Company:Curtiss-Wright
This article is missing information about Dy4 Systems.October 2021) ( |
Type | Public |
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NYSE: CW S&P 400 Component | |
Industry |
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Predecessor |
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Founded | July 5, 1929United States | in Buffalo, New York,
Headquarters | Davidson, North Carolina , |
Key people | |
Revenue | US$2.391 Billion (Fiscal Year Ended 31 December 2020)[1] |
US$288.848 Million (Fiscal Year Ended 31 December 2020)[1] | |
US$201.392 Million (Fiscal Year Ended 31 December 2020)[1] | |
Total assets | US$ 4.083 Billion (September 30, 2021)[2][1] |
Total equity | US$1.787 Billion (Fiscal Year Ended 31 December 2020)[1] |
Number of employees | 9,000 (2019) |
Website | curtisswright |
The Curtiss-Wright Corporation is a manufacturer and services provider headquartered in Davidson, North Carolina, with factories and operations in and outside the United States.[3] Created in 1929 from the consolidation of Curtiss, Wright, and various supplier companies, the company was immediately the country's largest aviation firm and built more than 142,000 aircraft engines for the U.S. military during World War II.
Today, it no longer makes aircraft but makes many related components, particularly actuators, aircraft controls, valves, and surface-treatment services. It supplies the commercial, industrial, defense, and energy markets. It makes parts for commercial and naval nuclear power systems, industrial vehicles, and oil- and gas-related machinery.
History
Merger and expansion
Curtiss-Wright formed on July 5, 1929, the result of a merger of 12 companies associated with Curtiss Aeroplane and Motor Company of Buffalo, New York, and Wright Aeronautical of Dayton, Ohio.[4] It was headquartered in Buffalo, New York. With United States dollar 75 million in capital (equivalent to $11.17 billion in 2019), it became the largest aviation company in the United States.
Companies Merged[5] | Owner |
---|---|
Wright Aeronautical Corp | Hoyt |
Curtiss Aeroplane & Motor Co | Keys |
Curtiss Airports Corp. | Keys |
Curtiss Flying Service | Keys |
Curtiss Aeroplane Export Co. | Keys |
Curtiss-Caproni Corp. | Keys |
Curtiss-Robertson Airplane Mfg. Co. | Keys |
New York Air Terminals | Hoyt |
N.Y. & Suburban Airlines | Hoyt |
Keystone Aircraft Corp | Hoyt |
By September 1929, Curtiss-Wright had acquired the Moth Aircraft Corporation and Travel Air Manufacturing Company.[6][7]
Divisions
There were three main divisions: the Curtiss-Wright Airplane Division, which manufactured airframes; the Wright Aeronautical Corporation, which produced aircraft engines; and the Curtiss-Wright Propeller Division, which manufactured propellers. After 1929, most engines produced by the new company were known as Wrights. Most aircraft were given the Curtiss name, with a few exceptions.
Pre-World War II
Throughout the 1930s, Curtiss-Wright designed and built aircraft for military, commercial, and private markets. Itt was the Wright engine division and the longstanding relationship with the U.S. military that helped the company through the difficult years of the Great Depression. In 1937, the company developed the P-36 fighter aircraft, resulting in the largest peacetime aircraft order ever given by the Army Air Corps. Curtiss-Wright also sold the P-36 abroad, where they were used in the early days of World War II.
War production
During World War II, Curtiss-Wright produced 142,840 aircraft engines, 146,468 electric propellers, and 29,269 airplanes.[4] Curtiss-Wright employed 180,000 workers, and ranked second among United States corporations in the value of wartime production contracts, behind only General Motors.[8][9]
Aircraft production included almost 14,000 P-40 fighters, made famous by their use by Claire Chennault's Flying Tigers in China, over 3,000 C-46 Commando transport aircraft, and later in the war, over 7,000 SB2C Helldivers. Its most visible success came with the P-40, variously known as the Tomahawk, Kittyhawk, and Warhawk, which were built between 1940 and 1944 at the main production facilities in Buffalo, New York. During the war, a second large plant was added at Buffalo, followed by new plants at Columbus, Ohio; St. Louis, Missouri; and Louisville, Kentucky. Engine and propeller production was at plants in New Jersey, Pennsylvania, and Ohio.
