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The Numerical Investigation of Thin-Walled Beams with Modified C-Sections 修正c截面薄壁梁的数值研究
Pub Date : 2018-10-01 DOI: 10.2478/amtm-2018-0010
Michał Grenda
Abstract Demand for thin-walled structures has been increasing for many years. Cold- formed, thin-walled channel beams are the subject of presented research. The local elastic buckling and limit load of these beams subjected to pure bending are investigated. This study includes numerical investigation called the Finite Strip Method (FSM). The presented results give a deep insight into behaviour of such beams and may be used to validate analytical models. The number of works devoted to the theory of thin-walled structures has been steadily growing in recent years. It means that is an increasing interest in practical methods of manufacturing cold-formed thin-walled beams with complicated cross-sections, including also beams with web stiffeners. The ratio of transverse dimensions of beam to its wall-thickness is high, therefore, thin-walled beams are prone to local buckling that may interact with other buckling modes. The stability constraints should be always considered when using cold-formed thin-walled beams.
摘要近年来,对薄壁结构的需求不断增加。冷成形薄壁槽钢是本文的研究对象。研究了这些梁在纯弯曲作用下的局部弹性屈曲和极限荷载。这项研究包括称为有限条法(FSM)的数值研究。所提出的结果对这种梁的行为有了深入的了解,并可用于验证分析模型。近年来,致力于薄壁结构理论的著作数量稳步增长。这意味着人们对制造具有复杂截面的冷弯薄壁梁的实用方法越来越感兴趣,包括带有腹板加强筋的梁。梁的横向尺寸与壁厚之比很高,因此薄壁梁容易发生局部屈曲,并可能与其他屈曲模式相互作用。在使用冷弯薄壁梁时,必须考虑稳定性约束。
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引用次数: 0
The effect of changes in depth of cut and cutting speed of CNC toolpaths on turning process performance 数控刀具路径切削深度和切削速度的变化对车削加工性能的影响
Pub Date : 2018-08-01 DOI: 10.2478/amtm-2018-0007
K. Jarosz, P. Nieslony, Piotr Löschner
Abstract In this article, a novel approach to computer optimization of CNC toolpaths by adjustment of cutting speed vcand depth of cut apis presented. Available software works by the principle of adjusting feed rate on the basis of calculations and numerical simulation of the machining process. The authors wish to expand upon this approach by proposing toolpath optimization by altering two other basic process parameters. Intricacies and problems related totheadjustment of apand vcwere explained in the introductory part. Simulation of different variant of the same turning process with different parameter values were conducted to evaluate the effect of changes in depth of cut and cutting speed on process performance. Obtained results were investigated on the account of cutting force and tool life. The authors have found that depth of cut substantially affects cutting force, while the effect of cutting speed on it is minimal. An increase in both depth of cut and cutting speed affects tool life negatively, although the impact of cutting speed is much more severe. An increase in depth of cut allows for a more significant reduction of machining time, while affecting tool life less negatively. On the other hand, the adjustment of cutting speed helpsto reduce machining time without increasing cutting force component values and spindle load.
本文提出了一种通过调整切削速度、切削深度来优化数控刀具轨迹的新方法。现有软件的工作原理是在加工过程的计算和数值模拟的基础上调节进给速度。作者希望通过提出通过改变另外两个基本工艺参数来优化刀具路径的方法来扩展这种方法。在导论部分,我们解释了与价格调整相关的复杂性和问题。通过对同一车削过程中不同参数值的不同变型进行仿真,评价切削深度和切削速度的变化对工艺性能的影响。从切削力和刀具寿命的角度对所得结果进行了分析。研究发现,切削深度对切削力的影响较大,而切削速度对切削力的影响较小。切削深度和切削速度的增加都会对刀具寿命产生负面影响,但切削速度的影响要严重得多。增加切削深度可以显著减少加工时间,同时减少对刀具寿命的负面影响。另一方面,切削速度的调整有助于在不增加切削力分量值和主轴负荷的情况下减少加工时间。
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引用次数: 1
Open loop control of piezoelectric tube transducer 压电管换能器的开环控制
Pub Date : 2018-06-01 DOI: 10.2478/amtm-2018-0004
F. Stefanski, B. Minorowicz
Abstract This paper is focused on the open loop control of a piezoelectric tube actuator, hindered by a strong hysteresis. The actuator was distinguished with 22 % hysteresis, which hinders the positioning of piezoelectric actuator. One of the possible ways to solve this problem is application of an accurate analytical inversed model of the hysteresis in the control loop. In this paper generalized Prandtl-Ishlinskii model was used for both modeling and open loop control of the piezoelectric actuator. Achieved modeling error does not exceed max. 2.34 % of the whole range of tube deflection. Finally, the inverse hysteresis model was applied to the control line of the tube. For the same input signal (damped sine 0.2 Hz) as for the model estimation the positioning error was max. 4.6 % of the tube deflection. Additionally, for a verification reason three different complex harmonic functions were applied. For the verification functions, still a good positioning was obtained with positioning error of max.4.56 %, 6.75 %and5.6%of the tube deflection.
