NASA · United States

Project Mercury

26
Launches (as of February 23, 2026)
6
Crewed missions
August 21, 1959
First launch
May 15, 1963
Last launch

Project Mercury was the first crewed spaceflight programme of the United States and the first great undertaking of NASA as a civilian agency. Begun in 1958, the year the agency itself was created, and completed in 1963, it drew on the work of more than two million people across government bodies and much of the aerospace industry in the space of five years. Its aims were stated plainly at project go-ahead and never changed: place a crewed spacecraft in orbital flight around the Earth, investigate what a human being could actually do in the environment of space, and recover both the pilot and the spacecraft safely. The programme inherited more than a decade of NACA research at the Langley and Ames laboratories into reentry shapes, aerodynamic heating and multistage solid-fuel research rockets, and it inherited two military missiles that became its launch vehicles: the Army's Redstone for the ballistic hops and the Atlas, descended from the Convair MX-774, for orbital flight. On that basis the Space Task Group formed at Langley under Robert R. Gilruth settled on a small blunt-body capsule recovered at sea and placed it with McDonnell Aircraft Corporation, chosen as prime contractor early in 1959 after a competition that drew in most of the American airframe industry. The flight sequence that followed was long and deliberately cautious. Twenty uncrewed missions flew before any astronaut did: escape-system tests launched by the Little Joe booster from Wallops Island, qualification flights of the capsule and its heat shield, Redstone and Atlas development launches, one flight on a Scout vehicle and a beach abort that used no launch vehicle at all. Several of those missions failed outright or met only part of their objectives, and it was precisely those failures — a structure that gave way, a vehicle destroyed in flight, a separation that did not happen — that shaped the final design before a life was put at risk. The six crewed flights ran from May 1961 to May 1963 and totalled fifty-three hours, fifty-five minutes and twenty-seven seconds. Alan Shepard opened the series with the suborbital hop of Freedom 7; Virgil "Gus" Grissom repeated the profile aboard Liberty Bell 7; John Glenn became the first American to orbit the Earth in Friendship 7 in February 1962; Scott Carpenter flew the same three orbits in Aurora 7; Walter Schirra doubled the duration with the six orbits of Sigma 7; and Gordon Cooper closed the programme with the twenty-two orbits of Faith 7. Mercury turned a hypothesis into a demonstrated fact: a person could function in weightlessness, fly the spacecraft and come home. The seven astronauts chosen in 1959 became the core from which the Gemini and Apollo crews were later drawn, and the capsule, the pressure suit, the worldwide tracking network and the sea-recovery procedure became the pattern on which the whole of subsequent American human spaceflight was built.

Objectives

The objectives of Project Mercury, as stated by NASA at project go-ahead, were three and never changed: to place a crewed spacecraft in orbital flight around the Earth; to investigate a human being's performance capabilities and ability to function in the environment of space; and to recover both the pilot and the spacecraft safely. All three were met: orbital flight came with Friendship 7 in 1962, the study of human performance in weightlessness was an explicit purpose of the Carpenter and Cooper missions, and all six crews — and most of the capsules — were recovered at sea. Source: NASA, "Project Mercury Objectives and Guidelines".

Rockets

Missions of Project Mercury

Mission numberMissionsLaunch dateLaunch vehicleCrew sizeDurationOutcome
1Little Joe 1August 21, 1959Little Joe0 minFailure
2Big Joe 1Sep 9, 1959, 8:19 AMAtlas D (10-D)13 minPartial success
3Little Joe 6October 4, 1959Little Joe5 minPartial success
4Little Joe 1ANovember 4, 1959Little Joe8 minPartial success
5Little Joe 2December 4, 1959Little Joe11 minSuccess
6Little Joe 1BJanuary 21, 1960Little Joe8 minSuccess
7Beach AbortMay 9, 19601 minSuccess
8Mercury-Atlas 1July 29, 1960Atlas D (50-D)Failure
9Little Joe 5November 8, 1960Little Joe2 minFailure
10Mercury-Redstone 1November 21, 1960Redstone0 minFailure
11Mercury-Redstone 1ADecember 19, 1960Redstone15 minSuccess
12Mercury-Redstone 2January 31, 1961Redstone16 minPartial success
13Mercury-Atlas 2February 21, 1961Atlas D (67-D)17 minSuccess
14Little Joe 5AMarch 18, 1961Little JoePartial success
15Mercury-Redstone BDMar 24, 1961, 5:30 AMRedstone8 minSuccess
16Mercury-Atlas 3Apr 25, 1961, 4:15 PMAtlas D (100-D)7 minFailure
17Little Joe 5BApril 28, 1961Little Joe5 minPartial success
18Mercury-Redstone 3May 5, 1961Redstone1Success
19Mercury-Redstone 4July 21, 1961Redstone115 minSuccess
20Mercury-Atlas 4Sep 13, 1961, 2:04 PMAtlas D (88-D)1 hr 49 minPartial success
21Mercury-Scout 1November 1, 1961Scout1 minFailure
22Mercury-Atlas 5November 29, 1961Atlas D (93-D)3 hr 20 minSuccess
23Mercury-Atlas 6February 20, 1962Atlas D14 hr 55 minSuccess
24Mercury-Atlas 7May 24, 1962, 12:45 PMAtlas D14 hr 56 minSuccess
25Mercury-Atlas 8October 3, 1962Atlas D19 hr 13 minSuccess
26Mercury-Atlas 9May 15, 1963, 1:04 PMAtlas D11 day 10 hrSuccess

