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Paper Citation Record · LEDGER

Electrode and electroactive polymer layout design using topology optimization

As of 12 August 2026, this Paper Citation Record lists 37 of 37 outbound references and 0 inbound Pith citation observations for arXiv:2412.03256.

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pith.paper-citation-record.v1
2412.03256 v1

Coverage vector

measured 37 of 37 reference resolution

Typed states for the displayed outbound observations.

Source: paper_references, paper_reference_links, observed 2026-08-11T22:40:54.498174Z

measured 37 of 37 standing notices

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measured 0 of 0 inbound itemization

Pith citing papers itemized under the disclosed page cap.

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measured 0 of 1 external citation measurements

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Source: cited_works

Reference resolution

37 of 37 outbound references displayed

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External citation measurements

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Outbound references

Observation d2a6b406-8137-46c9-a019-db9de558707b · outbound

This paper cites Electroactive polymer (EAP) actuators as artificial mus- cles: reality, potential, and challenges.

Electrode and electroactive polymer layout design using topology optimization Electroactive polymer (EAP) actuators as artificial mus- cles: reality, potential, and challenges

Reference 1

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Observation 86176b37-e221-4be6-a4b7-1819d6270797 · outbound

This paper cites Electroactive polymer (EAP) actua- tors—background review.

Electrode and electroactive polymer layout design using topology optimization Electroactive polymer (EAP) actua- tors—background review

Reference 2

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Observation bda671cd-2463-44e3-b90b-f3c47319c765 · outbound

This paper cites Nonlinear electroelasticity.

Electrode and electroactive polymer layout design using topology optimization Nonlinear electroelasticity

Reference 3

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Observation cca9a8c4-4a3b-4b3d-84a4-9cfc87c8b3a5 · outbound

This paper cites Phenomenological modeling of vis- cous electrostrictive polymers.

Electrode and electroactive polymer layout design using topology optimization Phenomenological modeling of vis- cous electrostrictive polymers

Reference 4

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Observation 22a0f8c2-ec19-46a4-8a01-e5700920491b · outbound

This paper cites Electrostrictioninelectro-viscoelastic polymers.

Electrode and electroactive polymer layout design using topology optimization Electrostrictioninelectro-viscoelastic polymers

Reference 5

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Observation 47d1656c-61fa-4000-b457-57255efbea45 · outbound

This paper cites Modelling of Viscoelastic Dielectric Elastomers with Deformation Dependent Electric Properties.

Electrode and electroactive polymer layout design using topology optimization Modelling of Viscoelastic Dielectric Elastomers with Deformation Dependent Electric Properties

Reference 6

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This paper cites A new framework for large strain electromechan- ics based on convex multi-variable strain energies: Finite Element discretisa- tion and computational implementation.

Electrode and electroactive polymer layout design using topology optimization A new framework for large strain electromechan- ics based on convex multi-variable strain energies: Finite Element discretisa- tion and computational implementation

Reference 7

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Observation 70cc3455-0eb5-46de-a0f3-4d680caad0db · outbound

This paper cites Topology optimization of dielectric elastomers for wide tunable band gaps.

Electrode and electroactive polymer layout design using topology optimization Topology optimization of dielectric elastomers for wide tunable band gaps

Reference 8

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This paper cites Gradient-based topol- ogy optimization of soft dielectrics as tunable phononic crystals.

Electrode and electroactive polymer layout design using topology optimization Gradient-based topol- ogy optimization of soft dielectrics as tunable phononic crystals

Reference 9

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Observation 3b8ab675-cfe8-44b2-bd3e-477a69aca217 · outbound

This paper cites Density-based topology optimisation considering nonlinear electromechan- ics.

Electrode and electroactive polymer layout design using topology optimization Density-based topology optimisation considering nonlinear electromechan- ics

Reference 10

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Observation 18503761-b221-47be-9a62-a195a4049b80 · outbound

This paper cites Multi-resolutionmethodsforthetopol- ogy optimization of nonlinear electro-active polymers at large strains.

