Best Price for Medial Temperature Wax Export to Portugal
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Best Price for Medial Temperature Wax Export to Portugal Detail:
Automatic Temperature Regulating Agent Series is a kind of thermal expansion materials, which depends on principles that the substance expands when it is heated and constricts when it is cooled and a liquid is incompressible. It can automatically regulate temperature. When the ambient temperature goes up to the special value, Automatic Temperature Regulating Agent goes up to the special temperature with the ambient temperature, its unit volume increases. When the ambient temperature falls down to special value, Automatic Temperature Regulating Agent also falls down to the special temperature with the ambient temperature, its unit volume reduces. The agent is loaded in the purpose-made thermostatic element. The variation of ambient temperature takes a pressure and the thermostatic element takes a change, and this change brings the movement of either the appurtenance of the thermodynamic component or itself, thereby carrying out the automatic opening & closing function. All sorts of temperature controllers and the electrical switches are developed depending on the physical feature of Automatic Temperature Regulating Agent. It has been widely used in the fields of refrigeration, auto-control system, automobile industry, petrochemical industry, sanitary ware, heating and ventilating, electric electron, building, space & aviation etc.
Model Number |
Appearance (Normal Temperature) |
Quality Standard |
|||
Range of Temperature Control |
Effective Distance Travel |
Water-Solubility Acid and Alkali |
Mechanical Impurity |
||
A45 |
Powder, Slice , Column |
45/55 |
7 |
Non. |
Non. |
A45-1 |
Powder, Slice , Column |
45/55 |
10 |
Non. |
Non. |
A45-2 |
Powder, Slice , Column |
45/60 |
11 |
Non. |
Non. |
A48 |
Powder, Slice , Column |
48/60 |
7 |
Non. |
Non. |
A50 |
Powder, Slice , Column |
50/60 |
8 |
Non. |
Non. |
A50-1 |
Powder, Slice , Column |
50/75 |
6 |
Non. |
Non. |
A51 |
Powder, Slice , Column |
51/60 |
10 |
Non. |
Non. |
A52 |
Powder, Slice , Column |
52/55 |
3 |
Non. |
Non. |
A53 |
Powder, Slice , Column |
53/59 |
7 |
Non. |
Non. |
A54 |
Powder, Slice , Column |
54/67 |
9 |
Non. |
Non. |
A55 |
Powder, Slice , Column |
55/62 |
7 |
Non. |
Non. |
A55-1 |
Powder, Slice , Column |
55/65 |
10 |
Non. |
Non. |
A55-2 |
Powder, Slice , Column |
55/70 |
11 |
Non. |
Non. |
A57 |
Powder, Slice , Column |
57/66 |
10 |
Non. |
Non. |
A58 |
Powder, Slice , Column |
58/70 |
8 |
Non. |
Non. |
A60 |
Powder, Slice , Column |
60/70 |
6 |
Non. |
Non. |
A60-1 |
Powder, Slice , Column |
60/70 |
10 |
Non. |
Non. |
A60-2 |
Powder, Slice , Column |
60/75 |
4 |
Non. |
Non. |
A60-3 |
Powder, Slice , Column |
60/75 |
11 |
Non. |
Non. |
A60-4 |
Powder, Slice , Column |
60/80 |
2 |
Non. |
Non. |
A60-5 |
Powder, Slice , Column |
60/85 |
10 |
Non. |
Non. |
A60-6 |
Powder, Slice , Column |
60/100 |
5 |
Non. |
Non. |
A63 |
Powder, Slice , Column |
63/75 |
8 |
Non. |
Non. |
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We have now our possess revenue group, design staff, technical crew, QC team and package group. We now have strict excellent regulate procedures for each process. Also, all of our workers are experienced in printing subject for Best Price for Medial Temperature Wax Export to Portugal, The product will supply to all over the world, such as: Azerbaijan , Madagascar , San Francisco , Establish long term and win-win business relationships with all our customers, share the success and enjoy the happiness of spreading our products to the world together. Trust us and you will gain more. Please feel free to contact us for more information, we assure you of our best attention at all times.
Thin film substrates sales@dmphotonics.com
Lanthanum Strontium Aluminum Tantalum Oxide ( LSAT ) crystals sales@dmphotonics.com
LSAT and LaAlO3 crystals sales@dmphotonics.com
LSAT (100): (LaAlO3)0.29(SrAl0.5Ta0.5O3)0.71
Orientation: (100)
Low miscut (less than 0.2 deg.)
10mm x 10mm x 0.5mm
LaAlO3 LaAlO3 (100)
Low miscut (less than 0.2 deg.)
10mm x 10mm x 0.5mm
LaAlO3 single crystal provides a good lattice match to many materials with perovskite structure. It is an excellent substrate for epitaxial growth of high Tc superconductors, magnetic and ferro-electric thin films. The dielectric properties of LaAlO3 crystal are well suitable for low loss microwave and dielectric resonance applications. We can supply as-grown boules, as-cut blanks and epi-polished substrates up to 3″ diameter.
Lanthanum Strontium Aluminum Tantalum Oxide ( LSAT )
Crystal properties
Crystal growth method Czochralski
Lanthanum Strontium Aluminum Tantalum Oxide LSAT
Crystal growth orientation (100) (110) (111)
Crystal structure cubic m3m Mixed Peroviskite
Approximately Molecular Form (La0.3Sr0.7) (Al0.65Ta0.35)O3
Cell parameter a = 7.737 Å
Melting point 2113° K
Density 6.64 g / cm3
Specific Heat 5.1 W / m·k
Thermal Expansion (10-6k-1) 8.2 (295° K) 11 (973° K)
Dielectric Constant (εr) 22.7 (291° K / 1 MHz) 21.7 (90° K / 10 kHz)
Dielectric loss (tgδ) 7.47 x 10-5 (90° K / 10 kHz)
Hardness (Mohs) 6.5
Featured Research:
Research
CMD is engaged in various areas of materials research, with particular focus on energy-related applications, polymers, porous materials, and nanomaterials. However, our broad base of synthesis, formulation and characterization instrumentation is of general applicability, and projects fields as diverse as catalysts, lubricants, home and personal care, biomedical devices and inorganic coatings are also served.
The scientific team based at CMD work closely with the Cooper Group, other academic groups within the Department of Chemistry, and with researchers from external organizations. Our involvement in other initiatives, such as the NWDA-funded Knowledge Centre in Materials Chemistry (KCMC), facilitates interaction with other UK institutions.
The scope of research conducted at CMD is broad, but can be grouped into four generic areas:
HT method development: the development of new or improved techniques to enhance expertise and capability in the field of HT research.
New materials discovery: the use of automated synthesis and characterization to discover wholly new materials with step-changes in performance.
Material optimization: “scaling-out” the development of existing products to improve performance, reduce costs or strengthen IP claims.
Property / behavior investigation: automated or parallel experimentation to facilitate detailed mechanistic investigations, kinetic studies, reproducibility studies, etc.
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