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disc

A tungsten alloy disc is a circular piece made from a composite material primarily composed of tungsten and other metals such as nickel, iron, or copper. Known for its exceptional density, high melting point, and resistance to wear and corrosion, tungsten alloy discs are commonly used in applications that require high performance under extreme conditions. These include industries like aerospace, military, automotive, and manufacturing, where the disc's ability to withstand high temperatures and pressures is crucial. The tungsten alloy disc often has a smooth, polished surface and can be machined to precise dimensions. It is valued for its strength, heavy weight, and versatility in applications such as radiation shielding, counterweights, ballast, and tooling components. The material's unique properties also make it ideal for applications that involve high-speed rotations, heavy loads, or precision cutting. Features of Tungsten Alloy Discs: High Density: Tungsten alloys are among the heaviest and densest materials available, making these discs ideal for use in applications requiring weight and mass, such as counterweights and radiation shielding. Outstanding Strength and Toughness: Tungsten alloy discs exhibit remarkable tensile strength, making them highly durable and capable of withstanding extreme mechanical stress and high temperatures. Thermal Stability: Tungsten alloys maintain their integrity at elevated temperatures, making these discs ideal for high-temperature environments, such as aerospace and defense applications. Corrosion and Wear Resistance: The material's natural resistance to corrosion and wear ensures longevity and reliability, even in harsh chemical or abrasive environments. Precision and Customization: Tungsten Alloy Discs can be manufactured to meet exacting tolerances, allowing for customized shapes, sizes, and thicknesses to suit a wide range of applications. Applications: Aerospace and Defense: Used in counterweights, radiation shielding, and heavy-duty components. Medical: In radiation therapy equipment for shielding or as part of specialized diagnostic tools. Industrial: As components for machinery requiring high wear resistance, such as in heavy manufacturing or mining. Electronics: For parts that need high density and heat resistance.

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disc

A Molybdenum Disc is a flat, circular-shaped piece of molybdenum metal, commonly used in various high-performance applications that require excellent thermal conductivity, high-temperature resistance, and mechanical strength. Molybdenum, a transition metal, is known for its outstanding properties, which make it suitable for demanding environments in industries such as aerospace, electronics, and metallurgy. Key Features of Molybdenum Discs: o High Melting Point: Molybdenum has a very high melting point of approximately 2,623°C (4,753°F), allowing it to perform under extreme temperatures without losing its structural integrity. This makes it ideal for high-temperature applications like aerospace and industrial furnaces. o Excellent Strength and Durability: Molybdenum discs possess superior mechanical strength, maintaining their rigidity and resilience under stress. They can withstand heavy loads and maintain their shape even in harsh working conditions. o Corrosion and Oxidation Resistance: Molybdenum discs are highly resistant to oxidation and corrosion, especially at elevated temperatures. This property makes them suitable for use in chemical processing, reactors, and other environments prone to corrosive elements. o Thermal and Electrical Conductivity: Molybdenum exhibits good thermal and electrical conductivity, which is particularly useful in applications requiring efficient heat transfer and electrical performance, such as in electronics or semiconductor manufacturing. o Workability: Molybdenum is a tough, but ductile metal at high temperatures, allowing molybdenum discs to be fabricated with high precision into specific dimensions, surface finishes, and designs tailored to particular industrial needs. o Versatility: Molybdenum discs can be customized to different diameters, thicknesses, and surface finishes, making them adaptable for a wide range of applications. Common Applications: o Aerospace Industry: Molybdenum discs are used in components such as heat shields, rocket nozzles, and turbine blades due to their ability to endure high temperatures and mechanical stress. o Electronics and Electrical Applications: Molybdenum discs are employed in the manufacture of electrical contacts, filaments, and electrodes. Their good electrical conductivity and resistance to high temperatures make them valuable for vacuum tubes, semiconductors, and other electronic devices. o Chemical Processing: Molybdenum discs are used in the construction of equipment for the chemical and petrochemical industries, including reactors, heat exchangers, and other high-temperature processing units due to their corrosion and oxidation resistance.

