JP3151182U - Non-contact type plate material measuring device - Google Patents
Non-contact type plate material measuring device Download PDFInfo
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- JP3151182U JP3151182U JP2009002047U JP2009002047U JP3151182U JP 3151182 U JP3151182 U JP 3151182U JP 2009002047 U JP2009002047 U JP 2009002047U JP 2009002047 U JP2009002047 U JP 2009002047U JP 3151182 U JP3151182 U JP 3151182U
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- 230000003287 optical effect Effects 0.000 claims description 15
- 238000005192 partition Methods 0.000 claims description 13
- 238000005259 measurement Methods 0.000 claims description 9
- 230000000149 penetrating effect Effects 0.000 claims description 5
- 238000009434 installation Methods 0.000 description 1
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Abstract
【課題】ねじ軸に沿って往復移動可能なセンサーを装着することにより、板材の両面の全域に亘って平面度を測定することができる非接触式板材測定装置を提供する。【解決手段】非接触式板材測定装置は、駆動装置20におけるモーター21が起動すると、モーター21に連動して駆動ローラ22がベルト25を介して第一従動ローラ23及び第二従動ローラ24を駆動し、さらに、第一従動ローラ23に連結される第一ねじ軸26及び第二従動ローラ24に連結される第二ねじ軸27が第一従動ローラ23及び第二従動ローラ24に連動して回転する。これにより、駆動装置20の回転運動をそれぞれ、板材の通過経路の上下部に設けられている第一センサー及び第二センサーの、第一ねじ軸26及び第二ねじ軸27に沿った直線運動に変更することができる。【選択図】図1Provided is a non-contact type plate material measuring apparatus capable of measuring flatness over the entire area of both surfaces of a plate material by mounting a sensor that can reciprocate along a screw shaft. In a non-contact type plate material measuring device, when a motor 21 in a driving device 20 is activated, a driving roller 22 drives a first driven roller 23 and a second driven roller 24 via a belt 25 in conjunction with the motor 21. Further, the first screw shaft 26 connected to the first driven roller 23 and the second screw shaft 27 connected to the second driven roller 24 rotate in conjunction with the first driven roller 23 and the second driven roller 24. To do. As a result, the rotational movement of the driving device 20 is changed to linear movement along the first screw shaft 26 and the second screw shaft 27 of the first sensor and the second sensor provided in the upper and lower portions of the plate material passage path, respectively. Can be changed. [Selection] Figure 1
Description
本考案は、測定装置に関し、特に内部に設置された往復移動可能な非接触式センサーにより、板材の表裏面の平面度を測定することができる非接触式板材測定装置に関する。
The present invention relates to a measuring apparatus, and more particularly, to a non-contact type plate material measuring apparatus capable of measuring the flatness of the front and back surfaces of a plate material by a reciprocating non-contact sensor installed inside.
非接触式板材測定装置は一般に、光学センサーを用いて、板材の平面度を測定するものであり、従来の非接触式板材測定装置は、板材輸送装置の上方に、一つ或いは複数の光学センサーを設置し、板材輸送装置により運ばれた板材が光学センサーの下を通過したときに、光学センサーより発せられた測定光により板材の表面の一点や複数点の平面度を測定する。
A non-contact type plate material measuring apparatus generally measures the flatness of a plate material using an optical sensor, and a conventional non-contact type plate material measuring device has one or more optical sensors above a plate material transporting device. When the plate material carried by the plate material transport device passes under the optical sensor, the flatness of one point or a plurality of points on the surface of the plate material is measured by the measurement light emitted from the optical sensor.
しかしながら、従来の非接触式板材測定装置は、一点や複数点を測定することしかできず、板材の表面全体に対して測定することができない。従って、測定したデータの正確性や精度が低いという問題があった。
また、従来の非接触式板材測定装置は、板材輸送装置の上部に固設されるので、板材の片面の平面度しか測定できず、また、固設により測定できる箇所も限られており、更に、従来の非接触式板材測定装置において測定できる箇所を増やすためには、板材輸送装置の上部に複数のセンサーを設ける必要があるので、非経済的であった。
However, the conventional non-contact type plate material measuring apparatus can only measure one point or a plurality of points, and cannot measure the entire surface of the plate material. Therefore, there is a problem that the accuracy and accuracy of measured data are low.
