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ASSISTING ECONOMIC OPPORTUNITY FOR WOMEN THROUGH APPROPRIATE ENGINEERING DESIGN OF A SOAP-MAKING PROCESS IN UGANDA

机译:通过乌干达制皂工艺的适当工程设计,为妇女创造经济机会

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TERREWODE, a non-governmental organization in Uganda, works to eradicate obstetric fistula in local communities and provide income-generating skills training to the affected women. Obstetric fistula is a traumatic childbirth injury caused by prolonged, obstructed labor and delayed intervention. The condition is preventable with proper medical attention, however, in rural areas women who suffer from the condition are typically disowned from their families and communities. As part of their social reintegration program, TERREWODE provides training for women post-treatment in multiple income-generating skill areas; jewelry making, baking, cooking, sewing, and buying/selling produce. The soap-making idea originated within TERREWODE itself and is intended to create an income stream for the women participating. The scope of this senior capstone project, in collaboration with several organizations, is to increase efficiency, reliability, and repeatability of the soap-making process and explore potential avenues for powering the system in an off-grid setting. A weighted-design matrix was used to make engineering decisions throughout the project. The two primary engineering aspects of this project were the selection of soap-making process (hot vs. cold) and the selection of a mixing device and powering unit. Understanding of appropriate manufacturing technologies in Uganda was necessary as all materials and tools needed to be locally available for success for the project. The hot process requires maintaining the soap mixture at a constant temperature for roughly two hours or until the gel phase occurs. This process allows for a short curing time, permitting the soap to be ready for use sooner. Opposing this, the cold process requires little cook time but a lengthy curing time. Experimental data showed that maintaining a consistent temperature over an extended period of time while using a cookstove is nearly impossible, even in a controlled lab environment. The cold process was selected as a better suited solution for manufacturing due to field conditions and available resources. A mixing device is crucial to the soap-making process. Due to the unreliability of grid-based electricity in the region, the team considered both a human-powered mixing solution and a solar-powered mixing solution. TERREWODE leadership steered the team away from creating a human powered bike mixer for fear of discouraging women to participate, due to potential health and comfort issues. The team selected a solar powered system and has tested a U.S. manufactured prototype. The ultimate goal of this soap-making project is to provide an opportunity for victims and survivors of obstetric fistula to earn a livelihood. The work done by the Oregon State (OSU) mechanical engineering design team, in conjunction with the OSU Anthropology department, University of Oregon College of Business, several private artists and entrepreneurs, and TERREWODE, will provide potential improvements to the process and implementation plan to more effectively and economically create soap.
机译:TERREWODE是乌干达的一个非政府组织,致力于根除当地社区的产科瘘,并为受影响的妇女提供创收技能的培训。产科瘘是分娩时间长,受阻和干预延迟引起的创伤性分娩损伤。该病在适当的医疗护理下是可以预防的,但是,在农村地区,患有该病的妇女通常被剥夺其家庭和社区的生活。作为其社会重返社会方案的一部分,TERREWODE为妇女提供多种可创造收入的技能后培训课程;珠宝制作,烘焙,烹饪,缝纫和购买/销售产品。制作肥皂的想法起源于TERREWODE本身,旨在为参与活动的妇女创造收入来源。与几个组织合作,这个高级顶峰项目的范围是提高肥​​皂制造过程的效率,可靠性和可重复性,并探索在离网环境下为系统供电的潜在途径。加权设计矩阵用于整个项目的工程决策。该项目的两个主要工程方面是肥皂制造工艺的选择(热与冷)以及混合装置和动力装置的选择。必须了解乌干达的适当制造技术,因为要使该项目成功,需要在当地提供所有材料和工具。热过程需要将肥皂混合物在恒定温度下保持大约两个小时,或者直到发生凝胶相为止。此过程可缩短固化时间,从而使肥皂可以更快地准备好使用。与此相反,冷加工需要很少的烹饪时间,但是需要较长的固化时间。实验数据表明,即使在受控的实验室环境中,使用炊具在长时间内保持一致的温度几乎是不可能的。由于现场条件和可用资源的原因,冷加工被选为更适合制造的解决方案。混合装置对于肥皂制造过程至关重要。由于该地区电网电力的可靠性,该团队同时考虑了人力混合解决方案和太阳能混合解决方案。由于潜在的健康和舒适性问题,TERREWODE领导层领导团队避免创建人力自行车搅拌机,以免鼓励女性参加比赛。该小组选择了太阳能供电系统,并测试了美国制造的原型。这个肥皂制造项目的最终目标是为产科瘘的受害者和幸存者提供一个谋生的机会。俄勒冈州(OSU)机械工程设计团队与俄勒冈州立大学人类学系,俄勒冈大学商学院,几位私人艺术家和企业家以及TERREWODE一起完成的工作将为该流程和实施计划提供潜在的改进更有效,更经济地制造肥皂。

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