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  • Harry Miller banner
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    Harry Miller
    • Brands:2
    • Products:8
    • HQ:
    "Harry Miller Corp. was founded in 1936 by Harry Miller and Charles Haas, two former employees of a local specialty chemical producer. The Pennsylvania corporation was originally called the Haas-Miller Corporation. Manufacturing in the Philadelphia, Pa. area in the thirties was dominated by the textile, leather and paper trades. The company formulated and produced original chemical specialties for these industries and sold principally on the U.S. eastern seaboard. With the advent of WWII, the environment changed into a hot-bed of steel and metal-working, and the company changed its focus to meet those needs. Simultaneously, sales expanded to include the region east of the Mississippi, with a concentration in the ""rust belt"" cities of the Midwest. In 1946, there were significant changes in the company: the two founders parted, the name changed to the ""Harry Miller Corporation"", and Harry Miller’s son-in-law, John Entwisle, joined the firm. Entwisle joined the company as office manager, learning the trade by traveling with salesmen, and doing stints in the lab and factory. Entwisle became involved with marketing the company’s products, primarily through the use of direct mailings and “Miller Memos” that touted the latest developments. Entwisle ultimately took the helm when founder Harry Miller passed away in October 1967. As sales grew through direct marketing, the company hired salesmen in the south, northeast and Midwest, in addition to its local sales force. The steel industry in the Midwest was burgeoning, and the company made the decision to enter the pickling inhibitor market that was then dominated by another local company, AmChem. This strategic decision ultimately resulted in vaulting Harry Miller Corp. into the leadership position due to a well-developed products and laboratory expertise in steel pickling additives, and a niche market dominance the company still enjoys today."
    Mighty Lube banner
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    Mighty Lube
    • Brands:2
    • Products:16
    • HQ:
    "Patrick A. Brown of Fremont, Michigan founded Mighty Lube Systematic Lubrication, Inc in 1981. In 1985, Patrick used his extensive knowledge of conveyor lubrication to design a link counter lubrication unit. With this new system applied lubricant to conveyor components based on run cycles. His invention significantly changed the way conveyors were lubricated. Prior to this, most lubricators were simply run by timers or with on/off switches. This new lubrication system allowed for precise and consistent automatic lubrication of conveyor chain pins and trolley bearings.In 1987, a programmable digital board was developed. This advancement allowed for greater control and automation in the manufacturing industry. Up to this point, all the Mighty Lube lubricators were considered central lubrication systems. Central systems have a reservoir/pump at the floor level and lubricator head units are mounted on the conveyor line. Central lubrication systems are optimal for most large manufacturing facilities with multiple lines. In Mighty Lube’s research, they discovered a need for conveyor lubrication systems in smaller facilities. Small plants with only a couple of lines didn’t need a large, centralized system. So in 1989, Mighty Lube created and patented the self-contained lubrication unit. This unit design includes a small reservoir and lubrication unit, which are combined and mounted as one unit on the conveyor. Progressing from the digital board in 1992, Mighty Lube introduced a microprocessor board. Microprocessors can be programmed to precisely control the lubrication cycles as well as lubricant amounts. This new technology offered a versatile design with additional ports for lubrication options."
    Dynalene banner
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    Dynalene
    • Brands:1
    • Products:14
    • HQ:
    "Dynalene’s history goes back to 1993 when a research grant from the Ben Franklin Technology Partnership (BFTP) of Pennsylvania State was available to Lehigh University and Loikits Technologies, Inc. to develop ultra-low temperature heat transfer fluids that work very efficiently below -80°C (-112°F). This research work resulted in several patents and the products were commercialized in 1996. Initially, the Dynalene branded products (Dynalene MV and Dynalene HF) were sold by Loikits Technologies, Inc. In 1997, a new company named Advanced Fluid Technologies (AFT) was formed to continue the development and commercialization of heat transfer fluids. By 1998, AFT had more than 8 Dynalene branded products covering a very wide temperature range from -112°C (-170°F) to 350°C (662°F). As the popularity of Dynalene heat transfer fluids grew in a variety of industrial applications, AFT developed several innovative fluids and chemistries to cover many different applications. The Dynalene brand name was well established with over 40 fluids that included several custom fluids made for customers depending on their applications. In 2005, the company changed its name from Advanced Fluid Technologies Inc. to Dynalene Inc. The company was ranked by Inc. magazine to be among the fastest growing companies in the US for two years in a row. Currently, the company has three manufacturing facilities (Whitehall PA, Chicago IL and Salt Lake City UT) along with a strong R&D facility with five labs and a number of research staff. Dynalene opened its third business unit, Fluid Testing and Cleaning Equipment, which offers comprehensive filtration, contamination removal and desiccation solution that are compatible with a range of heat transfer fluids. Dynalene has also received in excess of $4 million in research grants over the years to develop heat transfer fluids and coolants. These include grants from the US Department of Energy to develop coolants for fuel cells and from the US Department of Defense to develop coolants utilizing hybrid nanoparticles. Due to the research and instrumentation capabilities developed in the last decade, Dynalene created Dynalene Laboratory Services business unit. Laboratory Services division helps customers determine several critical properties of their materials or solve technical problems they are encountering."

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