176 resultados para semi-finished product


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Arkit: A4 [B2].

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The purpose of this thesis is to develop an environment or network that enables effective collaborative product structure management among stakeholders in each unit, throughout the entire product lifecycle and product data management. This thesis uses framework models as an approach to the problem. Framework model methods for development of collaborative product structure management are proposed in this study, there are three unique models depicted to support collaborative product structure management: organization model, process model and product model. In the organization model, the formation of product data management system (eDSTAT) key user network is specified. In the process model, development is based on the case company’s product development matrix. In the product model framework, product model management, product knowledge management and design knowledge management are defined as development tools and collaboration is based on web-based product structure management. Collaborative management is executed using all these approaches. A case study from an actual project at the case company is presented as an implementation; this is to verify the models’ applicability. A computer assisted design tool and the web-based product structure manager, have been used as tools of this collaboration with the support of the key user. The current PDM system, eDSTAT, is used as a piloting case for key user role. The result of this development is that the role of key user as a collaboration channel is defined and established. The key user is able to provide one on one support for the elevator projects. Also the management activities are improved through the application of process workflow by following criteria for each project milestone. The development shows effectiveness of product structure management in product lifecycle, improved production process by eliminating barriers (e.g. improvement of two-way communication) during design phase and production phase. The key user role is applicable on a global scale in the company.

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Through the ages technological changes have created new challenges and possibilities to develop products, services, processes or organizations. Management of the technology concerns all of those activities from technical invention to commercial application. Management of the technologic innovation process is the more challenging the more technology is involved in a process. Researches of the technological innovations are seldom concern the implementation of early phases and especially in product manufacturing company. Still there are research and development activities. Therefore the purpose of this research is to develop the pattern for implementation of research and development phases in technological innovation process. This study focuses the main elements of the technological innovation management and main obstacles and drivers. This study also focuses decision making and the other influencing elements of the decision making. The research design of this explorative research applies a qualitative research strategy where a case study method is utilized to collect and analyze the data. The study consisted of a single case to utilize of technological ideas and possibilities. The selected case company was the product manufacturing company which didn’t have own technological research and development organization. The case was a process which was analyzed from two different perspectives. The main unit of analysis was the whole process. The data collecting method of this study included semi-structured and open interviews, participant-observations and experimental tests. Analyzing the case data relies on the theoretical propositions of the framework based on the previous research. Based on this research the key elements of the research and development phases in technological innovation process were technical expertise and preliminary investigation. The obstacles and drivers in the R&D phases by the case were management of the whole process and resources and knowing objectives of process and learning during the process. In addition to the result of the research was the feature of decision making to optimize used time. The findings of this study gave further insight implementation of the technological innovation in the product manufacturing company. The research was based a single case which means the results cannot be generalized to different companies or industry fields. Therefore the results generalizing require further research with multiple researchers.

