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Commercial road vehicles - Mechanical coupling between towing vehicles, with coupling mounted forward and below and centre-axle trailers - Interchangeability (ISO 11407:2004, IDT)
MS ISO 11407:2007 (CONFIRMED:2016)
Status : 1st Confirmation
Format : PDF

This Malaysian Standard specifies the interchangeability requirements of the various elements and dimensions for the mechanical coupling of towing vehicles whose coupling is mounted forward and below ....Read more to centre-axle trailers. It is applicable to road trains for the commercial transport of low-density, high-volume cargo of the greatest possible variety. It is also applicable to corresponding equipment in cases where the same vehicle makes up part of a road train having more than one trailer. It is not applicable to dedicated or special combinations such as coupling systems with an extensible drawbar; nor does it specify limitations on maximum gross mass and overall dimensions, which are generally laid down by legislative requirements. Vehicle combinations whose couplings form the subject of this standard (see Annex B for examples) are not interchangeable with those whose couplings are rear-mounted. Close

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Commercial road vehicle - Mechanical coupling between towing vehicles with rear-mounted coupling and drawbar trailers - Interchangeability (ISO 11406:2001, IDT)
MS ISO 11406:2007 (CONFIRMED:2016)
Status : 1st Confirmation
Format : PDF

This Malaysian Standard specifies the requirements for the various elements and dimensions of towing vehicles with rear-mounted coupling and of drawbar trailers, to ensure interchangeability. 
....Read more NOTE Annex B gives examples of different configurations of vehicle combinations; this Standard deals only with No.B.1.1.

This standard is applicable to road trains for commercial transport of cargo of the greatest possible variety; it does not cover dedicated or special combinations. Nor does it specify limitations of maximum gross mass and overall dimensions, which are generally laid down by legislative requirements.

Vehicles whose couplings form the subject of this standard are not interchangeable with vehicles whose couplings are mounted forward and below (which form the subject of ISO 11407[1]).
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Plastics - Differential scanning calorimetry (DSC) - Part 1: General principles (First revision) (ISO 11357-1:2009, IDT)
MS ISO 11357-1:2012
Status : 1st Revision
Format : PDF

This Malaysian Standard specifies a number of general aspects of differential scanning calorimetry, such as the principle and the apparatus, sampling, calibration and general aspects of the procedure ....Read more and test report common to all following parts. Close

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Plastics - Differential scanning calorimetry (DSC) - Part 4: Determination of specific heat capacity (ISO 11357-4:2005, IDT)
MS ISO 11357-4:2012
Status : Original
Format : PDF

This part of Malaysian Standard specifies methods for determining the specific heat capacity of plastics by differential scanning calorimetry.

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Plastics - Differential scanning calorimetry (DSC) - Part 3: Determination of temperature and enthalpy of melting and crystallization (First revision) (ISO 11357-3:2011, IDT)
MS ISO 11357-3:2012
Status : 1st Revision
Format : PDF

This Malaysian Standard specifies a method for the determination of the temperatures and enthalpies of melting and crystallization of crystalline or partially crystalline plastics.

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PLASTICS – DIFFERENTIAL SCANNING CALORIMETRY (DSC) – PART 7: DETERMINATION OF CRYSTALLIZATION KINETICS (ISO 11357-7:2002, IDT)
MS ISO 11357-7:2004
Status : Withdrawn
Format : PDF

This Malaysian Standard specifies two methods, isothermal and non-isothermal, for studying the crystallization kinetics of partially crystalline polymers using differential scanning calorimetry (DSC). ....Read more  
It is only applicable to melted polymers.

NOTE These methods are not suitable if the molecular structure of the polymer is modified during the test.
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PLASTICS – DIFFERENTIAL SCANNING CALORIMETRY (DSC) – PART 5 : DETERMINATION OF CHARACTERISTIC REACTION-CURVE TEMPERATURES AND TIMES, ENTHALPY OF REACTION AND DEGREE OF CONVERSION (ISO 11357-5:1999, IDT)
MS ISO 11357-5 : 2004
Status : Withdrawn
Format : PDF

This Malaysian Standard specifies a method for the determination of reaction temperatures and times, enthalpies of reaction and degrees of conversion using differential scanning calorimetry(DSC). 
....Read more /> The method applies to monomers, prepolymers and polymers in the solid or liquid state. The material may contain fillers and/or initiators in the solid or liquid state.

WARNING - Caution should be observed when working with materials which could give a runaway reaction or exhibit other dangerous behaviour.
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PLASTICS – DIFFERENTIAL SCANNING CALORIMETRY (DSC) – PART 6: DETERMINATION OF OXIDATION INDUCTION TIME (ISO 11357-6:2002, IDT)
MS ISO 11357-6 : 2004
Status : Withdrawn
Format : PDF

This Malaysian Standard specifies a method for the determination of the oxidation-induction time (OIT) of polymeric materials by differential scanning calorimetry (DSC). It is applicable to polyolefin ....Read more resins that are in a fully stabilized/compounded form, either as raw materials or as finished products. It may be applicable to other plastics. Close

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PLASTICS – DIFFERENTIAL SCANNING CALORIMETRY (DSC) –PART 2: DETERMINATION OF GLASS TRANSITION TEMPERATURE (ISO 11357-2: 1999, IDT)
MS ISO 11357-2:2003
Status : Withdrawn
Format : PDF

This part Malaysian Standard specifies a method for the determination of the characteristic glass transition temperatures of amorphous and semi-crystalline plastics.

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RUBBER, VULCANIZED OR THERMOPLASTIC - ESTIMATION OF LIFE-TIME AND MAXIMUM TEMPERATURE OF USE (FIRST REVISION) (ISO 11346:2004, IDT)
MS ISO 11346:2010
Status : Withdrawal with replacement
Format : PDF

This Malaysian Standard specifies the principles and procedures for estimating the thermal endurance of rubbers from the results of exposure to elevated temperatures for long periods. 
Two app ....Read more roaches are specified (see also the Introduction):

- one using the Arrhenius relation;
- the other using the WLF equation.

In this document, the estimation of thermal endurance is based solely on the change in selected properties resulting from periods of exposure to elevated temperatures. The various properties of rubbers change at different rates on thermal ageing, hence comparisons between different rubbers can only be made using the same properties.
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