UNIFORMITY MEASUREMENT METHOD FOR CURVED DISPLAY USING IMAGE LUMINANCE MEASURING DEVICE

Author(s):  
Youngseok Seo ◽  
KyungHwan Choi ◽  
DongHwan Jung ◽  
SinMyung Choi ◽  
SeungHyun Cho
2013 ◽  
Vol 581 ◽  
pp. 22-25 ◽  
Author(s):  
Ladislav Morovič ◽  
Juraj Vagovský ◽  
Ivan Buranský

The paper deals with utilization of active triangulation method for shape investigation of cutting inserts after wear. For measuring of cutting insert shape a method using the structured light (fringe projection) was used. As a measuring device the optical 3D scanner GOM ATOS II TripleScan SO was used. Cutting inserts with different shapes was measured. With the measurement method mentioned in the paper the accurate shape of the cutting insert can be captured. From the 3D model moreover it is possible to measure the geometrical properties as well as tool wear, plastical deformation, build-up-edge, corner damage and chipping of cutting insert.


2013 ◽  
Vol 770 ◽  
pp. 267-271
Author(s):  
Yun Wan ◽  
Ping Zhao ◽  
Sheng Fu Cui ◽  
Yin Fei Yang ◽  
Liang Li

A micro-displacement, strain and stress measurement method based on electronic speckle pattern interferometry (ESPI) technique is proposed, and the measuring device is designed. Two symmetric laser beams are illuminated on the optical rough surface of a steel cantilever beam, and then speckle images are photographed by CCD. A series of filtering processing is carried out for subtracted images and FEM analysis is performed. Using the speckle fringe patterns finally achieved, displacement, strain and stress can be calculated. By comparing displacement, strain and stress measured by this method with simulation results, feasibility and engineering application value of this method have been proved.


2021 ◽  
Author(s):  
Xin Jin ◽  
Ruilin Gao ◽  
Chaojiang Li ◽  
Zhong peng Zheng ◽  
zhen Zuo

Abstract As flexible joint is a typical low-rigidity micro part, which have four narrow neck structures evenly distributed around its central axis, it is necessary to strictly control the dimensional accuracy of the narrow necks to improve the consistency of stiffness. However, the radius of the arc of the narrow necks is less than 2mm, and the thickness of thinnest part of the necks formed by two adjacent arcs is only tens of microns, which also has sub-micron accuracy requirement. These cross-scale dimensional characteristics and accuracy requirements give rise to extremely difficulty on the measuring process. In this paper, an on-machine measurement method for the semicircular narrow necks was presented and a measuring device was developed based on the comparative principle by making full use of the high linearity characteristic in the small measuring range of the sensor probes. Meanwhile, the on-machine measurement process based on ultra-precision machine tools was also introduced in details. The experiments results show that the uncertainty of the measurement method proposed is less than 0.2µm, and the repeatability is less than 0.1μm, which meet the measuring requirement of flexible joint. Furthermore, the effect of probe position, measurement force, environmental factor and the accuracy of the sensor on total measuring accuracy was analyzed, which could provide further evidences to improve the measuring accuracy. of micro-scale hybrid surface texture.


2013 ◽  
Vol 316-317 ◽  
pp. 1143-1146
Author(s):  
Zheng Xian Wang ◽  
Bao Ren Guo ◽  
Min Zhang ◽  
Jian Yong Yang ◽  
Li Liu

This paper given an online flow measurement method of large diameter pipe and low-head. This method can be applied to measure circulating water flow of thermal power plant. The characteristics of method is that: the measuring device adapted the method to solve the problem of the online flow measurement of circulating water, and to provide the necessary operating parameters for optimal operation of the unit cold-end system.


2021 ◽  
Vol 13 (3) ◽  
pp. 168781402110019
Author(s):  
Haixia Ma ◽  
Zhongxing Li ◽  
Zhidong Wang ◽  
Ruijue Feng ◽  
Gang Li ◽  
...  