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Teknologiset muutokset ovat kautta aikojen luoneet uusia haasteita ja mahdollisuuksia tuotteiden, palveluiden, prosessien tai organisaatioiden kehittämiseen. Teknologian johtaminen tarkoittaa kaikki niitä toimia, joiden avulla teknologisesta keksinnöstä saadaan kaupallinen sovellus. Teknologisen innovaatioprosessin johtaminen on, sitä haasteellisempaa, mitä enemmän siinä on mukana teknologiaa. Harvoin teknologisten innovaatioiden tutkimukset ovat kohdistuneet prosessin varhaisen vaiheen toteutukseen ja erityisesti tuotannolliseen toimintaan keskittyvissä yrityksissä, vaikka kaikissa tuotteita valmistavissa teollisuuksissa tapahtuu tutkimus- ja kehitystyötä. Siksi tämän tutkimuksen tavoitteena on kehittää toimintamalli teknologisen innovaatioprosessin tutkimus- ja kehitysvaiheen toteuttamiselle. Tutkimus keskittyy teknologisen innovaatioprosessin tärkeimpiin elementteihin johtamisen ja prosessin kannalta sekä sen estäviin ja edistäviin tekijöihin. Tutkimuksessa tarkastellaan myös päätöksentekoa ja siihen vaikuttavia tekijöitä. Tutkimus oli kartoittava ja sillä oli laadullinen tutkimusstrategia. Tarkempi tutkimusmenetelmä kerätä ja analysoida tutkimustietoa oli tapaustutkimus. Tämä tutkimus perustui yhteen tapaukseen teknologisten ideoiden ja mahdollisuuksien hyödyntämisestä. Valittu tapausyritys oli tuotteita valmistava yritys, jolla ei ollut varsinaista tutkimus- ja kehitysorganisaatiota teknologian kehittämistä varten. Itse tapaus oli prosessi, jota analysoitiin kahdesta eri näkökulmasta, mutta primääri analysointiyksikkö oli koko prosessi. Aineiston hankintamenetelmät olivat puolistrukturoidut ja avoimet haastattelut, osallistuva havainnointi ja kokeelliset tutkimukset. Aineiston analysointi perustui aikaisemmin tutkimuksen yhteydessä rakennettuun teoreettiseen viitekehykseen. Teknologisen innovaatioprosessin tutkimus- ja kehitysvaiheen tärkeimmät elementit tutkimuksen mukaan olivat oman teknologian asiantuntemus ja esitutkimusvaihe. Tekijät, jotka tutkimuksen mukaan estivät ja edistivät T&K -vaiheen onnistumista, olivat koko prosessin ja resurssien johtaminen sekä tietoisuus prosessin tavoitteista ja prosessin aikainen oppiminen. Tutkimuksessa löydettiin myös päätöksentekoon liittyvä ominaisuus optimoida siihen käytettävää aikaa. Tutkimuksen tulokset lisäsivät näkemystä teknologisten innovaatioiden toteuttamisesta tuotteita valmistavassa yrityksessä. Tutkimus perustui yhteen tapaukseen, minkä vuoksi tulokset eivät ole yleistettävissä muihin yrityksiin tai toimialoihin. Tulosten yleistämistä varten tutkimuksia tulisi suorittaa lisää ja käyttää useita tutkijoita.

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The aim of this study was to create an outsourcing process for pharmaceutical product development. This study focuses on two main questions. The first question is “What is the outsourcing process model?” In the second phase key success factors of the outsourcing process are identified. As a result of the literature reviews, a general outsourcing process was created. Transaction cost economics and resource based view were used to derived a theoretical framework to the process by combining the existing processes presented in the literature. The model of process is considered used to the outsourcing broadly. The general outsourcing process was then developed further with the key factors that affect the success of pharmaceutical product development and the interviews of pharmaceutical outsourcing experts. The result of the research was the process consists of seven phases with key activities and expected outputs for each of the phases. In addition, the strategic decision-making framework for outsourcing decision in pharmaceutical product development is giving as well as the tools for selecting supplier and preparing structured contract. This study also gives some recommendations for managing the outsourcing process.

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The aim of this thesis was to study network structures and modularity among biofuel heating system manufacturers in the Finnish bioenergy sector by utilizing the perspectives of numerous Finnish bioenergy specialists. The study is qualitative due to the fact that the research material was gathered with semi-structured theme interviews during May and June 2010. The research methodology used in the thesis combines conceptual and action-oriented approach. Networks, value nets, and modularity were studied from different perspectives. Three network and platform strategies were discovered and a general network structure was formed. Moreover, benefits and disadvantages of networks and modularity among biofuel heating system manufacturers were illustrated. The analysis provides a comprehensive perception of the industry. The results of the research were constructed by implementing existing theories into practice. Also future recommendations for the biofuel heating system manufacturers were given. The results can be considered to be beneficial because the number of previous studies about the subject is relatively small. The reliability of the study is eminent because the number of the interviews was inclusive.

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The aim of the study was to create an easily upgradable product costing model for laser welded hollow core steel panels to help in pricing decisions. The theory section includes a literature review to identify traditional and modern cost accounting methodologies, which are used by manufacturing companies. The theory section also presents the basics of steel panel structures and their manufacturing methods and manufacturing costs based on previous research. Activity-Based costing turned out to be the most appropriate methodology for the costing model because of wide product variations. Activity analysis and the determination of cost drivers based on observations and interviews were the key steps in the creation of the model. The created model was used to test how panel parameters affect the costs caused by the main manufacturing stages and materials. By comparing cost structures, it was possible to find the panel types that are the most economic and uneconomic to manufacture. A sensitivity analysis proved that the model gives sufficiently reliable cost information to support pricing decisions. More reliable cost information could be achieved by determining the cost drivers more accurately. Alternative methods for manufacturing the cores were compared with the model. The comparison proved that roll forming can be more advantageous and flexible than press brake bending. However, more extensive research showed that roll forming is possible only when the cores are designed to be manufactured by roll forming. Due to that fact, when new panels are designed consideration should be given to the possibility of using roll forming.