The Space Shuttle Challenger accident occurred on the morning of January 28 1986, at 11:39 EST, when
Space Shuttle Challenger was destroyed 73 seconds into its flight (at the start of mission STS-51-L, the 25th of the STS program and Challenger
The seal failure caused a flame leak from the SRB that impinged upon the adjacent external propellant tank and aft SRB connecting strut. Within seconds the flame caused structural failure of the external tank, and the orbiter broke up abruptly due to aerodynamic forces. The crew compartment and many other vehicle fragments were eventually recovered from the ocean floor.
The launch was televised live, although most viewers saw it tape-delayed later that day. Christa McAuliffe had been expected to be the first teacher in space, and students worldwide had expected to watch a television broadcast of her delivering a science lesson from space.
U.S. manned space flights did not resume until over two years later, with the launch of the space shuttle Discovery on September 29 1988 with the "Return to Flight" mission STS-26.
At 6.6 seconds before liftoff, the three space shuttle main engines (SSME) ignited. Until liftoff actually occurs, the SSMEs can be safely shut down and the launch aborted if necessary. At liftoff time (T=0), the three SSMEs were at 100% of rated performance and began throttling up to 104% of rated performance under computer control. At this moment, the two SRBs were ignited and hold-down bolts were released with explosives, freeing the vehicle from the pad. With the first vertical motion of the vehicle, the gaseous hydrogen vent arm retracted from the ET but failed to latch back. Review of film shot by pad cameras showed that the arm did not re-contact the vehicle. The post-launch inspection of the pad also revealed that kick springs on four of the hold-down bolts were missing. They were also ruled out as a contributing factor in the accident.
Later review of launch film showed that at T+0.678, strong puffs of dark grey smoke emitted from the right-hand SRB near the aft strut that attaches the booster to the ET. The last smoke puff occurred at about T+2.733. The last view of smoke around the strut was at T+3.375.
T+5.000 seconds: DPS: Liftoff confirmed. Flight: Liftoff...
To prevent aerodynamic forces from tearing the shuttle apart, the SSMEs must throttle down to limit velocity in the dense lower atmosphere. The throttle down operation begins at about T+28 seconds. At T+35.379, the SSMEs throttle back further to the pre-planned 65%.
T+19.859 seconds: Booster: Throttle down to 94. Flight: Ninety four...
T+40.000 seconds: Smith, intercom: There's Mach 1. Scobee: Going through 19,000.
T+48.900 seconds: Booster: Three at 65. Flight: Sixty-five, FiDO... FIDO: T-del confirms throttles. Flight: Thank-you.
At T+51.860, the SSMEs begin throttling back up to 104% as the vehicle approaches Max Q (the area of maximum aerodynamic pressure on the vehicle, approximately 720 pounds per square foot or 34 kilopascals).
T+57.000 seconds: Scobee, intercom: Throttling up.
At an altitude of 35,000 feet, Challenger passes through Mach 1.5 (1.5 times the speed of sound).
T+62.000 seconds: Smith, intercom: "Thirty-five thousand, going through one point five."
T+68.000 seconds: CAPCOM: Challenger, go at throttle up. Scobee: Roger, go at throttle up.
T+73.000 seconds: Smith, intercom: "Uh oh..."
This was the last intercom statement captured by the crew cabin recorder. Smith may have been responding to indications on main engine performance or falling pressures in the external fuel tank. At about T+73.162 the vehicle breakup began.
T+89.000 seconds: Flight: "FIDO, trajectories" FIDO: "Go ahead." Flight: "Trajectory, FIDO" FIDO: "Flight, FIDO, filters (radar) got discreting sources. We're go." FIDO: "Flight, FIDO, till we get stuff back he's on his cue card for abort modes" Flight: "Procedures, any help?" Unknown: "Negative, flight, no data." GC: "Flight, GC, we've had negative contact, loss of downlink (of radio voice or data from Challenger)." Flight: "OK, all operators, watch your data carefully."
At T+110.250 the Range safety officer sends radio signals that detonate the self-destruct packages on the solid rocket boosters (SRBs). He saw the breakup and judged the free-flying SRBs a possible threat to land or sea, so destroyed them, which is normal procedure for such a situation.
