WO2018107468A1 - 一种小型齿轮检测装置 - Google Patents
一种小型齿轮检测装置 Download PDFInfo
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- WO2018107468A1 WO2018107468A1 PCT/CN2016/110410 CN2016110410W WO2018107468A1 WO 2018107468 A1 WO2018107468 A1 WO 2018107468A1 CN 2016110410 W CN2016110410 W CN 2016110410W WO 2018107468 A1 WO2018107468 A1 WO 2018107468A1
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- G—PHYSICS
- G01—MEASURING; TESTING
- G01N—INVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
- G01N21/00—Investigating or analysing materials by the use of optical means, i.e. using sub-millimetre waves, infrared, visible or ultraviolet light
- G01N21/84—Systems specially adapted for particular applications
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- the invention relates to a detecting device, in particular to a small gear detecting device.
- the conventional small gear detecting device mainly includes a gear positioning fixture, a lens disposed on the positioning fixture, and a moving mechanism connected to the lens and driving the lens to move, and the positioning fixture is provided with a plurality of small and small
- the gear matching the groove, before the detection, the small gear to be detected is placed into the groove of the positioning fixture through the manual or mechanical arm, and the lens is moved to the top of the corresponding groove by the moving mechanism for detection. After the test is completed, the detected gear is placed in the defective product area or the good product area manually or by a robot arm.
- the traditional small gear has certain defects: 1) The small gear has a circular structure and is placed in the groove of the jig with the same shape, which is difficult to take out; 2) the moving mechanism drives the lens to move above the corresponding groove When the detection is performed, the lens is always in a moving state, and the alignment accuracy with the product is poor, thereby affecting the detection accuracy.
- the present invention is directed to a small gear detecting device, thereby overcoming the deficiencies of the prior art.
- a small gear detecting device includes a base, an image pickup mechanism for fixing a small gear on the base, a positioning mechanism fixed on the base and located under the camera mechanism, and a fixed base a lifting and lowering mechanism and a picking mechanism located below the positioning mechanism;
- the positioning mechanism is provided with three working positions at intervals, the first working position is directly below the camera mechanism, and the second working position and the third working position are respectively located at two of the first working position and the second working position. side;
- the lifting and lowering mechanism includes a linear sliding track, a lifting cylinder fixedly disposed on the linear sliding track, and a fixing plate fixed on the lifting cylinder, wherein the linear sliding track is used to drive the lifting cylinder to Sliding left or right, the first positioning post and the second positioning post are fixedly fixed on the fixing plate;
- the lifting cylinder drives the first positioning post and the second positioning ascending to position the small gear, and then the linear sliding track is Moving at a third working position, so that the detected small gear located at the first working position is moved to the third working position, and at the same time, the small small to be detected located at the second working position
- the gear is moved to the first working position for detection.
- the positioning mechanism comprises:
- first positioning plate and a second positioning plate disposed in parallel and spaced apart, the first positioning plate and the second positioning plate are configured to carry a small gear, and a gap between the first positioning plate and the second positioning plate is greater than The width of the fixing plate.
- Three first positioning blocks are fixedly disposed on the first positioning plate, and the three first positioning blocks respectively correspond to the first working position, the second working position and the third working position.
- the first positioning block is disposed opposite to the second positioning block, and the first positioning block and the corresponding second positioning block sandwich the small gear.
- the first positioning block includes an arcuate first clamping surface, the first clamping surface is matched with a maximum outer diameter of the small gear, and the second positioning block includes a second curved shape. a clamping surface, the second clamping surface matching a maximum outer diameter of the small gear.
- the detecting device further includes a pick-up mechanism for removing the detected small gear located at the third working position, the pick-up mechanism including a robot arm and a jaw connected to the robot arm.
- the camera mechanism further includes a bracket fixed on the base, a CCTV lens and an LED lamp fixed on the bracket, and the LED lamp is located below the CCTV lens. And a avoiding hole is formed in the LED lamp, and the CCTV lens faces the avoiding hole.