In addition, since the conventional non-contact type plate material measuring device is fixed to the upper portion of the plate material transporting device, only the flatness of one side of the plate material can be measured, and there are also limited places that can be measured by fixing. In order to increase the number of points that can be measured in the conventional non-contact type plate material measuring apparatus, it is necessary to provide a plurality of sensors at the upper part of the plate material transport device, which is uneconomical.
そこで、案出されたのが本考案であって、往復移動可能なセンサーを用いることにより、板材の両面の全域に亘って平面度を測定することを可能にした非接触式板材測定装置を提供することを目的としている。
Accordingly, the present invention has been devised and provides a non-contact type plate material measuring apparatus that can measure flatness over the entire area of both sides of a plate material by using a reciprocating sensor. The purpose is to do.
本願の請求項1の考案は、フレーム(10)と、駆動装置(20)と、2つの光学測定器(30)とを備える非接触式板材測定装置であって、前記フレーム(10)は、間隔を置いて平行に設けられる第一組み付け部(14)及び第二組み付け部(15)と、一側に該第一組み付け部(14)及び第二組み付け部(15)を連結する連結フレーム(12)とを備え、前記駆動装置(20)は、連結フレーム(12)に設置され、順逆回転が制御可能なモーター(21)と、該モーター(21)に取り付けられる駆動ローラ(22)と、該連結フレーム(12)に設置され、該駆動ローラ(22)と同一の縦方向の平面上に設置される第一従動ローラ(23)、第二従動ローラ(24)と、前記各ローラを連結するベルト(25)と、該第一従動ローラ(23)に連結され、回転可能に第一組み付け部(14)に貫設される第一ねじ軸(26)と、該第二従動ローラ(24)に連結され、回転可能に第二組み付け部(15)に貫設される第二ねじ軸(27)とを備え、前記2つの光学測定器(30)は、それぞれの測定光が対向するように設置されており、それぞれ、移動可能に前記第一ねじ軸(26)に螺合される第一ねじ穴(310)を有する第一ベース(31)と、移動可能に前記第二ねじ軸(27)に螺合される第二ねじ穴(320)を有する第二ベース(32)とに連結されていることを特徴とする非接触式板材測定装置、を提供する。 Invention of Claim 1 of this application is a non-contact-type board | plate material measuring apparatus provided with a frame (10), a drive device (20), and two optical measuring devices (30), Comprising: The said frame (10) A first assembling portion (14) and a second assembling portion (15) that are provided in parallel with a gap, and a connecting frame that connects the first assembling portion (14) and the second assembling portion (15) to one side ( 12), and the driving device (20) is installed on the connecting frame (12), and a motor (21) capable of controlling forward / reverse rotation, a driving roller (22) attached to the motor (21), The first driven roller (23) and the second driven roller (24) installed on the connecting frame (12) and installed on the same vertical plane as the driving roller (22) are connected to the rollers. Belt (25) to be A first screw shaft (26) connected to the roller (23) and rotatably penetrated through the first assembling portion (14) and a second driven roller (24) connected to the second screwed roller (24) to be rotatable. A second screw shaft (27) penetrating the portion (15), and the two optical measuring devices (30) are installed so that the respective measuring beams face each other, and are movable. A first base (31) having a first screw hole (310) screwed into the first screw shaft (26), and a second screw hole movably screwed into the second screw shaft (27) The non-contact-type board | plate material measuring apparatus connected with the 2nd base (32) which has (320) is provided.