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COLD ROLLED SHEET

Quality Standard Material No. Old designation DC01 DIN EN 10130 1.0330 ST 12-03 Cold-rolled flat steel DC01, according to the standards DIN EN 10130 and DIN EN 10152 Cold-rolled flat steel DC01 is a widely used material in the industrial sector, which is used for various applications in the cold forming process due to its excellent properties. The standards DIN EN 10130 and DIN EN 10152 are decisive for ensuring the quality and requirements of this material. DC01 according to the DIN EN 10130 standard The DIN EN 10130 standard defines the requirements for cold-rolled flat products made of unalloyed quality steels that are used in the cold forming process. Technical delivery conditions DIN EN 10130 specifies the technical delivery conditions for cold-rolled flat steel. These include the chemical composition, mechanical properties and surface quality. The standard ensures that the products supplied meet the required standards in order to guarantee workability and final quality. Chemical composition The chemical composition of the steel is decisive for its properties and is described in detail in DIN EN 10130. For DC01, the maximum carbon content is 0.12%, while the manganese and phosphorus content is also subject to specific limits. This composition ensures good cold formability and a high surface quality. Mechanical properties DC01 in accordance with DIN EN 10130 has specific mechanical properties that make it ideal for cold forming. These include a minimum tensile strength of 270-410 MPa and a minimum elongation of 28%. These properties allow the steel to be processed into complex shapes without cracking or breaking. Surface quality The surface quality is another aspect of DIN EN 10130. DC01 can be supplied in different surface finishes, such as smooth or matt. These variations allow adaptation to specific requirements of the end application, be it for decorative purposes or further coating processes. DC01+ZE according to the DIN EN 10152 standard The DIN EN 10152 standard extends the requirements of DIN EN 10130 to include specific conditions for electrolytically galvanized products. This standard is crucial for applications in which corrosion protection plays an important role. Technical delivery conditions DIN EN 10152 specifies the technical delivery conditions for electrolytically galvanized, cold-rolled flat products. In addition to the chemical composition and mechanical properties, these conditions also include the specific requirements for the zinc coating. Chemical composition and zinc coating The chemical composition of the base material DC01 generally remains unchanged, but an additional electrolytic zinc coating is applied. This coating is used for corrosion protection and varies in thickness depending on the specific requirements of the application. The standard provides detailed specifications for the thickness and uniformity of the zinc coating to ensure optimum protection. Mechanical properties Even with galvanized products, the mechanical properties of the base material are largely retained. The standard ensures that the cold formability and strength of the steel are not impaired despite the additional coating. Corrosion resistance and surface quality One of the main advantages of products manufactured in accordance with DIN EN 10152 is their improved corrosion resistance. Electrolytic galvanizing protects the steel from rust and thus increases the service life of the end product. The surface quality also plays a decisive role here and can be supplied in various finishes, such as smooth or textured. Conclusion Cold-rolled flat steel DC01, produced in accordance with the DIN EN 10130 and DIN EN 10152 standards, offers a number of advantages for applications in the cold forming process. While DIN EN 10130 defines the basic requirements for chemical composition, mechanical properties and surface quality, DIN EN 10152 extends these specifications to include specific conditions for electrolytically galvanized products that offer additional corrosion protection. Both standards together ensure that DC01 is a versatile material with high quality and durability. FOR EN 10130 DC01 CHEMICAL , MECHANICAL DATA SHEET KINDLY VISIT https://www.ladhanimetal.in/page/en-10130-2006-chemical-and-mechanical-composition/689c322d2e585e299cb43798 https://www.ladhanimetal.in/page/en-10130-cold-rolled-flat-sheet-plate-coil-data-sheet-equivalent-grade-and-chemical-and-mechanical-properties/68a45503fc14472bb274df32