Electrode and electroactive polymer layout design using topology optimization Multi-resolutionmethodsforthetopol- ogy optimization of nonlinear electro-active polymers at large strains

Reference 11

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Observation ce1f4881-0dea-4186-80e1-99a4a94388e7 · outbound

This paper cites In-silico design of electrode meso-architecture for shape morphing dielectric elastomers.

Electrode and electroactive polymer layout design using topology optimization In-silico design of electrode meso-architecture for shape morphing dielectric elastomers

Reference 12

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This paper cites ConnectivityConstraintsEnsuring Continuous Electrodes in Topology Optimization of Electroactive Polymer.

Electrode and electroactive polymer layout design using topology optimization ConnectivityConstraintsEnsuring Continuous Electrodes in Topology Optimization of Electroactive Polymer

Reference 13

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Observation e58e0a98-e2a2-4184-8dfc-84e7dfeb208f · outbound

This paper cites Material interpolation schemes in topol- ogy optimization.

Electrode and electroactive polymer layout design using topology optimization Material interpolation schemes in topol- ogy optimization

Reference 14

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Observation 8aa6ea9f-d482-4c62-8934-be5232fcc890 · outbound

This paper cites Discrete material optimization of general com- posite shell structures.

Electrode and electroactive polymer layout design using topology optimization Discrete material optimization of general com- posite shell structures

Reference 15

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Source-reported events for the cited work

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Observation 315722e9-b3e9-44ea-9684-73ed545c54fe · outbound

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Electrode and electroactive polymer layout design using topology optimization A uni- fied material interpolation for topology optimization of multi-materials

Reference 16

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Observation e086f667-e725-4b17-a32a-24dc598408cf · outbound

This paper cites Topology optimization of compliant mechanisms under transient thermal conditions.

Electrode and electroactive polymer layout design using topology optimization Topology optimization of compliant mechanisms under transient thermal conditions

Reference 17

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This paper cites Multi-material topology optimization of piezoelectric composite structures for energy harvesting.

Electrode and electroactive polymer layout design using topology optimization Multi-material topology optimization of piezoelectric composite structures for energy harvesting

Reference 18

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This paper cites Integrated multi- material and multi-scale optimization of compliant structure with embed- ded movable piezoelectric actuators.

Electrode and electroactive polymer layout design using topology optimization Integrated multi- material and multi-scale optimization of compliant structure with embed- ded movable piezoelectric actuators

Reference 19

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Observation 100184fc-d6cf-4006-b074-b8fccdf35238 · outbound

This paper cites Topology optimiza- tion of smart structures with embedded piezoelectric stack actuators using a composite geometry projection method.

Electrode and electroactive polymer layout design using topology optimization Topology optimiza- tion of smart structures with embedded piezoelectric stack actuators using a composite geometry projection method

Reference 20

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Electrode and electroactive polymer layout design using topology optimization Programmingshape-morphing electroactive polymers through multi-material topology optimisation

Reference 21

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Observation 93c819cf-e707-4aa9-908d-8cc2f4352f67 · outbound

This paper cites A review of finite element open boundary tech- niques for static and quasi-static electromagnetic field problems.

Electrode and electroactive polymer layout design using topology optimization A review of finite element open boundary tech- niques for static and quasi-static electromagnetic field problems

Reference 22

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Observation 1c1a539e-1803-4ae9-87fd-14a5b8587fc2 · outbound

This paper cites A 2-D coupled BEM–FEM simulation of electro-elastostatics at large strain.

Electrode and electroactive polymer layout design using topology optimization A 2-D coupled BEM–FEM simulation of electro-elastostatics at large strain

Reference 23

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Observation 21c3f19c-ef60-44ca-93de-0683531d6ae9 · outbound

This paper cites On 3-D coupled BEM–FEM simulation of nonlinear electro-elastostatics.

