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Titanium Perforated Sheet

Titanium perforated sheets are versatile and highly durable materials commonly used in industries such as aerospace, automotive, chemical processing, and marine applications. Known for their exceptional strength-to-weight ratio, corrosion resistance, and high-performance capabilities, titanium perforated sheets are ideal for applications that require both structural integrity and resistance to harsh environments. Mechanical Properties of Titanium Perforated Sheets Titanium is a highly versatile material known for its impressive mechanical properties, which make it ideal for demanding applications in industries such as aerospace, automotive, chemical processing, and marine. Here are the key mechanical properties of titanium perforated sheets: Tensile Strength: Titanium alloys exhibit excellent tensile strength, which makes them suitable for high-stress applications. The typical tensile strength of commercially pure titanium (Grade 2) ranges from 35,000 to 50,000 psi (240 to 345 MPa). Higher-strength titanium alloys, such as Grade 5 (Ti-6Al-4V), can reach tensile strengths of up to 130,000 psi (900 MPa). Yield Strength: The yield strength of titanium perforated sheets is the amount of stress a material can withstand before it begins to deform. For commercially pure titanium, yield strength is typically between 20,000 and 40,000 psi (138 to 276 MPa), while titanium alloys like Ti-6Al-4V can reach yield strengths of 120,000 psi (828 MPa) or higher. Elongation: Titanium alloys are known for their high ductility, particularly in their pure form. The elongation (the ability to stretch without breaking) is typically around 20-25% for Grade 2 titanium and can be higher for certain titanium alloys, making them suitable for forming and shaping into perforated sheets. Hardness: Titanium's hardness varies based on its alloy composition. For commercially pure titanium, the hardness is typically around 170-230 HV (Vickers hardness), while titanium alloys such as Ti-6Al-4V can have a hardness of 300-400 HV, making them tougher and more abrasion-resistant. Fatigue Strength: Titanium is known for its high fatigue strength, meaning it can withstand repeated loading cycles without failure. This property is essential for aerospace and marine applications, where materials are exposed to continuous stress. Impact Strength: Titanium has high resistance to impact and can absorb significant energy before breaking, which is crucial in applications that require durability under sudden or fluctuating loads. Chemical Composition of Titanium (Grade 2) Titanium (Ti): 99.2% minimum Iron (Fe): 0.30% max Oxygen (O): 0.18% max Carbon (C): 0.08% max Nitrogen (N): 0.03% max Hydrogen (H): 0.015% max Other elements: Traces of elements such as vanadium, molybdenum, and aluminum, if present, should be in very low concentrations (less than 0.1% in total). Chemical Composition of Titanium Alloy (Grade 5 - Ti-6Al-4V) Titanium Grade 5 (Ti-6Al-4V) is a commonly used titanium alloy for high-performance applications, such as in aerospace and industrial settings. Its typical chemical composition includes: Titanium (Ti): 90% minimum Aluminum (Al): 5.5-6.75% Vanadium (V): 3.5-4.5% Iron (Fe): 0.25% max Oxygen (O): 0.20% max Carbon (C): 0.08% max Nitrogen (N): 0.05% max Hydrogen (H): 0.015% max

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Titanium Elliptical Dish Tank Head

