By Theodore Provder
Addresses the impression of desktop technology on automation, modeling, simulation, and optimization of polymer technology due to the availability of extra strong, lower-cost pcs and modeling software program. 5 sections illustrate a wide selection of modeling purposes, together with laboratory and data automation; mathematical modeling, simulation, and optimization; cross-linking reactions and therapy technique modeling; polymerization kinetics and method modeling; and polymerization approach keep an eye on.
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Additional info for Computer Applications in Applied Polymer Science II. Automation, Modeling, and Simulation
Temperatures and l i q u i d l e v e l s and, i f appropriate, l i q u i d composit i o n s are monitored and adjusted when n e c e s s a r y . The b l o t t i n g stations are being improved and options, such as specimen washing with d i s t i l l e d water, w i l l be a v a i l a b l e . ; ACS Symposium Series; American Chemical Society: Washington, DC, 1989. 40 COMPUTER APPLICATIONS IN APPLIED POLYMER SCIENCE II Figure 7. Configuration of the materials durability test system: 1, Zymark robot arm; 2, Mettler balance; 3, blotting station; 4, capping station; 5, specimen rack; 6, water bath; 7, block oven; 8, vacuum oven; 9, freezing chamber; 10, NDT station; 11, automated micrometer; and 12, washing station.
Specimens may be passed from robot-torobot o r , i f one of the robots i s otherwise o c c u p i e d , placed temporarily i n a specimen holder. Eventually, most specimens arrive at location C where they are placed e i t h e r i n a rack with other specimens or i n sample j a r s for water (or brine solution) immersion testing as described previously. The computer keeps track of each specimen and a f t e r each weighing d e c i d e s when, and i f , another weighing w i l l take place. Per requirement, the robot may run NDT measurements or redetermine thicknesses of specimens.
ACS Symposium Series; American Chemical Society: Washington, DC, 1989. 5. ; ACS Symposium Series; American Chemical Society: Washington, DC, 1989. ; ACS Symposium Series; American Chemical Society: Washington, DC, 1989. 5025 4. 65E+00 SPEED: (X) STRAIN YIELD E N G I N E E R I N G ) . 95E+02 IN. 9E+05 report. 9E+05 4 (PSD MODULUS YOUNGS oooo YES YES GAUGE: BREAK? 4927 POLYSTYRE DEPTH WIDTH ;AMPLE: SPECIMEN SPECIMEN D E G YIELD SCOTT 0 3 0 0 0 0 . 0 RICHARD L. * TEMPERATURE: DATA ORDER: RICHARD BY: RAW WORK TO: PLASTICS 5.
Computer Applications in Applied Polymer Science II. Automation, Modeling, and Simulation by Theodore Provder