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11.
介绍了一种螺旋万分尺的结构设计。该万分尺的微分筒采用双螺纹,两螺纹的螺旋方向相同,螺距不同。采用V型槽和V型块精确定位来增加量程。测量最小刻度可达0.001 mm,读数精度达0.0001 mm。万分尺采用纯机械结构,结构原理简单,制造安装方便。  相似文献   
12.
The online measurement of wet gas with extremely-low liquid loading (Lockhart-Martinelli parameter lower than 0.02) remains a challenge. In this study, three types of throttle devices, Venturi, orifice plate and cone, are compared experimentally with air-water two-phase flow in a horizontal pipe of inner diameter of 50 mm. High-precision correlations are established to measure the gas and liquid flowrates via a single throttle device. Results show that the two-phase mass flow coefficient (K) of the three throttle devices all increase linearly with the liquid densiometric Froude number and the K correlations are established respectively to correct the gas mass flowrate deviation. The pressure loss ratio (δ) for Venturi is sensitive and monotonous to the liquid loading, which contributes to the high accuracy of liquid flowrate measurement. By incorporating the K correlations, both the gas and liquid mass flowrates can be predicted precisely. The relative error of the gas mass flowrate predicted by the Venturi is within ±2.0% at 95% confidence level, and that of the liquid mass flowrate is within ±15% at 90% confidence level.  相似文献   
13.
Transient dynamics of tapping mode atomic force microscope (AFM) for critical dimension measurement are analyzed. A simplified nonlinear model of AFM is presented to describe the forced vibration of the micro cantilever-tip system with consideration of both contact and non-contact transient behavior for critical dimension measurement. The governing motion equations of the AFM cantilever system are derived from the developed model. Based on the established dynamic model, motion state of the AFM cantilever system is calculated utilizing the method of averaging with the form of slow flow equations. Further analytical solutions are obtained to reveal the effects of critical parameters on the system dynamic performance. In addition, features of dynamic response of tapping mode AFM in critical dimension measurement are studied, where the effects of equivalent contact stiffness, quality factor and resonance frequency of cantilever on the system dynamic behavior are investigated. Contact behavior between the tip and sample is also analyzed and the frequency drift in contact phase is further explored. Influence of the interaction between the tip and sample on the subsequent non-contact phase is studied with regard to different parameters. The dependence of the minimum amplitude of tip displacement and maximum phase difference on the equivalent contact stiffness, quality factor and resonance frequency are investigated. This study brings further insights into the dynamic characteristics of tapping mode AFM for critical dimension measurement, and thus provides guidelines for the high fidelity tapping mode AFM scanning.  相似文献   
14.
溜井测量具有一定的隐蔽性和不确定性,测量时有相当的危险性,如何对溜井的空间形态特征和冒落状况等进行量化评判,是所有矿山面临的难题。本文介绍了三维激光扫描技术的作业流程,给出了点云数据处理的过程和方法,并以安徽开发矿业有限公司3#主溜井测量为例进行数据采集和处理分析,建立了主溜井的三维立体模型,计算得到了主溜井需要修复的体积,为溜井的安全治理和维修设计提供了可靠的数据依据。实践结果表明了三维激光扫描技术在溜井测量中应用的可行性和优越性。  相似文献   
15.
When we speak about capacitance moisture meters for bulk materials we have to face with different values of dielectric permittivity for different bulk materials in dehydrated state, what causes a method error that can be named ‘type uncertainty’. Besides, different varieties of the same material have different values of dielectric permittivity, which depend from geographical origin, processing conditions etc. It can be hardly predicted automatically and type uncertainty can be compensated only in separate situations with the help of preliminary calibration. Main tasks of the research are to develop new comparison principle of moisture measurement with better accuracy due to effective compensation of physical, chemical and granulometric composition influence on the result of moisture measurement, develop new primary and secondary instrument transducers. Moisture sensor consists of four measuring capacitors. Two of them should be filled with a sample, which moisture content should be determined, and other pair of measuring capacitors should be filled with a same substance, but previously dehydrated. Mathematical models, developed to take into account granulometric composition of a bulk material were used to carry out a comparison analysis for three types of instrument measuring transducers. Obtained results proved that suggested principle of moisture measurement provides effective compensation of granulometric composition influence. Developed measuring principle had been experimentally tested what helped to confirm that it provides two times better compensation of different physical and chemical composition for different materials in comparison with the direct comparison method.  相似文献   
16.
BEPCⅡ加速器的束流位置测量系统(BPM)模拟电子学经过十余年的运行逐渐老化,故障率上升,亟需进行升级改造。本文根据该需求,自行设计了基于BEPCⅡ系统参数的数字BPM电子学系统,内容包括模拟信号处理电子学、数字信号处理电子学、BPM固件算法逻辑、数据获取软件以及系统测试等多个部分。设计的数字BPM电子学系统经实验板级性能测试、实验室系统测试以及在线束流测试,结果表明该系统能满足BEPCⅡ装置对束流位置测量的需求。  相似文献   
17.
陈希雅  赵颖  蔡晓裕  顾冰菲 《纺织学报》2020,41(11):136-142
为提高女性裤装的合体性与舒适性,采用三维测量法、图像测量法及手工测量法相结合的方式,对236名18~25岁的青年女性腿部形态进行测量,获取20个相关特征变量;通过主成分因子分析得到影响腿部形态的主要特征因子,通过聚类分析得到青年女性腿部形态的分类结果;最后结合膝曲角的正负归纳出各类腿部形态的辨别规则并进行辨别验证。研究得出:影响腿部形态的主要特征因子有水平围度因子、长度因子、小腿围度差因子、腿部曲度因子、腿部轮廓因子和大腿围度差因子;人体腿部形态可分成圆体型、稍扁体型和扁体型3类;以大腿宽厚比、大腿根围膝围比、大小腿长比及膝曲角4个变量建立腿部形态分类规则。  相似文献   
18.
将习近平总书记“精准扶贫” 的重要思想应用于高等学校教学辅导答疑工作中, 明确了高校教师辅导答疑工 作的目的、内容和措施。针对大学生在学习、生活过程中遇到的各种问题以及个性化需求, 将辅导答疑的类型分成 5 种形式, 实施精准辅导答疑, 提高人才培养质量。  相似文献   
19.
针对环境温度变化对双色红外测温准确度的影响,基于双色比色红外测温原理,分析了非调制双色红外测温的误差来源,提出一种新的快门式非调制双色红外测温方法。在光路中增加快门及其控制模块,控制快门闭合,将测得系统偏移作为补偿项,补偿实际测温时因温度变化给测量带来的误差。仿真结果表明,在600~1 100℃的测温范围内,长时间使用的无快门非调制红外双色测温的精度严重劣化,而快门式非调制双色红外测温的准确度大幅提高,可达到±0.5%。  相似文献   
20.
Stress measurements are required to prevent collapse accidents of structures. Surface SH‐wave acoustoelasticity can measure principal stress difference nondestructively and easily. Currently, surface SH‐wave acoustoelasticity can measure with high precision using a T‐type surface SH‐wave sensor in ideal environments such as in the laboratory. However, in actual environments, it cannot be measured with high precision due to change in the temperature of the specimen. In this paper, temperature dependence of surface SH‐wave acoustoelastic constants was verified to investigate the influence of specimen temperature on surface SH‐wave acoustoelasticity. In addition, the measuring system of surface SH‐wave acoustoelasticity using a cross T‐type surface SH‐wave sensor to reduce the influence of specimen temperature was developed.  相似文献   
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