Product name: Titanium Elliptical Dish Tank Head Standard: ASME VIII-I, DIN28013 Material: GR1, GR2, GR7, GR12 Size: Customized Titanium Elliptical Dish Tank Head The Elliptical Dish Tank Head is the lid of the pressure vessel and the main bearing part of the pressure vessel. Its function is to seal. One is an upper and lower pressure vessel consisting of a tank, and the other end is a pipe, which does not extend forward, and is then welded to seal the pipe in the form of a header. The head of the product acts like a blind and a lid, but both can be removed. And the head can not be removed after welding. With support pressure vessels, pipes, flanges, elbows, tees, stone products. The quality of Elliptical Dish Tank Head /dish head is directly related to the long-term safe and reliable operation of pressure vessel. Diameter 300 mm to 2000 mm Shape Round Thickness 1 to 16 mm Process Industrial use Material grade CP4 - level; CP3 - secondary; Titanium contact international.like apply SSDS - level 3; CP1 - level 4; Seven; ; Grade 11 -CP ti-0.15pd; Grade 5 - Titanium 6Al-4V; Grade 6 -- Titanium 5Al-2.5Sn; Grade 9 - Titanium 3Al-2.5V; 12-0.8 Ni Ti - 0.3 - Mo -; Grade 19 - Titanium βC; Grade 23 - Titanium 6Al-4V ELI; 6, 6 v - 2 sn; 6 al zr - 2-2 sn - 4 mo; 6 al zr - 2 sn - 4-6 mo; Mo 8 al - 1-1 v. Fe 10 v - 2-3 al; 15 v - 3 cr - 3 sn - 3 al; Alpha alloy; Beta alloy; Alpha beta alloy Purpose Forging Features Solid construction Smooth Finish High quality Type of disk head/endcaps/head: Ellipsoidal head This is also known as a 2:1 oval head. This head shape is more economical because the height of the head is only a quarter of its diameter. Its radius varies between the major axis and the minor axis. Hemispherical head A sphere is the ideal shape for the head because the pressure in the container is evenly distributed over the surface of the head. The head radius (R) is equal to the radius of the cylindrical part of the container. Torispherical head These have a disc head with a fixed radius (CR), the size of which depends on the type of spherical head. The transition between the cylinder and the plate is called the knuckle. The steering knuckle is circular. Klopper head This is a spherical head. The radius of the plate is equal to the diameter of the cylinder to which it is attached. The radius of the knuckle is equal to one tenth of the diameter of the cylinder. Korbbogen head This is a hemispherical head, also known as a hemispherical head (DIN 28013). The radius of the disk is 80% of the diameter of the cylinder (CR=0.8 x D0.). The radius of the knuckle is (KR= 0.154x D0).

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Titanium Seamless Elbows

Product Name: Titanium seamless elbows Standard: ASME B16.9 Material: Gr1, Gr2, Gr7, Gr12 Unit Price: $10usd/pc-$200usd/pc Outer Diameter: 1/2"-48" Wall Thickness: Sch5s-Sch160s Technique: Seamless/Welded In a piping system, an elbow is a fitting that changes the direction of the pipe run. According to the angle, there are three most commonly used elbows: 45 ° and 90 ° 180 °, and other abnormal angle elbows such as 60 ° are also included according to the needs of the project. The connection methods with the pipe include: direct welding (the most commonly used method) flange connection, hot-melt connection, electric fusion connection, threaded connection, socket connection, etc. according to the production process can be divided into: welding elbow, stamping elbow, push elbow, casting elbow, butt welding elbow, etc. Other names: 90 degree elbow, right angle bend, etc.

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Titanium Welded Elbows

Product Name: Titanium welded Elbows Standard: ASME B16.9 Material: Gr1, Gr2, Gr7, Gr12 Unit Price: $10usd/pc-$200usd/pc Outer Diameter: 1/2"-48" Wall Thickness: Sch5s-Sch160s Technique: Seamless/Welded Titanium elbow is a pipe fitting used to change the direction of the pipeline, with 45 degrees, 90 degrees, 180 degrees, and other non-standard angle elbows according to engineering needs. Titanium elbows can be classified as welding elbows, stamping elbows, casting elbows, butt welding elbows, etc. Titanium welded elbow features: high temperature resistance, corrosion resistance, pressure resistance, light weight, non-magnetic, non-toxic, strong stability, long life

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Titanium Grade 2 Elbows

Product Name: titanium grade 2 elbows Standard: ASME B16.9 Material: Titanium Gr2 Unit Price: $10usd/pc-$200usd/pc Outer Diameter: 1/2"-48" Wall Thickness: Sch5s-Sch160s Technique: Seamless/Welded Description Titanium grade 2 elbows An elbow is a pipe fitting used at the turn of a pipe. Among all the pipe fittings used in the pipeline system, the proportion is the largest, about 80%. Generally, different forming processes are selected for elbows with different materials or wall thickness. PRODUCT TYPE Long radious elbow(LR elbow), short radious elbow(SR elbow), seamless elbow, butt welding elbow, carbon steel elbow(CS elbow), mild steel elbow(MS elbow), alloy steel elbow(AS elbow),stainless steel elbow(SS elbow), ( 15deg, 30deg, 45deg, 90deg, 180deg) SIZE NPS1/2”-120”(DN15-3000) WALL THICKNESS SCH5S/10S, SCH20/40/80/160, STD/XS/XXS, SGP……. MATERIAL Titanium Gr2 STANDARD ANSI B 16.9/ANSI B16.28/MSS SP43/MSS P75/JIS2311/JIS 2312/JIS2313/DIN2605 etc… We can also produce according to drawing by customers. SURFACE TREATMENT Pickled PACKING plywood cases, pallets, nylon bags or according to the customers' requirements TRADE TERM FOB, CNF&CFR, CIF APPLICATION Chemical industry, petroleum industry, construction industry, power industry, gas industry, shipbuilding ,domestic installation and other CERTIFICATES ISO-9001:2015 ORIGIN Baoji, Shaanxi, China Chemical composition (Wt%) ASTM No. Fe max O max N max C max H max Pd Al Bal Grade 2 0.3 0.25 0.03 0.1 0.015 - - Ti Physical Properties (Min) ASTM Grade Alloy Composition Tensile Strength Yield Strength Elongation min % ksi Mpa ksi Mpa Grade 2 Unalloyed Ti ("Pure") 50A -CP2 58 400 40 275 25

