JP6445492B2 - Step gauge - Google Patents

Step gauge Download PDF

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JP6445492B2
JP6445492B2 JP2016137573A JP2016137573A JP6445492B2 JP 6445492 B2 JP6445492 B2 JP 6445492B2 JP 2016137573 A JP2016137573 A JP 2016137573A JP 2016137573 A JP2016137573 A JP 2016137573A JP 6445492 B2 JP6445492 B2 JP 6445492B2
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slider
main scale
measurement
scale
displacement
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利行 五十嵐
利行 五十嵐
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新潟精機株式会社
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Description

本発明は、例えば、被測定物の基準面に対する測定面との段差測定に用いられる段差ゲージに関するものである。   The present invention relates to a step gauge used, for example, for measuring a step with a measurement surface with respect to a reference surface of an object to be measured.

従来、この種の段差ゲージとして、下端部に基準面に当接可能な基準下面部を有する長尺状の本尺と、本尺に本尺の長手方向に上下移動自在に配置されたスライダと、スライダの側部に突設された桁材と、桁材に配置され、測定面に当接可能な測定下端部を有する測定子と、本尺に対するスライダの移動変位量を表示する変位表示手段とからなる構造のものが知られている。   Conventionally, as this kind of step gauge, a long main scale having a reference lower surface portion which can be brought into contact with the reference surface at the lower end portion, and a slider arranged on the main scale so as to be movable up and down in the longitudinal direction of the main scale, , A girder projecting on the side of the slider, a measuring element disposed on the girder and having a measurement lower end capable of contacting the measurement surface, and a displacement display means for displaying the displacement of the slider relative to the main scale The thing of the structure which consists of is known.

しかして、上記本尺を握持して本尺の基準下面部を上記基準面に当接し、その当接状態を静止保持したまま、スライダを本尺の長手方向に沿って上下移動して上記測定子の測定下端部を基準面に対して上方位置又は下方位置の測定面に当接し、変位表示手段により測定子の測定下端部の移動変位量を表示し、これにより基準面と測定面との段差を表示することになる。   The main scale is gripped, the reference lower surface portion of the main scale is brought into contact with the reference plane, and the slider is moved up and down along the longitudinal direction of the main scale while keeping the contact state stationary. The measurement lower end portion of the probe is brought into contact with the measurement surface at an upper position or a lower position with respect to the reference plane, and the displacement of the measurement lower end portion of the probe is displayed by the displacement display means. Will be displayed.

実開平5−30703号Utility Kaihei 5-30703

しかしながら上記従来構造の場合、基準面と測定面との段差を測定するに際し、上記本尺の基準下面部を基準面に当接し、その当接状態を静止保持したまま、上記スライダを本尺の長手方向に沿って上下移動して上記測定子の測定下端部を測定面に当接し、変位表示手段により段差を表示することになり、このため、上記測定子の測定下端部が当接した部位の段差は測定できるものの、その当接部位の近傍位置における測定面との段差を測定するとき、本尺を握持して本尺を基準面から離反したり、又は、基準面上で摺動して、測定子の測定下端部を測定すべき近傍部位に位置移動しなければならず、それだけ、測定の融通性及び測定作業性を低下させることがあるという不都合を有している。   However, in the case of the conventional structure, when measuring the step between the reference surface and the measurement surface, the reference lower surface portion of the main scale is brought into contact with the reference surface, and the slider is moved to the main scale while the contact state is held stationary. It moves up and down along the longitudinal direction, the measurement lower end of the probe contacts the measurement surface, and a step is displayed by the displacement display means. For this reason, the portion where the measurement lower end of the probe contacts Can be measured, but when measuring the step with the measurement surface in the vicinity of the contact part, hold the main scale and move the main scale away from the reference plane, or slide on the reference plane Thus, the measurement lower end portion of the probe must be moved to the vicinity where the measurement is to be performed, and there is an inconvenience that the flexibility of measurement and the measurement workability may be reduced accordingly.