T+1 min. 56 seconds PAO: "Flight controllers here are looking very carefully at the situation. Obviously a major malfunction."
T+2 min. 1 second GC: "Flight, GC, negative downlink." Flight: "Copy."
T+2 min. 8 seconds PAO: "We have no downlink."
At T+2 min 20 seconds a TV tracking camera shows falling bits of debris and white contrails against the blue sky. Larger objects plummet toward the ocean, streaming thin vapor trails.
T+2 min. 25 seconds FIDO: "Flight, FIDO." Flight: "Go ahead." FIDO: "RSO (range safety officer) reports vehicle exploded." Flight: (after a long pause): "Copy. FIDO, can we get any reports from recovery forces?" FIDO: "Stand by."
T+2 min. 45 seconds Flight: "GC, all operators, contingency procedures in effect."
T+60.004: Internal pressure in the right-side SRB begins to drop because of the rapidly enlarging hole in the failed joint
T+60.238: Initial evidence of flame through the rupture impinging on the external tank
T+64.660: The plume suddenly changes shape, indicating a leak has begun in the liquid hydrogen tank, the aft portion of the external tank
T+64.937: Main engine nozzles pivot under computer control to compensate for the unbalanced thrust produced by the booster burn through
T+66.764: Pressure in the shuttle's external liquid hydrogen tank begins to drop, indicating a massive leak
T+72.284: The right SRB apparently pulls away from the aft strut attaching it to the external tank
T+73.124: The aft dome of the liquid hydrogen tank fails, producing a propulsive force pushing the tank into the liquid oxygen tank in the forward external tank. At the same time, the right SRB rotated about the forward attach strut and struck the intertank structure
With the external tank disintegrating, Challenger veered from its correct attitude with respect to the local air flow and was immediately torn apart by aerodynamic forces. The two SRBs, which can withstand greater aerodynamic loads, separated from the ET and began to fly independently.
The Shuttle and External Tank did not actually "explode"; there was no detonation. Instead they rapidly disintegrated under tremendous aerodynamic forces, since the shuttle was near "Max Q", or maximum aerodynamic pressure. The more robustly constructed crew cabin and SRBs survived the breakup. As the detached cabin continued along its ballistic trajectory, the fuel and oxidizer stored in the ET and orbiter reaction control system burned in a few seconds, producing a massive fireball. Had there been a true explosion, the entire Shuttle would have been instantly destroyed, killing the crew at that moment.
The two separated SRBs continued to burn as they flew away from the fireball.
At vehicle breakup, the robustly constructed crew cabin detached in one piece and slowly tumbled. NASA estimated separation forces at about 12 to 20 times the force of gravity (g) very briefly; within two seconds forces were below 4 g, within ten seconds the cabin was in free fall. These forces were likely insufficient to cause major injury.
Whether the astronauts remained conscious long after the breakup is unknown, and largely depends on whether the detached crew cabin maintained pressure integrity. If it did not, time of useful consciousness at that altitude is just a few seconds. The PEAPs supplied only unpressurized air, and hence would not have helped much.
The crew cabin impacted the ocean surface at roughly 207 miles per hour (333 km/hour), causing deceleration of over 200 g, far beyond the structural limits of the crew compartment or crew survivability levels.
On July 28, 1986, Rear Admiral Richard H. Truly, NASA's Associate Administrator for Space Flight and a former astronaut, released a report from Joseph P. Kerwin, biomedical specialist from the Johnson Space Center in Houston, Texas, relating to the deaths of the astronauts in the accident. Dr. Kerwin, a veteran of the Skylab 2 mission had been commissioned to undertake the study soon after the accident.
According to the Kerwin Report: "The findings are inconclusive. The impact of the crew compartment with the ocean surface was so violent that evidence of damage occurring in the seconds which followed the explosion was masked. Our final conclusions are:
His report is available from NASA's History Office.
The same destruct signal would have destroyed the External Tank had it not already disintegrated.
Modified SR-71 Blackbird ejection seats and full pressure suits were used on the first four shuttle orbital missions, considered test flights. They were removed for the operational missions that followed, during which the astronauts wore only cloth flight suits.