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Titanium Grade 7 Elbows

Product Name: Titanium grade 7 elbows Standard: ASME B16.9 Material: Gr1, Gr2, Gr7, Gr12 Unit Price: $10usd/pc-$200usd/pc Outer Diameter: 1/2"-48" Wall Thickness: Sch5s-Sch160s Technique: Seamless/Welded Functions and features: 1. Elbow is used to install between two sections of pipe or pipe allowing direction change. 2. Save space, reduce weight, with sealing function. 3. Economic reliability. Production methods of titanium elbow: 1.Hot push forming The hot pushing elbow forming process is a process of heating, expanding and bending the blank sleeved on the die under the push of the pushing machine by using a special elbow pushing machine, core die and heating device. 2.Stamping forming Stamping forming elbow is the first forming process used in batch production of seamless elbow. It has been replaced by hot pushing method or other forming processes in the production of common specifications of elbow. However, it is still used in some specifications of elbow due to special requirements for products with small production quantity, too thick or too thin wall thickness. The pipe blank equal to the outer diameter of the elbow is used for the stamping forming of the elbow, and the press is used to press directly in the die. 3.Medium plate welding Use the medium plate to make half of the elbow section with a press, and then weld the two sections together. This process is generally used for elbows above DN700. Grade 7 (Ti-0.2Pd) titanium elbow Chemical compositions(weight%,<=) Pd Al V Fe C 0.12-0.25 ---- ---- 0.30 0.08 N H O Other(total) Ti 0.05 0.015 0.2 0.4 Remainder Physical properties(>=) Σb Tensile Strength (Mpa) σr0.2 Yield Strength (Mpa) δL0+50mm Elongation (%) ψ Reduction of area (%) 370 250 20 25

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Titanium Elbows 90

Product Name: Titanium elbows 90° Standard: ASME B16.9 Material: Gr1, Gr2, Gr7, Gr12 Unit Price: $10usd/pc-$200usd/pc Outer Diameter: 1/2"-48" Wall Thickness: Sch5s-Sch160s Technique: Seamless/Welded The process of titanium elbow is: first welding a polygonal polygonal polygonal ring shell or closed at both ends of the polygonal fan shell, the internal pressure is filled with the medium, the internal pressure, under the action of internal pressure, the cross section from polygon gradually become round, and finally become a circular ring shell. As required, one circular shell can be cut into 4 90° elbows or 6 60° elbows or other sizes. This process is suitable for manufacturing any large size elbows with the ratio of middle diameter to inner diameter of elbows greater than 1.5 times. It is an ideal manufacturing method for large titanium elbows. The advantages of the titanium elbow production process are mainly shown in the following aspects: (1) Without tube blank as raw material, the cost of tube making equipment and mould can be saved, and titanium elbow with arbitrary large diameter and relatively thin wall thickness can be obtained. (2) The blank is flat or developable surface, so the feeding is simple, the accuracy is easy to ensure, and the assembly and welding are convenient. (3) Due to the above two reasons, the manufacturing cycle can be shortened and the production cost greatly reduced. (4) Titanium elbow is suitable for pipeline series in oil, natural gas, chemical, hydropower, construction and boiler industries.