In May 1942, the U.S. government assigned Curtiss-Wright a defense production factory, for wartime aircraft construction at Louisville, Kentucky, to produce the C-76 Caravan cargo plane, which was constructed mostly of wood, a non-priority war material. After difficulties with the C-76, including a crash of a production model in mid-1943, as well as the realization that sufficient quantities of aluminum aircraft alloys would be available for war production, plans for large-scale C-76 production were rejected.[11]
The Louisville plant was converted to C-46 Commando production, delivering 438 Commandos to supplement the roughly 2,500 C-46s produced at Buffalo. The C-46 cargo plane was fitted with two powerful radial engines and could carry more cargo at higher altitudes than any other Allied aircraft. Consequently, it was used extensively in the China-Burma-India Theater.
Defective engines sold to U.S. military in World War II
From 1941 to 1943, the Curtiss Aeronautical plant in Lockland, Ohio, produced aircraft engines under wartime contract, destined for installation in U.S. Army Air Forces aircraft.[12][13] Wright officials at Lockland insisted on high engine production levels, resulting in a significant percentage of engines that did not meet Army Air Forces (AAF) inspection standards. These defective engines were nevertheless approved by inspectors for shipment and installation in U.S. military aircraft. After investigation, it was later revealed that Wright company officials at Lockland had conspired with civilian technical advisers and Army inspection officers to approve substandard or defective aircraft engines for military use.[12][13]
Post–World War II
Demise of aircraft production
Curtiss-Wright failed to make the transition to design and production of jet aircraft, despite several attempts. During the war, the company expended only small amounts on aircraft research and development, instead concentrating on incremental improvements in conventional aircraft already in wartime production. This was especially true in the first two years of the war. Curtiss' failure to research and develop more advanced wing and airframe designs provided an opening for North American, Bell, Lockheed, Northrop, and other U.S. aircraft manufacturers to submit newer and more advanced aircraft designs.
The P-60, the firm's last prop-driven fighter design, was merely an extrapolation of its 1930s P-36 Hawk, offering no advantage over other designs already in service. With the rapid development of jet engine technology and near-supersonic flight, this technological lag resulted in Curtiss losing a number of critical postwar military aircraft orders. The final nail in the coffin was the choice of the Northrop F-89 Scorpion over the XF-87 Blackhawk. After the F-87 was cancelled in October 1948, Curtiss-Wright shut down its entire Aeroplane Division and sold the assets to North American Aviation.
Flight research
While this marked Curtiss-Wright's departure from preeminence in the aviation industry, one notable spin-off involved Curtiss-Wright's flight research laboratory, founded in 1943 near the main plant at the Buffalo airport. During divestiture of the airframe division, the lab was given to Cornell University along with a cash gift to finish the construction of a transonic wind tunnel. Cornell Aeronautical Labs, or CAL as it was known, was eventually spun off from the university as a private company, Calspan Corporation, which has been responsible for many innovations in flight and safety research.
Engine development
After the government gave the development of the Whittle jet engine to GE, the company concentrated on reciprocating engines and propeller production for military transport and civilian airliners. With the approaching twilight of the big piston aircraft engine, Curtiss-Wright needed new design inspiration. in 1950, Curtiss-Wright licensed the Sapphire jet engine from Armstrong Siddeley in the U.K and manufactured it as the Wright J65. It powered models of the Martin B-57, and several other U.S. fighter planes. Subsequent derivative engines were late and did not find substantial markets.
For a brief time, Curtiss-Wright licensed rights to the Wankel rotary engine from NSU in 1958 as a possible aircraft power plant. For this major innovative engineering project, Curtiss-Wright relied extensively on the design leadership of NSU-Wankel engineer Max Bentele.