そして、本願の請求項2の考案は、前記第一組み付け部(14)内における前記第一ねじ軸(26)の前記第二組み付け部(15)に向く側に、該第一ねじ軸(26)と平行するように第一ガイドロッド(28)が設置され、該第二組み付け部(15)内における前記第にねじ軸(27)の前記第一組み付け部(14)に向く側に、該第二ねじ軸(27)と平行するように第二ガイドロッド(29)が設置され、更に、前記第一ベース(31)に、該第一ガイドロッド(28)が摺動可能に貫通する第一貫通孔(311)が形成され、前記第二ベース(32)に、該第二ガイドロッド(29)が摺動可能に貫通する第二貫通孔(321)が形成されていることを特徴とする請求項1に記載の非接触式板材測定装置、を提供する。 The invention of claim 2 of the present application is directed to the first screw shaft (26) on the side of the first screw shaft (26) facing the second assembly portion (15) in the first assembly portion (14). The first guide rod (28) is installed so as to be parallel to the second assembly portion (15), on the side of the second screw shaft (27) facing the first assembly portion (14), A second guide rod (29) is installed so as to be parallel to the second screw shaft (27), and the first guide rod (28) slidably penetrates the first base (31). One through hole (311) is formed, and the second base (32) is formed with a second through hole (321) through which the second guide rod (29) is slidable. A non-contact type plate material measuring device according to claim 1 is provided.
更に、本願の請求項3の考案は、前記第一組み付け部(14)及び前記第二組み付け部(15)は、中空の直方体を呈し、その対向する側にそれぞれ、前記2つの光学測定器(30)の測定光が通過する第一開口(140)及び第二開口(150)が形成されていることを特徴とする請求項1又は請求項2に記載の非接触式板材測定装置、を提供する。 Further, in the invention of claim 3 of the present application, the first assembly portion (14) and the second assembly portion (15) have a hollow rectangular parallelepiped, and the two optical measuring instruments ( The non-contact type plate material measuring device according to claim 1 or 2, wherein a first opening (140) and a second opening (150) through which the measurement light of 30) passes are formed. To do.
また、本願の請求項4の考案は、前記フレーム(10)の底部に、支持フレーム(70)の上部に凸設される断面T字形のレール(71)と摺動可能に結合する断面T字形のスロット(11)が凹設されていることを特徴とする請求項1乃至請求項3の何れか一項に記載の非接触式板材測定装置、を提供する。 Further, the invention of claim 4 of the present application is that the bottom of the frame (10) is slidably coupled with a T-shaped rail (71) projecting from the top of the support frame (70). The non-contact type plate material measuring device according to any one of claims 1 to 3, wherein the slot (11) is recessed.
そして、本願の請求項5の考案は、前記連結フレーム(12)は、縦方向に設置される連結板(120)と、該連結板(120)と間隔をおいて平行に設置される隔壁板(121)と、該連結板(120)と隔壁板(121)の上下端にそれぞれ連結される横板とを備え、前記前記第一組み付け部(14)及び第二組み付け部(15)は、前記隔壁板(121)の前記連結板(120)が位置する側と反対する側に配置され、前記第一従動ローラ(23)及び第二従動ローラ(24)は、前記連結板(120)と前記隔壁板(121)との間に配置され、前記第一ねじ軸(26)は、前記隔壁板(121)を貫通するように回転可能に前記第一組み付け部(14)に配置され、前記第二ねじ軸(27)は、前記隔壁板(121)を貫通するように回転可能に前記第一組み付け部(14)に配置されていることを特徴とする請求項1乃至請求項4の何れか一項に記載の非接触式板材測定装置、を提供する。
The invention of claim 5 of the present application is that the connecting frame (12) includes a connecting plate (120) installed in the vertical direction, and a partition plate installed parallel to the connecting plate (120) at an interval. (121) and horizontal plates respectively connected to the upper and lower ends of the connection plate (120) and the partition plate (121), the first assembly portion (14) and the second assembly portion (15) are: The partition plate (121) is disposed on the side opposite to the side where the connecting plate (120) is located, and the first driven roller (23) and the second driven roller (24) are connected to the connecting plate (120). The first screw shaft (26) is disposed between the partition plate (121) and the first screw shaft (26) is rotatably disposed on the first assembly portion (14) so as to penetrate the partition plate (121). The second screw shaft (27) passes through the partition plate (121). Providing a non-contact sheet measuring device, according to any one of claims 1 to 4, characterized in that it is arranged to rotatably said first installation part (14).