- the present invention places a small pinion gear in the first working position and the second working position respectively before the work, and when the positioning is completed, the invention starts working, and the camera mechanism pairs the small gear located at the first working position. Carry out testing;
- the lifting cylinder drives the first positioning post and the second positioning ascending to position the small gear, and then the linear sliding track moves to the third working position, thereby being in the first work.
- the small gear that has been detected in the position is moved to the third working position, the lifting cylinder is lowered, the small gear that has been detected in the third working position is taken away, and the small gear to be detected is placed in the same direction;
- the small gear to be detected located at the second working position is moved to the first working position for detection;
- the lifting cylinder drives the first positioning post and the second positioning ascending to position the small gear, and then the linear sliding track moves to the second working position, thereby being in the first work.
- the small gear that has been detected in the position is moved to the second working position, the lifting cylinder is lowered, the small gear that has been detected in the second working position is removed, and another small gear to be detected is placed in the same direction;
- the small gear to be detected located at the third working position is moved to the first working position for detection; the above is one cycle.
- the advantages of the present invention are at least:
- the present invention realizes the uninterrupted detection of the small gear by detecting the small gear in the second working position and the third working position or supplementing the small gear to be detected in the second working position and the third working position.
- the camera mechanism is fixed and does not affect the detection accuracy due to the moving state of the lens;
- the small gear is clamped by the first positioning block and the second positioning block to facilitate the removal of the small gear.
- Embodiment 1 is a front elevational view of a small gear detecting device disclosed in Embodiment 1 of the present invention
- FIG. 2 is a front view of a positioning mechanism and a lifting and lowering mechanism disclosed in Embodiment 2 of the present invention
- Embodiment 3 is a plan view of a positioning mechanism disclosed in Embodiment 3 of the present invention.
- an embodiment of the present invention discloses a small gear K detecting device, which comprises a base 11, a camera mechanism 12 for detecting a small gear K on a fixed base 11, and a fixed base 11 a positioning mechanism 13 below the camera mechanism 12, a lifting and lowering mechanism 14 disposed on the fixed base 11 and disposed below the positioning mechanism 13 and the pick-up mechanism 15;
- the positioning mechanism 13 is provided with three working positions at intervals.
- the first working position A is located directly below the camera mechanism 12, and the second working position B and the third working position C are located at the first working position A and the second working position B, respectively. Both sides;
- the lifting and lowering mechanism 14 includes a linear sliding rail 141, a lifting cylinder 142 fixed on the linear sliding rail 141, and a fixing plate 143 fixed on the lifting cylinder 142.
- the linear sliding rail 141 is used to drive the lifting cylinder 142 to the left or Sliding to the right, the first positioning post 144 and the second positioning post 145 are fixedly fixed on the fixing plate 143;
- the lifting cylinder 142 drives the first positioning post 144 and the second positioning elevation to position the small gear K, and then the linear sliding track 141 is moved to the third working position C. Moving, so that the detected small gear K located on the first working position A is moved to the third working position C, and the small gear K to be detected located on the second working position B is moved to the first working position A. Detection.
- the positioning mechanism 13 includes:
- the gap between the 131 and the second positioning plate 132 is larger than the width of the fixing plate 143.
- Three first positioning blocks 133 are fixedly disposed on the first positioning plate 131, and the three first positioning blocks 133 correspond to the first working position A, the second working position B and the third working position C, respectively.
- the first positioning block 133 is disposed opposite to the second positioning block 134, and the first positioning block 133 and the second positioning block 134 corresponding thereto sandwich the small gear K into the two.
- first positioning block 133 includes an arc-shaped first clamping surface 1331
- first clamping surface 1331 matches the maximum outer diameter of the small gear K
- second positioning block 134 includes a curved second clamping surface.
- the second clamping surface 1341 matches the maximum outer diameter of the small gear K.