Flight simulators
In 1954, United Airlines bought four Curtiss-Wright flight simulators at a cost of $3 million. These simulators were like earlier ones produced in the late 1940s for airliners with the addition of visuals, sound, and movement. They were the first of today's modern flight simulators for commercial aircraft.[14]
Business diversification
In 1956, financially strapped automaker Studebaker-Packard Corporation entered into a management agreement with Curtiss-Wright as a means for the nation's fifth-largest automobile manufacturer to avoid insolvency. The relationship lasted until 1959 at which time Curtiss-Wright withdrew from the agreement. The shift of civilian aircraft to jets left the company with little of its old business, and during the 1960s it shifted to components for aircraft and other types of equipment, such as nuclear submarines, a business that is still being conducted today.
In 2002, Curtiss-Wright acquired Penny & Giles, a supplier of black boxes and sensing devices (Hybrid linear, hybrid rotary and VRVT sensors).[15]
In 2003, Curtiss-Wright acquired Systran Corporation, a supplier of highly specialized, high-performance data communications products for real-time systems, primarily for the aerospace and defense, industrial automation and medical image markets.[16] The acquisition also reintroduced Curtiss-Wright to Dayton, Ohio.
In 2010, Curtiss-Wright acquired Hybricon Corporation for $19 million in cash. Hybricon is a supplier of electronic packaging for the aerospace, defense, and commercial markets, and provides electronic subsystem integration.[17]
In 2011, Curtiss-Wright acquired Ireland-based Acra Control for $61 million in cash. Acra Control is a supplier of data acquisition systems and networks, data recorders, and telemetry ground stations for both defense and commercial aerospace markets.[18]
At the beginning of 2013, Curtiss-Wright acquired Exlar Corporation for $85 million in cash. Exlar, a private company, is a designer and manufacturer of highly engineered electric actuators used in motion control solutions in industrial and military markets. The acquired business will operate within Curtiss-Wright's Motion Control segment.[19] In October 2013, Curtiss-Wright completed the acquisition of the Parvus Corporation, a business unit of Eurotech S.p.A., for $38 million. Parvus is a leading designer and manufacturer of rugged small form factor computers and communications subsystems for the aerospace, defense, homeland security, and industrial markets.[20]
Curtiss-Wright acquired military communications equipment supplier Pacific Star Communications for $400 million, on November 2, 2020.[21][22]
Curtiss-Wright Corporation successfully finalized the acquisition of 901D Holdings, LLC (901D) for $132 million in cash. Renowned for designing and manufacturing mission-critical integrated electronic systems, subsystems, and ruggedized shipboard enclosure solutions, 901D is a key contributor to major U.S. Navy shipbuilding programs. This acquisition broadens Curtiss-Wright's spectrum of instrumentation and controls systems technologies, significantly enhancing its involvement in crucial U.S. Navy shipbuilding initiatives. The integration of 901D's established expertise with Curtiss-Wright's cutting-edge electronic systems and software capabilities positions the company to deliver shipboard solutions for both nuclear and non-nuclear powered vessels.[23]
This strategic move ensures Curtiss-Wright's readiness to capitalize on the ongoing expansion of the U.S. naval fleet. Operating under Curtiss-Wright's Defense segment, the acquisition aligns with the company's long-term financial goals, emphasizing increased sales growth, margin expansion, and robust free cash flow generation. Anticipated to contribute positively to Curtiss-Wright's 2020 adjusted diluted earnings per share, excluding initial purchase accounting costs, the acquisition is expected to achieve a free cash flow conversion rate exceeding 100%.[23]