本考案は上記の課題を解決するものであり、第一組み付け部と第二組み付け部に設置される第一ねじ軸と第二ねじ軸により、第一センサーと第二センサーをそれぞれ第一ねじ軸と第二ねじ軸に沿って往復移動させることができるので、板材の両面の全域に亘って平面度を測定することができる。
The present invention solves the above-mentioned problem, and the first sensor and the second sensor are respectively connected to the first screw shaft by the first screw shaft and the second screw shaft installed in the first assembly portion and the second assembly portion. Therefore, the flatness can be measured over the entire area of both surfaces of the plate material.
以下、添付図面を参照して本考案の好適な実施の形態を詳細に説明する。尚、下記実施例は、本考案の好適な実施の形態を示したものにすぎず、本考案の技術的範囲は、下記実施例そのものに何ら限定されるものではない。 Hereinafter, preferred embodiments of the present invention will be described in detail with reference to the accompanying drawings. In addition, the following Example is only what showed the preferred embodiment of this invention, and the technical scope of this invention is not limited to the following Example itself at all.
図1は本考案に係る非接触式板材測定装置の正面視斜視図であり、図2は本考案に係る非接触式板材測定装置の正面図であり、図3は本考案に係る非接触式板材測定装置の背面視斜視図であり、図4は本考案に係る非接触式板材測定装置の平面図であり、図5は本考案に係る非接触式板材測定装置の使用状態を示す左側面図であり、図6は本考案に係る非接触式板材測定装置の測定状態を示す平面図である。 FIG. 1 is a front perspective view of a non-contact type plate measuring apparatus according to the present invention, FIG. 2 is a front view of the non-contact type plate measuring apparatus according to the present invention, and FIG. 3 is a non-contact type according to the present invention. FIG. 4 is a rear perspective view of the plate material measuring device, FIG. 4 is a plan view of the non-contact type plate material measuring device according to the present invention, and FIG. 5 is a left side view showing a use state of the non-contact type plate material measuring device according to the present invention. FIG. 6 is a plan view showing a measurement state of the non-contact type plate material measuring apparatus according to the present invention.
図1及び図2に示すように、本考案に係る非接触式板材測定装置は、フレーム(10)と、駆動装置(20)と、2つの光学測定器(30)とを備えている。 As shown in FIG.1 and FIG.2, the non-contact-type board | plate material measuring apparatus based on this invention is equipped with the flame | frame (10), the drive device (20), and the two optical measuring devices (30).
図3に示すように、前記フレーム(10)は、間隔を置いて平行に設けられる第一組み付け部(14)及び第二組み付け部(15)と、一側に前記第一組み付け部(14)及び第二組み付け部(15)を連結する連結フレーム(12)とを備えている。 As shown in FIG. 3, the frame (10) includes a first assembling portion (14) and a second assembling portion (15) provided in parallel with a gap, and the first assembling portion (14) on one side. And a connecting frame (12) for connecting the second assembly portion (15).
前記第一組み付け部(14)及び前記第二組み付け部(15)は、中空の直方体を呈し、その対向する側にそれぞれ、前記2つの光学測定器(30)の測定光が通過する第一開口(140)及び第二開口(150)が形成されている。 The first assembly portion (14) and the second assembly portion (15) have a hollow rectangular parallelepiped shape, and first openings through which the measurement light of the two optical measuring devices (30) pass are respectively provided on opposite sides thereof. (140) and a second opening (150) are formed.
前記駆動装置(20)は、連結フレーム(12)に設置され、順逆回転が制御可能なモーター(21)と、該モーター(21)に取り付けられる駆動ローラ(22)と、該連結フレーム(12)に設置され、該駆動ローラ(22)と同一の縦方向の平面上に設置される第一従動ローラ(23)、第二従動ローラ(24)と、前記各ローラを連結するベルト(25)と、該第一従動ローラ(23)に連結され、回転可能に第一組み付け部(14)に貫設される第一ねじ軸(26)と、該第二従動ローラ(24)に連結され、回転可能に第二組み付け部(15)に貫設される第二ねじ軸(27)とを備えている。 The driving device (20) is installed on the connecting frame (12), and a motor (21) capable of controlling forward / reverse rotation, a driving roller (22) attached to the motor (21), and the connecting frame (12). A first driven roller (23) and a second driven roller (24) installed on the same vertical plane as the drive roller (22), and a belt (25) connecting the rollers. , Connected to the first driven roller (23) and rotatably connected to the first screw shaft (26) penetrating through the first assembly (14) and the second driven roller (24). And a second screw shaft (27) penetrating through the second assembly portion (15).