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Half Round Tube Shield

Half Round Tube Shield Half Round Tube Shields by Ladhani Metal Corporation are precision-engineered components used to protect tubes in boilers, heat exchangers, and high-temperature process systems. Designed to reduce tube erosion, oxidation, and thermal fatigue, these shields play a critical role in maintaining the longevity and reliability of industrial equipment in thermally aggressive and corrosive environments. Cr23Ni13 Half Round Tube Shield The Cr23Ni13 Half Round Tube Shield is a semi-cylindrical protective sleeve manufactured from high-alloy stainless steel containing approximately 23% chromium and 13% nickel. This alloy provides excellent resistance to high-temperature oxidation, scaling, and corrosion, particularly in systems operating up to 1000°C. With an austenitic microstructure, Cr23Ni13 exhibits good strength, ductility, and resistance to thermal shock, making it ideal for use in heat-intensive industrial processes. The half-round shape allows for easy installation over existing tubes, creating a strong and secure shield against gas flow, flame impingement, and particulate erosion. Chemical Composition of Cr23Ni13 – Austenitic Heat-Resistant Stainless Steel • Carbon (C): ≤ 0.12% • Silicon (Si): ≤ 1.50% • Manganese (Mn): ≤ 2.00% • Phosphorus (P): ≤ 0.040% • Sulfur (S): ≤ 0.030% • Chromium (Cr): 22.0 – 24.0% • Nickel (Ni): 12.0 – 14.0% • Iron (Fe): Balance Uses • Superheater and Reheater Tube Protection – Prevents scaling and oxidation on boiler tubes exposed to high flue gas temperatures in thermal power stations. • Furnace Tube Shielding – Shields radiant and convection tubes from flame impingement, heat distortion, and thermal fatigue in process furnaces. • Heat Exchanger Tubes – Offers external protection against erosion and scaling in petrochemical and refining systems operating with hot gases. • Power and Steam Generation Systems – Used to protect steam tubing from oxidation and surface wear in continuous service at elevated temperatures. • Industrial Kilns and Incinerators – Guards exposed piping in rotary kilns and combustion chambers against corrosive deposits and heat damage. Features • High-Temperature Resistance – Performs reliably in continuous service up to 1000°C, maintaining strength and dimensional stability. • Oxidation and Scaling Protection – Chromium-rich composition creates a protective oxide layer that resists corrosion in oxidizing environments. • Austenitic Microstructure – Provides good mechanical strength, thermal expansion resistance, and excellent ductility under heat cycling. • Precision Half-Round Form – Designed for fast, secure installation over round tubes using welding or clamping techniques. • Durable Construction – Withstands vibration, thermal shock, and erosive gas flow common in industrial boilers and furnaces. • Custom Manufacturing – Offered in various diameters, wall thicknesses, and lengths to match specific application demands. • Optional Finishes – Available in pickled, passivated, or bright annealed surface finishes based on environmental and operational needs. Applications • Thermal and Utility Boilers – Shields superheater and economizer tubes from high-temperature corrosion and ash erosion. • Petrochemical Plants – Used in process heaters and reactors where external tube surfaces are exposed to oxidizing or carburizing atmospheres. • Refineries – Protects tubes in fired heaters and reformers against oxidation and mechanical degradation. • Waste-to-Energy Facilities – Guards boiler tubes from hot flue gas erosion and acidic gas corrosion in incineration systems. • Metallurgical Furnaces – Applied in steel and non-ferrous heat treatment plants to prevent oxidation and scale accumulation. • Cement and Lime Plants – Protects gas ducting and tube banks in preheaters, coolers, and flue recovery systems from abrasive dust and heat exposure. Conclusion The Cr23Ni13 Half Round Tube Shield by Ladhani Metal Corporation offers a reliable and efficient solution for tube protection in high-temperature and oxidizing environments. Its austenitic stainless steel composition ensures superior oxidation resistance, structural integrity, and longevity under continuous thermal stress. Whether used in boilers, furnaces, or reformers, these shields effectively reduce downtime, maintenance costs, and the risk of unexpected tube failures. With flexible customization, quality-controlled fabrication, and proven material performance, Ladhani Metal Corporation remains a trusted supplier of advanced shielding solutions for critical industrial applications. For detailed specifications, customization requests, or to obtain a quote, please contact Ladhani Metal Corporation.

