室内外电动椅的创新设计

Violet Cunningham, Alex Tilton, Dylon Maertens, Shawn Duan
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摘要

残疾人经常与行动不便作斗争,因此人们强烈希望有电动椅这样的设备,它可以提供更多的自由。目前,由于老年人口的激增,美国对轮椅的需求正在增加。通常适合户外使用的电动椅非常昂贵,不能在室内使用,并且不在医疗保险范围内。在这个项目中,通过设计一把既适合室外粗糙地形又适合室内使用的椅子来解决这些问题。该项目是基于客户对电动椅的需求,客户的儿子患有脑瘫,他可以在户外环境中使用电动椅,包括草地,砾石和沙子。之前一个无功能原型的照片被提供给团队作为参考,并执行了一个完整的重新设计来解决所确定的问题。在进行设计之前,我们咨询了各种资源,以全面了解当前可用的技术和设计方法。许多不同的调整方法和特点被考虑,包括一个可调节的框架,轨道,和一个提升系统的路缘安装。整体设计选择的是带有车轮的焊接金属板框架,并确定椅子应该具有可调节的轴距宽度,以提供室外稳定性和室内可操作性。设计的关键考虑因素包括电池寿命、电机扭矩、最大负载、座椅尺寸、车门宽度和成本。最终的规格是基于客户的需求,Kevin Sample,以及对更广泛的消费市场的分析。宽度调整设计采用驱动轮上方的轴,通过滑套与之相连。自动调整是通过线性执行器完成的。驱动轮很大,在低压下运行,以克服障碍和阻尼振动。差动转向与后脚轮相结合,使轮椅的转弯半径小,其长度与标准手动轮椅相当。座椅可以很容易地移除,以访问电池和控制系统,或将椅子装入车辆。一个操纵杆用于控制椅子的速度和方向,而一个单独的瞬时开关用于线性执行器。在整个建模过程中,使用Inventor进行了模拟应力分析。考虑到失效理论和疲劳,进行了任何必要的调整,以确保没有一个部件会失效。由于其耐腐蚀和重量轻,大多数制造部件选用了各种等级的铝。该设备目前处于原型制造阶段。如果它后来上市,一个路边安装装置也可能包括在内;这主要是由于成本和时间的限制。还为一个提篮留出了空间,这个提篮可能会被添加到第一个原型机中。最初的目标是为我们的客户生产一把椅子,尽管该设计可能会在稍后提交给Medicare和ADA批准。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Innovative Design of Indoor-Outdoor Powerchair
People with disabilities often struggle with mobility issues, so there is a strong desire for devices such as powerchairs, which can provide more freedom. Currently, wheelchair demand in the US is increasing due to an upsurge in the elderly population. Often electric powerchairs suitable for outdoor use are extremely expensive, cannot be used indoors, and are not covered by medical insurance. In this project, these problems are addressed through the design of a chair which is suitable for both rough outdoor terrain and indoor use. This project is based on a request for a powerchair which our client’s son, who has cerebral palsy, can use on family trips in outdoor environments including grass, gravel, and sand. A photo of a previous nonfunctional prototype was provided to the team as a reference, and a full redesign was performed to resolve the problems identified. Before proceeding with the design, various sources were consulted to gain a thorough understanding of currently available technology and design methods. Many different adjustment methods and features were considered, including an adjustable frame, tracks, and a lifting system for curb mounting. The overall design selected is a welded sheet metal frame with wheels, and it was determined that the chair should have an adjustable wheelbase width to provide both outdoor stability and indoor maneuverability. Key considerations for the design include battery life, motor torque, maximum load, seat size, door width, and cost. The final specifications are based on the needs of the client, Kevin Sample, as well as an analysis of the wider consumer market. The width adjustment design uses an axle above the driving wheels, which are connected to it by sliding sleeves. Automatic adjustment is accomplished using a linear actuator. The drive wheels are large and run at low pressure to surmount obstacles and damp vibrations. Differential steering combined with rear caster wheels gives the chair a small turning radius, and its length is comparable to that of standard manual wheelchairs. The seat can be easily removed to access the battery and control system or to load the chair into a vehicle. A joystick is used to control the speed and direction of the chair, while a separate momentary switch is used for the linear actuator. Throughout the modeling process, stress analysis was performed using simulations in Inventor. Any necessary adjustments were made to ensure that none of the parts will fail, considering both failure theory and fatigue. Various grades of aluminum were selected for the majority of the manufactured parts, due to their corrosion resistance and light weight. The device is currently in the prototype manufacturing stage. If it is later marketed, a curb mounting device may also be included; this was decided against mainly due to cost and time restrictions. Space has also been left for a carrying basket, which will likely be added to the first prototype. The initial goal is to produce a single chair for our client, although the design may later be submitted for Medicare and ADA approval.
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