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Dragon Ball Z: The Return of Cooler [a] is a 1992 Japanese anime science fiction martial arts film, the sixth Dragon Ball Z film, originally released in Japan on March 7 at the Toei Anime Fair along with the second Dragon Quest: Dai no DaibÅken film and the third Magical Taruruto-kun film.
The two most prevalent shape-memory alloys are copper-aluminium-nickel and nickel-titanium (), but SMAs can also be created by alloying zinc, copper, gold and iron.Although iron-based and copper-based SMAs, such as Fe-Mn-Si, Cu-Zn-Al and Cu-Al-Ni, are commercially available and cheaper than NiTi, NiTi-based SMAs are preferable for most applications due to their stability and practicability [1 ...
Igloo began in 1947 as a metalworking shop that produced metal water coolers for blue-collar workers. In early 1960, Igloo merged with the Production Tooling Company, and the company name changed to Texas Tennessee Industries (TTI). The company's marketing arm was the John T. Everett Company, a company from Memphis, Tennessee. [1]
It was later released in Double Feature set along with The Return of Cooler (1992) for Blu-ray and DVD on November 11, 2008, both feature full 1080p format in HD remastered 16:9 aspect ratio and an enhanced 5.1 surround mix. The film was re-released to DVD in remastered thinpak collection on November 1, 2011, containing the first 5 Dragon Ball ...
Hamilton-Skotch was founded as the Hamilton Metal Products Company in 1919 in Hamilton, Ohio. It was formed by Louis Piker, J. Schlichter and Phillip Piker when they raised $30,000 in capital and merged their businesses, the Hamilton Sheet Metal Company and the Schlichter Manufacturing Company. [1]
Fusible alloys are typically made from low melting metals. There are 14 low melting metallic elements that are stable for practical handling. These are in 2 distinct groups: The 5 alkali metals have 1 s electron and melt between +181 (Li) and +28 (Cs) Celsius; The 9 poor metals have 10 d electrons and from none (Zn, Cd, Hg) to three (Bi) p electrons, they melt between -38 (Hg) and +419 (Zn ...
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Any cores are set in place and the mold is closed. The molten metal is poured while the cope and drag are still under a vacuum, because the plastic vaporizes but the vacuum keeps the shape of the sand while the metal solidifies. When the metal has solidified, the vacuum is turned off and the sand runs out freely, releasing the casting. [9] [10]