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half round tube shields

Half Round Tube Shield Half Round Tube Shields by Ladhani Metal Corporation are precision-engineered protective devices used to safeguard exposed tubes in boilers, heat exchangers, steam generators, and industrial process lines. These shields are designed to reduce wear, corrosion, and thermal damage, extending tube life and optimizing system performance in harsh operational environments. SS 316L Half Round Tube Shield The SS 316L Half Round Tube Shield is a semi-cylindrical protective sleeve manufactured using stainless steel grade 316L. Known for its excellent corrosion resistance and low carbon content, SS 316L is particularly suited for welded applications and environments involving chlorides or acidic compounds. The reduced carbon level minimizes the risk of carbide precipitation during welding, making the shield ideal for continuous high-temperature service and corrosive process systems. Its half-round geometry allows for quick installation, offering a tight, secure fit over existing tubes without compromising system function. Chemical Composition of SS 316L – Austenitic Stainless Steel • Carbon (C): ≤ 0.03% • Manganese (Mn): ≤ 2.00% • Phosphorus (P): ≤ 0.045% • Sulfur (S): ≤ 0.030% • Silicon (Si): ≤ 1.00% • Chromium (Cr): 16.0 – 18.0% • Nickel (Ni): 10.0 – 14.0% • Molybdenum (Mo): 2.0 – 3.0% • Iron (Fe): Balance Uses • Boiler Tube Protection – Shields boiler tubes from corrosive flue gases and thermal cycling, preventing premature failure and improving operational efficiency. • Heat Exchanger Tube Guarding – Prevents erosion, pitting, and surface scaling in systems exposed to high-velocity fluids and temperature fluctuations. • Marine and Coastal Installations – Used in salt-laden environments to resist chloride-induced corrosion in shipboard and offshore piping systems. • Process Tube Protection – Ideal for chemical and pharmaceutical industries where tubing is exposed to acidic, caustic, or reactive compounds. • Clean Steam and Sanitary Systems – Protects tubes in hygienic environments, offering corrosion resistance without contamination risks. Features • Low Carbon Content – Enhances weldability and prevents intergranular corrosion after welding, suitable for high-temperature welded assemblies. • Excellent Corrosion Resistance – Superior resistance to chlorides, acids, and oxidizing agents, making it ideal for aggressive environments. • High Durability – Withstands mechanical wear, pressure, and thermal fatigue without deformation or loss of performance. • Precision Formed – Half-round design ensures consistent tube coverage and easy field installation with welding or clamping. • Versatile Finishes – Available in pickled, passivated, or bright annealed finishes to meet both technical and aesthetic requirements. • Custom Sizing – Fabricated in various diameters, thicknesses, and lengths to match specific project dimensions and system layouts. Applications • Power and Utility Boilers – Used to protect superheater, reheater, and economizer tubes from oxidation and thermal damage. • Refineries and Chemical Plants – Shields high-temperature process tubes from corrosive gases and fluctuating chemical exposure. • Desalination and Water Treatment – Applied in brine heaters and evaporators to guard against saltwater corrosion. • Pharmaceutical Manufacturing – Suitable for steam and utility lines in cleanrooms and sterile process environments. • Food and Beverage Industry – Protects steam and pasteurization tubes in CIP systems, ensuring hygiene and corrosion resistance. • Pulp and Paper Mills – Guards recovery boiler tubes from corrosive byproducts and erosive steam flows. Conclusion The SS 316L Half Round Tube Shield from Ladhani Metal Corporation is a high-performance solution designed to enhance the reliability and service life of tubes in corrosive and high-temperature applications. Its low carbon content provides superior weldability and protection against intergranular attack, making it ideal for welded systems and continuous exposure to harsh conditions. Whether in power generation, food processing, marine, or chemical industries, these shields deliver consistent performance, reduced downtime, and long-term value. With customizable options, premium material sourcing, and expert craftsmanship, Ladhani Metal Corporation remains a trusted manufacturer of precision-engineered tube shielding products. For technical details, quotation requests, or custom fabrication inquiries, please contact Ladhani Metal Corporation.