本発明はこれらの不都合を解決することを目的とするもので、本発明のうちで、請求項1記載の発明は、基準面と測定面との段差の測定に用いられ、下端部に該基準面に当接可能な基準下面部を有する長尺状の本尺と、該本尺に本尺の長手方向に上下移動自在に配置されたスライダと、該スライダの側部に突設された桁材と、該桁材に配置され、該測定面に当接可能な測定下端部を有する測定子と、該本尺に対するスライダの移動変位量を表示する変位表示手段とからなり、上記測定子を上記測定面に対向して水平旋回させる首振旋回機構を設け、該首振旋回機構として、上記桁材を角棒状に形成し、桁材の中間部で分断して固定桁材と可動桁材とに二分割形成され、固定桁材と可動桁材とを嵌合部及びスリットからなる二股部により嵌合し、嵌合部の貫通穴及び一方の二股部の貫通穴に締付ねじを貫通すると共に締付ねじを他方の二股部の雌ねじに螺着し、締付ねじの弛緩回動により可動桁材を締付ねじの軸線を中心として水平旋回自在に設けると共に締付ねじの締付回動により可動桁材を位置固定自在に設けて構成してなることを特徴とする段差ゲージにある。 The present invention aims to solve these disadvantages. Among the present inventions, the invention according to claim 1 is used for measuring a step between a reference surface and a measurement surface, and the reference portion is provided at a lower end portion. A long main scale having a reference lower surface portion capable of contacting the surface, a slider arranged on the main scale so as to be movable up and down in the longitudinal direction of the main scale, and a girder protruding from the side of the slider A measuring element that is disposed on the girder and has a measurement lower end that can contact the measuring surface, and a displacement display means for displaying the displacement of the slider relative to the main scale. A swing swivel mechanism that horizontally swivels against the measurement surface is provided . As the swivel swivel mechanism, the girder is formed in a square bar shape, and is divided at a middle portion of the girder, and a fixed girder material and a movable girder material. The fixed girder material and the movable girder material are fitted by a bifurcated portion consisting of a fitting portion and a slit. Insert a fastening screw into the through hole of the fitting part and the through hole of one fork part, and screw the fastening screw to the female screw of the other fork part, and tighten the movable girder by loosening rotation of the fastening screw. There is provided a step gauge characterized in that it is provided so as to be pivotable horizontally around the axis of the attached screw and a movable girder material is provided so that the position of the movable girder can be fixed by tightening rotation of the fastening screw .

又、請求項2記載の発明は、上記測定子を上記スライダの上下移動方向と直交する側方々向に移動調節させる突出量調節機構を設けてなることを特徴とするものである。   According to a second aspect of the present invention, there is provided a protrusion amount adjusting mechanism for adjusting the movement of the measuring element in a lateral direction perpendicular to the vertical movement direction of the slider.

又、請求項3記載の発明は、上記変位表示手段として、上記本尺に本尺目盛を設けると共に上記スライダにスライダ目盛を設け、該本尺目盛と該スライダ目盛とにより本尺に対するスライダの移動変位量を表示するように設けてなることを特徴とするものであり、又、請求項4記載の発明は、上記変位表示手段として、上記スライダに上記スライダの移動変位量をデジタル表示するデジタル表示部を設けてなることを特徴とするものである。   According to a third aspect of the present invention, as the displacement display means, a main scale is provided on the main scale and a slider scale is provided on the slider, and the slider moves relative to the main scale by the main scale and the slider scale. The present invention is characterized in that a displacement amount is displayed, and the invention according to claim 4 is a digital display for digitally displaying the displacement amount of the slider on the slider as the displacement display means. A portion is provided.

又、請求項5記載の発明は、上記測定子の測定下端部を上記スライダの上下移動方向に位置調節自在に設け、上記本尺の基準下面部と該測定子の測定下端部とを同レベルに合致させる零点調節機構を設けてなることを特徴とするものである。   According to a fifth aspect of the present invention, the measurement lower end of the measuring element is provided so as to be adjustable in the vertical movement direction of the slider, and the reference lower surface of the main scale and the measurement lower end of the measuring element are at the same level. A zero adjustment mechanism is provided to match the above.

