Please use this identifier to cite or link to this item: http://hdl.handle.net/10397/118216
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dc.contributorDepartment of Mechanical Engineering-
dc.creatorLu, JJ-
dc.creatorZeng, FC-
dc.creatorZhao, TY-
dc.creatorQi, WH-
dc.creatorYan, G-
dc.creatorZhang, WM-
dc.creatorCheng, L-
dc.date.accessioned2026-03-23T08:22:08Z-
dc.date.available2026-03-23T08:22:08Z-
dc.identifier.issn1674-7348-
dc.identifier.urihttp://hdl.handle.net/10397/118216-
dc.language.isoenen_US
dc.publisherScience in China Pressen_US
dc.rights© Science China Press 2026en_US
dc.rightsThis is the accepted version of the article: Lu, JJ., Zeng, FC., Zhao, TY. et al. Load-position decoupled quasi-zero stiffness vibration isolation via translation-scaling coordinated transformation. Sci. China Phys. Mech. Astron. 69, 244511 (2026). https://dx.doi.org/10.1007/s11433-025-2873-4. The original publication is available at www.scichina.com and www.springerlink.com.en_US
dc.subjectDecoupled adjustmenten_US
dc.subjectLoad mismatchen_US
dc.subjectPosition mismatchen_US
dc.subjectQuasi-zero stiffnessen_US
dc.subjectVibration isolationen_US
dc.titleLoad-position decoupled quasi-zero stiffness vibration isolation via translation-scaling coordinated transformationen_US
dc.typeJournal/Magazine Articleen_US
dc.identifier.volume69-
dc.identifier.issue4-
dc.identifier.doi10.1007/s11433-025-2873-4-
dcterms.abstractThe performance sensitivity of quasi-zero-stiffness (QZS) isolators to load-position mismatches poses significant challenges and hinders their practical implementation. Herein, a translation-scaling coordinated transformation method is proposed for decoupled adjustment of the rated load and equilibrium position. By coordinating translation and scaling transformations of negative and positive stiffnesses, the rated load and equilibrium position can be independently tuned, thereby mitigating performance sensitivity under time-varying operating conditions. Based on this method, a load-position decoupled QZS isolator (LPD-QZS) is developed and systematically investigated. A liftable nested magnet-coil pair is employed to generate translatable and scalable negative stiffness, while an end-to-end magnet-coil pair combined with a membrane spring pair provides nonuniformly scalable positive stiffness. Analyses reveal and verify the tunable stiffness characteristics and the effectiveness of the translation-scaling coordinated transformation in achieving load-position decoupled adjustment, as well as the distinctive behavior arising from it. Finally, offline and online tests are conducted to evaluate the robustness of the LPD-QZS under varying rated loads and equilibrium positions. Sweep excitation tests indicate that the LPD-QZS exhibits excellent low-frequency vibration isolation performance, with a low isolation frequency starting from 3.3 Hz, in drastic contrast with the degraded performance without load-position decoupled adjustment under load-position mismatches. Significantly, through translation-scaling coordinated transformation, the LPD-QZS preserves its QZS characteristic across various applied loads and operating positions, highlighting its potential for practical engineering applications, particularly in multi-leg QZS platforms.-
dcterms.accessRightsopen accessen_US
dcterms.bibliographicCitationScience China. Physics, mechanics and astronomy, Apr. 2026, v. 69, no. 4, 244511-
dcterms.isPartOfScience China. Physics, mechanics and astronomy-
dcterms.issued2026-04-
dc.identifier.scopus2-s2.0-105028398528-
dc.identifier.artn244511-
dc.description.validate202603 bcjz-
dc.description.oaAccepted Manuscripten_US
dc.identifier.SubFormIDG001314/2026-02en_US
dc.description.fundingSourceOthersen_US
dc.description.fundingTextThe authors gratefully acknowledge the support of the National Natural Science Foundation of China (Grant Nos. U2530208, 12302020), Fundamental and Interdisciplinary Disciplines Breakthrough Plan of the Ministry of Education of China, Fundamental Research Funds for the Central Universities, and Leading Scientific Research Project of China National Nuclear Corporation.en_US
dc.description.pubStatusPublisheden_US
dc.description.oaCategoryGreen (AAM)en_US
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