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Titanium flanges

DIN 2576 Titanium Flanges PN 10 are premium-quality, slip-on flanges crafted from corrosion-resistant titanium alloys, designed for use in low to medium-pressure piping systems. Produced according to the DIN 2576 standard, these flanges offer exceptional corrosion resistance, lightweight performance, and structural reliability, especially in chemically aggressive and marine environments. The slip-on design allows the flange to slide over the pipe and be welded into place, ensuring proper alignment and mechanical strength across diverse industrial sectors. Ladhani Metal Corporation is a globally recognized manufacturer and exporter of titanium flanges, supplying components that meet stringent international standards for quality, dimension, and performance. DIN 2576 titanium flanges are well-suited for demanding applications where resistance to chlorides, seawater, and strong oxidizers is critical. Pressure Rating: • PN 10 (10 bar / 145 psi): Designed for systems operating under low to moderate pressure, ensuring safe and long-term functionality in fluid, gas, and chemical transport systems. Flange Types: • Slip-On Flanges Designed to slip over the pipe and be welded on both the inside and outside, these flanges provide ease of installation and dependable structural support. • Flat Face (FF) Flanges Used with flat gaskets and flat mating surfaces to ensure proper load distribution and effective sealing, especially when paired with non-metallic or cast components. Titanium Grades and Composition: Titanium Grade 2 (UNS R50400) Composition: • Titanium (Ti): ≥ 98.5% • Iron (Fe), Oxygen (O), Carbon (C), Nitrogen (N), Hydrogen (H): Trace amounts Applications: Commercially pure titanium Grade 2 is known for its excellent corrosion resistance, formability, and weldability. It is widely used in chemical processing, desalination plants, and medical equipment. Titanium Grade 5 (Ti-6Al-4V, UNS R56400) Composition: • Titanium (Ti): Balance • Aluminum (Al): 5.5 – 6.75% • Vanadium (V): 3.5 – 4.5% Applications: Grade 5 titanium offers superior strength and corrosion resistance, making it ideal for high-performance applications such as aerospace systems, offshore platforms, and high-stress piping environments. Applications of DIN 2576 Titanium Flanges: • Chemical and Petrochemical Industries Ideal for systems handling corrosive fluids, acids, and solvents, especially in chlorinated or oxidizing environments. • Desalination and Water Treatment Extensively used in seawater pipelines, brine systems, and high-purity water processing due to titanium’s resistance to chloride attack. • Marine and Offshore Engineering Suitable for shipbuilding, underwater pipelines, and ballast systems where corrosion from saltwater is a major concern. • Aerospace and Defense Used in lightweight, high-strength piping assemblies and fuel systems exposed to extreme environments. • Medical and Pharmaceutical Equipment Preferred for its biocompatibility and corrosion resistance in sterile and hygienic fluid handling systems. • High-Temperature and Reactive Environments Titanium Grade 5 flanges are used in systems exposed to thermal cycling, strong oxidizers, or aggressive chemical media. Key Features: • Manufactured in accordance with DIN 2576 standard • PN 10 pressure rating for moderate pressure systems • Exceptional resistance to corrosion, especially from seawater and chemicals • Available in Titanium Grade 2 and Grade 5 • Slip-on design for easy installation and accurate alignment • Flat face options compatible with specific gaskets and joint types • Lightweight yet mechanically strong • Suitable for marine, aerospace, medical, and chemical processing industries • Custom sizes, face types, and surface finishes available upon request Conclusion: DIN 2576 Titanium Flanges PN 10 from Ladhani Metal Corporation offer an ideal solution for industries requiring high corrosion resistance and durability in low to medium-pressure systems. With options in commercially pure and alloyed titanium, these flanges are engineered to meet the most demanding applications. For technical consultation, custom designs, or ordering information, contact Ladhani Metal Corporation today.