本発明は上述の如く、請求項1記載の発明にあっては、基準面と測定面との段差の測定に用いられ、下端部に該基準面に当接可能な基準下面部を有する長尺状の本尺と、該本尺に本尺の長手方向に上下移動自在に配置されたスライダと、該スライダの側部に突設された桁材と、該桁材に配置され、該測定面に当接可能な測定下端部を有する測定子と、該本尺に対するスライダの移動変位量を表示する変位表示手段とからなり、上記測定子を上記測定面に対向して水平旋回させる首振旋回機構を設け、該首振旋回機構として、上記桁材を角棒状に形成し、桁材の中間部で分断して固定桁材と可動桁材とに二分割形成され、固定桁材と可動桁材とを嵌合部及びスリットからなる二股部により嵌合し、嵌合部の貫通穴及び一方の二股部の貫通穴に締付ねじを貫通すると共に締付ねじを他方の二股部の雌ねじに螺着し、締付ねじの弛緩回動により可動桁材を締付ねじの軸線を中心として水平旋回自在に設けると共に締付ねじの締付回動により可動桁材を位置固定自在に設けて構成してなるから、基準面と測定面との段差の測定に際し、本尺の基準下面部を基準面に当接し、その当接状態を静止保持したまま、スライダを本尺の長手方向に沿って上下移動して上記測定子の測定下端部を測定面に当接し、変位表示手段により本尺に対するスライダの移動変位量としての段差を表示することになり、この際、上記測定子の測定下端部と測定面との当接部位の近傍位置における段差を測定するとき、上記首振旋回機構により上記測定子を上記測定面に対向して水平旋回させ、測定子を近傍位置に当接させることにより基準面と測定面の近傍位置との段差を測定することができ、本尺を基準面から離反したり、本尺を基準面上で摺動したりして、測定子の測定下端部を測定すべき近傍部位に位置移動することがなくなり、首振旋回機構により測定子を上記測定面に対向して水平旋回させるだけで測定すべき近傍部位の段差を測定することができ、測定の融通性及び測定作業性を向上することができる。 As described above, according to the first aspect of the present invention, the long surface having a reference lower surface portion which can be used for measuring a step between the reference surface and the measurement surface and which can contact the reference surface at the lower end portion. Shaped main scale, a slider arranged on the main scale so as to be movable up and down in the longitudinal direction of the main scale, a girder projecting on the side of the slider, and arranged on the girder, the measurement surface A swivel swivel comprising a measuring element having a measurement lower end capable of contacting the surface and a displacement display means for displaying a moving displacement amount of the slider relative to the main scale, wherein the measuring element is horizontally turned to face the measuring surface. As the swing turning mechanism, the beam is formed in the shape of a square bar, divided at the middle part of the beam, and divided into a fixed beam and a movable beam, and the fixed beam and the movable beam The material is fitted into the fork part consisting of a fitting part and a slit, and is tightened to the through hole in the fitting part and the through hole in one fork part. The screw is passed through and the fastening screw is screwed onto the female screw of the other fork, and the movable girder is provided so that it can be pivoted horizontally around the axis of the fastening screw by loosening rotation of the fastening screw. Since the movable girder material is provided in such a way that its position can be fixed by tightening rotation , when measuring the step between the reference surface and the measurement surface, the reference lower surface portion of the main scale is in contact with the reference surface, and the contact state The slider is moved up and down along the longitudinal direction of the main scale while the slider is held stationary, the lower end of the measuring element is brought into contact with the measurement surface, and a step as a displacement of the slider relative to the main scale is detected by the displacement display means. In this case, when measuring the step at the position near the contact portion between the measurement lower end of the measuring element and the measuring surface, the measuring element is opposed to the measuring surface by the swing turning mechanism. Swivel horizontally to bring the probe close to the Can be used to measure the level difference between the reference surface and the vicinity of the measurement surface. The main scale is moved away from the reference surface, or the main scale is slid on the reference surface. The position of the part to be measured is no longer moved, and the step of the vicinity part to be measured can be measured simply by swiveling the measuring element horizontally facing the measurement surface by the swing turning mechanism. Flexibility and measurement workability can be improved.

又、請求項2記載の発明にあっては、上記測定子を上記スライダの上下移動方向と直交する側方々向に移動調節させる突出量調節機構を設けているから、測定子をスライダの上下移動方向と直交する側方々向に移動調節させることにより上記測定子の測定下端部と測定面との当接部位の近傍位置における段差を測定することができ、測定の融通性及び測定作業性を高めることができる。   Further, in the invention described in claim 2, since the protrusion amount adjusting mechanism is provided for moving and adjusting the measuring element in a lateral direction perpendicular to the vertical movement direction of the slider, the measuring element is moved up and down the slider. By adjusting the movement in the direction perpendicular to the direction, it is possible to measure the level difference in the vicinity of the contact portion between the measurement lower end of the probe and the measurement surface, thereby improving measurement flexibility and workability. be able to.

又、請求項3記載の発明にあっては、上記変位表示手段として、上記本尺に本尺目盛を設けると共に上記スライダにスライダ目盛を設け、本尺目盛とスライダ目盛とにより本尺に対するスライダの移動変位量を表示するようにしているから、所謂、ノギスのように容易に段差を測定することができ、製作コストの低減を図ることができ、又、請求項4記載の発明にあっては、上記変位表示手段として、上記スライダに上記スライダの移動変位量をデジタル表示するデジタル表示部を設けてなるから、段差をデジタル表示することにより測定を容易に行うことができ、測定作業性を向上することができる。   According to a third aspect of the present invention, as the displacement display means, a main scale is provided on the main scale and a slider scale is provided on the slider, and the slider scale with respect to the main scale is provided by the main scale and the slider scale. Since the movement displacement amount is displayed, the step can be easily measured like a so-called caliper, and the manufacturing cost can be reduced. In the invention according to claim 4, As the displacement display means, the slider is provided with a digital display section for digitally displaying the amount of displacement of the slider, so that the measurement can be easily performed by digitally displaying the step, thereby improving the measurement workability. can do.

又、請求項5記載の発明にあっては、上記測定子の測定下端部を上記スライダの上下移動方向に位置調節自在に設け、上記本尺の基準下面部と測定子の測定下端部とを同レベルに合致させる零点調節機構を設けているから、段差の測定精度を向上することができる。   In the invention according to claim 5, the measurement lower end of the probe is provided so as to be adjustable in the vertical movement direction of the slider, and the reference lower surface of the main scale and the measurement lower end of the probe are provided. Since the zero adjustment mechanism that matches the same level is provided, the measurement accuracy of the step can be improved.