- the detecting device further comprises a pick-up mechanism 15 for removing the already detected small gear K located at the third working position C, the pick-up mechanism 15 comprising a mechanical arm and a connection to the mechanical arm Claw 151.
- the camera 12 further includes a bracket fixed on the base 11, a CCTV lens 121 fixed on the bracket, and an LED lamp 122.
- the LED lamp 122 is located below the CCTV lens 121, and a avoidance hole is formed in the LED lamp 122, and the CCTV lens is provided. 121 is facing the avoidance hole, and the LED lamp 122 can be used for illumination to prevent the light from being too bad and affecting the detection effect.
- the present invention places a small pinion gear at the first working position A and the second working position B respectively before the work; when the placement is completed, the invention starts working, and the camera mechanism 12 is located at the first working position A.
- the small gear K on the upper side is tested;
- the lifting cylinder 142 drives the first positioning post 144 and the second positioning elevation to position the small gear K, and then the linear sliding track 141 is moved to the third working position C.
- the lifting cylinder 142 is lowered, and the detected small-sized small position C is already detected.
- the gear K is taken away and placed in the good product area or the defective product area, and placed into another small gear K to be detected; at the same time, the small gear K to be detected located at the second working position B is moved to the first Work position A is tested;
- the lifting cylinder 142 drives the first positioning post 144 and the second positioning elevation to position the small gear K, and then the linear sliding track 141 is moved to the second working position B.