In February 2020, Curtiss-Wright Corporation (NYSE: CW) completed the acquisition of Dyna-Flo Control Valve Services Ltd. ("Dyna-Flo") for $81 million in cash.[24]
In January 2022, Curtiss-Wright Corporation (CW) announced an agreement to acquire assets from Safran Aerosystems Arresting Company (SAA), a move aimed at expanding its presence in the military aircraft emergency arresting systems sector. SAA, a subsidiary of Safran Aerosystems, specializes in designing and manufacturing aircraft emergency arresting systems and will operate within Curtiss-Wright's Naval & Power segment post-acquisition. The completion of the acquisition, valued at $240 million, is contingent on regulatory approval and other closing conditions, with expectations for finalization in the third quarter of 2022. The strategic acquisition of SAA is part of Curtiss-Wright's efforts to enhance growth prospects and diversify its product portfolio. With an anticipated positive impact on CW's earnings, the $240 million transaction is projected to contribute to a robust free cash flow conversion rate exceeding 100%, signaling a favorable liquidity position for the company in the future.[25]
In November 2022, CW has finalized the acquisition of Keronite Group Limited, involving a cash transaction of $35 million. This strategic move is expected to enhance Curtiss-Wright's capabilities in Plasma Electrolytic Oxidation ("PEO") surface treatment services. Operating within Curtiss-Wright's Aerospace & Industrial segment, the acquisition is projected to have a neutral impact on the company's earnings in the initial year. It is anticipated to yield a 100% free cash flow conversion rate, underscoring the robust liquidity position. This strengthened financial position can be leveraged for profitable and revenue-generating strategies.[26]
Multinational divisions
As of 31 December 2012, the firm had several divisions:[27]
- Curtiss Wright Controls (UK) Ltd, United Kingdom
- Curtiss-Wright Antriebstechnik GmbH, Switzerland
- Curtiss-Wright Controls Electronic Systems Inc., California
- Curtiss-Wright Controls Integrated Sensing Inc., Delaware
- Curtiss-Wright Controls Inc., Delaware
- Curtiss-Wright Electro-Mechanical Corporation, Delaware
- Curtiss-Wright Flow Control Company Canada, Nova Scotia
- Curtiss-Wright Flow Control Corporation, New York
- Dy4 Inc, Delaware
- Dy4 Systems Inc., Ontario: a manufacturer of electronic circuit boards acquired in 2003[28]
- Indal Technologies Inc., Canada
- Metal Improvement Company LLC, Delaware
- Novatronics Inc., Ontario
- Peerless Instrument Co. Inc., New York
- Penny & Giles Controls Limited, United Kingdom
- Primagraphics (Holdings) Limited, United Kingdom
- Tapco International Inc, Delaware
Products
Aircraft
Model name | First flight | Number built | Type |
---|---|---|---|
Curtiss Bleeker SX-5-1 Helicopter | 1926 | 1 | Experimental single engine helicopter |
Curtiss Teal | 2 | Single engine monoplane flying boat | |
Curtiss-Wright Junior | 1930 | ~270 | Single engine monoplane sport airplane |
Curtiss-Wright CW-3 Duckling | 1931 | 3 | Single engine monoplane flying boat |
Curtiss F9C Sparrowhawk | 1931 | 7+ | Single engine biplane parasite fighter |
Curtiss A-8 | 1931 | 13 | Single engine monoplane attack airplane |
Curtiss-Wright CW-15 | 1931 | 15 | Single engine cabin monoplane |
Curtiss-Wright CW-16 | 22 or 23 | Single engine biplane trainer | |
Curtiss-Wright CW-17 | N/A | 0 | Single engine biplane |
Curtiss O-40 Raven | 1932 | 5 | Single engine biplane observation airplane |
Curtiss F11C Goshawk | 1932 | 30 | Single engine biplane fighter |
Curtiss XP-31 Swift | 1932 | 1 | Prototype single engine monoplane fighter |
Curtiss YA-10 Shrike | 1932 | 2 | Prototype single engine monoplane attack airplane |