本発明の実施の第一形態例の斜視図である。1 is a perspective view of a first embodiment of the present invention. 本発明の実施の第一形態例の部分分解斜視図である。1 is a partially exploded perspective view of a first embodiment of the present invention. 本発明の実施の第一形態例の正面図である。It is a front view of the first embodiment of the present invention. 本発明の実施の第一形態例の部分断面図である。It is a fragmentary sectional view of the example of the 1st embodiment of the present invention. 本発明の実施の第一形態例の部分平断面図である。It is a partial plane sectional view of the example of the 1st embodiment of the present invention. 本発明の実施の第一形態例の使用状態図である。It is a use condition figure of the example of the 1st embodiment of the present invention. 本発明の実施の第一形態例の別の使用状態図である。It is another use condition figure of the example of 1st Embodiment of this invention. 本発明の実施の第二形態例の正面図である。It is a front view of the second embodiment of the present invention.

図1乃至図8は、基準面Kと測定面Sとの段差Hの測定に用いられる本発明の実施の形態例を示し、図1乃至図7は第一形態例、図8は第二形態例である。   FIGS. 1 to 8 show an embodiment of the present invention used for measuring a step H between a reference surface K and a measurement surface S, FIGS. 1 to 7 show a first embodiment, and FIG. 8 shows a second embodiment. It is an example.

図1乃至図7の第一形態例において、1は本尺であって、図1、図3の如く、長尺状にして下端部に基準面Kに当接可能な基準下面部1aが形成され、2はスライダであって、本尺1に本尺1の長手方向に抱持状態で上下移動Q自在に配置し、スライダ2を本尺1にシムLを介して止めねじ2aにより固定するように構成している。   In the first embodiment shown in FIGS. 1 to 7, reference numeral 1 denotes a main scale. As shown in FIGS. 1 and 3, a reference lower surface portion 1a capable of contacting the reference surface K is formed at the lower end portion in a long shape. Reference numeral 2 denotes a slider, which is arranged on the main scale 1 so as to be vertically movable Q while being held in the longitudinal direction of the main scale 1, and the slider 2 is fixed to the main scale 1 via a shim L with a set screw 2a. It is configured as follows.

3は桁材であって、図1、図3の如く、上記スライダ2の側部に突設され、4は測定子であって、丸棒ロッド状に形成され、上記桁材3にホルダ5を移動自在に設け、測定子4に上記測定面Sに当接可能な測定下端部4aが形成されている。   1 and 3, 3 is a girder, protruding from the side of the slider 2, and 4 is a measuring element, which is formed in a round rod shape. The girder 3 has a holder 5. The measurement lower end 4a that can contact the measurement surface S is formed on the measuring element 4.

6は変位表示手段であって、この場合、図1、図3の如く、上記本尺1に本尺目盛Mを設けると共に上記スライダ2にスライダ目盛Fを設け、本尺目盛Mとスライダ目盛Fとにより本尺1に対するスライダ2の移動変位量としての段差Hを表示するように設けている。   Reference numeral 6 denotes a displacement display means. In this case, as shown in FIGS. 1 and 3, the main scale 1 is provided with a main scale M and the slider 2 is provided with a slider scale F, and the main scale M and the slider scale F are provided. Thus, a step H as the amount of displacement of the slider 2 relative to the main scale 1 is displayed.

この場合、図1、図3、図6、図7の如く、上記本尺目盛Mは、零目盛M、零目盛Mより上方位置に1mm〜30mmの正目盛M及び零目盛Mより下方位置に−1mm〜−10mmの負目盛Mとされ、スライダ目盛Fは、本尺1の上記基準面Kに当接可能な基準下面部1aと測定子4の上記測定面Sに当接可能な測定下端部4aとが同レベル(段差H=0)のとき上記本尺目盛Mの零目盛Mに合致する零目盛F、零目盛Fより上方位置に本尺目盛Mの19mmを20分割して最小読取値0.05mmのバーニヤ目盛Fが形成され、この場合、バーニヤ目盛Fに上段及び下段に目盛数値が表示され、基準下面部1aより上記測定面Sが上方位置の場合はバーニヤ目盛Fのうちの上段の目盛数値を読み取り、基準下面部1aより上記測定面Sが下方位置の場合はバーニヤ目盛Fの目盛数値のうちの下段の目盛数値を読み取り、基準面Kと上記測定面Sとの段差Hを測定するように構成している。 In this case, FIGS. 1, 3, 6, as shown in FIG. 7, the main scale graduation M is zero graduation M 0, a positive scale 1mm~30mm than zero scale M 0 in the upper position M U and zero scale M 0 is a negative scale M D of -1mm~-10mm more downward position, the slider scale F is on the measuring surface S of the main beam 1 of the reference plane K is contactable reference lower surface portion 1a and the feeler 4 equivalents When the lower end 4a that can be contacted is at the same level (step H = 0), the zero scale F 0 coincides with the zero scale M 0 of the main scale M, and the main scale M is positioned above the zero scale F 0 . the 19 mm 20 divided and formed the vernier scale F V of the minimum reading value 0.05 mm, in this case, the scale number in the upper and lower in the vernier scale F V appears, from the reference bottom surface 1a the measuring surface S is upwardly If positions reads the upper scale figures of the vernier scale F V, the reference If the measurement surface S from the lower surface portion 1a of the lower position reads the lower scale figures among the scales numerical vernier scale F V, and configured to measure a level difference H between the reference plane K and the measuring surface S ing.

