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'copper content'

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sheet/plates

Pure Tungsten Sheets/Plates are flat, solid pieces of pure tungsten metal, typically produced in various thicknesses and sizes to meet specific industrial needs. Tungsten, with its exceptional properties, is highly valued in industries where extreme conditions of temperature, pressure, or corrosion resistance are prevalent. Key Characteristics of Pure Tungsten Sheets/Plates: Material Composition: 99.95% Pure Tungsten (W): These sheets or plates are composed entirely of tungsten, with minimal or no impurities, ensuring the full range of tungsten's beneficial properties. High Density:Tungsten has a very high density of around 19.25 g/cm³, making it one of the heaviest metals. This density is beneficial for applications requiring mass and weight in compact forms. Extremely High Melting Point:With a melting point of 3,422°C (6,192°F), tungsten is the highest-melting metal, making it ideal for applications in extreme temperatures such as aerospace and high-temperature manufacturing. Strength and Durability:Pure tungsten is incredibly strong and durable, with tensile strength that can reach up to 1510 MPa. It is highly resistant to wear, deformation, and damage under stress, even in extreme conditions. Corrosion and Oxidation Resistance:Tungsten exhibits excellent resistance to corrosion, oxidation, and other forms of environmental degradation, even at high temperatures, which makes it ideal for long-lasting, reliable use in harsh conditions. Applications of Pure Tungsten Sheets/Plates: Aerospace and Defense: Tungsten plates are used in aerospace components such as rocket nozzles, satellite shielding, and spacecraft parts, due to their ability to withstand extreme heat and pressure.Armor-piercing projectiles and military-grade materials also benefit from tungsten's high density and strength. High-Temperature Applications: Tungsten sheets are commonly used in high-temperature furnaces and other industrial heating equipment where temperatures may exceed normal metal capabilities, such as in hot zones of steel manufacturing or semiconductor production.

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sheet

ungsten-Copper Sheet is a composite material that combines the exceptional properties of both tungsten (W) and copper (Cu), offering a unique blend of high density, heat resistance, electrical conductivity, and machinability. This alloy is used in applications that require both the extreme heat resistance and strength of tungsten, combined with the excellent thermal and electrical conductivity of copper. Properties: · Density: Tungsten-copper sheets are dense, with a specific gravity that lies between that of pure tungsten and pure copper. The density depends on the ratio of tungsten to copper, but it remains significantly higher than most common metals. This makes them useful for applications that require weight and stability in compact forms. · Color and Appearance: Tungsten copper sheets typically have a metallic, steel-gray or brownish color, with a smooth surface that may be finished through machining, polishing, or grinding processes. The copper content can give the surface a slightly reddish hue depending on the ratio. · Thickness and Dimensions: Tungsten-copper sheets are available in various thicknesses, ranging from thin foils to thicker sheets, and can be custom-manufactured to meet specific size requirements. The sheets can be precision-cut or machined to fit specific designs. Applications of Tungsten-Copper Sheet: · Electrical and Electronics: Electrical Contacts and Commutators: Tungsten-copper sheets are used in electrical components that require both high conductivity and high resistance to wear and heat, such as electrical contacts in high-voltage switches and commutators. · Aerospace and Defense: Heat Shields: Due to their high-temperature stability and excellent heat dissipation properties, tungsten-copper sheets are used in aerospace applications like heat shields and rocket nozzles. · Nuclear Industry: Tungsten-copper sheets are used in nuclear reactors for radiation shielding and high-temperature applications where both mechanical strength and heat management are essential.

