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sheepskin ugg boots Compression modulus of gelatin |
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Compression modulus of gelatin gels factors
Increase the amount of alcohol units Lan, chemical coagulation chamber compression modulus win big mention,[link widoczny dla zalogowanych], as shown in Figure 3. . Product concentration of glycerol in Figure 3 and then pour Chang limb compression modulus of a ring Fig3Effectofglycerolcontentoncopmpressmod _ulus' successful sale of materials) 1997.28 (1) ? {j: Head 0 ∞ \the amount of the Ming Mu Nangsuo pressure Chi modulus of the concentration of 25% of the next chamber condensate chamber with 2 formaldehyde chemical changes associated, in deionized water, fan,[link widoczny dla zalogowanych], expansion is not the same time and after Lu set the compression modulus of the sample water content ( D) l be calculated according to D × 100% expansion which twt t hours after the fall of the foot according to the set t {w for Chiang gel samples after expansion in air drying to constant weight room disheartened when the weight of the experimental results shown in Figure 4. satirized eyelashes differences in compression modulus increased water content decreases, the expansion process because the fan - because the water molecules to penetrate the internal network Cui glue and spread indiscriminately. macromolecular chains for the solvent effect The relaxation and gradually to the air show with Chung, making it easy to strain. compressive modulus decreased. field t 4 on the compression modulus of wood tones t ring Fig4Effectofwatereon ~ entoncoInDres8modulus3.4 school cross-linking concentration and crosslinking Jing Wen Jing pressure on the tiny plastic thick of the 2o Ming dirty foot plastic without wait concentration of formaldehyde solution Xinjiang in for cross-linking, cross-linking time was 12h, whipped I set the compression modulus, performance results are shown in Figure 5. Furmwldeh ... t Ⅷ _ ('fields 5 degrees of formaldehyde i disk compression modulus curve of Fig5Ectofformaldetrydeconcentrationo11corn-pressmodulus. The figure shows that with the increase of concentration changes associated compression modulus increases this may be because cross-linking with increasing concentrations of Jing. condensate cavity density variations associated , the gel network in this field - the key ring unit volume increase in the number of macromolecular chains ships next asked for the rejection of the mutual enhancement of the rigidity of vessels increased coagulation, compression modulus increase. But the crosslinker concentration exceeds 6 , due to the crosslinking density is too large, the gel with the heterogeneity of training increased significantly,[link widoczny dla zalogowanych], ignored the chain of local stress concentration is easy to produce, enhanced coagulation cavity age support. can also be seen from the figure, not cross-linked gel with formaldehyde (ie, formaldehyde concentrations of 0) - the compression modulus change associated with formaldehyde, much lower,[link widoczny dla zalogowanych], the former is the physical gelatin gel, molecular chains depend on two forces is the connection i and the latter suppressing the macromolecular chains molecular interaction with a silicon, through the formation of covalent chemical bonding station condensate chamber. further explanation, the use of chemical coagulation chamber,[link widoczny dla zalogowanych], the next chamber compression modulus of the gel increased. Chemical cross-linking of the question of the coagulation volume differences across time compression Blind influence - such as lap 6 below.. Cr ~ llinkina'Jme (h) around 6, when asked on cross-linked compression modulus Fig6Efhctofc ~ osslinklngtimeoncopmpressmod-ulus increase with crosslinking (crosslinking agent formaldehyde concentration of 2 solvent reservoir), increased horizontal compression, but when asked to become associated after 24h. Compression Modulus remained unchanged, indicating chemical crosslinking has become complete. reference text ■ lCrespoJ, torteMA.Qu Oh, and JA tB and . eta1.JournaIolMateriaIsScience, 1995.3OI6 ¨ 5,2 P ~ rouIIourOvM.1ournal0fPo | ymet ~ kencetPartB'PolyTauPkylbcs .1990. g8: 19233Jit * oMa ・ eta1.JApp, PolymSci, 1995,56 l514YaogXiaajia ・ JYanyong.YaoK ~ ogde.eta1.1nterna -t ~ onalCoah.nce ∞ Higha Ⅱ dNewTechnology & Tndi-d0 Ⅱ a1Indmtry.July28 ~ 31,1996. Dsndong.China.5 left set and so on. High Dan son of .1994.2046 ToahlakiTakahnhiTheJou: nalolphotogaphicScience.1992, 40. 212't power engrave materials) 1997.28 (I) 67 two thousand one hundred and eleven ¨] I] one by one \ a \ j chu cited Jin Qu Qu Li ∞ Pa stylesheet; ln, t: l5
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