7は首振旋回機構であって、図5の如く、上記測定子4を上記測定面Sに対向して水平旋回させるように構成されている。   Reference numeral 7 denotes a swing turning mechanism which is configured to turn the measuring element 4 horizontally facing the measurement surface S as shown in FIG.

この場合、図1、図2、図3、図4、図5の如く、上記首振旋回機構7として、上記桁材3を角棒状に形成し、桁材3の中間部で分断して固定桁材3aと可動桁材3bとに二分割形成し、固定桁材3aと可動桁材3bとを嵌合部3c及びスリットDからなる二股部3dにより嵌合し、かつ、嵌合部3cの貫通穴N及び一方の二股部3dの貫通穴Nに締付ねじ3eを貫通すると共に締付ねじ3eを他方の二股部3dの雌ねじTに螺着し、締付ねじ3eの弛緩回動により可動桁材3bを締付ねじ3eの軸線Oを中心として水平旋回R自在に設けると共に締付ねじ3eの締付回動により可動桁材3bを位置固定自在に設けて構成している。   In this case, as shown in FIGS. 1, 2, 3, 4, and 5, as the swing swing mechanism 7, the beam member 3 is formed in a square bar shape, and is divided and fixed at an intermediate portion of the beam member 3. The girder material 3a and the movable girder material 3b are divided into two parts, the fixed girder material 3a and the movable girder material 3b are fitted by the forked part 3d composed of the fitting part 3c and the slit D, and the fitting part 3c The tightening screw 3e is passed through the through hole N and the through hole N of one bifurcated portion 3d, and the tightening screw 3e is screwed to the female screw T of the other bifurcated portion 3d, and is movable by loosening rotation of the tightening screw 3e. The girder material 3b is provided so as to be able to turn horizontally around the axis O of the tightening screw 3e, and the movable girder material 3b can be fixed in position by tightening rotation of the tightening screw 3e.

8は突出量調節機構であって、この場合、図1、図3、図4の如く、上記桁材3としての可動桁材3bを角材状に形成し、ホルダ5に可動桁材3bに挿通可能な角穴5aを形成してホルダ5を可動桁材3bに移動自在に設け、ホルダ5の上部に止めねじ5bを取付け、止めねじ5bによりシムLを介してホルダ5を可動桁材3bに位置固定し、ホルダ5の下部に測定子4を上下方向に垂設し、測定子4を上記スライダ2の上下移動Q方向と直交する側方々向Bに移動調節自在に設けている。   Reference numeral 8 denotes a protrusion amount adjusting mechanism. In this case, as shown in FIGS. 1, 3, and 4, the movable beam member 3b as the beam member 3 is formed in a square shape and inserted into the holder 5 through the movable beam member 3b. A possible square hole 5a is formed so that the holder 5 is movably provided on the movable girder 3b. A set screw 5b is attached to the upper part of the holder 5, and the holder 5 is attached to the movable girder 3b via the shim L by the set screw 5b. The position is fixed, the measuring element 4 is vertically suspended at the lower part of the holder 5, and the measuring element 4 is provided so as to be movable and adjustable in a lateral direction B perpendicular to the vertical movement Q direction of the slider 2.

9は零点調節機構であって、図1、図3の如く、上記測定子4の上部を上記ホルダ5の下部に螺着すると共に測定子4の上部にナット9aを螺着し、測定子4の正逆螺着回動により上記測定子4の測定下端部4aを上記スライダ2の上下移動Q方向に位置調節自在に設け、本尺1の基準下面部1aと測定子4の測定下端部4aとを同レベル(段差H=0)に合致させるように構成している。   Reference numeral 9 denotes a zero adjustment mechanism. As shown in FIGS. 1 and 3, the upper part of the measuring element 4 is screwed to the lower part of the holder 5, and a nut 9 a is screwed to the upper part of the measuring element 4. The measurement lower end 4a of the measuring element 4 is provided so as to be adjustable in the vertical movement Q direction of the slider 2, and the reference lower surface part 1a of the main scale 1 and the measurement lower end 4a of the measuring element 4 are rotated by forward and reverse screwing rotation. Are matched to the same level (step difference H = 0).

