VA Pittsburgh Healthcare System, Human Engineering Research Laboratories, Pittsburgh, PA, USA.
Rehabilitation Science and Technology, University of Pittsburgh, Pittsburgh, PA, USA.
Disabil Rehabil Assist Technol. 2020 May;15(4):432-441. doi: 10.1080/17483107.2019.1587018. Epub 2019 Mar 25.
Carbon fibre-reinforced polymers have been used in the sporting goods industry for decades, and wheelchairs have incorporated the material since the late 1980s. There is no independently collected data available on carbon fibre-reinforced polymer wheelchairs' performance on the ANSI/RESNA testing standards, however. This study evaluated three full carbon fibre wheelchair specimens to determine their performance versus similar wheelchairs. Testing determined that while the frames survived more testing cycles than any other wheelchair, the casters and rear tires failed similarly to other devices. Overall, due to the purchase cost, the cost benefit of the tested wheelchair model was similar to aluminium wheelchairs.Implications for rehabilitationCarbon fibre wheelchair construction is a viable alternative to aluminium, titanium, or steel construction, and decreasing costs will continue to improve the benefits of carbon fibre over these modelsCarbon fibre wheelchair found to be more durable than aluminium models, but are also much more expensive. The additional cost may be justified for some users that need the increased durability, howeverIncreased durability will reduce the number of repairs and warranty claims, potentially reducing the burden on a wheelchair user, and also improving their ability to travel and participate in their communityThe low weight of carbon fibre wheelchairs may increase the mobility of some users by allowing them to transfer more easily into and out of vehicles and manoeuvre throughout the environment.
碳纤维增强聚合物在体育用品行业已经使用了几十年,自 20 世纪 80 年代末以来,轮椅也开始采用这种材料。然而,目前尚无关于碳纤维增强聚合物轮椅在 ANSI/RESNA 测试标准上性能的独立收集数据。本研究评估了三个全碳纤维轮椅样本,以确定它们与类似轮椅的性能对比。测试结果表明,虽然这些车架比任何其他轮椅都能承受更多的测试循环,但脚轮和后轮与其他设备一样容易出现故障。总的来说,由于购买成本,所测试轮椅模型的成本效益与铝合金轮椅相似。
康复的意义
碳纤维轮椅的结构是对铝、钛或钢结构的可行替代方案,随着成本的降低,碳纤维的优势将继续超过这些模型。
碳纤维轮椅比铝制模型更耐用,但也更昂贵。对于一些需要增加耐用性的用户来说,额外的成本可能是合理的。
增加的耐用性将减少维修和保修索赔的数量,这可能会减轻轮椅使用者的负担,同时也提高他们出行和参与社区活动的能力。
碳纤维轮椅的低重量可能会通过让一些使用者更容易地在车辆内外转移以及在环境中灵活移动,从而提高他们的机动性。