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    Design, Analysis, and Experimental Evaluation of a New Expansion Screw Using Compliant Mechanisms

    Source: Journal of Mechanical Design:;2025:;volume( 147 ):;issue: 009::page 93303-1
    Author:
    Gan, Jinqiang
    ,
    Chen, Feng
    ,
    Ge, Ming-Feng
    ,
    Lu, Qinghua
    ,
    Chen, Weilin
    DOI: 10.1115/1.4068017
    Publisher: The American Society of Mechanical Engineers (ASME)
    Abstract: This article presents a design solution for a new expansion screw based on compliant mechanisms. The new expansion screw applies distributed compliant mechanisms, rhombus amplification mechanisms, and right circular flexure hinges to it. The distributed compliant mechanism realizes the contraction, the rhombus amplification mechanism realizes its expansion and fixation, and the right circular flexure hinges are used to reduce friction. The forces analysis of the new expansion screw when it works is used to calculate its maximum load-bearing capacity. A series of simulations and experiments are carried out to demonstrate the practicability and efficiency of the new expansion screw. In experiments, the new expansion screws using acrylonitrile butadiene styrene (ABS) and nylon plastic are fabricated, respectively, and the expansion screws using nylon plastic already available on the market are set as a comparison. The experimental results indicate that the structure of the new expansion screws is better than the existing expansion screws on the market, and the corresponding overall bearing capacity is more than double than the expansion screw already available on the market. The new expansion screw realizes a significant increase in its bearing capacity and shows a strong application prospect.
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      Design, Analysis, and Experimental Evaluation of a New Expansion Screw Using Compliant Mechanisms

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    http://yetl.yabesh.ir/yetl1/handle/yetl/4308853
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    contributor authorGan, Jinqiang
    contributor authorChen, Feng
    contributor authorGe, Ming-Feng
    contributor authorLu, Qinghua
    contributor authorChen, Weilin
    date accessioned2025-08-20T09:47:19Z
    date available2025-08-20T09:47:19Z
    date copyright3/13/2025 12:00:00 AM
    date issued2025
    identifier issn1050-0472
    identifier othermd-24-1767.pdf
    identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4308853
    description abstractThis article presents a design solution for a new expansion screw based on compliant mechanisms. The new expansion screw applies distributed compliant mechanisms, rhombus amplification mechanisms, and right circular flexure hinges to it. The distributed compliant mechanism realizes the contraction, the rhombus amplification mechanism realizes its expansion and fixation, and the right circular flexure hinges are used to reduce friction. The forces analysis of the new expansion screw when it works is used to calculate its maximum load-bearing capacity. A series of simulations and experiments are carried out to demonstrate the practicability and efficiency of the new expansion screw. In experiments, the new expansion screws using acrylonitrile butadiene styrene (ABS) and nylon plastic are fabricated, respectively, and the expansion screws using nylon plastic already available on the market are set as a comparison. The experimental results indicate that the structure of the new expansion screws is better than the existing expansion screws on the market, and the corresponding overall bearing capacity is more than double than the expansion screw already available on the market. The new expansion screw realizes a significant increase in its bearing capacity and shows a strong application prospect.
    publisherThe American Society of Mechanical Engineers (ASME)
    titleDesign, Analysis, and Experimental Evaluation of a New Expansion Screw Using Compliant Mechanisms
    typeJournal Paper
    journal volume147
    journal issue9
    journal titleJournal of Mechanical Design
    identifier doi10.1115/1.4068017
    journal fristpage93303-1
    journal lastpage93303-10
    page10
    treeJournal of Mechanical Design:;2025:;volume( 147 ):;issue: 009
    contenttypeFulltext
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