Glass finished product surface detection machine for glass processing based on surface contact
A technology of surface contact and detection machine, which is applied in the direction of measuring devices, material inspection products, and preparation of test samples. It can solve the problems of affecting the detection results, the limitation of detection methods, and increasing labor intensity, so as to improve accuracy and clean up. Effect, practical effect
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Embodiment 1
[0039] see Figure 1-Figure 4 As shown, this embodiment provides a glass product surface inspection machine for glass processing based on surface contact, at least including:
[0040] The support frame 100, the support frame 100 is a hollow structure, the bottom of the inner cavity of the support frame 100 is provided with a mounting frame 110, and the bottom of the mounting frame 110 is provided with a detector 111. Below the system, the image acquisition module receives the trigger signal given by the intelligent control system, and the CCD industrial camera captures the image of glass surface defects. The image data is collected into the computer memory through the image acquisition card, and the image processing software developed is used to realize the detection of glass surface defects. In the end, the detection results are output through the output device, so as to quickly detect the defects on the surface of the glass product. The inner edge of the support frame 100 is...
Embodiment 2
[0044] In order to make the finished glass products enter the interior of the storage rack 210 conveniently and save labor intensity, the difference between this embodiment and Embodiment 1 is that please refer to Figure 5 shown, where:
[0045] There is a cavity 224 at the bottom of the inner cavity of the dust removal frame 220, and a transmission roller 2241 is installed inside the cavity 224. The end of the transmission roller 2241 is connected with a transmission motor 2242. The transmission motor 2242 is embedded in the inner wall of the cavity 224, and can be inserted into the glass product. When the dust removal frame 220 is inside, the lower surface of the glass product is attached to the outer wall of the transmission roller 2241, and the transmission motor 2242 is powered on to make it work, and the transmission roller 2241 is driven by the output shaft of the transmission motor 2242 to rotate inside the cavity 224, so that the transmission roller 2241 fits the bot...
Embodiment 3
[0047] In order to accurately fix the limit position of the finished glass product inside the rack 210 and improve the stability of subsequent detection, the difference between this embodiment and Embodiment 1 is that, please refer to Figure 6-Figure 7 shown, where:
[0048] Both sides of the storage rack 210 are provided with fixing devices 230. The fixing device 230 includes a turntable 231. Two symmetrical adjustment grooves 232 are provided on the surface of the turntable 231. An adjustment plate 233 is provided for sliding inside the adjustment groove 232. The ends of the adjustment plate 233 are fixed. The clamping plate 2330 is connected, and when the glass product enters the interior of the storage rack 210, the edge of the glass product passes between the two clamping plates 2330, and when the glass product is completely located at the inner center of the storage rack 210, the adjustment plate 233 Sliding inside the adjustment groove 232 drives the clamping plate 233...
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Abstract
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