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cotter pin/ split pin

Ladhani Metal Corporation offers premium DIN 94 Aluminium Alloy products, meticulously manufactured to meet the highest industry standards. In compliance with DIN 94, a globally recognized standard for aluminium alloys, these materials provide superior strength, light weight, and corrosion resistance. Ideal for a wide range of applications, including automotive, aerospace, construction, and industrial machinery. Key Features: Lightweight and Strong: Known for its excellent strength-to-weight ratio, aluminium alloy is significantly lighter than steel but provides comparable or superior strength in many applications. It offers exceptional mechanical properties, including tensile strength, yield strength, and hardness, while remaining much lighter than other metals, making it ideal for applications where weight reduction is crucial, such as in the aerospace and automotive industries. Corrosion Resistance: it is resistant to corrosion. The alloy naturally forms an oxide layer on its surface, providing a protective barrier that resists oxidation. This makes it highly suitable for use in marine, coastal, and other harsh environments where exposure to moisture and chemicals can be a concern. Excellent Machinability and Formability: It offers good weldability, along with the ability to be extruded, forged, and shaped into complex forms, making it a versatile material for manufacturers across various sectors. The alloy can be easily processed into sheets, plates, rods, and bars, enabling its use in numerous production techniques. Thermal and Electrical Conductivity: Aluminium alloys are known for their high thermal and electrical conductivity. It is ideal for applications that require effective heat dissipation or electrical conductivity, such as in electrical components, heat exchangers, and radiators. Applications: Automotive: Components such as engine parts, wheels, frames, and body panels where weight reduction is a priority without compromising strength. Aerospace: Structural components, wing sections, and fuselage parts, benefiting from the alloy's lightweight and high-strength properties. Construction and Engineering: Aluminium alloy is used for window frames, roofing, structural beams, and other architectural elements, benefiting from its strength and weather-resistant properties. Electrical and Electronics: The alloy's electrical conductivity makes it ideal for electrical systems, including cables, connectors, and other high-performance components. Our Domestic reach is unlimited and we supply to this following cities Ahmedabad, Amritsar, Aurangabad, Bangalore, Bhopal, Chandigarh, Chennai, Coimbatore, Dhanbad, Faridabad, Ghaziabad, Guwahati, Gwalior, Howrah, Hyderabad, Indore, Jabalpur, Jaipur, Jodhpur, Kanpur, Kolkata, Kota, Lucknow, Ludhiana, Madurai, Meerut, Mumbai, Nagpur, Nashik, Navi Mumbai, New Delhi, Patna, Pune, Raipur, Rajkot, Ranchi, Solapur, Srinagar, Surat, Thane, Vadodara, Varanasi, Vijayawada, Visakhapatnam, Hubballi, Tiruchirappalli, Bareilly, Moradabad, Mysore, Gurgaon, Aligarh, Jalandhar, Bhubaneswar We export to following Countries: Russia, Canada, United States, China, Brazil, Australia, Argentina, Kazakhstan, Algeria, Denmark, Saudi Arabia, Mexico, Indonesia, Iran, Mongolia, Peru, South Africa, Colombia, Ethiopia, Bolivia, Egypt, Venezuela, Turkey, Chile, Myanmar, France, Ukraine, Madagascar, Botswana, Kenya, Thailand, Spain, Sweden, Uzbekistan, Morocco, Paraguay, Zimbabwe, Norway, Japan, Germany, Republic of the Congo, Finland, Vietnam, Malaysia, Poland, Oman, Italy, Philippines, Ecuador, New Zealand, United Kingdom, Guinea, Uganda, Nepal, Bangladesh

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cotter pin/ split pin

Ladhani Metal Corporation offers premium DIN 94 Stainless Steel 316 Cotter Pins, engineered for superior performance in a wide range of applications where secure fastening and reliability are paramount. Manufactured from high-quality stainless steel, these Cotter pins are designed to provide excellent resistance to corrosion, mechanical wear, and environmental factors, making them ideal for use in demanding industrial and engineering environments. Key Features of DIN 94 Stainless Steel 316 Cotter Pins: Corrosion Resistance: Made from stainless steel, these Cotter pins offer exceptional resistance to rust, corrosion, and oxidation, even in harsh environments like marine, chemical, and outdoor settings. Durability & Strength: Stainless steel's inherent strength ensures that the Cotter pins can withstand heavy loads, vibration, and mechanical stress, maintaining their integrity over time. Versatility: Available in a variety of sizes and configurations, can be used in a wide range of applications, including mechanical assemblies, automotive parts, and structural components. Non-Magnetic: As stainless steel is generally non-magnetic, these Cotter pins are suitable for applications where magnetic interference is a concern. Wear Resistance: Stainless steel Cotter pins are highly resistant to wear, ensuring a long service life even under demanding conditions. Applications: Automotive: Used for securing various automotive parts, including wheels, axles, suspension components, and more, where corrosion resistance and strength are essential. Industrial Equipment: Ideal for fastening components in machinery, pumps, motors, and construction equipment exposed to dirt, dust, and corrosive environments. Aerospace: Commonly used in aircraft assembly and maintenance, where reliability and resistance to environmental factors like moisture and chemicals are crucial. Marine: Perfect for use in marine environments, where stainless steel's resistance to saltwater corrosion ensures durability and long-term performance. Construction: Utilized in structural components and heavy machinery where secure fastening is essential, and corrosion resistance is critical for the longevity of the assembly. We also manufacture in DIN 94 Stainless steel Cotter pins in stainless steel 316, Stainless steel 310 & Stainless steel 309. Our Domestic reach is unlimited and we supply to this following cities Ahmedabad, Amritsar, Aurangabad, Bangalore, Bhopal, Chandigarh, Chennai, Coimbatore, Dhanbad, Faridabad, Ghaziabad, Guwahati, Gwalior, Howrah, Hyderabad, Indore, Jabalpur, Jaipur, Jodhpur, Kanpur, Kolkata, Kota, Lucknow, Ludhiana, Madurai, Meerut, Mumbai, Nagpur, Nashik, Navi Mumbai, New Delhi, Patna, Pune, Raipur, Rajkot, Ranchi, Solapur, Srinagar, Surat, Thane, Vadodara, Varanasi, Vijayawada, Visakhapatnam, Hubballi, Tiruchirappalli, Bareilly, Moradabad, Mysore, Gurgaon, Aligarh, Jalandhar, Bhubaneswar We export to following Countries: Russia, Canada, United States, China, Brazil, Australia, Argentina, Kazakhstan, Algeria, Denmark, Saudi Arabia, Mexico, Indonesia, Iran, Mongolia, Peru, South Africa, Colombia, Ethiopia, Bolivia, Egypt, Venezuela, Turkey, Chile, Myanmar, France, Ukraine, Madagascar, Botswana, Kenya, Thailand, Spain, Sweden, Uzbekistan, Morocco, Paraguay, Zimbabwe, Norway, Japan, Germany, Republic of the Congo, Finland, Vietnam, Malaysia, Poland, Oman, Italy, Philippines, Ecuador, New Zealand, United Kingdom, Guinea, Uganda, Nepal, Bangladesh