History

An inheritance from the NACA

Mercury was not improvised in the shock of 1957. The NACA laboratories had been working for years on the very problems that would later decide the shape of the capsule. At Langley, the Pilotless Aircraft Research Division had been developing multistage solid-fuel research rockets since 1952 to probe hypersonic flight, firing four- and five-stage vehicles from Wallops Island at speeds no wind tunnel could reproduce. Between 1952 and 1956, Langley and Ames personnel studied the aerodynamic characteristics of reentry configurations systematically, and in its early studies Langley identified the greatest obstacle at once: aerodynamic heating. Until that was solved, the design of a practical spacecraft was, in its own words, impractical. To attack it, both laboratories built high-temperature jets, tunnels and other facilities for materials and structures research at hypersonic speeds during 1955 and 1956.

The two missiles that would become the programme's launch vehicles were maturing in parallel. Convair's MX-774, first test-fired in 1948 and shelved soon afterwards, was revived in 1951 under the name Atlas; its first launch attempt from Cape Canaveral ended in an explosion shortly after lift-off, and the second vehicle was also destroyed. The Redstone, whose development had begun in 1950, was first test-fired at the Cape in the first half of the decade, and in 1956 the Army Ballistic Missile Agency was activated at Huntsville to complete it and to develop the Jupiter. Neither missile had been conceived to carry people: Mercury adopted them and had to put both through a full man-rating effort.

Project Mercury
Astronauta Scott Carpenter durante entrenamiento en centrifugadora, entrenamiento común del programa (B59-00570)

The bridge between research and programme was built by the internal presentations on manned orbital flight that Maxime A. Faget and other Langley engineers circulated in the late nineteen-fifties, and by the Special Committee on Space Technology that the NACA established in November 1957 to delineate the problems that had to be solved to make space flight a practical reality. When the NACA became NASA in 1958, that groundwork already existed and already had owners.

The Space Task Group and the choice of contractor

The organisation that ran Mercury was formed at Langley late in 1958 as the Space Task Group, led by Robert R. Gilruth, who would remain responsible for the project throughout its life. At NASA Headquarters, Abe Silverstein and George Low oversaw the programme and set the schedule for evaluating and negotiating the manned satellite capsule.

The capsule competition was run under specification S-6 and drew eleven bidders: AVCO, Chance-Vought, Convair, Douglas, Grumman, Lockheed, Martin, McDonnell, North American, Northrop and Republic. The Space Task Group first laid down the procedures for the technical assessment of the proposals, and the Source Selection Board at Headquarters — Silverstein, Ralph Cushman, George Low, Walter Schier, DeMarquis Wyatt and Charles Zimmerman — reported its findings on 9 January 1959: McDonnell Aircraft Corporation would be prime contractor for the Mercury spacecraft. Technical and legal negotiations opened five days later and were completed on 26 January. McDonnell estimated at the time that the first three spacecraft could be delivered in ten months; the programme would need considerably longer.

One early technical decision captures the project's temperament. At a Space Task Group meeting it was agreed to negotiate with McDonnell for a design that could be fitted with either a beryllium heat sink or an ablation heat shield, because Gilruth, as project director, held that for safety both should be available. Subcontracting followed the same instinct for spreading risk: the stabilisation system went to Minneapolis-Honeywell, and manufacture was concentrated at the McDonnell plant in St. Louis.

Project Mercury
Centro de Control de Misión de la NASA en Cabo Cañaveral, 1964

There was even an attempt to rename the programme. In December 1958 a proposal circulated at Headquarters to change "Project Mercury" to "Project Astronaut"; it went nowhere, and the messenger of the gods kept the job.

The objectives, and what they excluded

The three objectives fixed at project go-ahead — crewed orbital flight, investigation of human performance in space, and safe recovery of man and machine — were valuable above all for what they left out. Mercury did not attempt orbital manoeuvring, rendezvous or long duration. It set out to show that the whole chain, from lift-off to recovery at sea, worked with a person inside it. That deliberate narrowness is what made a five-year programme possible.

The Mercury Seven

Pilot selection began with paperwork. In the first fortnight of February 1959, some five hundred service records were reviewed and roughly a hundred and ten men appeared to qualify. Interviews in Washington were followed by medical examinations and stress testing, and on 9 April 1959, at a press conference, the nation met the seven chosen as its nominees for the first human voyages into space: Malcolm Scott Carpenter, Leroy Gordon Cooper, John H. Glenn, Virgil I. "Gus" Grissom, Walter M. Schirra, Alan B. Shepard and Donald K. "Deke" Slayton. The official chronology records the internal effect: now that men had been chosen as the focal point of the whole effort, new spirits animated the Space Task Group.

