載の電動工具であって、
     前記被押圧部は、前記カバーが前記工具ハウジングの一端部外面及び中間領域外面に被さるように装着される際、前記カバーの突条部が当接するように誘導する変形可能なテーパ状の誘導部を有することを特徴とする電動工具。
    The electric tool according to claim 1,
    The pressed portion is a deformable tapered guiding portion that guides the protruding portion of the cover to contact when the cover is mounted so as to cover the outer surface of one end portion and the intermediate region of the tool housing. A power tool characterized by comprising:
PCT/JP2008/073209 2007-12-20 2008-12-19 Electric tool WO2009081868A1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN200880120330.7A CN101896318B (en) 2007-12-20 2008-12-19 Electric tool

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
JP2007-328982 2007-12-20
JP2007328982A JP5191726B2 (en) 2007-12-20 2007-12-20 Electric tool

Publications (1)

Publication Number Publication Date
WO2009081868A1 true WO2009081868A1 (en) 2009-07-02

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Application Number Title Priority Date Filing Date
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JP (1) JP5191726B2 (en)
CN (1) CN101896318B (en)
WO (1) WO2009081868A1 (en)

Families Citing this family (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP5502585B2 (en) * 2010-04-26 2014-05-28 株式会社マキタ Brush holder and electric tool provided with brush holder
DE102010021506B4 (en) * 2010-05-26 2012-02-23 Atlanta-Elektrosysteme Gmbh brush bridge
CN103506958B (en) * 2012-06-15 2016-10-05 株式会社牧田 Water injection type electric tool
WO2014054522A1 (en) 2012-10-05 2014-04-10 シャープ株式会社 Image display device and drive method therefor
US9620044B2 (en) 2012-10-05 2017-04-11 Sharp Kabushiki Kasiha Image display device and drive method therefor
US9954418B2 (en) * 2014-03-17 2018-04-24 Makita Corporation Power tool
JP6457739B2 (en) * 2014-05-09 2019-01-23 株式会社マキタ Electric tool

Citations (3)

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Publication number Priority date Publication date Assignee Title
JPH0727274U (en) * 1993-10-28 1995-05-19 株式会社マキタ Brush assembly mounting structure
JPH0733579U (en) * 1993-11-26 1995-06-20 日立工機株式会社 Electric tool
JP2007152479A (en) * 2005-12-02 2007-06-21 Makita Corp Power tool

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Publication number Priority date Publication date Assignee Title
JP4639061B2 (en) * 2004-07-29 2011-02-23 株式会社マキタ Electric tool

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0727274U (en) * 1993-10-28 1995-05-19 株式会社マキタ Brush assembly mounting structure
JPH0733579U (en) * 1993-11-26 1995-06-20 日立工機株式会社 Electric tool
JP2007152479A (en) * 2005-12-02 2007-06-21 Makita Corp Power tool

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JP5191726B2 (en) 2013-05-08
CN101896318B (en) 2013-05-15
CN101896318A (en) 2010-11-24

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