- the lifting cylinder 142 is lowered, and the detected small gear K located at the second working position B is taken away. And placed in the good product area or the defective product area, and put another small gear K to be detected; at the same time, the small gear K to be detected located at the third working position C is moved to the first working position A. Detection; the above is a cycle.
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Abstract
一种小型齿轮(K)检测装置,包括底座(11)、固设底座(11)上的用于检测小型齿轮(K)的摄像机构(12)、设于摄像机构(12)下方的定位机构(13)、设于定位机构(13)下方的升降平移机构(14)以及取件机构(15);定位机构(13)上间隔地设置有三个工作位,第一工作位(A)位于摄像机构(12)的正下方,第二工作位(B)和第三工作位(C)分别位于第一工作位(A)的两侧;升降平移机构(14)包括线性滑移轨道(141)、固定设于线性滑移轨道(141)上的升降气缸(142)以及固设升降气缸(142)上的固定板(143),线性滑移轨道(141)用于带动升降气缸(142)向左或向右滑移,固定板(143)上间隔地固设有第一定位柱(144)和第二定位柱(145)。该装置通过不断的移动小型齿轮(K),以便于小型齿轮(K)的检测和取走,而摄像机构(12)是固定不动的,不会因镜头的移动态而影响检测精度。
Description
本发明涉及一种检测装置,具体涉及一种小型齿轮检测装置。
传统的小型齿轮检测装置主要包括齿轮定位治具、设置于所述定位治具上的镜头以及与所述镜头连接并带动镜头移动的移动机构,所述定位治具上设置多个与所述小型齿轮相匹配的凹槽,检测前,将待检测的小型齿轮通过人工或机械手臂放入至定位治具的凹槽内,镜头在移动机构的带动下移动至对应的凹槽的上方进行检测,检测完毕后,人工或者通过机械臂将检测完毕的齿轮放置在不良品区域或者良品区域。
然而传统的小型齿轮具有一定的缺陷:1)小型齿轮为圆形结构,放置于与之形状相同的治具的凹槽内,不易取出;2)移动机构带动镜头移动到相应的凹槽的上方进行检测,镜头因始终处于移动的状态,与产品的对位精度差,从而影响检测精度。
发明内容
为解决上述技术问题,本发明目的在于一种小型齿轮检测装置,从而克服了现有技术的不足。
为达到上述目的,本发明的技术方案如下:
一种小型齿轮检测装置,包括底座、固设所述底座上的用于检测小型齿轮的摄像机构、固设所述底座上并位于所述摄像机构下方的定位机构、固设所述底座上并位于所述定位机构下方的升降平移机构以及取件机构;
所述定位机构上间隔地设置有三个工作位,第一工作位位于所述摄像机构的正下方,第二工作位和第三工作位分别位于所述第一工作位和第二工作位的两侧;
所述升降平移机构包括线性滑移轨道、固定设于所述线性滑移轨道上的升降气缸以及固设所述升降气缸上的固定板,所述线性滑移轨道用于带动所述升降气缸向左或向右滑移,所述固定板上间隔地固设有第一定位柱和第二定位柱;
当位于所述第一工作位上的小型齿轮检测完毕后,所述升降气缸带动所述第一定位柱和第二定位上升将所述小型齿轮进行定位,接着所述线性滑移轨道向所述第三工作位处移动,从而位于所述第一工作位上的已经检测完毕的小型齿轮被移动至所述第三工作位,与此同时,位于所述第二工作位上的待检测的小型齿轮被移动至所述第一工作位进行检测。
作为本发明的优选方案之一,所述定位机构包括:
平行且间隔设置的第一定位板和第二定位板,所述第一定位板和所述第二定位板用于承载小型齿轮,所述第一定位板和第二定位板之间的间隙大于所述固定板的宽度。
间隔地固设于所述第一定位板上的三块第一定位块,三块第一定位块分别对应于第一工作位、第二工作位和第三工作位,
以及,间隔地固设于所述第二定位板上的三块第二定位块,三块第二定位块分别对应于第一工作位、第二工作位和第三工作位,
所述第一定位块与所述第二定位块一一相对设置,所述第一定位块和与与之对应的第二定位块将所述小型齿轮夹于两者之中。
进一步的,所述第一定位块包括弧形的第一夹持面,所述第一夹持面与所述小型齿轮的最大外径相匹配,所述第二定位块包括弧形的第二夹持面,所述第二夹持面与所述小型齿轮的最大外径相匹配。