针对压电管作动器存在的强磁滞问题,研究了其开环控制问题。该作动器存在22%的滞回,影响了压电作动器的定位。解决这一问题的可能方法之一是在控制回路中应用精确的滞回解析逆模型。本文采用广义Prandtl-Ishlinskii模型对压电驱动器进行建模和开环控制。实现的建模误差不超过max。占整个管挠度范围的2.34%。最后,将逆滞回模型应用于管的控制线。对于与模型估计相同的输入信号(衰减sin0.2 Hz),定位误差最大。4.6%的管挠度。此外,为了验证,应用了三种不同的复调和函数。对于验证功能,定位误差最大分别为4.56%、6.75%和5.6%,仍然获得了较好的定位效果。
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引用次数: 6
Austenite transformation simulation for a controlled rolling processing technology development 奥氏体相变模拟为控制轧制加工技术的发展奠定了基础
Pub Date : 2018-06-01 DOI: 10.2478/amtm-2018-0006
V. Kaverinsky
Abstract Using an originally-developed computer model and appropriate software the impact of deformation on austenite phase transformation in low carbon alloyed steel was carried out. The computer simulation takes into account an impact of the deformation degree and takes into account non-constant cooling rate. That makes it useful for the development of thermal and deformation technological processes development. Based on the simulation results a technology of controlled rolling of low carbon steel alloyed by carbide forming elements (Nb, V, Ti) was developed. The proposed technique allows production of rolled steel sheets with high strength and plastic properties, as well as high impact strength in normal and low temperatures.
利用自主开发的计算机模型和相应的软件,研究了变形对低碳合金钢奥氏体相变的影响。计算机模拟考虑了变形程度的影响,并考虑了非恒定冷却速率。这对热变形工艺的发展有一定的参考价值。在此基础上,提出了一种碳化物形成元素(Nb, V, Ti)合金化低碳钢的控制轧制技术。所提出的技术允许生产具有高强度和塑性性能的轧制钢板,以及在正常和低温下的高冲击强度。
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引用次数: 0
The influence of chemical composition on the dimensions 化学成分对尺寸的影响
Pub Date : 2018-06-01 DOI: 10.2478/amtm-2018-0005
Konrad Łyduch, W. Gęstwa
Abstract The paper presents the influences of nanofluids, which are used in hardening process, to dimension changes, hardness and microstructure of hardened construction of steel samples. An analysis was also carried out with the use of English methods of cooling abilities of nanofluids environments based on water, solid nanoparticles of Al2O3 and ammoniac water. The results of this experiment show, that only one of specific dimensions of cooled samples, in the distilled water, changed for about 9%, but when using nanofluids this change was smaller. The hardness of alloy materials got a few percent more when nanofluids were used in comparasion to using the distilled water. The gained results allow to conclude the positive influence of nanofluids on parameters of the hardened materials.
