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Thermal Conductivity Paper

From Dontopedia, the open, paraconsistent wiki. (Last updated 2026-06-18.)

Thermal Conductivity Paper has 17 facts recorded in Dontopedia across 1 reference, with 3 live disagreements.

17 facts·10 predicates·1 sources·3 in dispute

Mostly:has author(4), tp:verdict reason(4), tp:simulation verdict(2)

Maturity scale raw canonical shape-checked rule-derived certified

Has Authorin disputehasAuthor

  • Kenji Tanaka[1]sourceall time · tp:paper:f1971dfa-b8e3-45e3-8027-cdb872099b9c:claims
  • Maria Rodriguez Lopez[1]sourceall time · tp:paper:f1971dfa-b8e3-45e3-8027-cdb872099b9c:claims
  • Sarah Obrien[1]sourceall time · tp:paper:f1971dfa-b8e3-45e3-8027-cdb872099b9c:claims
  • Wei Zhang[1]sourceall time · tp:paper:f1971dfa-b8e3-45e3-8027-cdb872099b9c:claims

Tp:verdict Reasonin disputetp:verdictReason

  • The paper title, abstract, and Table 1 center on thermal-conductivity measurement.[1]all time · tp:paper:f1971dfa-b8e3-45e3-8027-cdb872099b9c:claims
  • The nonzero graphene loadings in Table 1 span 0.1 to 5.0 vol%.[1]all time · tp:paper:f1971dfa-b8e3-45e3-8027-cdb872099b9c:claims
  • The stated laser flash / thermal diffusivity measurement method is present in the source text.[1]all time · tp:paper:f1971dfa-b8e3-45e3-8027-cdb872099b9c:claims
  • The EMA model claim is stated, but the equation and fitted parameter values are absent, so faithful recomputation is blocked.[1]all time · tp:paper:f1971dfa-b8e3-45e3-8027-cdb872099b9c:claims

Tp:simulation Verdictin disputetp:simulationVerdict

  • inconclusive[1]all time · tp:paper:f1971dfa-b8e3-45e3-8027-cdb872099b9c:claims
  • reproduced[1]all time · tp:paper:f1971dfa-b8e3-45e3-8027-cdb872099b9c:claims

Demonstrates FindingdemonstratesFinding

Uses Measurement MethodusesMeasurementMethod

Has Volume Fraction RangehasVolumeFractionRange

  • 0.1 to 5.0 vol%[1]sourceall time · tp:paper:f1971dfa-b8e3-45e3-8027-cdb872099b9c:claims

Investigates PropertyinvestigatesProperty

Has TitlehasTitle

  • Thermal Conductivity Enhancement in Graphene-Reinforced Aluminum Matrix Composites: A Combined Experimental and Molecular Dynamics Study[1]sourceall time · tp:paper:f1971dfa-b8e3-45e3-8027-cdb872099b9c:claims

Rdfs:labelrdfs:label

  • Thermal Conductivity Enhancement in Graphene-Reinforced Aluminum Matrix Composites: A Combined Experimental and Molecular Dynamics Study[1]all time · tp:paper:f1971dfa-b8e3-45e3-8027-cdb872099b9c:claims

Rdf:typerdf:type

Inbound mentions (4)

Other subjects in dontopedia point AT this entity as a value. These are inverse relationships — e.g. "X motherOf this subject" — and answer questions the forward facts can't. Grouped by predicate.

isAuthorOfIs Author of(4)

Timeline

Timeline axis is valid_time — when each source says the fact was true in the world, not when Dontopedia learned about it. Retracted rows are kept for provenance; coloured stripes indicate the context kind.