作为本发明的优选方案之一,该检测装置还包括取件机构,所述取件机构用于将位于所述第三工作位上的已经检测完毕的小型齿轮取走,所述取件机构包括机械臂以及与所述机械臂连接的夹爪。
作为本发明的优选方案之一,所述摄像机构还包括固设于所述底座上的支架、固设于所述支架上的CCTV镜头和LED灯,所述LED灯位于所述CCTV镜头的下方,且所述LED灯上开设有一避让孔,所述CCTV镜头正对所述避让孔。
通过上述技术方案,本发明在工作前,分别在第一工作位和第二工作位放置一个小小齿轮,当放置完毕后,本发明开始工作,摄像机构对位于第一工作位上的小型齿轮进行检测;
当位于第一工作位上的小型齿轮检测完毕后,升降气缸带动第一定位柱和第二定位上升将小型齿轮进行定位,接着线性滑移轨道向第三工作位处移动,从而位于第一工作位上的已经检测完毕的小型齿轮被移动至第三工作位,升降气缸下降,将位于第三工作位上的已经检测完毕的小型齿轮取走,并顺势放入另一个待检测的小型齿轮;与此同时,位于第二工作位上的待检测的小型齿轮被移动至第一工作位进行检测;
当位于第一工作位上的小型齿轮检测完毕后,升降气缸带动第一定位柱和第二定位上升将小型齿轮进行定位,接着线性滑移轨道向第二工作位处移动,从而位于第一工作位上的已经检测完毕的小型齿轮被移动至第二工作位,升降气缸下降,将位于第二工作位上的已经检测完毕的小型齿轮取走,并顺势放入另一个待检测的小型齿轮;与此同时,位于第三工作位上的待检测的小型齿轮被移动至第一工作位进行检测;以上为一个循环。
综上所述,本发明的优点至少在于:
1)本发明通过在第一工作位进行检测,在第二工作位和第三工作位取走已经检测完毕的小型齿轮或者补充待检测的小型齿轮,从而实现小型齿轮的不间断检测。在检测过程中,摄像机构是固定不动的,不会因镜头的移动态而影响检测精度;
2)优选的,通过第一定位块和第二定位块夹持小型齿轮,方便于小型齿轮的取出。
为了更清楚地说明本发明实施例或现有技术中的技术方案,下面将对实施例描述中或现有技术中所需要使用的附图作简单地介绍。
图1为本发明实施例1所公开的一种小型齿轮检测装置的的主视图;
图2为本发明实施例2所公开的定位机构及升降平移机构的主视图;
图3为本发明实施例3所公开的定位机构的俯视图。
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述。
参见图1-3所示,本发明实施例公开了一种小型齿轮K检测装置,包括底座11、固设底座11上的用于检测小型齿轮K的摄像机构12、固设底座11上并设于摄像机构12下方的定位机构13、固设底座11上并设于定位机构13下方的升降平移机构14以及取件机构15;
定位机构13上间隔地设置有三个工作位,第一工作位A位于摄像机构12的正下方,第二工作位B和第三工作位C分别位于第一工作位A和第二工作位B的两侧;
升降平移机构14包括线性滑移轨道141、固定设于线性滑移轨道141上的升降气缸142以及固设升降气缸142上的固定板143,线性滑移轨道141用于带动升降气缸142向左或向右滑移,固定板143上间隔地固设有第一定位柱144和第二定位柱145;
当位于第一工作位A上的小型齿轮K检测完毕后,升降气缸142带动第一定位柱144和第二定位上升将小型齿轮K进行定位,接着线性滑移轨道141向第三工作位C处移动,从而位于第一工作位A上的已经检测完毕的小型齿轮K被移动至第三工作位C,位于第二工作位B上的待检测的小型齿轮K被移动至第一工作位A进行检测。
具体的,定位机构13包括:
支撑柱130、固定于支撑柱130上且平行且间隔设置的第一定位板131和第二定位板132,第一定位板131和第二定位板132用于承载小型齿轮K,第一定位板131和第二定位板132之间的间隙大于固定板143的宽度。
间隔地固设于第一定位板131的三块第一定位块133,三块第一定位块133分别对应于第一工作位A、第二工作位B和第三工作位C,
以及,间隔地固设于第二定位板132上的三块第二定位块134,三块第二定位块134分别对应于第一工作位A、第二工作位B和第三工作位C,
第一定位块133与第二定位块134一一相对设置,第一定位块133和与与之对应的第二定位块134将小型齿轮K夹于两者之中。
进一步的,第一定位块133包括弧形的第一夹持面1331,第一夹持面1331与小型齿轮K的最大外径相匹配,第二定位块134包括弧形的第二夹持面1341,第二夹持面1341与小型齿轮K的最大外径相匹配。
此外,该检测装置还包括取件机构15,取件机构15用于将位于第三工作位C上的已经检测完毕的小型齿轮K取走,取件机构15包括机械臂以及与机械臂连接的夹爪151。
