Anodizing Stocks List

Related ETFs - A few ETFs which own one or more of the above listed Anodizing stocks.

Anodizing Stocks Recent News

Date Stock Title
May 3 CW Curtiss-Wright Corporation (NYSE:CW) Q1 2024 Earnings Call Transcript
May 3 CW Curtiss-Wright Corporation (CW) Hit a 52 Week High, Can the Run Continue?
May 3 CW Curtiss-Wright First Quarter 2024 Earnings: Beats Expectations
May 3 CW Curtiss-Wright Corp (CW) (Q1 2024) Earnings Call Transcript Highlights: Robust Growth and ...
May 3 CW Decoding Curtiss-Wright Corp (CW): A Strategic SWOT Insight
May 2 APOG Apogee declares $0.25 dividend
May 2 CW Curtiss-Wright Corporation (CW) Q1 2024 Earnings Call Transcript
May 2 APOG Apogee Enterprises Declares Quarterly Cash Dividend
May 2 CW Curtiss-Wright Corporation 2024 Q1 - Results - Earnings Call Presentation
May 2 CW Curtiss-Wright Corp (CW) Outperforms Q1 Estimates and Raises 2024 Guidance
May 2 CW Curtiss-Wright (CW) Q1 Earnings: Taking a Look at Key Metrics Versus Estimates
May 1 CW Curtiss-Wright (CW) Beats Q1 Earnings and Revenue Estimates
May 1 CW Curtiss-Wright Non-GAAP EPS of $1.99 beats by $0.25, revenue of $713M beats by $48.99M
May 1 VMI Valmont GAAP EPS of $4.32 beats by $1.07, revenue of $1B beats by $13.02M
May 1 CW Curtiss-Wright Reports First Quarter 2024 Financial Results and Increases Full-Year 2024 Guidance for Sales, Operating Income and EPS
May 1 VMI Valmont Reports First Quarter 2024 Results and Raises Full-Year 2024 Guidance
May 1 CW U.S., Saudi Arabia are said to be close to signing defense treaty
Apr 30 CW Curtiss-Wright Q1 2024 Earnings Preview
Apr 30 VMI Valmont Q1 2024 Earnings Preview
Apr 29 VMI Mueller Water Products (MWA) Earnings Expected to Grow: Should You Buy?
Anodizing

Anodizing (also spelled anodising in British English) is an electrolytic passivation process used to increase the thickness of the natural oxide layer on the surface of metal parts.
The process is called anodizing because the part to be treated forms the anode electrode of an electrolytic cell. Anodizing increases resistance to corrosion and wear, and provides better adhesion for paint primers and glues than bare metal does. Anodic films can also be used for a number of cosmetic effects, either with thick porous coatings that can absorb dyes or with thin transparent coatings that add interference effects to reflected light.
Anodizing is also used to prevent galling of threaded components and to make dielectric films for electrolytic capacitors. Anodic films are most commonly applied to protect aluminium alloys, although processes also exist for titanium, zinc, magnesium, niobium, zirconium, hafnium, and tantalum. Iron or carbon steel metal exfoliates when oxidized under neutral or alkaline microelectrolytic conditions; i.e., the iron oxide (actually ferric hydroxide or hydrated iron oxide, also known as rust) forms by anoxic anodic pits and large cathodic surface, these pits concentrate anions such as sulfate and chloride accelerating the underlying metal to corrosion. Carbon flakes or nodules in iron or steel with high carbon content (high-carbon steel, cast iron) may cause an electrolytic potential and interfere with coating or plating. Ferrous metals are commonly anodized electrolytically in nitric acid or by treatment with red fuming nitric acid to form hard black ferric oxide. This oxide remains conformal even when plated on wire and the wire is bent.
Anodizing changes the microscopic texture of the surface and the crystal structure of the metal near the surface. Thick coatings are normally porous, so a sealing process is often needed to achieve corrosion resistance. Anodized aluminium surfaces, for example, are harder than aluminium but have low to moderate wear resistance that can be improved with increasing thickness or by applying suitable sealing substances. Anodic films are generally much stronger and more adherent than most types of paint and metal plating, but also more brittle. This makes them less likely to crack and peel from aging and wear, but more susceptible to cracking from thermal stress.

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