Curtiss T-32 Condor II | 1933 | 45 | Twin engine biplane airliner |
Curtiss BF2C Goshawk | 166 | Single engine biplane fighter | |
Curtiss-Wright CW-6 | 8 | Single engine cabin monoplane | |
Curtiss-Wright CW-12 | 40 or 41 | Single engine biplane trainer | |
Curtiss-Wright CW-14 Osprey | 38+ | Single engine biplane | |
Curtiss-Wright CW-19 | ~43 | Single engine monoplane attack airplane | |
Curtiss XF13C | 1934 | 3 | Prototype single engine monoplane fighter |
Curtiss SOC Seagull | 1934 | 258 | Single engine biplane scout floatplane |
Curtiss-Wright CA-1 | 1935 | 3 | Single engine biplane flying boat |
Curtiss P-36 Hawk | 1935 | 1115 | Single engine monoplane fighter |
Curtiss A-12 Shrike | 46 | Single engine monoplane attack airplane | |
Curtiss XA-14 | 1935 | 1 | Prototype twin engine monoplane attack airplane |
Curtiss A-18 Shrike | 1935 | 13 | Twin engine attack monoplane airplane |
Curtiss SBC Helldiver | 1935 | 257 | Single engine biplane dive bomber |
Curtiss P-37 | 1937 | 14 | Prototype single engine monoplane fighter |
Curtiss-Wright CW-21 | 1938 | 62 | Single engine monoplane fighter |
Curtiss P-40 Warhawk | 1938 | 13738 | Single engine monoplane fighter |
Curtiss XP-42 | 1939 | 1 | Prototype single engine monoplane fighter |
Curtiss SO3C Seamew | 1939 | 795 | Single engine monoplane scout floatplane |
Curtiss-Wright CW-22 | 1940 | ~442 | Single engine monoplane trainer |
Curtiss-Wright CW-23 | 1 | Prototype single engine monoplane trainer | |
Curtiss C-46 Commando | 1940 | 3181 | Twin engine monoplane cargo airplane |
Curtiss O-52 Owl | 1940 | 203 | Single engine monoplane observation airplane |
Curtiss SB2C Helldiver | 1940 | 7140 | Single engine monoplane dive bomber |
Curtiss AT-9 | 1941 | 792 | Twin engine monoplane trainer |
Curtiss XP-46 | 1941 | 2 | Prototype single engine monoplane fighter |
Curtiss P-60 | 1941 | 4 | Prototype single engine monoplane fighter |
Curtiss-Wright C-76 Caravan | 1943 | 25 | Twin engine monoplane cargo airplane |
Curtiss-Wright XP-55 Ascender | 1943 | 3 | Prototype single engine monoplane fighter |
Curtiss XP-62 | 1943 | 1 | Prototype single engine monoplane fighter |
Curtiss SC Seahawk | 1944 | 577 | Single engine monoplane scout floatplane |
Curtiss XF14C | 1944 | 1 | Prototype single engine monoplane fighter |
Curtiss XBTC | 1945 | 2 | Prototype single engine monoplane torpedo bomber |
Curtiss XF15C | 1945 | 3 | Prototype mixed propulsion monoplane fighter |
Curtiss XBT2C | 1945 | 9 | Prototype single engine monoplane torpedo bomber |
Curtiss-Wright XF-87 Blackhawk | 1948 | 2 | Four engine jet monoplane fighter |
Curtiss-Wright X-19 | 1963 | 2 | Experimental twin engine tiltrotor airplane |
Curtiss-Wright VZ-7 | 2 | Experimental single engine helicopter | |
Curtiss-Wright CW-2 | N/A | 0 | Unbuilt two-seat monoplane |
Curtiss-Wright CW-5 | N/A | 0 | Unbuilt cargo airplane |
Curtiss-Wright CW-18 | N/A | 0 | Unbuilt two-seat trainer |
Curtiss XP-53 | N/A | 2 | Prototype single engine monoplane fighter |
Curtiss XP-71 | N/A | 0 | Unbuilt twin engine monoplane heavy fighter |
Curtiss XSB3C | N/A | 0 | Unbuilt single engine monoplane dive bomber |
Curtiss KD2C Skeet | 1947 | Target drone | |
Curtiss CW-32 | N/A | 0 | Unbuilt four-engine transport[29][failed verification] |
Curtiss Electric propellers
As well as manufacturing engines, a range of electrically actuated constant speed three- and four-bladed propellers were manufactured under the name Curtiss Electric.[30]
Albert Kahn
Albert Kahn Associates designed several industrial buildings for the Curtiss Wright Corporation,[31] including plants in Beaver, PA; Buffalo, NY; Caldwell, NJ; Columbus, OH; Indianapolis, IN; Kenmore, NY; Louisville, KY and St. Louis, MO. Albert Kahn's personal working library, the Albert Kahn Library Collection, is housed at Lawrence Technological University in Southfield, Michigan.
