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CHI2025顶会

XR-penter: Material-Aware and In Situ Design of Scrap Wood Assemblies

Ramya Iyer, Mustafa Doga Dogan, Maria Larsson, Takeo Igarashi

2025年份
14被引次数
3顶会引用

摘要

Fig. 1. (a) XR-penter enables the user to cut virtual material and assemble it into a design considering the properties of physical materials and the surrounding environment. (b) XR-penter's spatial modeling interface. (c) Scrap-wood chair designed in our system.

Woodworkers have to navigate multiple considerations when planning a project, including available resources, skill-level, and intended effort. Do it yourself (DIY) woodworkers face these challenges most acutely because of tight material constraints and a desire for custom designs tailored to specific spaces. To address these needs, we present XR-penter, an extended reality (XR) application that supports in situ, material-aware woodworking for casual makers. Our system enables users to design virtual scrap wood assemblies directly in their workspace, encouraging sustainable practices through the use of discarded materials. Users register physical material as virtual twins, manipulate these twins into an assembly in XR, and preview cuts needed for fabrication. We conducted a case study and feedback sessions to demonstrate how XR-penter supports improvisational workflows in practice, the type of woodworker who would benefit most from our system, and insights on integrating similar spatial and material considerations into future work.

CCS Concepts: • Human-centered computing → Human computer interaction (HCI).

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