また、前記第一組み付け部(14)内における第一ねじ軸(26)の第二組み付け部(15)に向く側に、該第一ねじ軸(26)と平行するように第一ガイドロッド(28)が設置されると共に、該第二組み付け部(15)内における第にねじ軸(27)の第一組み付け部(14)に向く側に、第二ねじ軸(27)と平行するように第二ガイドロッド(29)が設置されている。 Further, on the side of the first screw shaft (26) facing the second assembly portion (15) in the first assembly portion (14), the first guide rod (26) is parallel to the first screw shaft (26). 28) is installed, and in the second assembly portion (15), on the side facing the first assembly portion (14) of the screw shaft (27) so as to be parallel to the second screw shaft (27). A second guide rod (29) is installed.
図4に示すように、前記2つの光学測定器(30)は、それぞれの測定光が対向するように設置され、それぞれ、移動可能に前記第一ねじ軸(26)に螺合される第一ねじ穴(310)を有する第一ベース(31)と、移動可能に前記第二ねじ軸(27)に螺合される第二ねじ穴(320)を有する第二ベース(32)とに連結されている。 As shown in FIG. 4, the two optical measuring devices (30) are installed so that the respective measuring beams are opposed to each other, and are respectively movably screwed to the first screw shaft (26). A first base (31) having a screw hole (310) and a second base (32) having a second screw hole (320) movably engaged with the second screw shaft (27). ing.
更に、前記第一ベース(31)には、前記第一ガイドロッド(28)が摺動可能に貫通する第一貫通孔(311)が形成されると共に、前記第二ベース(32)に、該第二ガイドロッド(29)が摺動可能に貫通する第二貫通孔(321)が形成されている。 Further, the first base (31) is formed with a first through hole (311) through which the first guide rod (28) slidably passes, and the second base (32) A second through hole (321) through which the second guide rod (29) is slidably penetrated is formed.
その上、本考案の非接触式板材測定装置では、前記フレーム(10)を支持フレーム(70)上に移動可能に乗せるために、前記フレーム(10)の底部に、支持フレーム(70)の上部に凸設される断面T字形のレール(71)とスライド可能に結合できる断面T字形のスロット(11)が凹設されている。 In addition, in the non-contact type plate material measuring apparatus of the present invention, in order to movably place the frame (10) on the support frame (70), an upper portion of the support frame (70) is placed on the bottom of the frame (10). A slot (11) having a T-shaped cross section that can be slidably coupled to a rail (71) having a T-shaped cross section that is slidably formed is recessed.
上記の構成によれば、本考案の非接触式板材測定装置は、駆動装置(20)におけるモーター(21)が起動すると、モーター(21)に連動して駆動ローラ(22)がベルト(25)を介して第一従動ローラ(23)及び第二従動ローラ(24)を駆動し、さらに、第一従動ローラ(23)に連結される第一ねじ軸(26)及び第二従動ローラ(24)に連結される第二ねじ軸(27)が第一従動ローラ(23)及び第二従動ローラ(24)に連動して回転する。このように、本考案の構成によれば、駆動装置(20)の回転運動をそれぞれ、板材の通過経路の上下部に設けられている第一センサー(符号なし)及び第二センサー(符号なし)の、第一ねじ軸(26)及び第二ねじ軸(27)に沿った直線運動に変更することができる。 According to said structure, when the motor (21) in a drive device (20) starts, the drive roller (22) interlock | cooperates with a motor (21), and the non-contact-type board | plate measuring device of this invention is a belt (25). The first driven roller (23) and the second driven roller (24) are driven via the first screw shaft (26) and the second driven roller (24) connected to the first driven roller (23). The second screw shaft (27) connected to the first and second driven rollers (23) and (24) is rotated in conjunction with the first driven roller (23). As described above, according to the configuration of the present invention, the first sensor (not indicated) and the second sensor (not indicated) provided on the upper and lower portions of the passage of the plate material, respectively, according to the rotational movement of the drive device (20). The linear motion along the first screw shaft (26) and the second screw shaft (27) can be changed.