See also
- United States v. Curtiss-Wright Export Corp., a 1936 U.S. Supreme Court case about the role of the President in foreign relations.
- George Conrad Westervelt
- Curtiss-Wright Technical Institute in Glendale, California
References
Notes
- ↑ 1.0 1.1 1.2 1.3 1.4 "Curtiss-Wright Corporation 2020 Annual Report". 31 December 2020. https://s26.q4cdn.com/283948306/files/doc_financials/2020/ar/CWAR2020_Final-w10K.pdf. Retrieved 27 August 2021.
- ↑ Form 10-Q. CURTISS WRIGHT CORP . SEC.report.
- ↑ "EDGAR Filing Documents for 0000930413-13-000998". https://www.sec.gov/Archives/edgar/data/26324/000093041313000998/0000930413-13-000998-index.html.
- ↑ 4.0 4.1 "History". http://www.curtisswright.com/company/history.
- ↑ Time. 8 July 1929.
- ↑ Grover, T. Allen (September 1929). "The Monthly Financial Review". Aeronautics (Chicago, Illinois: Aeronautical Publications) 5 (3): 75, 86. https://books.google.com/books?id=d5MrNJNkZ88C&pg=PA75. Retrieved 16 April 2020.
- ↑ "Travel Air to Merge with Curtiss-Wright". Lawrence Daily Journal-World. AP: p. 1. 7 August 1929. http://news.google.com/newspapers?nid=2199&dat=19290807&id=_XxYAAAAIBAJ&pg=4456,1137739.
- ↑ Peck, Merton J. & Scherer, Frederic M. The Weapons Acquisition Process: An Economic Analysis (1962) Harvard Business School p.619
- ↑ Herman, Arthur. Freedom's Forge: How American Business Produced Victory in World War II, p. 312, Random House, New York, NY, 2012. ISBN:978-1-4000-6964-4.
- ↑ "Life Magazine, September 15, 1941". 1941-09-15. https://books.google.com/books?id=q0wEAAAAMBAJ&pg=PA50.
- ↑ "Curtiss-Wright Aircraft Factory". The Encyclopedia of Louisville. University Press of Kentucky. 2000. ISBN 0813128900. https://books.google.com/books?id=pXbYITw4ZesC&q=c-76%20cancel%20aluminum%20airplane&pg=PA235. Retrieved 2010-06-04.
- ↑ 12.0 12.1 Meyers, Jeffrey, The Genius and the Goddess: Arthur Miller and Marilyn Monroe, University of Illinois Press, ISBN:978-0-252-03544-9 (2009), pp. 92–93
- ↑ 13.0 13.1 Clausen, Henry C., and Lee, Bruce, Pearl Harbor: Final Judgment, Da Capo Press, ISBN:0-306-81035-2 (2001), pp. 56–58
- ↑ "Airline Pilots Fly Anywhere in the world – Without Leaving the Ground." Popular Mechanics, August 1954, p. 87.
- ↑ PR Newswire. (1 April 2002) "Curtiss-Wright Complete Acquisition of Spirent's Sensor and Control Assets". Curtiss-Wright Company Website. Retrieved 21 August 2015.
- ↑ "Curtiss-Wright Acquires Systran Corporation" (in en-CA). http://www.curtisswright.com/news/press-releases/news-release-details/2003/Curtiss-Wright-Acquires-Systran-Corporation/default.aspx.
- ↑ Curtiss-Wright Corporation. (27 May 2010) "Curtiss-Wright to acquire Hybricon Corporation". Curtiss-Wright Company Website. Retrieved 21 August 2015.
