Interlocking CSEB buildings Nepal Performance and failure behaviour investigated by masonry prism and triplet shear testing
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Publicerad
Författare
Typ
Examensarbete för masterexamen
Master's Thesis
Master's Thesis
Modellbyggare
Tidskriftstitel
ISSN
Volymtitel
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Sammanfattning
Nepal is situated in-between the Indian and Eurasian tectonic plates resulting in a long
standing history of seismic activity. The company Build up Nepal, was founded as a
response to the major 2015 earthquake in Nepal and works with interlocking
Compressed Stabilised Earth Blocks (CSEBs) which are made up from soil, sand,
cement and water which are compressed and cured. Build up Nepal works with engaging
communities, creating jobs and helping people build their own house as well as
providing engineering services.
Modern interlocking CSEBs present a viable alternative in reconstructing seismic
resilient houses in a economical way, yet its complex structural behaviour lacks
universally established building codes. Build up Nepal seeks to make this construction
method standardised in Nepal and get further government approval for the system. In
order to achieve approvals, more reliant data on the performance of their system is
needed.
Based on the system implemented by Build up Nepal, this thesis investigates methods of
testing and possible improvements for interlocking CSEB masonry. By exploring how
testing can be done in a simple way, which parts of the system contribute to overall
strength, and what improvements are feasible in rural Nepal, this thesis aims to support
Build up Nepal’s goal of standardising this construction method.
The standard Determination of initial shear strength was adapted for the equipment
available in the workshop connected to Build up Nepal’s office in Kathmandu and a
testing plan was developed. Together with experimental testing a field trip to
constructions sites in western Nepal was conducted to understand the circumstances and
context.
During testing, several limitations of the setup were acknowledged. The precision of
certain testing equipment was low, indicating that a future step for the company is to
move testing to a laboratory environment. A key issue with the test setup was the
unintended increase of pre-compression loads; these are supposed to remain constant,
which proved impossible with the current equipment.
The results from the experimental testing demonstrate that increasing the cement content
in grout and adding bed mortar improves overall system strength. However, insights
from the site visit show that grout mix might be varying and application of bed mortar
potentially is a challenge. The interlocking keys do not only support alignment during
mason but also provides a 83% gain in shear strength compared to specimens without
the keys. The recommendations are to continue using the interlocking keys and to further
investigating bed mortar before widely adopting it in construction. Moreover, the cement
to sand ratio of one to three should be used and simple measuring equipment should be
provided to ensure consistency in batch size and mix proportions.
Beskrivning
Ämne/nyckelord
Nepal, Earthquake, Interlocking, CSEB, Shear, Masonry, Keys, Grout, Mortar, Capacity.