Electrode and electroactive polymer layout design using topology optimization On 3-D coupled BEM–FEM simulation of nonlinear electro-elastostatics

Reference 24

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Electrode and electroactive polymer layout design using topology optimization Computationalelectro-elasticityandmagneto-elasticityforquasi-incompressible media immersed in free space

Reference 25

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Electrode and electroactive polymer layout design using topology optimization On the influence of free space in topology optimization of electro-active polymers

Reference 26

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Electrode and electroactive polymer layout design using topology optimization Unresolved cited work

Reference 27

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Observation 15cda998-2e2f-4538-a2bd-c89035895168 · outbound

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Electrode and electroactive polymer layout design using topology optimization Unresolved cited work

Reference 28

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Electrode and electroactive polymer layout design using topology optimization Electromagnetic theory

Reference 29

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Observation 2e17c71b-317e-48f8-b65f-a71b3787e686 · outbound

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Electrode and electroactive polymer layout design using topology optimization Interpolation scheme for fictitious domain techniques and topology optimization of finite strain elastic problems

Reference 30

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Electrode and electroactive polymer layout design using topology optimization Filters in topology optimization based on Helmholtz-type differential equations

Reference 31

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Observation 242f5440-1f22-4a1a-9974-72f125547011 · outbound

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Electrode and electroactive polymer layout design using topology optimization Consistent boundary conditions for PDE filter regularization in topology optimization

Reference 32

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Electrode and electroactive polymer layout design using topology optimization On projection methods, con- vergence and robust formulations in topology optimization

Reference 33

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Observation 6deb79ff-001d-4bc4-b775-191cd589e923 · outbound

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Electrode and electroactive polymer layout design using topology optimization Inverse design of periodic microstructures with targeted nonlinear mechanical behaviour

Reference 34

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correction dated 2025-11-21. Source: crossref record 10.1007/s00158-025-04198-2->10.1007/s00158-024-03761-7:correction, observed 2026-07-11T03:09:05.531849+00:00. This notice travels one citation hop only.

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Observation af64d47c-63e5-4d3d-adf7-f5f4828f0053 · outbound

This paper cites Large-scale elasto-plastic topology optimiza- tion.

Electrode and electroactive polymer layout design using topology optimization Large-scale elasto-plastic topology optimiza- tion

Reference 35

Resolution
verified exact
doi, observed 2026-08-11T22:40:54.820830Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

source=pdf_text observed=2026-08-11T22:40:54.454277Z digest=sha256:f5554b5b6a30df640d5b965c7c147988ce8736d6a5e25464a919280f85367db8

Observation b637acbe-5c9b-4ef6-9afe-f65309ecd916 · outbound

This paper cites Plate/shell topological optimization subjected to linear buckling constraints by adopting composite exponential filtering function.

Electrode and electroactive polymer layout design using topology optimization Plate/shell topological optimization subjected to linear buckling constraints by adopting composite exponential filtering function

Reference 36

Resolution
verified exact
doi, observed 2026-08-11T22:40:54.644749Z

Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-12T06:34:41.77262+00:00.

source=pdf_text observed=2026-08-11T22:40:54.482866Z digest=sha256:5574b373a2ef983777429d609cdc729901843fe6166a205f840b68f583206ff2

Observation deb5993f-0db9-4fae-9892-af3e4245ad08 · outbound

This paper cites The method of moving asymptotes—a new method for struc- tural optimization.

Electrode and electroactive polymer layout design using topology optimization The method of moving asymptotes—a new method for struc- tural optimization

Reference 37

Resolution
malformed identifier
no resolver link, observed 2026-08-11T22:40:54.498174Z

Source-reported events for the cited work

Unavailable: canonical work link unavailable.

source=pdf_text observed=2026-08-11T22:40:54.498174Z digest=sha256:0af70b2ad85af2e8b653e033018927e2681ce7d2a5263d8dbbf151af3e2d9952

Pith citing papers

No inbound Pith citation observations are available.