Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Influence of Geometric Parameters of Conical Acrylic Portholes on Their Stress–Strain Behaviour

View through CrossRef
Translucent elements in the form of truncated cones, which are made of organic glass, are widely used in the structures of portholes, submersible vessels, space vehicles, pressure chambers, teleboxes and other types of technical equipment. The decisive factor in designing portholes is to ensure the strength of their translucent elements. In order to reduce the weight of portholes and, accordingly, to increase the payload, it is necessary to optimise the geometric parameters of the translucent elements, which include the tapering angle and the ratio of thickness to radius of the smaller base. The paper deals with development of the applied (engineering) method for determining the stress–strain behaviour of the conical translucent elements of portholes made of organic glass under the action of a uniform hydrostatic pressure. Finite-element modelling of the translucent element of the conical porthole is performed, with the calculation of its stress–strain behaviour. External hydrostatic pressure of 10 MPa, absence of loads from the inside and continuous sliding of the translucent element with friction along the conical supporting surface of the porthole metal body are the boundary conditions for the computational model. Full-scale tests of translucent elements of portholes made of organic glass were performed under the action of uniform hydrostatic pressure. Analysis of the influence of geometric characteristics of the portholes on stress–strain behaviour showed that the increase in the tapering angle at the constant relative thickness of the translucent element reduced its axial displacement in all cases. Equivalent stresses acquire minimum values when the tapering angle is in the range from 75° to 105° (when the relative thickness increases, the optimal tapering angle becomes smaller). It is shown that the developed method for determination of the stress–strain behaviour of the conical translucent elements of portholes made of organic glass reflects the real picture of deformation and agrees with the results of full-scale tests. Results of the work allow us to choose the rational parameters of the translucent element for increasing the reliability of portholes through the creation of an effective distribution of stresses and strains in the translucent element, and improving its optical characteristics due to a relatively small deflection in operation.
Title: Influence of Geometric Parameters of Conical Acrylic Portholes on Their Stress–Strain Behaviour
Description:
Translucent elements in the form of truncated cones, which are made of organic glass, are widely used in the structures of portholes, submersible vessels, space vehicles, pressure chambers, teleboxes and other types of technical equipment.
The decisive factor in designing portholes is to ensure the strength of their translucent elements.
In order to reduce the weight of portholes and, accordingly, to increase the payload, it is necessary to optimise the geometric parameters of the translucent elements, which include the tapering angle and the ratio of thickness to radius of the smaller base.
The paper deals with development of the applied (engineering) method for determining the stress–strain behaviour of the conical translucent elements of portholes made of organic glass under the action of a uniform hydrostatic pressure.
Finite-element modelling of the translucent element of the conical porthole is performed, with the calculation of its stress–strain behaviour.
External hydrostatic pressure of 10 MPa, absence of loads from the inside and continuous sliding of the translucent element with friction along the conical supporting surface of the porthole metal body are the boundary conditions for the computational model.
Full-scale tests of translucent elements of portholes made of organic glass were performed under the action of uniform hydrostatic pressure.
Analysis of the influence of geometric characteristics of the portholes on stress–strain behaviour showed that the increase in the tapering angle at the constant relative thickness of the translucent element reduced its axial displacement in all cases.
Equivalent stresses acquire minimum values when the tapering angle is in the range from 75° to 105° (when the relative thickness increases, the optimal tapering angle becomes smaller).
It is shown that the developed method for determination of the stress–strain behaviour of the conical translucent elements of portholes made of organic glass reflects the real picture of deformation and agrees with the results of full-scale tests.
Results of the work allow us to choose the rational parameters of the translucent element for increasing the reliability of portholes through the creation of an effective distribution of stresses and strains in the translucent element, and improving its optical characteristics due to a relatively small deflection in operation.

Related Results

Teoria kontroli społecznej w kryminologii
Teoria kontroli społecznej w kryminologii
                "Social control" is one of thę most fundamental  concepts in sociology. Nevertheless, the meaning of that term has changed, parallel with the development of sociolo...
Flow structures and aerodynamic loads of a rolling wing in a free stream
Flow structures and aerodynamic loads of a rolling wing in a free stream
<p>The leading-edge vortex (LEV) is a structure found in unsteady aerodynamics that can alter the forces induced on wings and other rotating structures. This thesis presents ...
Effect of variable strain rate on stress–strain behaviour of saturated clay
Effect of variable strain rate on stress–strain behaviour of saturated clay
This paper presents the results of laboratory investigation on variable strain rate effects of soils deformed under undrained conditions. Consolidated undrained triaxial tests were...
Parent Training Interventions for Attention Deficity Hyperactivity Disorder (ADHD) in Children Aged 5 to 18 years
Parent Training Interventions for Attention Deficity Hyperactivity Disorder (ADHD) in Children Aged 5 to 18 years
Attention Deficit Hyperactivity Disorder (ADHD) is a neurodevelopmental disorder. For a child to be diagnosed with ADHD, adults such as parents, carers, healthcare workers or teach...
Effect of Pre-Strain and Strain Rate on Deformation and Fracture Behavior of Automotive Grade Interstitial Free Steel Sheets
Effect of Pre-Strain and Strain Rate on Deformation and Fracture Behavior of Automotive Grade Interstitial Free Steel Sheets
The effect of pre-strain and strain rate on deformation behavior of two grades of interstitial free (IF) steel sheets, industrially referred as EIF and HIF, of thickness 0.7 mm hav...
EFFICIENCY OF A MODIFIED CONICAL METALLIC COOKING STOVE INCORPORATING CLAY FOR OPTIMAL CHARCOAL CONSUMPTION IN KARA REGION - TOGO
EFFICIENCY OF A MODIFIED CONICAL METALLIC COOKING STOVE INCORPORATING CLAY FOR OPTIMAL CHARCOAL CONSUMPTION IN KARA REGION - TOGO
An acceptability survey of improved charcoal stoves conducted in some households in the Kara region in Togo revealed that 40% of households use the clay cookestove and 30% the coni...
The Canberra Bubble
The Canberra Bubble
According to the ABC television program Four Corners, “Parliament House in Canberra is a hotbed of political intrigue and high tension … . It’s known as the ‘Canberra Bubble’ and i...
Research on the influence of conical micro array chip parameters on fog water collection
Research on the influence of conical micro array chip parameters on fog water collection
Abstract Conducting research on water collection based on the bionic cactus conical spine structure holds significant importance for arid regions, the key parameters...

Back to Top