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Elmet Technologies

Ohara S-LAH52Q Optical Glass
Categories: Ceramic; Glass; Optical

Material Notes: S-LAH52Q is an optical glass with extremely large positive dn/dT. In Automotive camera lens systems, the focal length is often a fixed distance. Refractive index fluctuations within the optical system should certainly be a consideration, as cars are used in environments where the temperature range can vary widely from below zero in colder climates to more that 50°C inside a car on a summer day. Since many optical glasses have low dispersion and negative dn/dT values, the refractive indices fluctuations due to temperature change can be adjusted efficiently when these materials are combined with S-LAH52Q. In addition to Automotive camera lens systems, S-LAH52Q can also be used for Projectors, Interchangeable Photographic lenses, and various other applications.

Information provided by Ohara Corporation.

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Physical PropertiesMetricEnglishComments
Specific Gravity 4.47 g/cc4.47 g/cc
 
Chemical PropertiesMetricEnglishComments
Acid Class, SR 52.252.2
 
Mechanical PropertiesMetricEnglishComments
Hardness, Knoop 620
@Load 0.0999 kg
620
@Load 0.220 lb
Modulus of Elasticity 109.8 GPa15930 ksi
Modulus of Rigidity 41.8 GPa6060 ksi
Poissons Ratio 0.3130.313
Abrasion 6666Aa
 
Thermal PropertiesMetricEnglishComments
CTE, linear  6.00 µm/m-°C
@Temperature -30.0 - 70.0 °C
3.33 µin/in-°F
@Temperature -22.0 - 158 °F
 7.30 µm/m-°C
@Temperature 100 - 300 °C
4.06 µin/in-°F
@Temperature 212 - 572 °F
Thermal Conductivity 0.852 W/m-K
@Temperature 35.0 °C
5.91 BTU-in/hr-ft²-°F
@Temperature 95.0 °F
Transformation Temperature, Tg 598 °C1110 °Fper thermal expansion curve
Softening Point 651 °C1200 °F107.65 poise; JIS-R3104 and ASTM-C338
Annealing Point 576 °C1070 °F1013 poise; ASTM-C336
Strain Point 553 °C1030 °F1014.5 poise; JIS-R3103 and ASTM-C336
 
