JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - 46

thermal expansion

Fig. 3: Ratio of each material parameter relative to the paint layer. The paint
layer shows higher values of CTE, heat capacity, and Poisson's ratio, indicating
that it will undergo compressive stress and tensile strain upon heating and
cooling

where an aluminium EMF requires additional fibreglass between
the EMF and the composite to prevent galvanic corrosion. The material properties for each layer, including the coefficient of thermal
expansion, heat capacity, density, thermal conductivity, Young's
modulus, and Poisson's ratio, were added to the COMSOL model
as custom-defined values and are summarized in Figure 3. The coefficient of thermal expansion of the paint layer is defined by a step
function that represents the abrupt change in thermal expansion at
the glass transition temperature of the material. In the CTE model,
the thermal stress multiphysics interface couples solid mechanics
with heat transfer to simulate thermal expansion and solve for the
displacement throughout the structure. The simulations were confined to heating of the composite structure layup as experienced
upon descent in an aircraft, where the final and initial temperatures
were defined in the model to represent the ground and altitude
temperatures, respectively.

Impact of EMF on stress and displacement
The results of the COMSOL simulations were analyzed to quantitatively determine the stress and displacement in each layer upon
heating and for varied properties of the expanded metal foil. An
example of the simulation results is shown in Figure 4. Through
the paint layer at the top of Figure 4, it is possible to observe the
displacement pattern of the underlying EMF. The magnified
cross-sectional view clearly shows the variations in displacement above the mesh and voids in addition to the trend in stress
reduction in the uppermost protective layers. Figure 5 shows the
relative stress for each layer in surface protective schemes that
incorporate either copper or aluminium EMF. The fibreglass
corrosion isolation layer required by the aluminium EMF acts as
a buffer, causing the stress to be lower in the aluminium than it
is in the copper EMF. Despite the lower stress in the aluminium
EMF, simulation results from the variation of the EMF design
parameters reveal a consistent trend toward higher displacements
in the surface protective scheme with the aluminium EMF when
compared to copper. The larger displacements generally caused
by the aluminium EMF can be attributed, in part, to the relatively
higher CTE of aluminium.

46 jec composites magazine / No99 September 2015

Fig. 4: Top, middle: top-down and cross-sectional views of the von Mises stress
and displacement in one-inch square sample of a composite structure layup. At
bottom, transparency was used to show the high stress in the composite structure and EMF. Stress was evaluated along the vertical line extending through
the depth of the sample

Further analysis of the impact of the EMF design parameters was
performed to confirm the effect of varying the height, width, and
mesh aspect ratio on displacement in the protective layers. When
varying the mesh aspect ratio, it was found that an increased ratio led
to a modest decrease in displacement of about 2% for both copper
and aluminium EMF, where higher ratio values correspond to a more
open mesh structure. For any EMF design parameter, there is a tradeoff between current carrying capacity, displacement, and weight. In
the case of mesh aspect ratio, while choosing an open mesh structure
can reduce displacement and weight, the current-carrying capacity
that is critical to the protective function of the EMF is reduced as
well and needs to be taken into account. Similarly with regard to the
mesh width, varying the width by a factor of three led to a relatively
minor increase in displacement of about 3% for both copper and
aluminium EMF. However, varying the height of the EMF by a factor
of four led to an increase in displacement of approximately 60% for
both aluminium and copper. Figure 6 shows the relative values for
displacement through each layer of the surface protection scheme
for varied heights of copper and aluminium EMF. Due to the lower



Table of Contents for the Digital Edition of JEC COMPOSITES MAGAZINE - Issue #99 - September 2015

Cover
Edito
Point of view: The future of mass production
Contents
Companies & Business
In brief
Interview UCI - “Our aim is to ensure bicyclers are safe to race”
Agenda of Events
Applications
Recreational aviation - A recreational airplane as advanced as the latest widebodied aircraft
Sports & leisure - Cork, flax and green epoxy: a perfect balance for a skateboard
Medical - Lightweight emergency medical cot
Market
Natural fibres - Tending towards optimism
SPECIAL JEC FORUMS
Interview - MIT-NECST Lab: a research consortium dedicated to composites in Aeronautics
Conferences - Gain insight into the JEC 2015 Forums conferences programme
FEATURE WIND ENERGY
Wind energy - Double-digit growth continues
Design - A wind turbine without blades
Simulation - Visualizing RTM behaviour using advanced 3D CAE technology
Permeability - Optimizing fabrics for wind blade infusion
Automation - Automation strategies in rotor blade production: preforming vs. direct textile layup
Recycling - Recycling decommissioned composite wind blades
Platform - An internet aid for advances in wind turbine blade design
Research & Development
Graphene - Gambling with graphene, will it pay off ?
Thermal expansion - Boeing simulates thermal expansion in composites with expanded metal foil for lightning protection of aircraft structures
Technology & Innovations
Heating - Power transfer in complex shape heated moulds or functional composites
Manufacturing - Tension control in composites manufacturing
3D printing - A fully biodegradable flax fibre-reinforced thermoplastic filament for 3D printing
RTM/LCM - Fast production epoxies for lightweight automotive composites
Index
In the world
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - Cover
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - 2
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - Edito
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - Point of view: The future of mass production
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - 5
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - Contents
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - 7
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - In brief
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - 9
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - 10
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - Agenda of Events
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - Interview UCI - “Our aim is to ensure bicyclers are safe to race”
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - 13
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - Recreational aviation - A recreational airplane as advanced as the latest widebodied aircraft
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - 15
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - Sports & leisure - Cork, flax and green epoxy: a perfect balance for a skateboard
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - Medical - Lightweight emergency medical cot
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - 18
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - Natural fibres - Tending towards optimism
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - 20
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - 21
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - Interview - MIT-NECST Lab: a research consortium dedicated to composites in Aeronautics
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - 23
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - Conferences - Gain insight into the JEC 2015 Forums conferences programme
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - 25
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - Wind energy - Double-digit growth continues
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - 27
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - Design - A wind turbine without blades
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - Simulation - Visualizing RTM behaviour using advanced 3D CAE technology
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - 30
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - 31
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - 32
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - Permeability - Optimizing fabrics for wind blade infusion
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - 34
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - Automation - Automation strategies in rotor blade production: preforming vs. direct textile layup
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - 36
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - 37
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - Recycling - Recycling decommissioned composite wind blades
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - Platform - An internet aid for advances in wind turbine blade design
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - 40
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - Graphene - Gambling with graphene, will it pay off ?
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - 42
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - 43
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - 44
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - Thermal expansion - Boeing simulates thermal expansion in composites with expanded metal foil for lightning protection of aircraft structures
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - 46
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - 47
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - Heating - Power transfer in complex shape heated moulds or functional composites
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - 49
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - 50
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - 51
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - Manufacturing - Tension control in composites manufacturing
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - 53
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - 54
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - 55
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - 56
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - 57
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - 58
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - 3D printing - A fully biodegradable flax fibre-reinforced thermoplastic filament for 3D printing
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - 60
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - 61
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - RTM/LCM - Fast production epoxies for lightweight automotive composites
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - 63
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - 64
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - Index
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - In the world
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - 67
JEC COMPOSITES MAGAZINE - Issue #99 - September 2015 - 68
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