この実施の第一形態例は上記構成であるから、例えば、図6、図7の如く、被測定物Wの基準面Kと測定面Sとの段差Hの測定に際し、本尺1の基準下面部1aを基準面Kに当接し、その当接状態を静止保持したまま、スライダ2を本尺1の長手方向に沿って上下移動Qして上記測定子4の測定下端部4aを測定面Sに当接し、変位表示手段6としての本尺目盛Mとスライダ目盛Fとにより本尺1に対するスライダ2の移動変位量としての段差Hを表示することになり、この際、上記測定子4の測定下端部4aと測定面Sとの当接部位Pの近傍位置P・Pにおける段差Hを測定するには、図5の如く、上記首振旋回機構7により上記測定子4を軸線Oを中心として上記測定面Sに対向して水平旋回Rさせ、測定子4を近傍位置P・Pに当接させることにより基準面Kと測定面Sの近傍位置P・Pとの段差Hを測定することができ、本尺1を基準面Kから離反したり、本尺1を基準面K上で摺動したりして、測定子4の測定下端部4aを測定すべき近傍部位P・Pに位置移動することがなくなり、首振旋回機構7により測定子4を上記測定面Sに対向して軸線Oを中心として水平旋回Rさせるだけで測定すべき近傍部位P・Pの段差Hを測定することができ、測定の融通性及び測定作業性を向上することができる。 Since the first embodiment of the present embodiment has the above-described configuration, for example, as shown in FIGS. 6 and 7, when measuring the step H between the reference surface K of the workpiece W and the measurement surface S, the reference lower surface of the main scale 1 is used. The slider 2 is moved up and down Q along the longitudinal direction of the main scale 1 while the contact portion 1a is in contact with the reference surface K and the contact state is held stationary, and the measurement lower end portion 4a of the measuring element 4 is moved to the measurement surface S. And the step H as the displacement of the slider 2 relative to the main scale 1 is displayed by the main scale M and the slider scale F as the displacement display means 6. In order to measure the level difference H at the positions P 1 and P 2 in the vicinity of the contact portion P between the lower end 4a and the measurement surface S, the measuring element 4 is moved along the axis O by the swing turning mechanism 7 as shown in FIG. As a center, it is horizontally rotated R so as to face the measurement surface S, and the measuring element 4 is moved to the vicinity position P 1 · P. 2 , the step H between the reference plane K and the positions P 1 and P 2 in the vicinity of the measurement plane S can be measured. The main scale 1 is separated from the reference plane K, or the main scale 1 is used as a reference. and or slides on the surface K, it is not possible to position movement in the vicinity of the site P 1 · P 2 to be measured measurement lower end 4a of the probe 4, the measuring feeler 4 by neck vibration turning mechanism 7 It is possible to measure the level difference H of the neighboring parts P 1 and P 2 to be measured simply by making a horizontal turn R about the axis O so as to face the surface S, and to improve measurement flexibility and measurement workability. it can.

この場合、上記測定子4を上記スライダ2の上下移動Q方向と直交する側方々向Bに移動調節させる突出量調節機構8を設けているから、測定子4をスライダ2の上下移動Q方向と直交する側方々向Bに移動調節させることにより上記測定子4の測定下端部4aと測定面Sとの当接部位Pの近傍位置P・Pにおける段差Hを測定することができ、測定の融通性及び測定作業性を高めることができ、又、この場合、上記変位表示手段6として、上記本尺1に本尺目盛Mを設けると共に上記スライダ2にスライダ目盛Fを設け、本尺目盛Mとスライダ目盛Fとにより本尺1に対するスライダ2の移動変位量を表示するようにしているから、所謂、ノギスのように容易に段差Hを測定することができ、製作コストの低減を図ることができる。 In this case, since the protrusion 4 adjustment mechanism 8 is provided for moving and adjusting the probe 4 in the lateral direction B perpendicular to the vertical movement Q direction of the slider 2, the measurement element 4 is moved in the vertical movement Q direction of the slider 2. By adjusting the movement in the direction B perpendicular to each other, the step H at the positions P 1 and P 2 in the vicinity of the contact portion P between the measurement lower end 4a of the probe 4 and the measurement surface S can be measured. In this case, as the displacement display means 6, a main scale M is provided on the main scale 1 and a slider scale F is provided on the slider 2, and the main scale is provided. Since the displacement of the slider 2 relative to the main scale 1 is displayed by the M and the slider scale F, the step H can be easily measured like a so-called caliper, and the manufacturing cost can be reduced. Can do.

