![]() On May 18 Boston department store Jordan Marsh places the first Pyrex orderĬlear Pyrex refrigerator storage dishes introducedĪn estimated 30 million pieces of Pyrex Ware have been sold Pyrex clear ovenware first marketed by Corning as an American made alternative to Duran Jesse Littleton of Corning Glass Works gives his wife a casserole dish made from a cut-down Nonex battery jar Highlights included presentations by glass scholars, noted authors on foodways, design, consumer and material cultures, plus an international panel of Pyrex collectors.Ĭorning Glass Works founded in Somerville, MA, originally as Bay State Glass Co.Īfter subsequently operating as Brooklyn Flint Glass Co, company moved to Corning, NYīorosilicate glass first made by German company Schott AG and marketed as "Duran"Įugene Sullivan of Corning Glass Works develops Nonex, a borosilicate low-expansion glass The Corning Museum of Glass in Corning, NY conducts an annual seminar on glass, and in mid-October of that year, as an accompaniment to the centennial exhibit, its focus was on Pyrex. ![]() Subsequently, sculptured and also tinted clear ware were produced.Ģ015 marked the 100th anniversary of the invention and introduction of Pyrex. In the post-opal ware era, Corning continued to cultivate consumer interest for color and decoration by offering clear ware bowls painted in a variety of shades. Curiously, Pyrex casseroles produced in England were imported and marketed for a brief time. In 1986, however, US Pyrex opalware was all but discontinued. New standard patterns and promotionals continued to be introduced up until about 1983. The 1950s and 1960s saw the release of dozens of seasonal gift items, and the advertising focus shifted to their promotion. The introduction of color ware in the fall of 1945 and, later, new styles and decorative patterns would further enhance the attractiveness of the ware. Post-war, new brides were barraged with Pyrex advertisements in national magazines. The dinnerware developed was later marketed to the hotel and restaurant industry, and would eventually become the basis for the opal glass oven and kitchen ware popular over the next half century.ĭuring World War II, ads stressed that Pyrex ware saved valuable food by allowing cooking, serving, refrigerator storage, and reheating and serving leftovers all from the same utensil without waste. When the request came for a more durable messware for the military, Corning turned its attention to the opal ware produced by MacBeth-Evans, the Charleroi, PA glass company with which it had merged in 1936. Bread was advertised as rising better, and pie crusts as crisping on both bottom and top. Its transparency allowed the cook to assess doneness without uncovering. Littleton had observed, that it heated evenly, actually absorbing and conducting heat rather than reflecting it as metal utensils might. While Pyrex was not the first high heat compatible glass of its kind, it certainly became the most successful in terms of both the scientific ware and kitchenware produced from it.Īs kitchenware, and as bakeware in particular, Pyrex was marketed as being most versatile. Corning was able to survive the poor economy by switching its Pyrex manufacturing process to automated machine pressing, thus enabling a reduction of retail prices by 30-50%. Part of its high cost lay in the fact that, even though annual production numbered in the millions, the pieces were still individually blown by hand. The Great Depression in 1929 dealt Corning and Pyrex a great challenge. And, as cookware, albeit expensive for the times, Pyrex proved quite the success, selling over 4 million pieces its first four years of production and an additional 26 million over the following 8 years. With the Nonex formula altered to remove lead, work proceeded to develop a cookware line from it, which the company called Pyrex. ![]() In her experiments with it, she found that the foods cooked faster, at lower temperatures, with the added benefit that she could see the food as it cooked. When her ceramic casserole cracked, it was one of those battery jars, cut down to make a baking dish, that Corning researcher Jesse Littleton brought home for his wife to try. Nonex found success in other areas, however, including wet cell battery jars. ![]() While the perfect answer to the railroads' breakage issue, it was ultimately unprofitable in that few of the new type globes required replacement thereafter. Corning Glass was engaged to come up with a solution, which they did in the form of a borosilicate non-expansion glass formula they dubbed Nonex. ![]() When hot, contact by rain or snow would cause them to crack. The origins of Pyrex lay in a problem the early-20th century railroad industry faced with broken lantern globes. ![]()
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