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Design and Simulation of a Repositioning Device to Enhance The Quality of Life of Bedridden Patients

机译:重新定位装置的设计与仿真,提升卧床患者的生活质量

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Bedridden patients are defined as patients who are confined to the bed due to the inability to move. This leads to a wide range of complications such as pressure ulcers. Pressure ulcers are difficult to heal and require heavy medical attention. A widely used method of treatment is periodical turning of patients by caregivers. This is done to improve blood circulation and decrease the pressure on the skin. The regular turning of the patient causes an increase in caregiver burden. A study has found that 71.1% of caregivers suffer from low back pain as they do their job manually which affects their ability to care for their patients. On the long term, this causes a drastic decrease in the quality of life (QoL) of the patients. Alternative devices to the traditional method of turning are not available in the local market of Palestinian Territories. In this paper, a new design of a repositioning device is presented. The proposed device uses two rollers actuated by electric motors and attached to standard hospital bedding sheets, where the patient lying thereon can be moved as one roller turns. The design is intended to ensure the safety of patients and caregivers, and to fulfill the local market needs. The ease of assembly and disassembly was implemented through design as it improves the quality and reduces costs. The design concept was validated both using hand calculations and Adams simulation software. Both yielded exactly the same results. The device will function properly as long as the sheet moving acceleration does not exceed ≈2650 mm/s^2. Durability is another factor that was considered in the design. A full failure analysis was carried out. Device rollers were identified as the weakest parts. To avoid mechanical failure, a thickness of the rollers was selected. The selection was based on comparing Von Mises stress to the yield strength of materials. To validate the theoretical results, ANSYS simulation was carried out. It showed that a roller of thickness = 5 mm will be durable to expected mechanical loads. The presented design turned out to be sound and functions exactly as required.
机译:由于无法移动,卧床不起的患者被定义为患者被限制在床上。这导致各种并发症,如压力溃疡。压力溃疡难以治愈并需要重良好的医疗。广泛使用的治疗方法是护理人员的周期性转弯。这是为了改善血液循环并降低皮肤的压力。患者的正常转向导致护理人员负担增加。一项研究发现,71.1%的护理人员患有腰痛,因为他们手动完成工作,影响他们为患者提供照顾的能力。从长远来看,这导致患者的生活质量(QOL)的急剧下降。在巴勒斯坦地区的当地市场上没有提供传统的转型方法的替代装置。在本文中,提出了一种重新定位设备的新设计。所提出的装置使用由电动机致动的两个辊,并连接到标准医院床上用品板,其中患者可以作为一个滚子转弯移动。该设计旨在确保患者和护理人员的安全性,并满足当地的市场需求。通过设计实现组装和拆卸的便利性,因为它提高了质量并降低了成本。设计概念使用手动计算和ADAMS仿真软件验证。两者都产生了完全相同的结果。只要纸张移动加速度不超过≈2650mm/ s ^ 2,该设备就能正常运行。耐久性是在设计中考虑的另一个因素。进行全面发生故障分析。器件滚筒被识别为最薄弱的部件。为避免机械故障,选择辊的厚度。该选择是基于比较Von Mises对材料屈服强度的压力。为了验证理论结果,执行ANSYS仿真。它表明,厚度= 5mm的辊将耐用于预期的机械负载。所提出的设计原来就根据需要完全是函数。

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