Factory directly provided Thermostatic Wax Linearity Series for Finland Factories
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Factory directly provided Thermostatic Wax Linearity Series for Finland Factories Detail:
The characteristic of Thermostatic Wax consists of its volume expansion amount can reach up to 13 ~ 15 % when it is heated from solid to liquid. We use this characteristic, when it is heated to a solid-liquid transformation, its’ heat energy can translate into mechanical energy. Thermostatic Wax has been widely applied to temperature auto regulation of thermal-driving and various thermal-starting devices.
For example, automobile thermostat has been most widely well known, it has cylindrical seal part that loads some Thermostatic Waxes inside. To realize automatic temperature control, it was designed by a special technical specification for the solid-liquid transformation of Thermostatic Wax. When the cylindrical part is heated, Thermostatic Wax in the part is also heated and making a solid-liquid transformation expansion, Thermostatic Wax pushes thermostat’s itself handspike to open the valve. When the cylindrical part gets cold, Thermostatic Wax also cooled and start to shrink, Thermostatic Wax pushes itself handspike back to original situation under the return load force to close up the valve to realize automatic temperature control.
Depending on the main principle of Thermostatic Wax, The developed thermal driving devices and thermostats have been widely applied to automobile thermostat, automobile temperature-control switch for electric fan, various engines cooling water temperature auto controller, lubricant oil temperature auto control, auto cycle enriching valve, industry electric power control valve, water temperature regulating valve, safety device, space heating, fire protection, air filtering, temperature regulating device, sanitary ware and heating temperature controlling valve, air temperature control, ventilating control, solar water heater, automatic door and window, thermal driving electric switch, alarm apparatus, house ventilating, radiator temperature control valve, hot landing device for aviation and automaton etc.
Within temperature control range of –20 ~ 180 ℃ of Thermostatic Wax may compound with different temperature range and different efficient distance according to client’s technical demand. Our company may offer the relative technical service.
Model Number |
Appearance (Normal Temperature) |
Quality Standard |
|||
Range of Temperature Control |
Effective Distance Travel |
Water-Solubility sAcid and Alkali |
Mechanical Impurity |
||
B-5-1 |
Liquid |
-20/-5 |
≥7 |
Non. |
Non. |
B0-1 |
Liquid |
-15/0 |
≥7 |
Non. |
Non. |
B5-1 |
Liquid |
-10/5 |
≥7 |
Non. |
Non. |
B15-1 |
Liquid |
0/15 |
≥7 |
Non. |
Non. |
B20-1 |
Semisolid |
5/20 |
≥7 |
Non. |
Non. |
B25-1 |
Semisolid |
10/25 |
≥7 |
Non. |
Non. |
B30-1 |
Semisolid |
15/30 |
≥7 |
Non. |
Non. |
B35-1 |
Semisolid |
20/35 |
≥7 |
Non. |
Non. |
B40-1 |
Powder, Slice , Column |
25/40 |
≥7 |
Non. |
Non. |
B45-1 |
Powder, Slice , Column |
30/45 |
≥7 |
Non. |
Non. |
B50-1 |
Powder, Slice , Column |
35/50 |
≥7 |
Non. |
Non. |
B55-1 |
Powder, Slice , Column |
40/55 |
≥7 |
Non. |
Non. |
B60-1 |
Powder, Slice , Column |
45/60 |
≥7 |
Non. |
Non. |
B65-1 |
Powder, Slice , Column |
50/65 |
≥7 |
Non. |
Non. |
B70-1 |
Powder, Slice , Column |
55/70 |
≥7 |
Non. |
Non. |
B75-1 |
Powder, Slice , Column |
60/75 |
≥7 |
Non. |
Non. |
B80-1 |
Powder, Slice , Column |
65/80 |
≥7 |
Non. |
Non. |
B85-1 |
Powder, Slice , Column |
70/85 |
≥7 |
Non. |
Non. |
B90-1 |
Powder, Slice , Column |
75/90 |
≥7 |
Non. |
Non. |
B95-1 |
Powder, Slice , Column |
80/95 |
≥7 |
Non. |
Non. |
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Gaining client pleasure is our company's aim without end. We are going to make excellent efforts to create new and top-quality goods, meet your special requirements and provide you with pre-sale, on-sale and after-sale companies for Factory directly provided Thermostatic Wax Linearity Series for Finland Factories, The product will supply to all over the world, such as: United Kingdom , South Korea , Milan , Our domestic website's generated over 50, 000 purchasing orders every year and quite successful for internet shopping in Japan. We would be happy to have an opportunity to do business with your company. Looking forward to receiving your message !
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Daniel R. Knapp, PhD
Distinguished University Professor
Adjunct Professor of Bioengineering
Clemson University
Research Interests
Mass Spectrometry, Protein Structure and Function, Proteomics
The major focus of this laboratory is proteomics, defined as the study of the repertoire of proteins expressed in a system. Work is underway on development of new technology for proteomic analysis using microfluidic devices and new modes of ionization for mass spectrometry analysis. The laboratory includes a cleanroom and other facilities for microfabrication as well as vacuum deposition systems for preparation of nanostructured thin films. Another project is the development of a new approach to dealing with the very large range of protein concentrations encountered in proteomic analysis. The focus of applications is upon cerebrospinal fluid proteomics as an approach to probing changes in the central nervous system.
Recent Publications | Additional Publications
1. R Nayak, A K Sen, J Liu, and D. R. Knapp. Matrix-Free LDI Mass Spectrometry Platform Using Patterned Nanostructured Gold Thin Film, Analytical Chemistry 82: 7772–7778, 2010.
2. Sen AK, Darabi J, Knapp DR. Design, fabrication and test of a microfluidic nebulizer chip for desorption electrospray ionization mass spectrometry. Sens Actuators B Chem. 2009 Apr 2;137(2):789-796. PubMed PMID: 20161284; PubMed Central PMCID: PMC2682712.
3. Nayak R, Liu J, Sen AK, Knapp DR. Dual desorption electrospray ionization-laser desorption ionization mass spectrometry on a common nanoporous alumina platform for enhanced shotgun proteomic analysis. Anal Chem. 2008 Nov 15;80(22):8840-4. Epub 2008 Oct 21. PubMed PMID: 18937429.
4. Waller LN, Shores K, Knapp DR. Shotgun proteomic analysis of cerebrospinal fluid using off-gel electrophoresis as the first-dimension separation. J Proteome Res. 2008 Oct;7(10):4577-84. Epub 2008 Sep 9. PubMed PMID: 18778093.
5. Schilling M, Knapp DR. Enrichment of phosphopeptides using biphasic immobilized metal affinity-reversed phase microcolumns. J Proteome Res. 2008 Sep;7(9):4164-72. Epub 2008 Jul 22. PubMed PMID: 18642943.
6. Chen G, Svec F, Knapp DR. Light-actuated high pressure-resisting microvalve for on-chip flow control based on thermo-responsive nanostructured polymer. Lab Chip. 2008 Jul;8(7):1198-204. Epub 2008 May 23. PubMed PMID: 18584098.
7. Shores KS, Udugamasooriya DG, Kodadek T, Knapp DR. Use of peptide analogue diversity library beads for increased depth of proteomic analysis: application to cerebrospinal fluid. J Proteome Res. 2008 May;7(5):1922-31. Epub 2008 Mar 22. PubMed PMID: 18357977.
8. Sen AK, Nayak R, Darabi J, Knapp DR. Use of nanoporous alumina surface for desorption electrospray ionization mass spectrometry in proteomic analysis. Biomed Microdevices. 2008 Aug;10(4):531-8. PubMed PMID: 18204903.
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