000 02193nab a2200205 4500
005 20260525053156.0
008 260224s2014 xxu ing
041 _aInglés
100 1 _aBoniardi, Marco
_955547
100 1 _aCasaroli, Andrea
_955548
245 0 0 _aInfluence of Heat on Non-Ferrous Objects
_bMetallurgical Analysis in Fire Scene Investigations
260 _cnov. 2014
270 _a06/12/2016 ; 27/07/2016
300 _a21 p. ; 1335-1356
520 _aTranscripción del resúmen realizada por el autor: NFPA 921 is a widely accepted standard to perform fire and arson analysis: it states that heat damage on items and components must be recognized to perform a more careful analysis of fire spread and to better define area and point of origin. With reference to metallic materials involved in a fire scene, NFPA 921 only indicate two useful parameters for temperature estimation, i.e. melting temperature and surface oxidation. However, the melting point of metals and alloys may define a wide range of temperatures (for example iron-based alloys normally melt between 1500 and 1600°C); in addition surface oxidation colors can only inform in a qualitative way. To better estimate the temperature range experienced by various items, much more information can be inferred from in-depth metallurgical analyses. Intergranular oxidation, recrystallization, second phase precipitations and incipient melting were some of the metallurgical features easily observable: if the investigator knows the approximate temperature of these microstructure modifications, a better estimate can be done of the "effective fire temperature" that the material might have reached. To this aim some components that can be found in fire a scene (aluminium airshaft, brass tap and copper gas pipe) were exposed to simulated fire conditions of known time durations and peak temperatures. The collected items were then examined by metallurgical techniques, identifying reference temperatures. The obtained results can give useful information to understand the fire scene.
581 _a6
773 0 _tFire Technology
_g50
942 _cARTICULO
_2ddc
999 _c189678
_d189678