DIL 80x/80xL
Horizontal Dilatometer Series

Manufacturer
TA Instruments


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Measured Characteristics

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Operation Features

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Technical Specifications
Operating Characteristics
DIL 801 / 801L DIL 802 / 802L DIL 803 / 803L
Horizontal push-rod design
Single
True DifferentialTM Dual
Displacement system
LVDT (1)
Measuring system material
Fused silica or alumina
Atmosphere type
Air (oxidizing), reducing, inert, vacuum / Air
Temperature range (2) [°C]
(-160 … 1700) / (RT (3) … 1700)
Temperature resolution [°C]
0.05 / 0.1
Maximum heating rate (2) [°C/min]
100
Maximum cooling rate (2) [°C/min]
25
Adjustable contact force range [N]
(0.01 … 1) / (0.02 … 1)
Maximum sample diameter (2) [mm]
14 or 20 7 or 10
Sample length [mm]
0 … 50
Change of length [mm]
4
Length resolution [nm]
10 / 20
CTE (4) accuracy [K-1]
0.03×10-6 / 0.05×10-6 0.01×10-6 / 0.03×10-6 0.03×10-6 / 0.05×10-6


(1) LVDT – Linear Variable Differential Transducer.

(2) Depending on furnace option.

(3) RT – Room Temperature.

(4) CTE – Coefficient of Thermal Expansion (linear).

 

Furnace Characteristics – Part 1

Measuring system material
Fused silica
Heating element material
NiCr with sheath
CrAIFe
Furnace temperature range [°C]
-160 … 700
RT (3) … 1100
Sample temperature range [°C]
-150 … 650
RT (3) … 1000
Maximum heating rate [°C/min]
50
100
Maximum cooling rate [°C/min]
25
Dilatometer model compatibility
DIL 80x
DIL 80x / 80xL


Furnace Characteristics – Part 2

Measuring system material
Alumina
Heating element material
CrAIFe
SiC
Pt/Rh
Furnace temperature range [°C]
RT (3) … 1350
RT (3) … 1500
RT (3) … 1700
Sample temperature range [°C]
RT (3) … 1320
RT (3) … 1470
RT (3) … 1680
Maximum heating rate [°C/min]
100
25
Maximum cooling rate [°C/min]
10
15
5
Dilatometer model compatibility
DIL 80x / 80xL
Accessories

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Standards
  • ASTM C372 – Standard test method for linear thermal expansion of porcelain enamel and glaze frits and fired ceramic whiteware products by dilatometer method
  • ASTM C531 – Standard test method for linear shrinkage and coefficient of thermal expansion of chemical-resistant mortars, grouts, monolithic surfacings, and polymer concretes
  • ASTM C824 – Standard practice for specimen preparation for determination of linear thermal expansion of vitreous glass enamels and glass enamel frits by dilatometer method
  • ASTM D696 – Standard test method for coefficient of linear thermal expansion of plastics between -30°C and 30°C with a vitreous silica dilatometer
  • ASTM E228 – Standard test method for linear thermal expansion of solid materials with a push-rod dilatometer
  • ASTM E831 – Standard test method for linear thermal expansion of solid materials by thermomechanical analysis
  • DIN 51045 – Determination of linear thermal expansion of solids
  • DIN 51909 – Testing of carbonaceous materials – Determination of coefficient of linear thermal expansion – Solid materials
  • DIN 52328 – Testing of glass – Determination of mean linear thermal expansion coefficient
  • DIN 53752 – Testing of plastics – Determination of the coefficient of linear thermal expansion
  • SEP 1680 – Aufstellung von zeit-temperatur-umwandlungsschaubildern für eisenlegierungen (DE)
  • SEP 1681 – Guidelines for preparation, execution and evaluation of dilatometric transformation tests on iron alloys