また、図5及び図6に示すように、板材は、支持フレーム(70)のフィードローラ(72)により搬送され、該板材が第一組み付け部(14)と第二組み付け部(15)との間を通り、モーター(21)が往復駆動すると、第一センサー及び第二センサーが直線的に往復運動を繰り返して、測定光がそれぞれ第一開口(140)と第二開口(150)を経て、板材の表裏面において測定軌跡を作るので、板材の両面の全域に亘って平面度を測定することができる。 Also, as shown in FIGS. 5 and 6, the plate material is conveyed by the feed roller (72) of the support frame (70), and the plate material is connected to the first assembly portion (14) and the second assembly portion (15). When the motor (21) is driven to reciprocate, the first sensor and the second sensor repeat reciprocating motion linearly, and the measurement light passes through the first opening (140) and the second opening (150), respectively. Since the measurement trajectory is created on the front and back surfaces of the plate material, the flatness can be measured over the entire area of both surfaces of the plate material.
本考案は上記の構成を有することから、第一組み付け部に配置される第一ねじ軸及び第二組み付け部に配置される第二ねじ軸に沿って第一センサーと第二センサーを摺動させることにより、板材の両面の全域に亘って平面度を測定することが可能となった。故に、従来のように多数のセンサーを設置する必要はなく、且つ測定可能な範囲も拡大させることができるので、測定精度を向上させることができると共に、実用性も極めて高い。 Since the present invention has the above-described configuration, the first sensor and the second sensor are slid along the first screw shaft disposed in the first assembly portion and the second screw shaft disposed in the second assembly portion. This makes it possible to measure the flatness over the entire area of both surfaces of the plate material. Therefore, it is not necessary to install a large number of sensors as in the prior art, and the measurable range can be expanded, so that measurement accuracy can be improved and practicality is extremely high.
10 フレーム
11 スロット
12 連結フレーム
120 連結板
121 隔壁板
14 第一組み付け部
140 第一開口
15 第二組み付け部
150 第二開口
20 駆動装置
21 モーター
22 駆動ローラ
23 第一従動ローラ
24 第二従動ローラ
25 ベルト
26 第一ねじ軸
27 第二ねじ軸
28 第一ガイドロッド
29 第二ガイドロッド
30 光学測定器
31 第一ベース
310 第一ねじ穴
311 第一貫通孔
32 第二ベース
320 第二ねじ穴
321 第二貫通孔
70 支持フレーム
71 レール
72 フィードローラ
10 frame 11 slot 12 connection frame 120 connection plate 121 partition plate 14 first assembly portion 140 first opening 15 second assembly portion 150 second opening 20 drive device 21 motor 22 drive roller 23 first driven roller 24 second driven roller 25 Belt 26 First screw shaft 27 Second screw shaft 28 First guide rod 29 Second guide rod 30 Optical measuring device 31 First base 310 First screw hole 311 First through hole 32 Second base 320 Second screw hole 321 First Two through holes 70 Support frame 71 Rail 72 Feed roller
Claims (5)
前記フレーム(10)は、間隔を置いて平行に設けられる第一組み付け部(14)及び第二組み付け部(15)と、一側に該第一組み付け部(14)及び第二組み付け部(15)を連結する連結フレーム(12)とを備え、
前記駆動装置(20)は、連結フレーム(12)に設置され、順逆回転が制御可能なモーター(21)と、該モーター(21)に取り付けられる駆動ローラ(22)と、該連結フレーム(12)に設置され、該駆動ローラ(22)と同一の縦方向の平面上に設置される第一従動ローラ(23)、第二従動ローラ(24)と、前記各ローラを連結するベルト(25)と、該第一従動ローラ(23)に連結され、回転可能に第一組み付け部(14)に貫設される第一ねじ軸(26)と、該第二従動ローラ(24)に連結され、回転可能に第二組み付け部(15)に貫設される第二ねじ軸(27)とを備え、
前記2つの光学測定器(30)は、それぞれの測定光が対向するように設置されており、それぞれ、移動可能に前記第一ねじ軸(26)に螺合される第一ねじ穴(310)を有する第一ベース(31)と、移動可能に前記第二ねじ軸(27)に螺合される第二ねじ穴(320)を有する第二ベース(32)とに連結されていることを特徴とする非接触式板材測定装置。 A non-contact type plate material measuring device comprising a frame (10), a driving device (20), and two optical measuring instruments (30),
The frame (10) includes a first assembling portion (14) and a second assembling portion (15) provided in parallel at a distance, and the first assembling portion (14) and the second assembling portion (15) on one side. And a connecting frame (12) for connecting)
