Usual mathematical method for creating trochoids is based on a solid rule that requires a pure rolling motion of a circle along another one. In this vision a trochoid defined as a traced path by an attached point (a non-conceptive issue) to a pure rolling circle! Except for using the restriction of pure rolling motion for a circle beside using the attached points to it, authors of this article have not found other conceptive solutions for this issue in the references of mathematics and physics. This article provides a novel conceptive solution for creating trochoids and ellipses based on combination of rolling and sliding motions of a circle along another one! Therefore, we have not to define a trochoid as a path that is swept by an attached point to a pure rolling circle along another circle! Instead, a trochoid can be defined as a path is swept by a point on the circumference of a circle that is doing rolling and sliding motions uniformly along another one! Also, this article presents two different methods to implement a mathematical simulation for a moving circle does uniform simultaneous rolling and sliding motions along another one! With the help of this innovative solution, it is possible to define ellipses and trochoids as closed plane curves that can be generated through the combination of rolling and sliding motions [ellipse is created through the combination of two co-polarized rotational motions with different commensurable angular frequencies (in two different modes!)]. This article presents a novel idea titled by Virtual Rotating Circles Technique (VRCT) that can be implemented by Mathematical Simulator Machine.
翻译:传统的摆线生成数学方法基于一条严格规则,即要求一个圆沿另一个圆作纯滚动运动。在此视角下,摆线被定义为附着于纯滚动圆上某点(一个非概念性问题)所描绘的轨迹!除了使用纯滚动运动的限制条件以及圆上附着点的方法外,本文作者在数学与物理参考文献中尚未发现针对此问题的其他概念性解决方案。本文提出了一种新颖的概念性解决方案,基于一个圆沿另一个圆的滚动与滑动组合运动来生成摆线与椭圆!因此,我们无需将摆线定义为纯滚动圆上某点沿另一圆扫过的路径!相反,摆线可定义为作均匀滚动与滑动运动的圆周上一点沿另一圆扫过的路径!此外,本文提出了两种不同的数学模拟方法,用于实现一个圆沿另一圆作均匀同步滚动与滑动运动!借助这一创新方案,椭圆与摆线可被定义为能够通过滚动与滑动组合运动生成的封闭平面曲线[椭圆通过两种同极化的旋转运动(处于两种不同模式!)以不同可公度角频率组合而产生]。本文提出了一种名为虚拟旋转圆技术(VRCT)的新颖思想,该技术可通过数学模拟机予以实现。