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journal-of-the-mechanics-and-physics-of-solids

Use when targeting the Journal of the Mechanics and Physics of Solids (JMPS) or deciding whether a fundamental solid-mechanics manuscript fits this …

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技能内容

Journal of the Mechanics and Physics of Solids (journal-of-the-mechanics-and-physics-of-solids)

Journal positioning

The Journal of the Mechanics and Physics of Solids (JMPS) is a leading archival

journal for fundamental solid mechanics: constitutive theory, fracture and

damage, micromechanics, instabilities and bifurcation, and the mechanics of soft

and active materials. Its defining expectation is a genuine advance in physical

understanding of how solids deform, fail, or respond — delivered with mathematical

rigor and, where relevant, decisive experimental or computational evidence. JMPS

rewards papers that uncover a mechanism or a governing principle, not papers that

run a finite-element case study of one geometry and report numbers. Breadth is

intentional: plasticity is one of many topics here, alongside elasticity, waves,

contact, and continuum-to-microstructure bridging. This skill is a **fit /

venue-selection / re-framing** tool. It does not replace the journal's current

official author guidelines. Before submitting, re-check the live JMPS Guide for

Authors.

When to trigger

  • The author names JMPS for a solid-mechanics manuscript and wants a fit/framing check.
  • A mechanics paper must be re-framed from "we simulated this structure" into a

general mechanism, model, or principle of solid behavior.

  • The author is deciding between JMPS (broad fundamental solid mechanics) and a

plasticity-centric venue (international-journal-of-plasticity).

  • The author needs JMPS's insight-plus-rigor bar and desk-reject heuristics.

Scope & topic fit

  • Constitutive theory and continuum mechanics: finite-deformation kinematics,

thermodynamically consistent material models, nonlinear elasticity.

  • Fracture, damage, and failure: crack-tip fields, cohesive/phase-field fracture,

fatigue mechanics, and toughening principles with a governing-law contribution.

  • Micromechanics and homogenization: linking microstructure to effective response,

defect mechanics, dislocation and interface mechanics.

  • Instabilities, bifurcation, and pattern formation: buckling, wrinkling,

localization, and post-instability response in structured or soft solids.

  • Mechanics of soft, active, and architected materials: gels, elastomers,

growth/morphogenesis, mechanical metamaterials, coupled multiphysics response.

  • Waves, contact, and adhesion when the contribution is a mechanism or analytical

result, not a parametric simulation sweep.

Method & evidence bar

  • The central object is a mechanism or governing principle of solid behavior,

derived with mathematical care — not a number produced by a black-box solver.

  • Analysis must be rigorous: clearly stated kinematics and constitutive assumptions,

correct field equations, and derivations that a specialist can verify.

  • Computation, when central, must be a means to physical insight (mechanism, scaling,

bifurcation structure) — a converged FE simulation of one part is not a result.

  • Experiments, when present, should isolate the mechanism and be quantitatively

compared to theory, with controlled conditions and reported uncertainty.

  • Position the contribution against the closest mechanics results: what new physics,

weaker assumptions, or broader class of behavior does it establish.

  • Reproducibility: state the model, boundary/initial conditions, and any numerical

scheme in enough detail that the analysis can be reconstructed.

Structure & house style

  • Standard full-length research-article structure; JMPS publishes archival papers,

not rapid letters — route urgent short results elsewhere and re-check article

types on the live guide.

  • The introduction motivates the mechanics gap (what is not understood), not an

application; the body develops theory, then evidence, then physical interpretation.

  • Equations are load-bearing and must be self-consistent; notation should follow

standard continuum-mechanics conventions and be defined on first use.

  • Figures support the argument: field maps, bifurcation/phase diagrams, theory-vs-data

overlays, and mechanism schematics — not decorative renderings.

  • Lengthy derivations and supporting computations go to appendices/supplementary

material; the main text must carry the central insight unaided.

Official-submission checklist

  • Before giving submission-ready advice, read ../../resources/source-basis.md and

../../resources/official-source-map.md; start from the Elsevier anchors, then

cite the current JMPS Guide for Authors page you checked.

  • Search the live site for "Journal of the Mechanics and Physics of Solids guide for

authors" and follow the current Elsevier/Editorial Manager version.

  • Re-check article types, length/figure expectations, and the data- and

code-availability policy for computational work.

  • Confirm formatting of equations, notation, and any structured-abstract or highlights

requirement.

  • Re-check competing-interests, funding, author-contribution (CRediT), and AI-use

disclosure requirements.

  • If the live official instructions conflict with this skill, the official

instructions win.

Pre-submission self-check

  • [ ] The contribution is a mechanism or governing principle of solid behavior, not a one-off finite-element case study.
  • [ ] Kinematics, constitutive assumptions, and field equations are stated explicitly and are internally consistent.
  • [ ] Any computation serves physical insight (scaling, bifurcation, mechanism), not just a converged number.
  • [ ] Experiments, if used, isolate the mechanism and are compared quantitatively to theory.
  • [ ] Novelty is pinned to specific prior mechanics results (new physics / weaker assumptions / broader class).
  • [ ] The article type and length fit JMPS's archival full-paper format.

Common desk-reject triggers

  • Applied finite-element case study of one component or geometry with no fundamental advance.
  • Parametric simulation sweep reported as a result, with no mechanism or governing law extracted.
  • Constitutive model proposed with no derivation, thermodynamic consistency, or validation.
  • Experiment-only report of a deformation/failure observation without mechanics interpretation.
  • Scope mismatch: a materials-processing, structural-design, or pure-numerical-methods paper with mechanics as a label.
  • Better framed as a plasticity-specific constitutive study or a materials/structures application.

Re-routing decision

  • Plastic deformation / constitutive-model-centric contribution → international-journal-of-plasticity.
  • Microstructure-first mechanism (processing–structure–property) → acta-materialia.
  • Composite-material mechanics or structural composites → composites-part-b-engineering.
  • AM-process-driven mechanics with materials focus → additive-manufacturing.
  • Highest-impact conceptual mechanics-of-materials advance for a broad audience → nature-materials.

Output format

[Fit] High / Medium / Low (one-line reason)
[Target] Journal of the Mechanics and Physics of Solids
[Topic tags] <2–3 closest solid-mechanics subtopics>
[Mechanism/principle] <the governing insight in one line>
[Method/evidence] <does the analysis clear JMPS's insight + rigor bar?>
[Top risk] <the single most likely reason for rejection>
[Official items to re-check] <article type / length / data-code / abstract / disclosures>
[Re-route suggestion] <if not a fit, a better-matched venue>

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本站分层T1
该仓技能数4166
原文件路径Engineering-Technology-Journal-Skills/skills/journal-of-the-mechanics-and-physics-of-solids/SKILL.md

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