All seven were military test pilots, and none was a passenger. They worked on cockpit layout, on the definition of the controls and on the training of ground teams, dividing the technical territory among themselves. Slayton was grounded by a heart condition and never flew in Mercury; his flight came many years later on the Apollo-Soyuz Test Project. The other six flew one mission each, and several went on to later programmes: Grissom to Gemini III and Apollo 1, Schirra to Gemini VI-A and Apollo 7, Cooper to Gemini V, Shepard to Apollo 14, and Glenn, far later, to the Shuttle mission STS-95.

Little Joe: testing escape without spending an Atlas

Testing the capsule's escape system called for a cheap, available rocket able to carry a boilerplate to the harshest dynamic-pressure conditions of the ascent. The answer was Little Joe, a solid-fuel vehicle designed for exactly that. The bidders' briefing was held in October 1958; the airframe contract went to North American Aviation at the end of December and the letter of intent was placed on the last day of the year. The vehicle stood forty-eight feet tall and just under seven feet across, clustering four Pollux and four Recruit solid motors, and the Space Task Group ordered all the major motors early so as not to jeopardise the test schedule. Launches were made from Wallops Island with technical support from Langley Research Center, and some flights carried biological payloads: pigs and small primates were planned, and in practice the monkeys Sam and Miss Sam flew.

Project Mercury
Centro de Control de Misión de Cabo Cañaveral del Project Mercury

The Little Joe series was a catalogue of lessons. The first vehicle, LJ-1, never left the pad in August 1959: the escape rocket fired by itself half an hour before the scheduled launch and took the boilerplate with it. Later flights probed escape at different altitudes and dynamic pressures, alternating success and failure, until the tower had shown it could pull the capsule off the booster at the worst possible moment of the climb.

Big Joe, Redstone and the development flights

Heat-shield qualification came with Big Joe, a September 1959 flight launched by an Atlas for which the Space Task Group leaned on the instrumentation facilities of the Lewis centre. Qualification of the Mercury-Redstone, which was to carry the first American on a ballistic trajectory, ran in parallel. The first attempt, MR-1, produced in November 1960 one of the most remembered episodes of the programme: the engine cut off a few centimetres off the pad, the rocket settled back down, and the escape tower fired away on its own, leaving the capsule sitting intact on the vehicle. MR-1A repeated the flight successfully in December. In January 1961, MR-2 carried the chimpanzee Ham on a more energetic profile than planned, and its results argued for inserting one further development flight, MR-BD, before risking a pilot. That decision — taken with the Soviet Union close behind — delayed the first American crewed flight by weeks.

The Atlas branch was rougher. MA-1 was destroyed in flight in July 1960; MA-2 flew well in February 1961; MA-3 had to be destroyed in April 1961 when the vehicle failed to follow its flight programme; MA-4 finally placed a capsule in orbit in September 1961 and it was recovered, though sources differ on how successful the mission is deemed to have been; and in November 1961 MA-5 carried the chimpanzee Enos, who completed two orbits instead of the three planned because of a vehicle problem but came back healthy. The development census was completed by one Scout launch, MS-1, intended to check out the tracking network, and by the Beach Abort test, in which the capsule was pulled off the sand by its own tower with no launch vehicle at all.

The six crewed flights

On 5 May 1961, Alan Shepard flew Freedom 7 on a ballistic arc of a little over a quarter of an hour and became the first American in space. In July, Virgil Grissom repeated the profile in Liberty Bell 7; the capsule sank after splashdown when the hatch blew prematurely, and the pilot was pulled from the water.

Project Mercury
Diagrama del sistema de aterrizaje en tierra de la cápsula Mercury

The qualitative leap came on 20 February 1962, when John Glenn circled the Earth three times aboard Friendship 7 and became the first American to orbit. In May, Scott Carpenter flew the same three orbits in Aurora 7, devoting much of the flight to experiments and observation at a cost in propellant that forced a manual reentry and a long splashdown. On 3 October 1962, Walter Schirra flew six orbits in Sigma 7 in what was then the longest American orbital flight, executed with an almost demonstrative economy of propellant. The programme closed in May 1963 with Faith 7: Gordon Cooper completed twenty-two orbits, spent more than a day in space and had to fly the reentry by hand after an electrical failure. Together the six missions accumulated fifty-three hours, fifty-five minutes and twenty-seven seconds of crewed flight.

What Mercury left behind

The official summary describes a first American manned space flight project successfully accomplished in a five-year period of dynamic activity that brought together more than two million people from many major government agencies and much of the aerospace industry. Mercury left no permanent infrastructure and no reusable vehicle: it left certainties. That a human being can work in weightlessness without serious degradation; that a small ballistic-reentry capsule is a viable answer; that sea recovery works; that a worldwide tracking network and a flight control organisation are as much part of the spacecraft as the heat shield. Gemini and Apollo were built on those certainties, and the same men who established them flew on.

Sources: NASA — Project Mercury