Humidity and thermal triggered Shape Memory Effect - Rheology-based numerical modelling - Diffusion measurements (doi:10.18419/darus-2024)

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Part 1: Document Description
Part 2: Study Description
Part 3: Data Files Description
Part 4: Variable Description
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Document Description

Citation

Title:

Humidity and thermal triggered Shape Memory Effect - Rheology-based numerical modelling - Diffusion measurements

Identification Number:

doi:10.18419/darus-2024

Distributor:

DaRUS

Date of Distribution:

2021-06-22

Version:

1

Bibliographic Citation:

Fauser, Dominik; Kuhn, Moritz; Steeb, Holger, 2021, "Humidity and thermal triggered Shape Memory Effect - Rheology-based numerical modelling - Diffusion measurements", https://doi.org/10.18419/darus-2024, DaRUS, V1, UNF:6:ig+5CuLNRHaoCQtncwbvWA== [fileUNF]

Study Description

Citation

Title:

Humidity and thermal triggered Shape Memory Effect - Rheology-based numerical modelling - Diffusion measurements

Identification Number:

doi:10.18419/darus-2024

Authoring Entity:

Fauser, Dominik (University of Stuttgart, Institute of Applied Mechanics (CE))

Kuhn, Moritz (University of Stuttgart, Institute of Applied Mechanics (CE))

Steeb, Holger (University of Stuttgart, Institute of Applied Mechanics (CE) & SC SimTech)

Other identifications and acknowledgements:

Kuhn, Moritz

Other identifications and acknowledgements:

Fauser, Dominik

Other identifications and acknowledgements:

Steeb, Holger

Producer:

University of Stuttgart, Institute of Applied Mechanics (CE) - Chair for Continuum-Mechanics

University of Stuttgart - Cluster of Excellence EXC 2075 "SimTech"

Date of Production:

2021

Distributor:

DaRUS

Access Authority:

Steeb, Holger

Depositor:

Fauser, Dominik

Date of Deposit:

2021-06-09

Holdings Information:

https://doi.org/10.18419/darus-2024

Study Scope

Keywords:

Chemistry, Computer and Information Science, Earth and Environmental Sciences, Engineering, Physics, Diffusion, Absorption, Desorption

Abstract:

This data contains diffusion measurements of Shape Memory Polymers (SMP) immersed in demineralized water. The SMP is a polyurethane-based Polymer, which is produced from SMP Technologies Inc. The SMP filament were processed with a 3D printer (Ultimaker 3, Ultimaker, Geldermarsen, Netherlands). <p> <p> The samples were dried in a drying oven for 10 days prior to the absorption measurements. The determination of the water absorption capacity is carried out at two different temperatures (30 °C and 60 °C). The samples are immersed in a demineralized water bath, which is stored in a drying oven. The time-dependent diffusive process is carried out with weight gain measurements. At each measuring point, the sample is taken out of the water bath and the surface water is wiped off with a lint-free cloth. Attention was paid to keep the measuring time (t < 30 sec) at each measuring point as short as possible in order not to influence the diffusive process. The measurement interval was set at the beginning of the measurement at 30 °C to 60 min and at 60 °C to 10 min. It was measured at daytime and working hours. <p> <p> After the samples have been completely saturated, the desorption experiment starts. The saturated samples were stored in a drying oven at 30 °C and the weight loss was measured. The measurement parameters correspond to the absorption measurements at 30 °C.

Methodology and Processing

Sources Statement

Data Access

Other Study Description Materials

Related Materials

The material is a polyurethane-based Shape Memory Polymer. Information about the material can be found in the material description of the company SMP Technologies Inc. or in publications, e.g. <a href="https://doi.org/10.1039/B922943D">Huang, 2010</a>.

Related Studies

Fauser, Dominik; Steeb, Holger, 2021, "Humidity and thermal triggered Shape Memory Effect - Rheology-based numerical modelling - Dynamic Mechanical Thermal Humidity Analysis", <a href="https://doi.org/10.18419/darus-2021">https://doi.org/10.18419/darus-2021</a>, DaRUS. <p> Fauser, Dominik; Steeb, Holger, 2021, "Humidity and thermal triggered Shape Memory Effect - Rheology-based numerical modelling - Thermal Humid Mechanical Cycle", <a href="https://doi.org/10.18419/darus-2023">https://doi.org/10.18419/darus-2023</a>, DaRUS.

Related Publications

Citation

Title:

Fauser, Dominik; Steeb, Holger, (2021), "Influence of Humidity on the Rheology of Thermoresponsive Shape Memory Polymers", Journal of Materials Science (under review).

Bibliographic Citation:

Fauser, Dominik; Steeb, Holger, (2021), "Influence of Humidity on the Rheology of Thermoresponsive Shape Memory Polymers", Journal of Materials Science (under review).

File Description--f63756

File: absorption_smp_30C.tab

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File Description--f63758

File: absorption_smp_60C.tab

  • Number of cases: 19

  • No. of variables per record: 4

  • Type of File: text/tab-separated-values

Notes:

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File Description--f63757

File: desorption_smp_30C.tab

  • Number of cases: 35

  • No. of variables per record: 5

  • Type of File: text/tab-separated-values

Notes:

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Variable Description

List of Variables:

Variables

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