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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
1

Utvecklingsprojekt Easy Load

Gyllensvärd, Dan, Welander, Andreas January 2009 (has links)
<p>In order to increase the independence in everyday life of the elderly population, we have developed a lifting aid for loading in the private car trunk. Independence from outside assistance affects self-esteem in a positive direction and can help increase the quality of life for a large group of individuals. As people age and experience changes in performance, it is important that aids and support is available, particularly to reduce the experience of aging and it’s increasing physical limitations. The aim was to develop a function prototype characterized by simplicity, which facilitates loading of the private car</p><p>trunk.</p><p>The project was conducted at the request of Autoadapt AB, which is one of the leading</p><p>actors in car adaptations for individuals with disablilities. A function prototype of the product Easy Load has been produced through dynamic product development and its</p><p>various tools. In an attempt to meet the requirements of simplicity and ease of use,</p><p>concepts such as universal design and usability affected the project.</p><p>In order to find a user need that could form the basis of the project, proceedings began</p><p>with a pre-study that included observations and group interviews of members in a</p><p>pensioner club in Halmstad. The Product development work continued with several</p><p>brainstorming sessions with participants from a number of the university's engineering</p><p>programs. Ideas from the sessions, together with the results from the benchmarking,</p><p>formed the basis for final product design and function. A key requirement was that the</p><p>product could be fitted in sedan car models with easy grips and without any permanent</p><p>fixings.</p><p>Construction of the prototype was made mostly in the University’s mechanical</p><p>workshop, using both self-constructed and sourced components. Stress and installation</p><p>testing and risk analysis pursuant to FMEA highlighted deficiencies that the project</p><p>group sought to adjust. In cases where this did not happen, the project group made</p><p>concrete improvement proposals to simplify further development.</p><p>This project shows that lifting aids products without permanent fixings are possible to develop for use in sedan car models. Specific product criteria have been met through a designed function prototype for loading in the private car trunk.</p>
2

Utvecklingsprojekt Easy Load

Gyllensvärd, Dan, Welander, Andreas January 2009 (has links)
In order to increase the independence in everyday life of the elderly population, we have developed a lifting aid for loading in the private car trunk. Independence from outside assistance affects self-esteem in a positive direction and can help increase the quality of life for a large group of individuals. As people age and experience changes in performance, it is important that aids and support is available, particularly to reduce the experience of aging and it’s increasing physical limitations. The aim was to develop a function prototype characterized by simplicity, which facilitates loading of the private car trunk. The project was conducted at the request of Autoadapt AB, which is one of the leading actors in car adaptations for individuals with disablilities. A function prototype of the product Easy Load has been produced through dynamic product development and its various tools. In an attempt to meet the requirements of simplicity and ease of use, concepts such as universal design and usability affected the project. In order to find a user need that could form the basis of the project, proceedings began with a pre-study that included observations and group interviews of members in a pensioner club in Halmstad. The Product development work continued with several brainstorming sessions with participants from a number of the university's engineering programs. Ideas from the sessions, together with the results from the benchmarking, formed the basis for final product design and function. A key requirement was that the product could be fitted in sedan car models with easy grips and without any permanent fixings. Construction of the prototype was made mostly in the University’s mechanical workshop, using both self-constructed and sourced components. Stress and installation testing and risk analysis pursuant to FMEA highlighted deficiencies that the project group sought to adjust. In cases where this did not happen, the project group made concrete improvement proposals to simplify further development. This project shows that lifting aids products without permanent fixings are possible to develop for use in sedan car models. Specific product criteria have been met through a designed function prototype for loading in the private car trunk.
3

Designing of A Pneumatic Cushion for Supporting Standing and Sitting Process

Yu, Mingyue, Lu, Yixuan January 2018 (has links)
As is known to all, the aging problem becomes more and more serious in recent years. The issues “get into and out of a chair”, from one of the self-care tasks of aging people named Functional mobility in ADLs (Activity of daily livings), need to be solved carefully in efficient ways to help seniors and patients who have physical problems dealing with their daily life. In this previous investigation, the existing products in the market are normally quite heavy and importable. After combined with the advantages of the existing products and some improvements in portability and comfort which is related to human engineering. A Pneumatic Cushion for Supporting Standing and Sitting Process, based on airbag and pneumatic system which has been designed in this thesis, can be used by user who has physical-trouble for standing up and sitting down. Meanwhile, after being assembled with some specific extra components, it can be used as a mobility aid device. For the whole designing process, many relevant article, video sources and websites are referred for the previous researches, including Google Scholar, BTH Digital Library and YouTube. The product was designed and analysed in Inventor 2018 and the fluid dynamic simulation has been done in Abaqus. Studies involved lifting function are selected after the survey about assist appliance and aid appliance market.

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