Optical PropertiesMetricEnglishComments
Refractive Index  1.75708
@Wavelength 2325.42 nm
1.75708
@Wavelength 2325.42 nm
 1.76345
@Wavelength 1970.09 nm
1.76345
@Wavelength 1970.09 nm
 1.7705
@Wavelength 1529.58 nm
1.7705
@Wavelength 1529.58 nm
 1.77732
@Wavelength 1128.64 nm
1.77732
@Wavelength 1128.64 nm
 1.7798
@Wavelength 1013.98 nm
1.7798
@Wavelength 1013.98 nm
nt (Hg t line)
 1.78438
@Wavelength 852.11 nm
1.78438
@Wavelength 852.11 nm
ns (Cs s line)
 1.78767
@Wavelength 768.19 nm
1.78767
@Wavelength 768.19 nm
nA' (K A' line)
 1.79076
@Wavelength 706.52 nm
1.79076
@Wavelength 706.52 nm
nr (He r line)
 1.79389
@Wavelength 656.27 nm
1.79389
@Wavelength 656.27 nm
nC (H C line)
 1.79478
@Wavelength 643.85 nm
1.79478
@Wavelength 643.85 nm
nC' (Cd C' line)
 1.79561
@Wavelength 632.8 nm
1.79561
@Wavelength 632.8 nm
nHe-Ne
 1.79935
@Wavelength 589.29 nm
1.79935
@Wavelength 589.29 nm
nD
 1.79952
@Wavelength 587.56 nm
1.79952
@Wavelength 587.56 nm
nd (He D line)
 1.80402
@Wavelength 546.07 nm
1.80402
@Wavelength 546.07 nm
ne (Hg e line)
 1.81282
@Wavelength 486.13 nm
1.81282
@Wavelength 486.13 nm
nf (H F line)
 1.81393
@Wavelength 479.99 nm
1.81393
@Wavelength 479.99 nm
nF' (Cd F' line)
 1.82212
@Wavelength 441.57 nm
1.82212
@Wavelength 441.57 nm
nHe-Cd
 1.82356
@Wavelength 435.835 nm
1.82356
@Wavelength 435.835 nm
ng (Hg g line)
 1.83271
@Wavelength 404.656 nm
1.83271
@Wavelength 404.656 nm
nh (Hg h line)
 1.84883
@Wavelength 365.015 nm
1.84883
@Wavelength 365.015 nm
ni (Hg i line)
Abbe Number 41.9841.98ν e
 42.2442.24ν d
Optical Dispersion 0.0056270.005627nd-nC; Partial Dispersion
 0.0062240.006224nC-nA'; Partial Dispersion
 0.0091490.009149nh-ng; Partial Dispersion
 0.0092390.009239ne-nC'; Partial Dispersion
 0.0099150.009915nF'-ne; Partial Dispersion
 0.0101250.010125ne-nC; Partial Dispersion
 0.0107420.010742ng-nF; Partial Dispersion
 0.0140940.014094nC-nt; Partial Dispersion
 0.014980.01498nC'-nt; Partial Dispersion
 0.0189280.018928nF-nC
 0.0191540.019154nF'-nC'
 0.0240430.024043ng-nd; Partial Dispersion
 0.0252680.025268ni-ng; Partial Dispersion
 0.0348980.034898ni-nF'; Partial Dispersion
Transmission, Visible  92.6 %
@Thickness 10.0 mm,
Wavelength 380 nm
92.6 %
@Thickness 0.394 in,
Wavelength 380 nm
Internal Transmission
 95.4 %
@Thickness 10.0 mm,
Wavelength 390 nm
95.4 %
@Thickness 0.394 in,
Wavelength 390 nm
Internal Transmission
 96.9 %
@Thickness 10.0 mm,
Wavelength 400 nm
96.9 %
@Thickness 0.394 in,
Wavelength 400 nm
Internal Transmission
 98.2 %
@Thickness 10.0 mm,
Wavelength 420 nm
98.2 %
@Thickness 0.394 in,
Wavelength 420 nm
Internal Transmission
 98.8 %
@Thickness 10.0 mm,
Wavelength 440 nm
98.8 %
@Thickness 0.394 in,
Wavelength 440 nm
Internal Transmission
 99.2 %
@Thickness 10.0 mm,
Wavelength 460 nm
99.2 %
@Thickness 0.394 in,
Wavelength 460 nm
Internal Transmission
 99.5 %
@Thickness 10.0 mm,
Wavelength 480 nm
99.5 %
@Thickness 0.394 in,
Wavelength 480 nm
Internal Transmission
 99.7 %
@Thickness 10.0 mm,
Wavelength 500 nm
99.7 %
@Thickness 0.394 in,
Wavelength 500 nm
Internal Transmission
 99.8 %
@Thickness 10.0 mm,
Wavelength 600 nm
99.8 %
@Thickness 0.394 in,
Wavelength 600 nm
Internal Transmission
 99.9 %
@Thickness 10.0 mm,
Wavelength 550 nm
99.9 %
@Thickness 0.394 in,
Wavelength 550 nm
Internal Transmission
 99.9 %
@Thickness 10.0 mm,
Wavelength 650 nm
99.9 %
@Thickness 0.394 in,
Wavelength 650 nm
Internal Transmission
 99.9 %
@Thickness 10.0 mm,
Wavelength 700 nm
99.9 %
@Thickness 0.394 in,
Wavelength 700 nm
Internal Transmission
IR Transmittance  75 %
@Thickness 10.0 mm,
Wavelength 2400 nm
75 %
@Thickness 0.394 in,
Wavelength 2400 nm
Internal Transmission
 92.4 %
@Thickness 10.0 mm,
Wavelength 2200 nm
92.4 %
@Thickness 0.394 in,
Wavelength 2200 nm
Internal Transmission
 96.7 %
@Thickness 10.0 mm,
Wavelength 2000 nm
96.7 %
@Thickness 0.394 in,
Wavelength 2000 nm
Internal Transmission
 98.9 %
@Thickness 10.0 mm,
Wavelength 1800 nm
98.9 %
@Thickness 0.394 in,
Wavelength 1800 nm
Internal Transmission
 99.6 %
@Thickness 10.0 mm,
Wavelength 1600 nm
99.6 %
@Thickness 0.394 in,
Wavelength 1600 nm
Internal Transmission
 99.7 %
@Thickness 10.0 mm,
Wavelength 1400 nm
99.7 %
@Thickness 0.394 in,
Wavelength 1400 nm
Internal Transmission
 99.9 %
@Thickness 10.0 mm,
Wavelength 800 nm
99.9 %
@Thickness 0.394 in,
Wavelength 800 nm
Internal Transmission
 99.9 %
@Thickness 10.0 mm,
Wavelength 900 nm
99.9 %
@Thickness 0.394 in,
Wavelength 900 nm
Internal Transmission
 99.9 %
@Thickness 10.0 mm,
Wavelength 1000 nm
99.9 %
@Thickness 0.394 in,
Wavelength 1000 nm
Internal Transmission
 99.9 %
@Thickness 10.0 mm,
Wavelength 1200 nm
99.9 %
@Thickness 0.394 in,
Wavelength 1200 nm
Internal Transmission
UV Transmittance  13 %
@Thickness 10.0 mm,
Wavelength 340 nm
13 %
@Thickness 0.394 in,
Wavelength 340 nm
Internal Transmission
 46 %
@Thickness 10.0 mm,
Wavelength 350 nm
46 %
@Thickness 0.394 in,
Wavelength 350 nm
Internal Transmission
 73 %
@Thickness 10.0 mm,
Wavelength 360 nm
73 %
@Thickness 0.394 in,
Wavelength 360 nm
Internal Transmission
 86 %
@Thickness 10.0 mm,
Wavelength 370 nm
86 %
@Thickness 0.394 in,
Wavelength 370 nm
Internal Transmission
 
Descriptive Properties
Acid Resistance, Powder Method, RA(P)3
CCI0.00 B
 0.67 G
 0.67 R
coloring, λ 5335
coloring, λ 80390
Coloring, Internal Transmission λ 0.05334
Coloring, Internal Transmission λ 0.80365
Knoop Hardness Class6
Ohara Code d800422
Ohara Code e804420
Phosphate Resistance, PR2
Photoelastic Constant (ß)2.31
Water Resistance, RW(P)1
Weathering Resistance (Surface Method) W(S)max2
Yield Point, At (°C)622per thermal expansion curve

Some of the values displayed above may have been converted from their original units and/or rounded in order to display the information in a consistent format. Users requiring more precise data for scientific or engineering calculations can click on the property value to see the original value as well as raw conversions to equivalent units. We advise that you only use the original value or one of its raw conversions in your calculations to minimize rounding error. We also ask that you refer to MatWeb's terms of use regarding this information. Click here to view all the property values for this datasheet as they were originally entered into MatWeb.

CZOHARA759 / 281598

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