- ↑ Ryan, Jim (28 July 2011) "Curtiss-Wright Acquires Acra Control LTD" Curtiss Wright Company Website. Retrieved 21 August 2013.
- ↑ Ryan, Jim (2 January 2013) "Curtiss-Wright Acquires Exlar Corporation" Curtiss Wright Company Website. Retrieved 21 August 2015.
- ↑ GlobeNewswire (2013-10-01). "Curtiss-Wright Acquires Parvus Corporation" (in en-US). TheStreet. https://www.thestreet.com/story/12053816/1/curtiss-wright-acquires-parvus-corporation.html.
- ↑ Davidson, N.C. (November 2, 2020). "Curtiss-Wright Completes Acquisition of Pacific Star Communications, Inc.". Nasdaq. https://www.nasdaq.com/press-release/curtiss-wright-completes-acquisition-of-pacific-star-communications-inc.-2020-11-02.
- ↑ "Curtiss-Wright to buy communications firm PacStar" (in en). https://www.janes.com/defence-news/news-detail/curtiss-wright-to-buy-communications-firm-pacstar.
- ↑ 23.0 23.1 "Curtiss-Wright Completes Acquisition of 901D Holdings, LLC" (in en-CA). https://curtisswright.com/news/press-releases/news-release-details/2020/Curtiss-Wright-Completes-Acquisition-of-901D-Holdings-LLC/default.aspx.
- ↑ Gowling WLG (2020). "CURTISS-WRIGHT COMPLETES ACQUISITION OF DYNA-FLO". https://gowlingwlg.com/en/insights-resources/client-work/2020/curtiss-wright-completes-acquisition/.
- ↑ "Curtiss-Wright (CW) to Buy Safran Aerosystems' Arm for $240M" (in en-US). 2022-01-26. https://finance.yahoo.com/news/curtiss-wright-cw-buy-safran-141002585.html.
- ↑ "Curtiss-Wright (CW) Completes the Acquisition of Keronite Group" (in en-US). 2022-11-17. https://finance.yahoo.com/news/curtiss-wright-cw-completes-acquisition-154503285.html.
- ↑ "Exhibit 21 Subsidiaries of the Registrant". https://www.sec.gov/Archives/edgar/data/26324/000093041313000998/c72765_ex21.htm.
- ↑ "DY4 SYSTEMS". Rochester Avionic Archives. https://rochesteravionicarchives.co.uk/organisations/dy4-systems.
- ↑ "Curtiss-Wright Plans New Cargo Transport". Aviation News 6 (22): 10. 24 November 1946. http://archive.org/details/Aviation_Week_1946-11-25/page/n5. Retrieved 27 October 2021.
- ↑ "Curtiss Electric Propeller". http://www.enginehistory.org/propellers.htm.
- ↑ Albert Kahn Associated Architects and Engineers, Inc. (1948) (in English). Architecture. New York: Architectural Catalog Company, Inc.. pp. 159.
Bibliography
- Bowers, Peter M. Curtiss Aircraft 1907–1947. London: Putnam & Company Ltd., 1979. ISBN:0-370-10029-8.
- Eltscher, Louis R. and Young, Edward M. Curtiss-Wright – Greatness and Decline. New York: Twayne Publishers, 1998. ISBN:0-8057-9829-3.
- Gunston, Bill (2006). World Encyclopedia of Aero Engines, 5th Edition. Phoenix Mill, Gloucestershire, England, UK: Sutton Publishing Limited. ISBN 0-7509-4479-X.
External links
- Curtiss-Wright Defense Solutions website
- Curtiss-Wright Flow Control website
- Curtiss-Wright Industrial website
- Curtiss-Wright Sensors & Controls website
- Curtiss-Wright Surface Technologies website
- The Glenn Curtiss Companies: U.S. Centennial of Flight Commemoration
- History of the Aerospace Industry in Buffalo, NY
- 1940 Curtiss Wright Buffalo NY Handbook – Internet Archive
Original source: https://en.wikipedia.org/wiki/Curtiss-Wright.
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