摘要本文研究了淬火过程中纳米流体对钢试样硬化组织的尺寸变化、硬度和显微组织的影响。采用英文方法分析了基于水、固体纳米Al2O3和氨态水的纳米流体环境的冷却能力。实验结果表明,在蒸馏水中,只有一个特定尺寸的样品发生了约9%的变化,但在使用纳米流体时,这种变化较小。与蒸馏水相比,纳米流体可使合金材料的硬度提高几个百分点。所得结果可以得出纳米流体对硬化材料参数的积极影响。
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引用次数: 0
Testing of beveled crimp connections made on a prototype stand 在原型架上测试斜面卷曲连接
Pub Date : 2018-06-01 DOI: 10.2478/amtm-2018-0003
Nikodem Wróbel, Michał Rejek, G. Królczyk
Abstract The purpose of this study is to form and test inseparable tight joints, commonly used in the construction of heat exchangers, by crimping operation on designed prototype stand. Crimped joints are made by tools in form of cones with two types of shapes, each of the designed tools have got identical forming angle. This study uses two types of connecting blocks and plates, differing in diameters of hole and flange. Elaboration contains a case study of joints being made by the stand, which in addition to the crimping operations for some cases were glued or brazed. The article presents the features of the formed joints, by examining them by destructive testing: Micrography, tensile strength test, and non-destructive testing: Leakage test. The examined elements have been made of aluminum 6060, which is well suited to indirect or direct operations of forming joints for all kinds of coolers or condensers. Elaborated tests and studies in this study allowed to state, that joining the connection block to plate with the small diameter, was more energy-consuming than in sample sets with bigger diameter, use of glue increasing the strength of the joints by 20%, significant strength increase can be obtained after mechanical clinching with brazing operation or modification of geometrical shape of the jaws
摘要本研究的目的是在设计的原型架上,通过压接操作,形成并测试换热器结构中常用的不可分紧密接头。压接接头是用两种形状的锥形刀具加工而成的,所设计的两种刀具具有相同的成形角度。本研究采用两种连接块和板,孔和法兰的直径不同。细化包含了一个案例研究的关节是由立场,除了一些情况下的压接操作粘或钎焊。本文介绍了成形接头的特点,并对其进行了破坏性检测:显微检查、拉伸强度测试和无损检测:泄漏测试。所检查的元件由铝6060制成,它非常适合于各种冷却器或冷凝器的间接或直接成形接头的操作。本研究中详细的试验和研究表明,小直径连接块与板的连接比大直径样品组的连接能耗大,使用胶水可使连接块的强度提高20%,通过钎焊操作进行机械粘接或修改钳口几何形状可使连接块的强度显著提高
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引用次数: 2
Diagnosis of edge condition based on force measurement during milling of composites 复合材料铣削过程中基于力测量的边缘状态诊断
Pub Date : 2018-04-21 DOI: 10.2478/amtm-2018-0002
Agata Felusiak, P. Twardowski
Abstract The present paper presents comparative results of the forecasting of a cutting tool wear with the application of different methods of diagnostic deduction based on the measurement of cutting force components. The research was carried out during the milling of the Duralcan F3S.10S aluminum-ceramic composite. Prediction of the toolwear was based on one variable, two variables regression Multilayer Perceptron(MLP)and Radial Basis Function(RBF)neural networks. Forecasting the condition of the cutting tool on the basis of cutting forces has yielded very satisfactory results.
本文介绍了基于切削力分量测量的不同诊断推导方法在刀具磨损预测中的应用对比结果。该研究是在Duralcan F3S铣削过程中进行的。10S铝-陶瓷复合材料。刀具磨损预测基于单变量、双变量回归多层感知器(MLP)和径向基函数(RBF)神经网络。基于切削力预测刀具状态的方法取得了令人满意的效果。
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引用次数: 2
Comparison of various tool wear prediction methods during end milling of metal matrix composite 金属基复合材料立铣削过程中刀具磨损预测方法的比较
Pub Date : 2018-02-07 DOI: 10.2478/amtm-2018-0001
Martyna Wiciak, P. Twardowski, S. Wojciechowski
Abstract In this paper, the problem of tool wear prediction during milling of hard-to-cut metal matrix composite Duralcan™ was presented. The conducted research involved the measurements of acceleration of vibrations during milling with constant cutting conditions, and evaluation of the flank wear. Subsequently, the analysis of vibrations in time and frequency domain, as well as the correlation of the obtained measures with the tool wear values were conducted. The validation of tool wear diagnosis in relation to selected diagnostic measures was carried out with the use of one variable and two variables regression models, as well as with the application of artificial neural networks (ANN). The comparative analysis of the obtained results enable.
