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1.
ScientificWorldJournal ; 2014: 301271, 2014.
Article in English | MEDLINE | ID: mdl-25165738

ABSTRACT

The aim of this work is to improve the accuracy of cold stamping product by accommodating springback. This is a numerical approach to improve the accuracy of springback analysis and die compensation process combining the displacement adjustment (DA) method and the spring forward (SF) algorithm. This alternate hybrid method (HM) is conducted by firstly employing DA method followed by the SF method instead of either DA or SF method individually. The springback shape and the target part are used to optimize the die surfaces compensating springback. The hybrid method (HM) algorithm has been coded in Fortran and tested in two- and three-dimensional models. By implementing the HM, the springback error can be decreased and the dimensional deviation falls in the predefined tolerance range.


Subject(s)
Algorithms , Computer-Aided Design , Metallurgy/methods , Models, Theoretical
2.
PLoS One ; 7(10): e48104, 2012.
Article in English | MEDLINE | ID: mdl-23110182

ABSTRACT

One of the available tools for mapping the geographical distribution and potential suitable habitats is species distribution models. These techniques are very helpful for finding poorly known distributions of species in poorly sampled areas, such as the tropics. Maximum Entropy (MaxEnt) is a recently developed modeling method that can be successfully calibrated using a relatively small number of records. In this research, the MaxEnt model was applied to describe the distribution and identify the key factors shaping the potential distribution of the vulnerable Malayan Sun Bear (Helarctos malayanus) in one of the main remaining habitats in Peninsular Malaysia. MaxEnt results showed that even though Malaysian sun bear habitat is tied with tropical evergreen forests, it lives in a marginal threshold of bio-climatic variables. On the other hand, current protected area networks within Peninsular Malaysia do not cover most of the sun bears potential suitable habitats. Assuming that the predicted suitability map covers sun bears actual distribution, future climate change, forest degradation and illegal hunting could potentially severely affect the sun bear's population.


Subject(s)
Biodiversity , Ecology/methods , Models, Biological , Ursidae/growth & development , Animals , Climate Change , Ecology/trends , Entropy , Forecasting , Geography , Malaysia , Population Density , Population Dynamics , Trees/growth & development , Tropical Climate , Ursidae/metabolism
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