scholarly journals Imaginary economies: the case of the 3D printer

2020 ◽  
Vol 1 (3) ◽  
pp. 357-370 ◽  
Author(s):  
Jens Schröter

AbstractIn the call for the special issue for the EAEPE Journal, we can find the word “scenario.” The question is if the authors can imagine scenarios in which “potential strategies for the appropriation of existing capitalist infrastructures […] in order to provoke the emergence of post-capitalist infrastructures” can be described. Obviously, the call verges on the border of science fiction—and this is not a bad thing. Diverse strands of media studies and science and technology studies have shown (e.g., Schröter 2004; Kirby 2010; Jasanoff and Kim 2015; McNeil et al. 2017) that not only the development of science and (media) technology is deeply interwoven in social imaginaries about possible outcomes and their implicated futures, but there is a whole theoretical tradition in which societies as such are fundamentally constituted by imaginary relations (Castoriadis 1975/2005). But in all these discussions, one notion very seldom appears: that of an “imaginary economy,” meaning a collectively held system of more or less vague or detailed ideas, what an economy is, how it works, and how it should be (especially in the future; but see the somewhat different usage recently in Fabbri 2018). The aim of the paper is to outline a notion of “imaginary economy” and its necessary functions in the stabilization of a given economy, but even more so in the transformation to another economy—how should a transformation take place if there’s not at least a vague image where to go? Of course, we could also imagine a blind evolutionary process without any imaginary process but that seems not to be the way in which human societies—and economies—work. Obviously a gigantic research field opens up—so in the proposed paper, only one type of “imaginary economy” can be analyzed: It is the field that formed recently around the proposed usages and functions of 3D printing. In publications as diverse as Eversmann (2014) and Rifkin (2014), the 3D printer operates as a technology that seems to open up a post-capitalist future—and thereby it is directly connected to the highly imaginary “replicator” from Star Trek. In these scenarios, a localized omnipotent production—a post-scarcity scenario (see Panayotakis 2011)—overcomes by itself capitalism: But symptomatically enough, questions of work, environment, and planetary computation are (mostly) absent from these scenarios. Who owns the templates for producing goods with 3D printers? What about the energy supply? In a critical and symptomatic reading, this imaginary economy, very present in a plethora of discourses nowadays, is deconstructed and possible implications for a post-capitalist construction are discussed.

MediaTropes ◽  
2020 ◽  
Vol 7 (2) ◽  
pp. i-xvi
Author(s):  
Jordan Kinder ◽  
Lucie Stepanik

In this introduction to the special issue of MediaTropes on “Oil and Media, Oil as Media,” Jordan B. Kinder and Lucie Stepanik provide an account of the stakes and consequences of approaching oil as media as they situate it within the “material turn” of media studies and the broader project energy humanities. They argue that by critically approaching oil and its infrastructures as media, the contributions that comprise this issue puts forward one way to develop an account of oil that further refines the larger tasks and stakes implicit in the energy humanities. Together, these address the myriad ways in which oil mediates social, cultural, and ecological relations, on the one hand, and the ways in which it is mediated, on the other, while thinking through how such mediations might offer glimpses of a future beyond oil.


Materials ◽  
2021 ◽  
Vol 14 (10) ◽  
pp. 2545
Author(s):  
Marcin Hoffmann ◽  
Krzysztof Żarkiewicz ◽  
Adam Zieliński ◽  
Szymon Skibicki ◽  
Łukasz Marchewka

Foundation piles that are made by concrete 3D printers constitute a new alternative way of founding buildings constructed using incremental technology. We are currently observing very rapid development of incremental technology for the construction industry. The systems that are used for 3D printing with the application of construction materials make it possible to form permanent formwork for strip foundations, construct load-bearing walls and partition walls, and prefabricate elements, such as stairs, lintels, and ceilings. 3D printing systems do not offer soil reinforcement by making piles. The paper presents the possibility of making concrete foundation piles in laboratory conditions using a concrete 3D printer. The paper shows the tools and procedure for pile pumping. An experiment for measuring pile bearing capacity is described and an example of a pile deployment model under a foundation is described. The results of the tests and analytical calculations have shown that the displacement piles demonstrate less settlement when compared to the analysed shallow foundation. The authors indicate that it is possible to replace the shallow foundation with a series of piles combined with a printed wall without locally widening it. This type of foundation can be used for the foundation of low-rise buildings, such as detached houses. Estimated calculations have shown that the possibility of making foundation piles by a 3D printer will reduce the cost of making foundations by shortening the time of execution of works and reducing the consumption of construction materials.


