Cargo/weapons Elevators Parts

End item NSN parts
Filter By: Needle Bearing Cam Followers
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Part Number
NSN
NIIN
122-2404528 PIECE 3 Needle Bearing Cam Follower
001623766
521-4711884 PIE Needle Bearing Cam Follower
008076022
70003-006 Needle Bearing Cam Follower
008076022
9451-0070 Needle Bearing Cam Follower
008076022
993-149731 ITEM 14 Needle Bearing Cam Follower
004985573
CCYR-1 3/4S Needle Bearing Cam Follower
010289513
CCYRL1-3-4S Needle Bearing Cam Follower
010289513
CF-1-3/4-SB Needle Bearing Cam Follower
002882029
CF-1-S Needle Bearing Cam Follower
008076022
CF-2 1/2-SB Needle Bearing Cam Follower
004985573
CF-2 3/4-SB Needle Bearing Cam Follower
011364513
CF-3-S-2J Needle Bearing Cam Follower
000708281
CF1S-43 Needle Bearing Cam Follower
008076022
CF1SMILG3278 Needle Bearing Cam Follower
008076022
CF2-1-2SB Needle Bearing Cam Follower
004985573
CF3 Needle Bearing Cam Follower
000708281
CF3S Needle Bearing Cam Follower
000708281
CFH-2.5SB Needle Bearing Cam Follower
001639911
CFH-3-S Needle Bearing Cam Follower
010222041
CFH2 1-2SB Needle Bearing Cam Follower
001639911
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Elevators, Cargo/weapons

Picture of Cargo/weapons Elevators

A space elevator is a proposed type of space transportation system.

The concept of a space elevator was first published in 1895 by Konstantin Tsiolkovsky. His proposal was for a free-standing tower reaching from the surface of Earth to the height of geostationary orbit. Like all buildings, Tsiolkovsky's structure would be under compression, supporting its weight from below. Since 1959, most ideas for space elevators have focused on purely tensile structures, with the weight of the system held up from above by centrifugal forces. In the tensile concepts, a space tether reaches from a large mass (the counterweight) beyond geostationary orbit to the ground. This structure is held in tension between Earth and the counterweight like an upside-down plumb bob.

To construct a space elevator on Earth the cable material would need to be both stronger and lighter (have greater specific strength) than any known material. Development of new materials which could meet the demanding specific strength requirement is required for designs to progress beyond discussion stage. Carbon nanotubes (CNTs) have been identified as possibly being able to meet the specific strength requirements for an Earth space elevator.

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