End caps for a battery pack. The end caps have opposing flanges for securing therebetween batteries. At the lateral edges of the flanges, a space is provided for at least a portion of a battery being secured in the pack to protrude outwardly, so that the battery pack is secured without extra width f
End caps for a battery pack. The end caps have opposing flanges for securing therebetween batteries. At the lateral edges of the flanges, a space is provided for at least a portion of a battery being secured in the pack to protrude outwardly, so that the battery pack is secured without extra width for the end caps. The end caps are compressively engaged to make electrical connection with the terminals of the uppermost and the lowermost batteries. A strapping tape is utilized for wrapping the battery pack around a longitudinal exist to tightly compress batteries between the end caps. The tape is covered by and further compressed with a tightly compressing shrink wrap material.
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End caps for a battery pack. The end caps have opposing flanges for securing therebetween batteries. At the lateral edges of the flanges, a space is provided for at least a portion of a battery being secured in the pack to protrude outwardly, so that the battery pack is secured without extra width f
End caps for a battery pack. The end caps have opposing flanges for securing therebetween batteries. At the lateral edges of the flanges, a space is provided for at least a portion of a battery being secured in the pack to protrude outwardly, so that the battery pack is secured without extra width for the end caps. The end caps are compressively engaged to make electrical connection with the terminals of the uppermost and the lowermost batteries. A strapping tape is utilized for wrapping the battery pack around a longitudinal exist to tightly compress batteries between the end caps. The tape is covered by and further compressed with a tightly compressing shrink wrap material. p. 1983-1992 (Dec. 1994). "A Unique Solid Amine Sorbent . . . , " Greenhouse Gas Control Technologies, pp. 113-118 (1999). "Solubility of Carbon Dioxide . . . , " J. Chem. Eng. Data 43, pp. 635-637 (1998). "An Investigation of Some . . . ," Ind. Eng. Chem. Res. 36, pp. 1779-1790 (1997). "Study on CO2 Removal . . . ", Greenhouse Gas Control Technologies, pp. 95-100 (1999). "Comparative Study of Various . . . ," Studies in Surface Science and Catalysis 14, 669-672 (1998). "Recent Design Developments . . . ," Trans. Am Inst. Chem. Engrs. 37, pp. 363-384 (1941). "The Rate of Absorption . . . ," Trans Am Inst. Chem. Engrs. 37, pp. 827-852 (1941). "Equilibrium Absorption of . . . ," Trans. Am Inst. Chem. Engrs. 32, pp. 27-48 (1935). Performance of Packed Towers . . . , Trans. Am Inst. Chem. Engrs. 36, pp. 39-70 (1939). "Uptake of Gas-Phase SO2 . . . ,", J. Phys. Chem. A. 104, pp. 7502-7510 (2000). "Physicochemical Properties . . . ," J. Chem. Eng. Data 34, pp. 385-391 (1989). "Feasibility, Modeling and . . . ," Environmental Progress 10:1, pp. 64-74 (1991). "Mass Transfer Enhancement . . . ," Chemical Engineering Science 55, pp. 5851-5856 (2000). "Mass Transfer with Complex . . . ," Chemical Engineering Journal 76, pp. 127-152 (2000). "A Laboratory and Theoretical . . . ," Atmospheric Environment 34, pp. 2865-2871 (2000). "Analysis of Mass Transfer . . . ," J. Aerosol Sci. 28:7, pp. 1233-1249 (1997). "Chemical Reaction Effects . . . ," Off. Proc. Comb. Conf. (1993) [Abstract]. 19771100, Jones, 075/010.48; US-RE29567, 19780300, Murton, 075/010.41; US-4113469, 19780900, Grenfell et al., 075/386; US-4222768, 19800900, Suyama, 075/010.42; US-4236913, 19801200, Austin, 075/010.44; US-4514218, 19850400, Inagaki, 075/010.12; US-4560405, 19851200, Miyawaki et al., 075/010.45; US-4699654, 19871000, Maddever et al., 075/010.45; US-4701214, 19871000, Kaneko et al., 075/481; US-5186741, 19930200, Kotraba et al., 075/484; US-5641336, 19970600, Roth, 075/010.61; US-5961055, 19991000, Lehtinen, 241/024.14; US-6251156, 20010600, Hoffman et al., 075/010.6
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