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disc

A tungsten-copper disc is a circular, flat-shaped component made from a composite material that blends the high density and strength of tungsten (W) with the excellent thermal and electrical conductivity of copper (Cu). This alloy is designed to provide a combination of the properties required in high-performance applications, especially where both heat resistance and conductivity are essential. Tungsten-copper discs are commonly used in industries like aerospace, electronics, manufacturing, and medical technologies. Properties: · Density: Tungsten-copper discs have a high density, which lies between the densities of pure tungsten and pure copper. This makes the material suitable for applications requiring high mass or weight, such as counterweights or radiation shielding. · Color and Appearance: Tungsten-copper discs typically have a metallic gray or brownish color, which reflects the tungsten content, while the copper content may give a reddish hue to the surface. The surface can be smooth or finished depending on the manufacturing and machining processes. · Thickness and Diameter: Tungsten-copper discs can be manufactured in a wide range of diameters and thicknesses. Custom sizes can be created to meet specific design and performance requirements. Applications of Tungsten-Copper Disc: · Electrical Contacts: Tungsten-copper discs are used in electrical contacts for high-voltage circuits, commutators, and other components that need to handle high current while effectively managing heat. · Heat Sinks: The high thermal conductivity of tungsten-copper alloys makes these discs ideal for heat dissipation in electronic devices and power electronics that generate large amounts of heat. · Radiation Shielding: Tungsten-copper discs are often used in radiation shielding applications, such as in X-ray machines or CT scanners, where both the high density (for radiation shielding) and heat dissipation properties are essential. · Heat Shields and Components: The high density and heat resistance make tungsten-copper discs ideal for aerospace applications, such as rocket nozzles, heat shields, and re-entry vehicle components.

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industrial ring

A pure tungsten industrial ring is a heavy-duty ring made from 99.95% pure tungsten metal, designed primarily for use in industrial settings or for specialized applications. These rings combine the exceptional physical properties of tungsten—such as its strength, heat resistance, and durability—with a rugged, functional design suited for demanding environments. Key Characteristics of a Pure Tungsten Industrial Ring: 99.95% Pure Tungsten (W): The industrial ring is made from pure tungsten, meaning it contains no alloys or impurities. This ensures the ring has the full range of tungsten's natural advantages, such as superior strength and resilience. High Strength and Durability: Tungsten is one of the hardest metals, with a high hardness rating on the Mohs scale (around 8.5-9). This gives the industrial ring exceptional wear resistance and helps it withstand abrasions, impacts, and stresses over extended periods, even in the toughest conditions. Heat Resistance: Tungsten has an extremely high melting point of 3,422°C (6,192°F), making it ideal for high-temperature environments. A pure tungsten industrial ring will retain its shape and integrity even under intense heat, making it useful for industries where high heat exposure is common, such as manufacturing, aerospace, and welding. Corrosion and Oxidation Resistance: Pure tungsten is highly resistant to corrosion and oxidation, which means the industrial ring will not rust or degrade even when exposed to moisture, chemicals, or harsh environmental conditions, ensuring long-term reliability in a variety of industrial settings. Density and Weight: Tungsten is a dense material (around 19.25 g/cm³), making the ring relatively heavy compared to rings made from other materials. This weight not only gives it a substantial, solid feel but also contributes to its durability, ensuring that the ring remains functional and robust even under heavy use. Applications of Pure Tungsten Industrial Rings: Manufacturing and Machinery: Tungsten industrial rings are used in machinery, equipment, and tooling systems where components need to endure extreme wear and stress. The high strength and resistance to abrasion make tungsten an excellent material for parts subjected to constant friction or high pressure. Aerospace and Defense: Due to tungsten's strength and high heat resistance, industrial rings made from pure tungsten are used in aerospace and military applications, such as rocket nozzles, defense components, and aircraft engines, where durability and high-temperature resistance are critical. Mining and Construction: In the mining and construction industries, where equipment and tools are subjected to heavy wear and rough handling, tungsten rings are used for parts that require exceptional hardness and resilience. Heavy-Duty Industrial Use: Pure tungsten industrial rings are also used in industrial applications such as drill bits, cutting tools, counterweights, and other components where the material's density and strength are crucial to performance.