又、この場合、上記測定子4の測定下端部4aを上記スライダ2の上下移動Q方向に位置調節自在に設け、本尺1の基準下面部1aと測定子4の測定下端部4aとを同レベルに合致させる零点調節機構9を設けているから、段差Hの測定精度を向上することができる。   In this case, the measurement lower end 4a of the measuring element 4 is provided so that the position thereof can be adjusted in the vertical movement Q direction of the slider 2, and the reference lower surface 1a of the main scale 1 and the measurement lower end 4a of the measuring element 4 are the same. Since the zero adjustment mechanism 9 that matches the level is provided, the measurement accuracy of the step H can be improved.

図8の第二形態例は別例構造を示し、この場合、上記変位表示手段6として、上記スライダ2に上記スライダ2の移動変位量をデジタル表示するデジタル表示部6aを設けて構成している。   The second embodiment shown in FIG. 8 shows another example structure. In this case, as the displacement display means 6, the slider 2 is provided with a digital display portion 6a for digitally displaying the amount of displacement of the slider 2. .

この場合、上記変位表示手段6は静電容量式エンコーダからなる変位検出手段を含み、スライダ2の移動変位量を液晶表示部からなるデジタル表示部6aによりデジタル表示するように構成している。   In this case, the displacement display means 6 includes a displacement detection means comprising a capacitive encoder, and is configured to digitally display the amount of displacement of the slider 2 by a digital display section 6a comprising a liquid crystal display section.

この実施の第二形態例にあっては、上記第一形態例と同様、上記首振旋回機構7により上記測定子4を上記測定面Sに対向して水平旋回Rさせ、測定子4を近傍位置P・Pに当接させることにより基準面Kと測定面Sの近傍位置P・Pとの段差Hを測定することができ、本尺1を基準面Kから離反したり、本尺1を基準面K上で摺動したりして、測定子4の測定下端部4aを測定すべき近傍部位P・Pに位置移動することがなくなり、首振旋回機構7により測定子4を上記測定面Sに対向して水平旋回Rさせるだけで測定すべき近傍部位P・Pの段差Hを測定することができ、測定の融通性を高めることができ、かつ、段差Hをデジタル表示することにより測定を容易に行うことができ、測定作業性を向上することができる。 In the second embodiment, as in the first embodiment, the probe 4 is horizontally turned R so as to face the measurement surface S by the swing turning mechanism 7, and the probe 4 is located in the vicinity. position P 1 · P 2 to be able to measure the level difference H between the reference plane K and the vicinity P 1 · P 2 of the measuring surface S by abutting, or separate the main scale 1 from the reference plane K, the main scale 1 with or slides on the reference plane K, it is not possible to position movement in the vicinity of the site P 1 · P 2 to be measured measurement lower end 4a of the probe 4, measured by neck vibration turning mechanism 7 It is possible to measure the step H of the neighboring parts P 1 and P 2 to be measured simply by turning the child 4 opposite to the measurement surface S and horizontally turning R, thereby increasing the flexibility of measurement, and the step By displaying H digitally, measurement can be performed easily and measurement workability can be improved. Kill.

尚、本発明は上記実施の形態例に限られるものではなく、首振旋回機構7の構造、本尺1、スライダ2、測定子4の大きさや形状、変位表示手段6の構造等は適宜設計して変更されるものである。   The present invention is not limited to the above embodiment, and the structure of the swing mechanism 7, the main scale 1, the slider 2, the size and shape of the probe 4, the structure of the displacement display means 6, etc. are appropriately designed. To be changed.

以上、所期の目的を充分達成することができる。   As described above, the intended purpose can be sufficiently achieved.

K 基準面
S 測定面
H 段差
M 本尺目盛
F スライダ目盛
B 側方々向
Q 上下移動
R 水平旋回
スリット
雌ねじ
軸線
貫通穴
1 本尺
1a 基準下面部
2 スライダ
3 桁材
3a 固定桁材
3b 可動桁材
3c 嵌合部
3d 二股部
3e 締付ねじ
4 測定子
4a 測定下端部
6 変位表示手段
6a デジタル表示部
7 首振旋回機構
8 突出量調節機構
9 零点調節機構
K Reference surface S Measurement surface H Step M Scale scale F Slider scale B Side direction Q Vertical movement R Horizontal turning
D slit
T female thread
O axis
N through hole 1 Main scale 1a Reference bottom surface 2 Slider 3 Girder
3a fixed girder
3b movable girder
3c fitting part
3d fork
3e Clamping screw 4 Measuring element 4a Measurement lower end 6 Displacement display means 6a Digital display 7 Swing mechanism 8 Protrusion adjustment mechanism 9 Zero adjustment mechanism

Claims (5)