NASA reasoned that retaining ejection seats was possible for the commander and pilot, but they were impractical for the rest of the crew, especially the three below deck. Unlike a fighter pilot under a thin canopy, the crew below deck were in the center of the forward fuselage, surrounded by vehicle structure on all sides. Additionally, ejection seats might have problems at Max Q (period of maximum aerodynamic pressure), or because of the SRB exhaust plume. The seats were primarily intended for an escape during landing, since the shuttle is unpowered when landing and has only one chance to make the runway. It would be possible to design the crew cabin as a self-contained escape vessel, but this would have been prohibitively expensive, complex, and have added excessive weight to the vehicle. For more details see shuttle ejection escape systems.
While launch escape systems were often considered during shuttle development, NASA eventually decided the shuttle was sufficiently reliable to not need one. Also launch escape systems entail significant weight and space penalties, and the associated pyrotechnics incur safety issues. Several fighter pilots have been killed due to uncommanded ejections. After the Challenger loss, a bail-out system was designed to give the crew the option to leave the shuttle under certain conditions, not including the Challenger scenario. For more details see Post-Challenger abort enhancements.
Initial criticism was focused on the space shuttle external tank, manufactured by Martin Marietta at the Michoud Assembly Facility in New Orleans, by NASA officials who immediately assumed that the fuel tank had failed and exploded. (New Orleans Times-Picayune, Page One, January 29, 1986). The pressure of the initial investigation caused one of the engineers to suffer a nervous breakdown and he never worked again. The focus of the investigation soon shifted however, to the O-rings on the solid rocket booster, manufactured by Morton Thiokol.
The Presidential Commission on the Space Shuttle Challenger Accident, also known as the Rogers Commission (after its chairman), was formed to investigate the disaster. The Commission members were Chairman William P. Rogers, Vice Chairman Neil Armstrong, David Acheson, Eugene Covert, Richard Feynman, Robert Hotz, Donald Kutyna, Sally Ride, Robert Rummel, Joseph Sutter, Arthur Walker, Albert Wheelon, and Chuck Yeager.
Feynman famously demonstrated during a televised hearing how the O-rings became less resilient and subject to seal failures at ice-cold temperatures by immersing a sample of the material in a glass of ice water. He was so critical of flaws in NASA's "safety culture" that he threatened to not sign off on the report unless it included his assessment, which appeared as Appendix F. He pointed to the discrepancy between management claiming a 1 in 100,000 chance of serious failure and the engineers claiming 1 in only 100, a risk one thousand times greater. The commission worked for several months and published a report of their findings.
The entire length of the SRB is internally hollow, like a lead pencil without the lead. During operation, the entire internal length of the SRB is internally burning and under pressure. The Challenger accident occurred because the aft field joint of the right SRB failed, allowing the pressurized hot gasses and eventually flame to "blow by" the O-ring and make contact with the adjacent external tank, causing structural failure.
In hindsight the field joint was inadequately designed, but likely would not have caused a fatal problem if launched under normal Florida temperatures (over 50 °F or 10 °C). The abnormally low temperatures of the last Challenger mission, combined with the inadequate joint design produced a seal failure. Engineers at SRB manufacturer Morton Thiokol were aware of the problem and warned against launching, but the warning did not reach NASA management.
On the night of the disaster, President Ronald Reagan had been scheduled to give his annual State of the Union address. He initially announced that the address would go on as scheduled, but under mounting pressure he postponed the State of the Union address for a week and gave a national address on the Challenger disaster from the Oval Office of the White House.Ronald Reagan Presidential Library, Address to the nation on the Challenger disaster. Retrieved on July 4, 2006. The speech was written by Peggy Noonan. At its end, he made the following statement, quoting from the poem "High Flight" by John Gillespie Magee, Jr.: "We will never forget them, nor the last time we saw them, this morning, as they prepared for their journey and waved goodbye and 'slipped the surly bonds of earth' to 'touch the face of God.'" Three days later, he and his wife Nancy traveled to the Johnson Space Center for a memorial service to honor the astronauts.
1986 in the United States | Engineering failures | Human spaceflights | Space Shuttle program | Space Shuttle missions | Space program fatalities | Transportation disasters in the United States
STS-51-L | STS-51-L | STS-51-L צ\'לנג\'ר" target="_blank" >* Challenger-katasztrófa | STS-51-L | STS-51-L | Challenger-olyckan
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