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Dished End

Being one of the leading organization in the market, highly involved in offering a broad range of Dished Ends as per DIN 28011 And DIN28013 to our esteemed customers. Our offered products are manufactured suing utmost quality raw material which is obtained from the authentic vendor if the supplier. Moreover, these products are accessible in different sizes and dimensions to suit the varied demands and needs of our customers.We Manufacture and Export Types Of Dishends / Endcaps / Heads ELLIPSOIDAL HEAD HEMISPHERICAL HEAD. TORISPHERICAL HEAD KLÖPPER HEAD KORBBOGEN HEAD Semi ellipsoidal head DIN28013 Flat dished heads Standard Flat dished heads Flat heads Convex Discs Plate Type Heads Diffuser Heads Cone , Bulk & Tank Vehicle Heads Weld Counstriction Special Pressed part Experienced In Making Grades Like Carbon steel,P265-GH, 16Mo3,15NiCuMoNb5, CrMo(V), Alloy steel, 10CrMo9-10,13CrMo4-5,ASME SA 387 Gr.11,Gr12,ASME SA 387 Gr.91,P355-Gh,-NH,-NL1,-NL2,ASME SA 516 Gr.60 , Gr.70,Stainless steel 1.4301,1.4307,1.4404,1.4541,1.4571,1.4539,1.4501,Stainless steel ASME SA240 304,304L,316,316l,321,321H,316Ti,904L,2205,Super Duplex 1.4462 , cr25,Nickel alloys Alloy 20,59,200,MONEL 400,INCONEL 600,601,625,INCOLOY 800,825, 825,Copper,Titanium Grade 2,Grade 5, Aluminium Test method: Impact -Test acc. to DIN EN 10045-2 Tensile test acc to DIN EN 10002-1 , ISO 6892-1 , ASTM A 370 Hot tensile test acc to DIN EN 10002-5 until 900°C Hardness Test acc. to Brinell and DIN EN ISO 6506-1 Testing of intercrystalline corrosion acc to ISO 3651-2 (A) , ASTM A 262 Pract. E X – Ray -Examination acc. to EN 1435 , ISO 5817 , ASME V Art.2 , VIII Div.1 § UW -51 UT - Ultrasonic testing acc. to EN 10160 , EN 10307 , ASME SA-578 , ASME SA-435 PT - Penetrant testing acc. to EN 571 , ASME V Art.6 , ASME VIII Div.1 App.8 MT- Magnetic particle testing acc. to EN 1291 , ASME V Art.7 , ASMEVIII Div.1 App.6 Certificate: Certificate acc. to EN 10204 - 3.1 and 3.2 from independent organization

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Beryllium Copper

C17200 Copper (CDA 172) ASTM B196, AMS 4533, SAE J461, RWMA CLASS IV C17200 is also known as Alloy 25 and is the most commonly utilized beryllium copper alloy and is notable for exhibiting the highest strength and hardness compared to commercial copper alloys. Its strength and hardness is similar to that of steel. C17200 copper's ultimate tensile and Rockwell hardness properties in a peak aged condition are in the 200 ksi range and RC 45 respectively (electrical conductivity 22% IACS minimum). Typical Uses for C17200 Beryllium Copper: ELECTRICAL: Electrical Switch / Relay Blades Fuse Clips Switch Parts Relay Parts Connectors Spring Connectors Current Carrying Contact Bridges Navigational Instruments Clips FASTENERS: Washers Fasteners Lock Washers Retaining Rings Roll Pins Screws Bolts INDUSTRIAL: Pumps Springs Electrochemical Shafts Non Sparking Safety Tools Flexible Metal Hose Housings for Instruments Bearings Bushings Valve Seats Valve Stems Diaphragms Springs Welding Equipment Rolling Mill Parts Spline Shafts Pump Parts Valves Bourdon Tubes Wear Plates on Heavy Equipment Bellows Die ORDINANCE: Firing Pins OTHER: Tools Specifications End Product Specification Bar : AMS 4650, 4651, 4533, ASTM B194, B196, MILITARY MIL-C-21657, SAE J463, J461 Extrusions :ASTM B570 Forgings :AMS 4650, ASTM B570 Plate:ASTM B194 Rod:AMS 4650, 4534, 4533, 4651, ASTM B196, MILITARY MIL-C-21657, SAE J463, J461 Rod, Forging: AMS 4650 Sheet:ASTM B194 Strip:ASTM B194, SAE J463, J461 Tube, Seamless:AMS 4535, ASTM B643 Wire:AMS 4725, ASTM B197, SAE J463, J461 Chemical Composition: Be: 1.85-2.10% Co+Ni: 0.20% Min. Co+Ni+Fe: 0.60% Max. Cu: Balance Note: Copper plus additions equal 99.5% minimum.