基準面と測定面との段差の測定に用いられ、下端部に該基準面に当接可能な基準下面部を有する長尺状の本尺と、該本尺に本尺の長手方向に上下移動自在に配置されたスライダと、該スライダの側部に突設された桁材と、該桁材に配置され、該測定面に当接可能な測定下端部を有する測定子と、該本尺に対するスライダの移動変位量を表示する変位表示手段とからなり、上記測定子を上記測定面に対向して水平旋回させる首振旋回機構を設け、該首振旋回機構として、上記桁材を角棒状に形成し、桁材の中間部で分断して固定桁材と可動桁材とに二分割形成され、固定桁材と可動桁材とを嵌合部及びスリットからなる二股部により嵌合し、嵌合部の貫通穴及び一方の二股部の貫通穴に締付ねじを貫通すると共に締付ねじを他方の二股部の雌ねじに螺着し、締付ねじの弛緩回動により可動桁材を締付ねじの軸線を中心として水平旋回自在に設けると共に締付ねじの締付回動により可動桁材を位置固定自在に設けて構成してなることを特徴とする段差ゲージ。 Used to measure the level difference between the reference surface and the measurement surface, a long main scale having a reference bottom surface that can be in contact with the reference surface at the lower end, and a vertical movement of the main scale in the longitudinal direction of the main scale A slider that is freely arranged, a girder protruding from the side of the slider, a measuring element that is arranged on the girder and has a measurement lower end that can come into contact with the measurement surface, and the main scale. A displacement display means for displaying the amount of displacement of the slider, and provided with a swivel swivel mechanism that horizontally swivels the measuring element facing the measurement surface, and the girder is shaped like a square bar. Formed, divided at the middle part of the girder and divided into a fixed girder material and a movable girder material, and the fixed girder material and the movable girder material are fitted by a bifurcated portion comprising a fitting portion and a slit, and fitted. Insert the fastening screw into the through hole in the joint and the through hole in one of the two forks, and connect the fastening screw to the female in the other fork The movable girder material is provided so that it can be swiveled horizontally around the axis of the tightening screw, and the movable girder material can be fixed in position by the tightening rotation of the tightening screw. step gauge characterized by being configured. 上記測定子を上記スライダの上下移動方向と直交する側方々向に移動調節させる突出量調節機構を設けてなることを特徴とする請求項1記載の段差ゲージ。   The step gauge according to claim 1, further comprising a protrusion amount adjusting mechanism for moving and adjusting the measuring element in a lateral direction perpendicular to the vertical movement direction of the slider. 上記変位表示手段として、上記本尺に本尺目盛を設けると共に上記スライダにスライダ目盛を設け、該本尺目盛と該スライダ目盛とにより本尺に対するスライダの移動変位量を表示するように設けてなることを特徴とする請求項1又は2記載の段差ゲージ。   As the displacement display means, a main scale is provided on the main scale and a slider scale is provided on the slider, and the main scale and the slider scale are provided to display the displacement of the slider relative to the main scale. The step gauge according to claim 1 or 2, characterized by the above. 上記変位表示手段として、上記スライダに上記スライダの移動変位量をデジタル表示するデジタル表示部を設けてなることを特徴とする請求項1又は2記載の段差ゲージ。   The step gauge according to claim 1 or 2, wherein the displacement display means is provided with a digital display section for digitally displaying the amount of displacement of the slider on the slider. 上記測定子の測定下端部を上記スライダの上下移動方向に位置調節自在に設け、上記本尺の基準下面部と該測定子の測定下端部とを同レベルに合致させる零点調節機構を設けてなることを特徴とする請求項1〜4のいずれか1項に記載の段差ゲージ。   The measurement lower end of the probe is provided so that the position of the slider can be adjusted in the vertical movement direction, and a zero adjustment mechanism is provided to match the reference lower surface of the main scale and the measurement lower end of the probe to the same level. The level | step difference gauge of any one of Claims 1-4 characterized by the above-mentioned.
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KR20210093106A (en) * 2020-01-17 2021-07-27 고흥도 Height guage measuring gauge pin holder

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* Cited by examiner, † Cited by third party
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JP7203312B2 (en) * 2020-04-30 2023-01-13 株式会社東京精密 measuring device
CN113135468B (en) * 2021-04-06 2022-09-06 疏勒如意科技纺织有限公司 Adjusting and setting gauge for bobbin yarn exchanging gripper
CN114993131B (en) * 2022-07-19 2022-11-18 靖江量具有限公司 Caliper for measuring clearance of parts with different planes

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JPS59220601A (en) * 1983-05-30 1984-12-12 Mitsutoyo Mfg Co Ltd Height gauge
JPH07218203A (en) * 1994-02-03 1995-08-18 Sango Co Ltd Step gauge
JPH11118405A (en) * 1997-10-20 1999-04-30 Isuzu Motors Ltd Height gauge
US7216441B2 (en) * 2005-07-29 2007-05-15 Robert Alan Batora Apparatus for measuring step height or depth against another surface
JP3150056U (en) * 2008-12-25 2009-04-30 株式会社中村製作所 Height gauge and measuring member

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KR20210093106A (en) * 2020-01-17 2021-07-27 고흥도 Height guage measuring gauge pin holder
KR102517673B1 (en) 2020-01-17 2023-04-03 고흥도 Height guage measuring gauge pin holder

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