{"title":"坐标测量机温度误差的研究","authors":"E. B. Iskenderzade, Sh. V. Ahmedova","doi":"10.14489/td.2023.10.pp.054-059","DOIUrl":null,"url":null,"abstract":"Coordinate measuring machines are widely used for technological control of geometric parameters of the surface of various parts in many branches of industrial production. For coordinate measurements of high-precision surfaces, instrumental sources of error can be minimized if the axes of the controlled object are located on the same axis of the reference scale of the comparator or parallel to it. However, in all schemes of construction of coordinate measuring machines, the Abbe principle is violated, which leads to the appearance of a measurement error, which, moreover, increases with the increase in the overall dimensions of the coordinate machine. It is determined that the total error can be determined taking into account two factors: the maximum allowable error calculated without taking into account the temperature variations of the measured object itself; the temperature change of the measured object. It is shown that the resulting error of coordinate measuring machines can be investigated on the basis of the optimization problem of calculating the optimal form of the function of the temperature dependence of the object on time. It is shown that the resulting error integrated in time will reach a minimum value if the temperature dependence functions of the measured object T(t) and the coefficient of thermal expansion α(t) change synchronously in time. Therefore, in order to minimize the error of coordinate measuring machines from changes in time of such indicators as T and α must occur synchronously, i.e. their change in time must satisfy the corresponding certain condition. To quantify the gain in optimizing measurements, we will conduct a model study. To estimate the gain in reducing the error, two model functions have been compiled, the integrals of which, according to a certain condition, must be equal to the integral of the calculated coupling function. It is shown that according to the calculation, the lowest estimate of the reduction of the measurement error with the proposed optimization will be 4.5 %.","PeriodicalId":432853,"journal":{"name":"Kontrol'. Diagnostika","volume":"1 1","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2023-10-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"INVESTIGATION OF THE TEMPERATURE ERROR OF COORDINATE MEASURING MACHINES\",\"authors\":\"E. B. Iskenderzade, Sh. V. 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It is determined that the total error can be determined taking into account two factors: the maximum allowable error calculated without taking into account the temperature variations of the measured object itself; the temperature change of the measured object. It is shown that the resulting error of coordinate measuring machines can be investigated on the basis of the optimization problem of calculating the optimal form of the function of the temperature dependence of the object on time. It is shown that the resulting error integrated in time will reach a minimum value if the temperature dependence functions of the measured object T(t) and the coefficient of thermal expansion α(t) change synchronously in time. Therefore, in order to minimize the error of coordinate measuring machines from changes in time of such indicators as T and α must occur synchronously, i.e. their change in time must satisfy the corresponding certain condition. To quantify the gain in optimizing measurements, we will conduct a model study. To estimate the gain in reducing the error, two model functions have been compiled, the integrals of which, according to a certain condition, must be equal to the integral of the calculated coupling function. It is shown that according to the calculation, the lowest estimate of the reduction of the measurement error with the proposed optimization will be 4.5 %.\",\"PeriodicalId\":432853,\"journal\":{\"name\":\"Kontrol'. Diagnostika\",\"volume\":\"1 1\",\"pages\":\"\"},\"PeriodicalIF\":0.0000,\"publicationDate\":\"2023-10-01\",\"publicationTypes\":\"Journal Article\",\"fieldsOfStudy\":null,\"isOpenAccess\":false,\"openAccessPdf\":\"\",\"citationCount\":\"0\",\"resultStr\":null,\"platform\":\"Semanticscholar\",\"paperid\":null,\"PeriodicalName\":\"Kontrol'. 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引用次数: 0
摘要
坐标测量机被广泛应用于许多工业生产领域中各种零件表面几何参数的技术控制。在对高精度表面进行坐标测量时,如果被控对象的轴线位于比较仪基准刻度的同一轴线上或与其平行,则可将仪器误差源降至最低。然而,在所有坐标测量机的构造方案中,阿贝原理都会被违反,从而导致测量误差的出现,而且这种误差会随着坐标机整体尺寸的增加而增大。在确定总误差时可以考虑两个因素:在不考虑被测物体本身温度变化的情况下计算出的最大允许误差;被测物体的温度变化。研究表明,坐标测量机产生的误差可以根据计算物体温度随时间变化的函数的最优形式这一优化问题进行研究。结果表明,如果被测物体的温度依赖函数 T(t) 和热膨胀系数 α(t) 在时间上同步变化,则随时间积分的误差将达到最小值。因此,为了使坐标测量机因 T 和 α 等指标的时间变化而产生的误差最小,它们必须同步发生变化,即它们的时间变化必须满足相应的特定条件。为了量化优化测量的收益,我们将进行模型研究。为了估算减少误差的收益,我们编制了两个模型函数,根据特定条件,这两个函数的积分必须等于计算出的耦合函数的积分。计算表明,通过建议的优化,测量误差减少的最低估计值为 4.5%。
INVESTIGATION OF THE TEMPERATURE ERROR OF COORDINATE MEASURING MACHINES
Coordinate measuring machines are widely used for technological control of geometric parameters of the surface of various parts in many branches of industrial production. For coordinate measurements of high-precision surfaces, instrumental sources of error can be minimized if the axes of the controlled object are located on the same axis of the reference scale of the comparator or parallel to it. However, in all schemes of construction of coordinate measuring machines, the Abbe principle is violated, which leads to the appearance of a measurement error, which, moreover, increases with the increase in the overall dimensions of the coordinate machine. It is determined that the total error can be determined taking into account two factors: the maximum allowable error calculated without taking into account the temperature variations of the measured object itself; the temperature change of the measured object. It is shown that the resulting error of coordinate measuring machines can be investigated on the basis of the optimization problem of calculating the optimal form of the function of the temperature dependence of the object on time. It is shown that the resulting error integrated in time will reach a minimum value if the temperature dependence functions of the measured object T(t) and the coefficient of thermal expansion α(t) change synchronously in time. Therefore, in order to minimize the error of coordinate measuring machines from changes in time of such indicators as T and α must occur synchronously, i.e. their change in time must satisfy the corresponding certain condition. To quantify the gain in optimizing measurements, we will conduct a model study. To estimate the gain in reducing the error, two model functions have been compiled, the integrals of which, according to a certain condition, must be equal to the integral of the calculated coupling function. It is shown that according to the calculation, the lowest estimate of the reduction of the measurement error with the proposed optimization will be 4.5 %.