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Titanium Grade 1 Elbows

Product Name: Titanium grade 1 elbows Standard: ASME B16.9 Material: Titanium Gr1 Unit Price: $10usd/pc-$200usd/pc Outer Diameter: 1/2"-48" Wall Thickness: Sch5s-Sch160s Technique: Seamless/Welded Classification of elbows: 1.Butt welding elbow can be divided into long radius butt welding elbow and short radius butt welding elbow according to its radius of curvature. The radius of curvature of long radius butt welding elbow is equal to 1.5 times the outer diameter of the pipe, i.e. r = 1.5D. The radius of curvature of short radius butt welding elbow is equal to the outer diameter of the pipe, i.e. r = 1D. Where D is the diameter of butt welding elbow and R is the radius of curvature. Unless otherwise specified, 1.5D elbow is generally selected. 2.According to the pressure level, there are: sch5s, sch10s, sch10, sch20, sch30, sch40s, STD, sch40, sch60, sch80s and XS; Sch80、Sch100、Sch120、Sch140、Sch160、XXS 3.According to the angle of elbow, there are 45 degree butt welding elbow, 90 degree butt welding elbow, 180 degree butt welding elbow and other elbows with different angles. Chemical composition (Wt%) ASTM No. Fe max O max N max C max H max Pd Al Bal Grade 1 0.2 0.18 0.03 0.1 0.015 - - Ti Physical Properties (Min) ASTM Grade Alloy Composition Tensile Strength Yield Strength Elongation min % ksi Mpa ksi Mpa Grade 1 Unalloyed Ti ("Pure") 35A -CP1 35 240 25 170 30

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Product Name: Titanium seamless elbows Standard: ASME B16.9 Material: Gr1, Gr2, Gr7, Gr12 Outer Diameter: 1/2"-48" Wall Thickness: Sch5s-Sch160s Technique: Seamless/Welded Titanium seamless elbows In a piping system, an elbow is a fitting that changes the direction of the pipe run. According to the angle, there are three most commonly used elbows: 45 ° and 90 ° 180 °, and other abnormal angle elbows such as 60 ° are also included according to the needs of the project. The connection methods with the pipe include: direct welding (the most commonly used method) flange connection, hot-melt connection, electric fusion connection, threaded connection, socket connection, etc. according to the production process can be divided into: welding elbow, stamping elbow, push elbow, casting elbow, butt welding elbow, etc. Other names: 90 degree elbow, right angle bend, etc. Name: Titanium Elbow Material: Gr1, Gr2, Gr7, Gr12 Specification: 1/2"-48" Schedule 5s to Schedule 80 Standard: ASTM B363, EN 10253, DIN 2065 Type: R=1.0D, R=1.5D, R=3D Bending degrees: 30, 45, 60, 90, 120, 180 degrees bend Surface Processing: quartz-shot, sand-blasting, polishing Month capacity: 60000 pieces LADHANI METAL CORPORATION, MUMBAI, INDIA Company Information Ladhani Metal Corporation. We are committed to integrate engineering steel resources in India and serve the global engineering steel market. Our company has more than 32 years of experience in steel researching, production, managing and sales. In the aspect of resources and information, we have established cooperative and stronger relationship with nearly hundred enterprises, either state-owned or private owned in India. What’s more, we have built long, deep and close business relationship with dozens of steel company, Sharing and holding equities with several steel enterprises. Because of the close cooperation with steel companies and our pioneering spirit, which can ensure us stay at the top competition, and ensure our customers get what they really want! FOR MORE DETAIL CONTACT US AT :- ladhanimetal@gmail.com ladhanimetals@gmail.com www.ladhanimetal.in www.ladhanimetal.com LADHANI METAL CORPORATION, MUMABAI, INDIA, AVAILABLE AT FOLLOWING LOCATION:- Adilabad, Agartala, Agra, Ahmedabad, Ahmednagar, Ajmer, Akola , Aligarh , Alipore , Allahabad , Alleppey , Almora , Alwar , Alwaye , Amalapuram , Amaravati , Ambala , Amreli , Amritsar , Anakapalle , Anand , Anantapur , Andhra Pradesh , Anna Road , Arakkonam , Arunachal Pradesh , Asansol , Aska , Assam , Aurangabad , Azamgarh , Bagalkot , Bahraich , Balaghat , Balangir , Balasore , Ballia , Banasanktha , Banda , Bangalore , Bankura , Barabanki , Barabazaar , Baramulla , Barasat , Bardoli , Bareilly , Barmer , Bastar , Basti , Beawar , Beed , Begusarai , Belgaum , Bellary , Berhampur , Bhadrak , Bhagalpur , Bharatpur , Bharuch , Bhatinda , Bhavnagar , Bhilwara , Bhimavaram , Bhiwani , Bhojpur , Bhopal , Bhubaneswar , Bhusaval , Bidar , Bihar , Bijapur , Bijnor , Bikaner , Bilaspur , Birbhum , 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