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      • AI-Driven Innovation: Transforming the Visual Design Landscape through Generative Tools

        Yuanchen Wu,Jidong Liu,Meile Le 한국HCI학회 2024 한국HCI학회 학술대회 Vol.2024 No.1

        This study delves into the transformative effects of integrating generative Artificial Intelligence (AI) tools in the visual design process, aiming to enhance design methodologies. Through in-depth expert interviews, it underscores AIs significant role in three critical phases: the problem identification and definition phase, and the ideation phase. The findings reveal that AI not only elevates the efficiency and fidelity of the design process but also significantly improves communication between designers and clients. This underscores the potential of AI in fostering a novel, innovative design approach, one that is adaptive and responsive to the evolving trends in the market, thereby setting a new standard in the realm of visual design.

      • Research on Smart Home Interaction in Sleep Scenarios Based on User Needs

        Jidong Liu,Yuanchen Wu,Meile Le 한국HCI학회 2024 한국HCI학회 학술대회 Vol.2024 No.1

        This study explores the interaction methods of smart homes in sleep scenarios based on user needs, aiming to enhance user interaction experience with a user-centric interaction philosophy, and shift the development direction of smart homes from technologydriven to consumer needs-driven. The results indicate that in the sleep aid stage, Focused Interaction is the primary method, supported by Peripheral and Implicit Interactions. During the sleep stage, Implicit Interaction is the main method, supplemented by Peripheral and Focused Interactions. In the awakening stage, a foundation of Peripheral and Implicit Interactions with minimal Focused Interaction aligns more closely with consumer habits. This model can prevent the blind development of new interaction methods in smart homes within sleep scenarios, reducing the occurrence of unnecessary or unreasonable human-machine interactions.

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        Experimental study on the combined effects of obstacles and local water mist on gas explosion for maritime safety

        Zhang Bin,Li Zhuoran,Xia Yuanchen,Shi Jihao,Zhang Jinnan,Wang Boqiao,Yu Jiahang,Qu Yanxu,Chen Li,Lin Yejin,Wu Wanqing 대한조선학회 2022 International Journal of Naval Architecture and Oc Vol.14 No.1

        A variety of experimental configurations including different water mist obstacles, are used to investigate the combined effects of obstacles and water mist upon the gas explosion. The results demonstrate the 8 mm water mist can significantly inhibit the deflagration, while both 45 mm and 80 mm water mists exhibit the opposite effect under all the locally distributed positions of water spray nozzle without obstacles inside the vessel. When considering the obstacles, the 45 mm water mist starts to mitigate the deflagration and its mitigation effect is more significant than that induced by the 8 mm water mist. What's more, the 80 mm water mist can slow down the flame propagation speed while it would still lead to the gas explosion. Additionally, there remains unchanged about the effect of locally spraying 8 mm water mist upon deflagration at the initial stage of flame development as varying the position of obstacles, while the effects of mitigating deflagration by 45 mm and 80 mm water mist are decreased. The results will make contributions to design the arrangement of equipment and water mist configuration on the offshore platform or NG-fueled ship's engine room so as to mitigate the gas explosion accident.

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        Characterization and Application to Fiber Reinforced Composite of Catechol/polyethyleneimine Modified Polyester Fabrics by Musselinspiration

        Yuan Chen,Xiaoqing Wu,Junfu Wei,Hailiang Wu 한국섬유공학회 2020 Fibers and polymers Vol.21 No.11

        In order to nondestructively prepare polyamine modified polyethylene glycol terephthalate (PET) fabric, codepositionof catechol and polyethyleneimine onto PET fiber was conducted by the means of mussel-inspired method. Thesurface morphology, composition of woven fabric were investigated by FESEM and ATR-FTIR, XPS, respectively, whoseresults demonstrated successful modification has taken place on PET fiber surface. The TG-DSC data proved that the meltingtemperature and decomposition temperature increased from 253.78 oC and 394.08 oC to 255.01 oC and 398.21 oC,respectively. The surface polarity was characterized through the dynamic contact angle. The results indicated that the fabricdisplayed optimal surface properties at the PEI-CA mass ratio of 1:1. The modified PET fabric was utilized to prepare thefiber reinforced epoxy composite and its mechanical performances including tensile, flexural and short beam shear strengthwere evaluated. The obtained results indicated that the interlaminar shear strength (ILSS) has been significantly improved by57.02 %. The novel way to modify fabrics has great potential in recycling waste fabric for preparing fiber reinforcedcomposite.

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