The driving device (20) is installed on the connecting frame (12), and a motor (21) capable of controlling forward / reverse rotation, a driving roller (22) attached to the motor (21), and the connecting frame (12). A first driven roller (23) and a second driven roller (24) installed on the same vertical plane as the drive roller (22), and a belt (25) connecting the rollers. , Connected to the first driven roller (23) and rotatably connected to the first screw shaft (26) penetrating through the first assembly (14) and the second driven roller (24). A second screw shaft (27) which is penetrating the second assembling part (15),
The two optical measuring devices (30) are installed so that the respective measuring beams are opposed to each other, and each of the two optical measuring devices (30) is movably screwed into the first screw shaft (26). And a second base (32) having a second screw hole (320) movably engaged with the second screw shaft (27). Non-contact type plate material measuring device.
前記前記第一組み付け部(14)及び第二組み付け部(15)は、前記隔壁板(121)の前記連結板(120)が位置する側と反対する側に配置され、
前記第一従動ローラ(23)及び第二従動ローラ(24)は、前記連結板(120)と前記隔壁板(121)との間に配置され、
前記第一ねじ軸(26)は、前記隔壁板(121)を貫通するように回転可能に前記第一組み付け部(14)に配置され、
前記第二ねじ軸(27)は、前記隔壁板(121)を貫通するように回転可能に前記第一組み付け部(14)に配置されていることを特徴とする請求項1乃至請求項4の何れか一項に記載の非接触式板材測定装置。 The connection frame (12) includes a connection plate (120) installed in the vertical direction, a partition plate (121) installed parallel to the connection plate (120), and the connection plate (120). And horizontal plates respectively connected to the upper and lower ends of the partition plate (121),
The first assembly portion (14) and the second assembly portion (15) are disposed on the side of the partition plate (121) opposite to the side where the connection plate (120) is located,
The first driven roller (23) and the second driven roller (24) are disposed between the connecting plate (120) and the partition plate (121),
The first screw shaft (26) is rotatably disposed on the first assembly portion (14) so as to penetrate the partition plate (121).
The said 2nd screw shaft (27) is arrange | positioned at said 1st assembly part (14) so that rotation is possible so that the said partition plate (121) may be penetrated, The Claim 1 thru | or 4 characterized by the above-mentioned. The non-contact-type board | plate material measuring apparatus as described in any one.
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
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CN108759730A (en) * | 2018-07-21 | 2018-11-06 | 东莞市联洲知识产权运营管理有限公司 | A kind of average flushing outside line photoelectric detection mechanism of plate body movable type water |
CN112556608A (en) * | 2020-12-17 | 2021-03-26 | 江西富益特显示技术有限公司 | Display screen polaroid roughness check out test set |
CN114509029A (en) * | 2022-02-16 | 2022-05-17 | 南宁双凯纸业有限责任公司 | Optical-based plate surface irregularity detection device |
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Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
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CN108759730A (en) * | 2018-07-21 | 2018-11-06 | 东莞市联洲知识产权运营管理有限公司 | A kind of average flushing outside line photoelectric detection mechanism of plate body movable type water |
CN112556608A (en) * | 2020-12-17 | 2021-03-26 | 江西富益特显示技术有限公司 | Display screen polaroid roughness check out test set |
CN114509029A (en) * | 2022-02-16 | 2022-05-17 | 南宁双凯纸业有限责任公司 | Optical-based plate surface irregularity detection device |
CN114509029B (en) * | 2022-02-16 | 2022-09-02 | 南宁双凯纸业有限责任公司 | Optical-based plate surface irregularity detection device |
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