To improve the accuracy of braking distance measurement and reduce the impact of human factors on brake risk assessment of escalators, a non-contact braking distance measuring device based on infrared ranging principle is designed. Futher, a quantifiable risk assessment method of brake based on failure mode and effects analysis (FMEA) is propose in this paper. Characteristics and trends of distance changes during emergency braking process of the escalator are theoretically analyzed. To extract, process, and recognize the distance change signals, and finally to realize accurate measurement of the braking distance, a high-speed infrared distance measurement technology is used. Influencing factors of the escalator brake performance are studied. The risk analysis method based on FMEA is used to analyze its failure mode, failure mechanism, and consequences of the failure. A risk index assessment system is constructed and quantified. The test results show that the measurement error of the device designed is 1.6%, which is 1/6 of the traditional measurement method. The repeated measurement error of the device is 1.4%, which is 1/7 of the traditional measurement method. Application results show that the quantifiable risk assessment method quantifies and assigns the risk level according to the weight, which effectively avoids the inconsistent results caused by human bias. The evaluation results are more scientific and reliable.


2013 ◽  
Vol 433-435 ◽  
pp. 877-881
Author(s):  
Ji Yan Zhang ◽  
Bao Yu Hong ◽  
Wen Li Liu ◽  
Tao Geng Zhou

Contrast sensitivity measurement is widely used in clinical ophthalmology to evaluate visual function of the human eye, and of great significance for early diagnosis and identification of ophthalmic diseases. On the basis of contrast sensitivity definition, current measurement method was analyzed. By analyzing the existing principles and shortcomings of the human eye contrast sensitivity methods, a new method for generating observation targets of contrast sensitivity was proposed. By using double optical path design idea with integrating sphere and self-developed brightness adjustment systems, two beams of uniform light with specific luminance could be produced. With subsequent reuse of the optical path, accurate measurement of eye contrast sensitivity could be achieved, and calibration of contrast sensitivity tester widely used in clinical practice could be solved by developing assistant transfer tools. Moreover, output parameters of this method could be precisely adjusted according to the need as a result it ccould achieve real-time control and calibration. The research result has set the foundation for future establishment of visual threshold measuring device which is especially suitable for scientific and experimental research in clinical ophthalmology and metrology.


2011 ◽  
Vol 418-420 ◽  
pp. 1839-1842
Author(s):  
Jian Ye Guo ◽  
Yu Chang Liu ◽  
Zhong Qi Sheng ◽  
Liang Zhao

This paper took a kind of 3-TPT Parallel Machine Tool (PMT) as the object of research, and it mainly researched the measurement method to position coordinates of movable platform in PMT. First the paper introduced the structure of 3-TPT PMT. Then illustrated the device structure and the basic measurement principle for measuring the position coordinates of movable platform. Finally carried on the theoretical analysis to the specific measurement method and established the corresponding mathematics relationship. The measuring device that was presented in this paper had characteristics of direct-viewing measurement relationship, simple structure and low cost etc., and simultaneously the research results of this paper laid a theoretical foundation for improving the movement precision of this PMT and had important practical significance.


2014 ◽  
Vol 971-973 ◽  
pp. 672-675
Author(s):  
Guang Jun Li ◽  
Xue Mei Chen ◽  
Zhi Yong Zhang ◽  
Zheng Da Zhao ◽  
Jun Ma

By analyzing the problems of leakage measurement methods of coupling clamps for aircraft tubing, a new technical solution is proposed based on the gas-liquid volume equivalent replacement principle. The test prototype and dedicated measuring device are developed. The results show that the new measurement method is scientific, safe, reliable and with high accuracy. The measurement method has already been used in the production of various coupling clamps in aircraft tubing.


2012 ◽  
Vol 502 ◽  
pp. 302-305
Author(s):  
Guo De Li ◽  
Shi Wei Wu ◽  
Na Li

Ammonia water has strong absorption ability for CO2, so ammonia absorption method became an important research direction and has a good application prospect. In this study we designed a simple measurement method and measuring device for carbon dioxide absorption capacity by ammonia. The device is commonly used by a simple instrument assembly and modified. The measurement method is simple and convenient, has strong adaptability, no risk, the data is stability, the results are clear.


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