Reimagining bathing for the future with reused industrial materials
What if an old industrial jam vat could be the core of your future bathing experience? Designer Ross Stevens transforms this possibility with “Sustainable Decadence v2.0,” a project weaving together artificial intelligence, 3D printing, and discarded objects to create a bath prototype for 2050. This environmentally conscious initiative demonstrates how digital manufacturing can morph reused materials into something extraordinary.


Ross Stevens Innovates: A Creative Fusion of AI, 3D Printing, and Everyday Rituals
Sustainable Decadence v2.0 is an extension of Stevens’ earlier work, Sustainable Decadence v1.0 from 2011. It seeks to redefine mid-century modernism for 2050, through integrating various evolved technologies with daily rituals like bathing. The designer aims to make industrial waste valuable again, using architectural-scale 3D printing to bridge gaps between found objects and new architecture. This integration is shaped into a seamless blend of old and new.
For more on pioneering architectural design, explore Snøhetta’s ambitious plans for Seoul’s Hangang River, bringing ecology and culture together in a transformative way.

The role of artificial intelligence is pivotal. It identifies opportunities for material reuse and generates designs for the manufacturing process. AI’s inclusion highlights its potential as a collaborative designer in modern architecture, adapting traditional rituals with reduced environmental footprints. Stevens’ approach reveals how he modernizes the traditional use of materials.

Reused objects and 3D printing: Crafting a unique bathing environment
The project’s foundation includes a stainless-steel jam vat, a ventilation pipe, a mismatched window, and balustrade glass scraps. These elements shape the bathing space, united by 3D-printed stairs, roofs, and enclosures. Stevens molds these disparate components into a cohesive architectural marvel, maintaining the individuality of each element while establishing a unified spatial system.

A 3D-printed pivoting roof adjusts from open-air to sheltered conditions, offering protection and isolation depending on the weather. This structural pivot is a testament to the intricate interplay between reused items and digital fabrication.

Custom prints adapt seamlessly to recycled materials
The project utilizes custom 3D-printed stairs and balustrades crafted to fit around the reused vat. Printed in PETG and the balustrade is reinforced with two continuous 16 mm nylon ropes and epoxy, these components showcase how digital precision facilitates integration without the need for standardization. Through these innovations, Stevens once again demonstrates how he revolutionizes traditional construction methods.

The project rigorously tests these elements under challenging conditions, such as weather exposure, proving their durability. Such innovations point to a future where large-scale 3D printing supports adaptable reuse in architecture.

Paving the way for further architectural innovation
As a prototype, Sustainable Decadence v2.0 breaks new ground in how recycled materials can be combined with 3D printing and AI. This exploration might lead to fully 3D-printed buildings, with digital fabrication and AI playing major roles in future construction models. The way Stevens advances the use of technology in architecture indicates a promising future.

Conclusion: A vision for adaptable architecture
Ultimately, Ross Stevens’ project not only revitalizes discarded industrial items but also paves a path for how we might live and engage with our spaces in the future. With each component tested and intentionally designed, it offers a fresh perspective on sustainable architecture. The phrase “ross stevens transforms” is not just a statement but a testament to his innovative approach in redefining spaces.





Source: designboom.com
Frequently asked questions
How does Ross Stevens use industrial scraps in his project?
Ross Stevens uses industrial scraps like a stainless-steel jam vat, a ventilation pipe, a mismatched window, and balustrade glass scraps to shape the bathing space. These components are integrated with 3D-printed elements to create a unified architectural design.
What role does artificial intelligence play in the project?
Artificial intelligence identifies opportunities for material reuse and generates designs for the manufacturing process. Its inclusion highlights its potential as a collaborative designer in modern architecture, adapting traditional rituals with reduced environmental footprints.
What materials are used in the project’s 3D printing?
The project utilizes PETG for custom 3D-printed stairs and balustrades, which are reinforced with two continuous 16 mm nylon ropes and epoxy. These materials facilitate integration with recycled elements without the need for standardization.
