Bereś Łukasz, Pyrzanowski Paweł
Warsaw University of Technology, Institute of Aeronautics and Applied Mechanics, Nowowiejska str. 24, 00-665 Warsaw, Poland.
BereSolutions Łukasz Bereś, https://www.beresolutions.com/, Warsaw, Poland.
Appl Bionics Biomech. 2021 Jan 23;2021:6654377. doi: 10.1155/2021/6654377. eCollection 2021.
The gantry drive (also, "the gantry") is a mechanism that receives human-generated mechanical energy. The gantry used in a horizontal bike is a type of drive, and it is an alternative to a typical crankset. The purpose of this paper was to compare rotary work generated by the gantry and the crankset. The comparative criterion for the gantry and the crankset was work in rotational motion. The comparison was based on static tests; forces put into both drive systems were measured, and the rotary work was mathematically calculated. The forces put into the drive systems were measured for a man 177 cm tall and of 76 kg mass. To facilitate analysis and tests, the first gear wheel to receive force from the toothed rack (the gantry drive) was assumed to have the same radius as the crank (the crankset drive). Mathematical analysis performed for one full rotation (360°) of the first gear wheel and crankset showed that rotary work for the gantry was 2117.31 J and for the crankset 804.81 J. Ultimately, it was shown that the gantry can better receive mechanical energy from the human than the crankset. This means that a human will be less tired when riding a horizontal bike equipped with the gantry compared to a horizontal bike equipped with the crankset; assuming that in both cases, the bike speed is the same. Additionally, thanks to the use of the gantry drive in a horizontal bike, it is possible to achieve higher speeds compared to a horizontal bike equipped with the crankset.
龙门驱动装置(也称为“龙门”)是一种接收人力产生的机械能的机构。卧式自行车中使用的龙门是一种驱动类型,它是典型曲柄组的替代方案。本文的目的是比较龙门驱动装置和曲柄组产生的旋转功。龙门驱动装置和曲柄组的比较标准是旋转运动中的功。该比较基于静态测试;测量施加到两个驱动系统上的力,并通过数学计算旋转功。对一名身高177厘米、体重76千克的男子施加到驱动系统上的力进行了测量。为便于分析和测试,假设从齿条(龙门驱动装置)接收力的第一个齿轮与曲柄(曲柄组驱动装置)具有相同的半径。对第一个齿轮和曲柄组完整旋转一圈(360°)进行的数学分析表明,龙门驱动装置的旋转功为2117.31焦耳,曲柄组的旋转功为804.81焦耳。最终结果表明,龙门驱动装置比曲柄组能更好地接收来自人体的机械能。这意味着,与配备曲柄组的卧式自行车相比,骑配备龙门驱动装置的卧式自行车时人会更不容易疲劳;假设在两种情况下自行车速度相同。此外,由于在卧式自行车中使用了龙门驱动装置,与配备曲柄组的卧式自行车相比,有可能实现更高的速度。