2012 ◽  
Vol 18 (3-4) ◽  
pp. 1-17 ◽  
Author(s):  
Mike Michael ◽  
Marsha Rosengarten

In this introduction, we address some of the complexities associated with the emergence of medicine’s bodies, not least as a means to ‘working with the body’ rather than simply producing a critique of medicine. We provide a brief review of some of the recent discussions on how to conceive of medicine and its bodies, noting the increasing attention now given to medicine as a technology or series of technologies active in constituting a multiplicity of entities – bodies, diseases, experimental objects, the individualization of responsibility for health and even the precarity of life. We contrast what feminist theorists in the tradition of Judith Butler have referred to as the question of matter, and Science and Technology Studies with its focus on practice and the nature of emergence. As such we address tensions that exist in analyses of the ontological status of ‘the body’ – human and non-human – as it is enacted in the work of the laboratory, the randomized controlled trial, public health policy and, indeed, the market that is so frequently entangled with these spaces. In keeping with the recent turns toward ontology and affect, we suggest that we can regard medicine as concerned with the contraction and reconfiguration of the body’s capacities to affect and be affected, in order to allow for the subsequent proliferation of affects that, according to Bruno Latour, marks corporeal life. Treating both contraction and proliferation circumspectly, we focus on the patterns of affects wrought in particular by the abstractions of medicine that are described in the contributions to this special issue. Drawing on the work of A.N. Whitehead, we note how abstractions such as ‘medical evidence’, the ‘healthy human body’ or the ‘animal model’ are at once realized and undercut, mediated and resisted through the situated practices that eventuate medicine’s bodies. Along the way, we touch on the implications of this sort of perspective for addressing the distribution of agency and formulations of the ethical and the political in the medical eventuations of bodies.


2018 ◽  
Vol 10 (12) ◽  
pp. 4432 ◽  
Author(s):  
Katharina Helming ◽  
Katrin Daedlow ◽  
Bernd Hansjürgens ◽  
Thomas Koellner

The globally increasing demand for food, fiber, and bio-based products interferes with the ability of arable soils to perform their multiple functions and support sustainable development. Sustainable soil management under high production conditions means that soil functions contribute to ecosystem services and biodiversity, natural and economic resources are utilized efficiently, farming remains profitable, and production conditions adhere to ethical and health standards. Research in support of sustainable soil management requires an interdisciplinary approach to three interconnected challenges: (i) understanding the impacts of soil management on soil processes and soil functions; (ii) assessing the sustainability impacts of soil management, taking into account the heterogeneity of geophysical and socioeconomic conditions; and (iii) having a systemic understanding of the driving forces and constraints of farmers’ decision-making on soil management and how governance instruments may, interacting with other driving forces, steer sustainable soil management. The intention of this special issue is to take stock of an emerging interdisciplinary research field addressing the three challenges of sustainable soil management in various geographic settings. In this editorial, we summarize the contributions to the special issue and place them in the context of the state of the art. We conclude with an outline of future research needs.


Author(s):  
Verma Walker, MLIS

Three-dimensional (3D) printing is opening new opportunities in biomedicine by enabling creative problem solving, faster prototyping of ideas, advances in tissue engineering, and customized patient solutions. The National Institutes of Health (NIH) Library purchased a Makerbot Replicator 2 3D printer to give scientists a chance to try out this technology. To launch the service, the library offered training, conducted a survey on service model preferences, and tracked usage and class attendance. 3D printing was very popular, with new lab equipment prototypes being the most common model type. Most survey respondents indicated they would use the service again and be willing to pay for models. There was high interest in training for 3D modeling, which has a steep learning curve. 3D printers also require significant care and repairs. NIH scientists are using 3D printing to improve their research, and it is opening new avenues for problem solving in labs. Several scientists found the 3D printer so helpful they bought one for their labs. Having a printer in a central and open location like a library can help scientists, doctors, and students learn how to use this technology in their work.


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