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cotter pin/ split pin

Ladhani Metal Corporation manufactures high-quality Copper Alloy Cotter Pins in compliance with the ISO 1234 standard, ensuring optimal performance and durability in a wide range of applications. These Cotter pins are precision-engineered to meet the demanding needs of industries such as automotive, aerospace, marine, and heavy machinery, providing a secure fastening solution for components that require a reliable, vibration-resistant fastener. Key Features: Material: Made from premium copper alloy, these Cotter pins offer excellent corrosion resistance, particularly in environments where moisture, salt, or other corrosive elements are prevalent. The copper alloy used ensures enhanced durability and longevity, making them ideal for harsh conditions. ISO 1234 Standard Compliance: Ladhani Metal Corporation's copper alloy Cotter pins are manufactured according to the strict requirements of ISO 1234, which defines the material properties, dimensions, and performance criteria for Cotter pins. This guarantees that the pins meet international standards for quality and functionality. Dimensions and Tolerances: The Cotter pins are available in various sizes, with a precise tolerance for diameter and length, ensuring a secure and exact fit into corresponding holes. These pins are carefully crafted to ensure smooth insertion and effective locking, even under high-pressure or dynamic conditions. Cotter Design: Featuring a unique Cotter design, the pin consists of two prongs that can be bent outward once inserted through a hole, forming a secure, mechanical lock. This prevents any movement or loosening, even in high-vibration environments, making them an essential component for assemblies where stability is crucial. Corrosion Resistance: Copper alloys are renowned for their natural resistance to corrosion, especially in marine, aerospace, and chemical processing environments. These Cotter pins remain reliable and effective over time, even in the harshest conditions, helping to reduce maintenance needs and downtime. Strength and Durability: The copper alloy provides exceptional strength, ensuring the Cotter pins perform well under mechanical stress without bending or breaking. The pins offer resistance to fatigue and wear, maintaining their locking integrity throughout the life cycle of the assembly. Applications: Copper alloy Cotter pins from Ladhani Metal Corporation are used in a variety of industries: Automotive: Securely fastening components like axles, wheels, and shafts. Aerospace: For locking parts and components in aircraft systems where strength and lightweight properties are essential. Marine: Resistant to saltwater corrosion, these pins are ideal for use in marine equipment and vessels. Heavy Machinery and Engineering: Used in construction and industrial machinery to hold components in place under high load and vibration. Quality Assurance: Ladhani Metal Corporation places a strong emphasis on quality control. Each batch of copper alloy Cotter pins undergoes rigorous testing for dimensional accuracy, tensile strength, corrosion resistance, and overall performance to ensure they meet the ISO 1234 standards. This commitment to quality ensures that customers receive a dependable and long-lasting product for their fastening needs. Conclusion: Ladhani Metal Corporation's ISO 1234 Copper Alloy Cotter Pins offer a premium fastening solution for a variety of applications that demand high strength, corrosion resistance, and reliability. With adherence to international standards, these Cotter pins provide secure, long-lasting performance in even the most challenging environments, making them a trusted choice for industries worldwide.

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