针对难切削金属基复合材料Duralcan™铣削过程中刀具磨损预测问题进行了研究。所进行的研究包括测量恒定切削条件下铣削过程中的振动加速度,以及评估侧面磨损。随后,对振动进行了时域和频域分析,并将测量结果与刀具磨损值进行了相关性分析。利用单变量和双变量回归模型以及人工神经网络(ANN)的应用,对与选定诊断措施相关的刀具磨损诊断进行了验证。对得到的结果进行比较分析。
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引用次数: 2
Accuracy and repeatability positioning of high-performancel athe for non-circular turning 非圆车削高精度、可重复性定位
Pub Date : 2017-11-27 DOI: 10.1515/amtm-2017-0014
P. Majda, B. Powałka
Abstract This paper presents research on the accuracy and repeatability of CNC axis positioning in an innovative lathe with an additional Xs axis. This axis is used to perform movements synchronized with the angular position of the main drive, i.e. the spindle, and with the axial feed along the Z axis. This enables the one-pass turning of non-circular surfaces, rope and trapezoidal threads, as well as the surfaces of rotary tools such as a gear cutting hob, etc. The paper presents and discusses the interpretation of results and the calibration effects of positioning errors in the lathe’s numerical control system. Finally, it shows the geometric characteristics of the rope thread turned at various spindle speeds, including before and after-correction of the positioning error of the Xs axis.
摘要:本文研究了新型加x轴车床数控轴定位的精度和可重复性。该轴用于执行与主驱动器(即主轴)的角位置同步的运动,并与沿Z轴的轴向进给同步。这使得非圆形表面、绳索和梯形螺纹以及旋转工具(如齿轮切削滚刀等)的表面一次车削成为可能。本文介绍并讨论了车床数控系统中定位误差的结果解释及标定效果。最后给出了在不同主轴转速下转动的钢丝绳螺纹的几何特性,包括x轴定位误差修正前后的几何特性。
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引用次数: 0
Influence of Water on Tribological Properties of Wood-Polymer Composites 水对木-聚合物复合材料摩擦学性能的影响
Pub Date : 2017-08-28 DOI: 10.1515/amtm-2017-0013
O. Mysiukiewicz, T. Sterzyński
Abstract Utilization of ecological materials for appliances and products is one of the ways to achieve the goal of sustainability.Wood-polymer composites as a cheap, lightweight, durable and esthetic material has gained attention of scientists, engineers and consumers alike. Different kinds of polymeric matrices, plants used as the fillers, chemical of physical modifiers and processing technologies have already been widely studied. Nonetheless, surprisingly few information on Wood-Polymer Composites’ tribology can be found. This paper is an attempt to fill this gap. Polypropylene-and poly(lactic acid)-based composites with varying wood flour content have been analyzed. The Brinell’s hardness and coefficient of friction of the samples have been determined. In order to evaluate the influence of the moisture content on the tribological and mechanical properties of the composites, the samples have also been aged in water. The investigation revealed that polymeric composites filled with wood flour can present favorable coefficient of friction, compared to the neat resins. The results of our study can establish a good starting point for further investigation.
摘要利用生态材料生产家电产品是实现可持续发展目标的途径之一。木聚合物复合材料作为一种廉价、轻便、耐用和美观的材料,受到了科学家、工程师和消费者的广泛关注。不同种类的聚合物基质、用作填料的植物、化学或物理改性剂以及加工技术已经得到了广泛的研究。然而,令人惊讶的是,很少有关于木材聚合物复合材料摩擦学的信息可以找到。本文试图填补这一空白。对不同木粉含量的聚丙烯基和聚乳酸基复合材料进行了分析。测定了试样的布氏硬度和摩擦系数。为了评估含水率对复合材料摩擦学和力学性能的影响,还对样品进行了水中时效处理。研究表明,与纯树脂相比,填充木粉的聚合物复合材料具有良好的摩擦系数。我们的研究结果可以为进一步的研究建立一个良好的起点。
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引用次数: 15
期刊
Archives of Mechanical Technology and Materials
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