demonstratesFindingtp:paper:f1971dfa-b8e3-45e3-8027-cdb872099b9c:claims
ex:ema-model-finding
hasAuthortp:paper:f1971dfa-b8e3-45e3-8027-cdb872099b9c:claims
ex:kenji-tanaka
hasAuthortp:paper:f1971dfa-b8e3-45e3-8027-cdb872099b9c:claims
ex:maria-rodriguez-lopez
hasAuthortp:paper:f1971dfa-b8e3-45e3-8027-cdb872099b9c:claims
ex:sarah-obrien
hasAuthortp:paper:f1971dfa-b8e3-45e3-8027-cdb872099b9c:claims
ex:wei-zhang
hasTitletp:paper:f1971dfa-b8e3-45e3-8027-cdb872099b9c:claims
Thermal Conductivity Enhancement in Graphene-Reinforced Aluminum Matrix Composites: A Combined Experimental and Molecular Dynamics Study
hasVolumeFractionRangetp:paper:f1971dfa-b8e3-45e3-8027-cdb872099b9c:claims
0.1 to 5.0 vol%
investigatesPropertytp:paper:f1971dfa-b8e3-45e3-8027-cdb872099b9c:claims
ex:thermal-conductivity
labeltp:paper:f1971dfa-b8e3-45e3-8027-cdb872099b9c:claims
Thermal Conductivity Enhancement in Graphene-Reinforced Aluminum Matrix Composites: A Combined Experimental and Molecular Dynamics Study
typetp:paper:f1971dfa-b8e3-45e3-8027-cdb872099b9c:claims
ex:ScholarlyArticle
simulationVerdicttp:paper:f1971dfa-b8e3-45e3-8027-cdb872099b9c:claims
inconclusive
simulationVerdicttp:paper:f1971dfa-b8e3-45e3-8027-cdb872099b9c:claims
reproduced
verdictReasontp:paper:f1971dfa-b8e3-45e3-8027-cdb872099b9c:claims
The paper title, abstract, and Table 1 center on thermal-conductivity measurement.
verdictReasontp:paper:f1971dfa-b8e3-45e3-8027-cdb872099b9c:claims
The nonzero graphene loadings in Table 1 span 0.1 to 5.0 vol%.
verdictReasontp:paper:f1971dfa-b8e3-45e3-8027-cdb872099b9c:claims
The stated laser flash / thermal diffusivity measurement method is present in the source text.
verdictReasontp:paper:f1971dfa-b8e3-45e3-8027-cdb872099b9c:claims
The EMA model claim is stated, but the equation and fitted parameter values are absent, so faithful recomputation is blocked.
usesMeasurementMethodtp:paper:f1971dfa-b8e3-45e3-8027-cdb872099b9c:claims
ex:laser-flash-method

References (1)

1 references
  1. [1]chunk-00317 facts
    candidatetp:paper:f1971dfa-b8e3-45e3-8027-cdb872099b9c:claims
    • full textchunk-003
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      rmal conductivity of 274 ± 8 W/ (m·K) at 2.0 vol% loading, a 27% enhancement over the unreinforced matrix. 2. MD simulations accurately predict the interfacial thermal conductance (85 vs. 82 MW/(m²·K) for experimental), demonstrating that
    • full textchunk-002
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      Methods Few-layer graphene nanoplatelets (FLG, average thickness 2-5 nm, lateral size 5-15 ;ÆÒ’ ere procured from XG Sciences (Grade M-5). Aluminum powder (99.7% purity, D50 = 35 ;ÆÒ’ as obtained from Alfa Aesar. Graphene-aluminum mixtures
    • full textchunk-001
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      Thermal Conductivity Enhancement in Graphene-Reinforced Aluminum Matrix Composites: A Combined Experimental and Molecular Dynamics Study Wei Zhang¹, Maria Rodriguez-Lopez², Kenji Tanaka¹, Sarah O'Brien² ¹Department of Materials Science an
    • full textThermal Conductivity Enhancement in Graphene-Reinforced Aluminum Matrix Composites: A Combined Experimental and Molecular Dynamics Study
      application/pdf7 KBtp:paper:f1971dfa-b8e3-45e3-8027-cdb872099b9c
      Show excerpt
      Thermal Conductivity Enhancement in Graphene-Reinforced Aluminum Matrix Composites: A Combined Experimental and Molecular Dynamics Study Wei Zhang¹, Maria Rodriguez-Lopez², Kenji Tanaka¹, Sarah O'Brien² ¹Department of Materials Science

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