Some of the rivets that held the ship together may have been weak.
In 1985, when an American-French expedition finally located the historic wreck, investigators discovered that, contrary to earlier findings, the Titanic had not sunk intact after hitting the iceberg but had broken apart on the ocean’s surface. Materials scientists Tim Foecke and Jennifer Hooper McCarty have cast blame on some of the more than 3 million rivets that held the hull’s steel plates together. They examined rivets brought up from the wreck and found them to contain a high concentration of “slag,” a smelting residue that can make metal split apart. This may have weakened the part of the Titanic’s hull that hit the iceberg, causing it to break apart upon impact.
Mirages and hazy horizons were created by weather conditions.
Two studies done around the time of the 100th anniversary of the Titanic disaster in 2012 suggested that nature played a key role in the ship’s fate. The first argued that the Earth came unusually close to both the moon and the sun that year, increasing their gravitational pull on the ocean and producing record tides, which caused increased amounts of floating ice in the North Atlantic around the time of the sinking.
The second study, by British historian Tim Maltin, claimed that atmospheric conditions on the night of the disaster might have caused a phenomenon called super refraction. This bending of light could have created mirages, or optical illusions, that prevented the Titanic’s lookouts from seeing the iceberg clearly. It also would have made the Titanic appear closer, and smaller, to the nearby ship the Californian, causing its crew to assume it was a different ship without a radio, preventing them from attempting to communicate. From their vantage point, and with these hazy conditions, when the Titanic started to sink, the Californian’s crew would have thought it was merely sailing away.