In light of Poland’s innovation performance level being below 70% of the EU average, open innovation can be a key path for innovation capacity increase. This paper explores the readiness of students in Poland for open innovation (OI). The study is based on a survey of a sample of 500 students using the Computer-Assisted Web Interview research technique. The main aim of this paper is to investigate Polish students’ attitude to open innovation—in particular in terms of social product development, crowdsourcing, crowdfunding, and the sharing economy—to assess the state-of-the-art and identify challenges. Students are selected as the target group because they are open-minded, eager to use new solutions, and will soon enter the business sector to either become the staff of companies or set up their own startups or SMEs. However, the study shows that Polish students, if they use the OI-based platforms at all, use them passively. The key barriers identified within this study are a lack of knowledge about the open innovation paradigm, its elements and opportunities, and an issue of trust. Therefore, a change of mindset, the adjustment of universities’ curricula, and the development of open innovation culture are critical.
Regulations, depletion of natural resources and changing customer demands are putting pressure on manufacturing companies to consider environmental issues in the development of new products. Companies are using PLM systems to manage the product lifecycle, but the current generation of these systems is not adequately adapted to product sustainability issues. The research results presented in this article are intended to support two target groups: academia and industry. The main scientific objective is to provide a systematic method for selecting and evaluating sustainability indicators related to the various phases of automotive lifecycle management. The main application goal is to support the industry in its pursuit of greener development by identifying which sustainability indicators are relevant to each phase of the product lifecycle. As a result, the key green indicators related to the automotive industry in line with the GreenPLM concept are identified together with their assignment to the elements of the car’s beginning-of-life stages, as well as their potential data sources. This paper introduces the concept of GreenPLM and its future application possibilities.
The Circular Economy (CE) is a priority topic for various stakeholders such as politicians, scientists, and industry. However, despite the significant interest in CE, there is still a lack of a framework explaining how manufacturing companies willing to become circular adapt their existing business model. The concept of this work is based on the use of Information Technologies such as the well-known and long-proven Product Lifecycle Management (PLM) solutions in the implementation and maintenance of the CE concept to reduce the consumption of primary raw materials, increase employment rates, and reduce environmental damage. This paper aims to assess the feasibility and effectiveness of using the PLM approach to implement the CE concept. The authors selected the most common and effective PLM functionalities and then assessed them to support selected components of the CE concept using qualitative and quantitative methods. The performed assessment and the inter-relation matrix of benefits developed on its basis allowed for pointing out the feature combinations that would bring the best outcome. The conducted study proved that the implemented and properly working PLM solution could simultaneously support CE concepts. PLM functionalities such as (1) product development, (2) transparency, and (3) value-maximizing with the combination of CE functional areas of (1) personalization, (2) made to order, and support turned out to be particularly effective. This study contributes to ensuring an effective and quick process of implementing CE concept in manufacturing companies and moreover opens further research ideas in bringing the Circular Economy to life.
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