摄像机构12还包括固设于底座11上的支架、固设于支架上的CCTV镜头121和LED灯122,LED灯122位于CCTV镜头121的下方,且LED灯122上开设有一避让孔,CCTV镜头121正对避让孔,LED灯122可以起到照明的目的,防止光线太差而影响检测效果。
通过上述技术方案,本发明在工作前,分别在第一工作位A和第二工作位B放置一个小小齿轮;当放置完毕后,本发明开始工作,摄像机构12对位于第一工作位A上的小型齿轮K进行检测;
当位于第一工作位A上的小型齿轮K检测完毕后,升降气缸142带动第一定位柱144和第二定位上升将小型齿轮K进行定位,接着线性滑移轨道141向第三工作位C处移动,从而位于第一工作位A上的已经检测完毕的小型齿轮K被移动至第三工作位C,升降气缸142下降,将位于第三工作位C上的已经检测完毕的已经检测完毕的小型齿轮K取走并放置在良品区或不良品区,并顺势放入另一个待检测的小型齿轮K;与此同时,位于第二工作位B上的待检测的小型齿轮K被移动至第一工作位A进行检测;
当位于第二工作位B上的小型齿轮K检测完毕后,升降气缸142带动第一定位柱144和第二定位上升将小型齿轮K进行定位,接着线性滑移轨道141向第二工作位B处移动,从而位于第一工作位A上的已经检测完毕的小型齿轮K被移动至第二工作位B,升降气缸142下降,将位于第二工作位B上的已经检测完毕的小型齿轮K取走并放置在良品区或不良品区,并顺势放入另一个待检测的小型齿轮K;与此同时,位于第三工作位C上的待检测的小型齿轮K被移动至第一工作位A进行检测;以上为一个循环。
对所公开的实施例的上述说明,使本领域专业技术人员能够实现或使用本发明。对这些实施例的多种修改对本领域的专业技术人员来说将是显而易见的,本文中所定义的一般原理
可以在不脱离本发明的精神或范围的情况下,在其它实施例中实现。因此,本发明将不会被限制于本文所示的这些实施例,而是要符合与本文所公开的原理和新颖特点相一致的最宽的范围。
Claims (5)
- 一种小型齿轮检测装置,其特征在于,包括底座、固设所述底座上的用于检测小型齿轮的摄像机构、固设所述底座上并位于所述摄像机构下方的定位机构、固设所述底座上并位于所述定位机构下方的升降平移机构以及取件机构;所述定位机构上间隔地设置有三个工作位,第一工作位位于所述摄像机构的正下方,第二工作位和第三工作位分别位于所述第一工作位和第二工作位的两侧;所述升降平移机构包括线性滑移轨道、固定设于所述线性滑移轨道上的升降气缸以及固设所述升降气缸上的固定板,所述线性滑移轨道用于带动所述升降气缸向左或向右滑移,所述固定板上间隔地固设有第一定位柱和第二定位柱;当位于所述第一工作位上的小型齿轮检测完毕后,所述升降气缸带动所述第一定位柱和第二定位上升将所述小型齿轮进行定位,接着所述线性滑移轨道向所述第三工作位处移动,从而位于所述第一工作位上的已经检测完毕的小型齿轮被移动至所述第三工作位,与此同时,位于所述第二工作位上的待检测的小型齿轮被移动至所述第一工作位进行检测。
- 根据权利要求1所述的一种小型齿轮检测装置,其特征在于,所述定位机构包括:平行且间隔设置的第一定位板和第二定位板,所述第一定位板和所述第二定位板用于承载小型齿轮,所述第一定位板和第二定位板之间的间隙大于所述固定板的宽度。间隔地固设于所述第一定位板上的三块第一定位块,三块第一定位块分别对应于第一工作位、第二工作位和第三工作位,以及,间隔地固设于所述第二定位板上的三块第二定位块,三块第二定位块分别对应于第一工作位、第二工作位和第三工作位,所述第一定位块与所述第二定位块一一相对设置,所述第一定位块和与与之对应的第二定位块将所述小型齿轮夹于两者之中。
- 根据权利要求2所述的一种小型齿轮检测装置,其特征在于,所述第一定位块包括弧形的第一夹持面,所述第一夹持面与所述小型齿轮的最大外径相匹配,所述第二定位块包括弧形的第二夹持面,所述第二夹持面与所述小型齿轮的最大外径相匹配。
- 根据权利要求1所述的一种小型齿轮检测装置,其特征在于,该检测装置还包括取件机构,所述取件机构用于将已经检测完毕的小型齿轮取走,所述取件机构包括机械臂以及与所述机械臂连接的夹爪。
- 根据权利要求1所述的一种小型齿轮检测装置,其特征在于,所述摄像机构还包括固设于所述底座上的支架、固设于所述支架上的CCTV镜头和LED灯,所述LED灯位于所述CCTV镜头的下方,且所述LED灯上开设有一避让孔,所述CCTV镜头正对所述避让孔。
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