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cotter pin/ split pin

Ladhani Metal Corporation, a trusted name in the manufacturing and supply of high-quality metal products in India, offers the ISO 1234 Cotter Pin. Engineered to meet international standards, these Cotter pins are specifically designed for use in demanding applications where high strength, corrosion resistance, and durability are critical. Key Features: Material: Titanium Grade, known for its superior strength-to-weight ratio and excellent resistance to corrosion, particularly in harsh environments like marine, aerospace, and chemical industries. Standards: Manufactured in compliance with ISO 1234 specifications, ensuring consistency, reliability, and quality across every batch. Corrosion Resistance: Ideal for use in environments where resistance to corrosion from chemicals, saltwater, and extreme temperatures is required. High Strength: Titanium provides exceptional strength, making these Cotter pins suitable for high-stress applications. Precision Engineering: Manufactured with exacting standards to ensure proper fitment and functionality in various mechanical assemblies. Applications: Used extensively in aerospace, automotive, marine, and industrial machinery for securing parts and components in place, ensuring long-lasting performance. We also manufacture in Titanium Grade 1, Titanium Grade 2, Titanium Grade 5, Titanium Grade 7 and Titanium Grade 9, hastelloy, stainless steel, aluminium and copper. Our Domestic reach is unlimited and we supply to this following cities Ahmedabad, Amritsar, Aurangabad, Bangalore, Bhopal, Chandigarh, Chennai, Coimbatore, Dhanbad, Faridabad, Ghaziabad, Guwahati, Gwalior, Howrah, Hyderabad, Indore, Jabalpur, Jaipur, Jodhpur, Kanpur, Kolkata, Kota, Lucknow, Ludhiana, Madurai, Meerut, Mumbai, Nagpur, Nashik, Navi Mumbai, New Delhi, Patna, Pune, Raipur, Rajkot, Ranchi, Solapur, Srinagar, Surat, Thane, Vadodara, Varanasi, Vijayawada, Visakhapatnam, Hubballi, Tiruchirappalli, Bareilly, Moradabad, Mysore, Gurgaon, Aligarh, Jalandhar, Bhubaneswar We export to following Countries: Russia, Canada, United States, China, Brazil, Australia, Argentina, Kazakhstan, Algeria, Denmark, Saudi Arabia, Mexico, Indonesia, Iran, Mongolia, Peru, South Africa, Colombia, Ethiopia, Bolivia, Egypt, Venezuela, Turkey, Chile, Myanmar, France, Ukraine, Madagascar, Botswana, Kenya, Thailand, Spain, Sweden, Uzbekistan, Morocco, Paraguay, Zimbabwe, Norway, Japan, Germany, Republic of the Congo, Finland, Vietnam, Malaysia, Poland, Oman, Italy, Philippines, Ecuador, New Zealand, United Kingdom, Guinea, Uganda, Nepal, Bangladesh

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ring remains functional?