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			<title>Latest Products</title>
			<link>https://www.pitrukrupaengineering.co.in</link>
			<description>Latest Products</description>
			<lastBuildDate>Mon, 17 Aug 2026 03:45:39 +0530</lastBuildDate>
			<language>en-us</language>
			<generator>https://www.pitrukrupaengineering.co.in</generator>
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				<title>Industrial Flanges</title>
				<link>https://www.pitrukrupaengineering.co.in/industrial-flanges.htm</link>
				<guid>https://www.pitrukrupaengineering.co.in/industrial-flanges.htm</guid>
				<pubDate>Tue, 02 Jul 2024 00:00:00 +0530</pubDate>
				<description></description>
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				<title>Chain Sprockets</title>
				<link>https://www.pitrukrupaengineering.co.in/chain-sprockets.htm</link>
				<guid>https://www.pitrukrupaengineering.co.in/chain-sprockets.htm</guid>
				<pubDate>Tue, 02 Jul 2024 00:00:00 +0530</pubDate>
				<description></description>
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				<title>Aluminium Extrusion Die</title>
				<link>https://www.pitrukrupaengineering.co.in/aluminium-extrusion-die.htm</link>
				<guid>https://www.pitrukrupaengineering.co.in/aluminium-extrusion-die.htm</guid>
				<pubDate>Wed, 05 Aug 2026 00:00:00 +0530</pubDate>
				<description>We are a leading manufacturer, exporter, and supplier of high-quality Aluminium Extrusion Die from India. Our round-shaped die is made from premium aluminum material with a polished finish, ensuring fine finishing. With a thickness of 20-30mm, our hot plate die casting type guarantees precision and durability. Perfect for various extrusion applications, our die is designed to meet the highest industry standards. Trust us for reliable and top-notch products that will enhance your manufacturing processes.</description>
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				<title>AZ31B Magnesium Alloy Plate</title>
				<link>https://www.pitrukrupaengineering.co.in/az31b-magnesium-alloy-plate.htm</link>
				<guid>https://www.pitrukrupaengineering.co.in/az31b-magnesium-alloy-plate.htm</guid>
				<pubDate>Thu, 06 Aug 2026 00:00:00 +0530</pubDate>
				<description>AZ31B Magnesium Alloy Plate Description &amp;nbsp; Overview: An AZ31B Magnesium Alloy Plate is a high-performance, ultra-lightweight structural metal plate composed primarily of magnesium, alloyed with approximately 3% aluminium and 1% zinc. It is the industry-standard wrought magnesium alloy, providing a density approximately 33% lighter than aluminium and 75% lighter than steel while maintaining high mechanical strength and exceptional vibration-damping characteristics. &amp;nbsp; Key Properties &amp;amp; Performance Attributes: - Ultra-Lightweight: Density of ~1.78 g/cm&amp;sup3;, making it one of the lightest structural metallic materials available. - High Specific Strength: Outstanding strength-to-weight ratio, allowing significant mass reduction in structural components. - Excellent Damping Capacity: Superior ability to absorb mechanical vibrations and damp acoustic noise compared to aluminium or steel. - Good Formability &amp;amp; Machinability: Outstanding machinability at high speeds; excellent warm-formability at temperatures between 200&amp;deg;C and 300&amp;deg;C. - Shielding Capability: Provides good electromagnetic shielding (EMI/RFI) for sensitive electronic equipment. &amp;nbsp; Chemical Composition (Nominal %): - Magnesium (Mg): Balance (~95-96%) - Aluminium (Al): 2.5% &amp;ndash; 3.5% (provides strength and hardness) - Zinc (Zn): 0.6% &amp;ndash; 1.4% (improves room-temperature strength) - Manganese (Mn): 0.2% &amp;ndash; 1.0% (improves corrosion resistance) &amp;nbsp; Common Tempers &amp;amp; Manufacturing Standards: - Standard Tempers:&amp;nbsp; &amp;nbsp; * H24 (Strain hardened and partially annealed) &amp;ndash; Most common for sheet/plate. &amp;nbsp; * O (Fully annealed) &amp;ndash; Maximum ductility for complex warm forming. - Standards: ASTM B90 / B90M, AMS 4377, UNS M11311. &amp;nbsp; Primary Applications: - Aerospace &amp;amp; Defense: Aircraft floor panels, helicopter gear housings, missile structures, and satellite frames. - Automotive &amp;amp; Racing: Lightweight structural brackets, valve covers, oil pans, and racecar chassis components. - Electronics &amp;amp; Consumer Goods: Laptop casings, camera bodies, cell phone frames, and handheld equipment housings. - Industrial Machinery: High-speed reciprocating machine parts, textile machinery components, and checking fixtures where low rotational/reciprocating inertia is required.</description>
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				<title>Gear Shaper Cutter</title>
				<link>https://www.pitrukrupaengineering.co.in/gear-shaper-cutter.htm</link>
				<guid>https://www.pitrukrupaengineering.co.in/gear-shaper-cutter.htm</guid>
				<pubDate>Thu, 06 Aug 2026 00:00:00 +0530</pubDate>
				<description>Gear Shaper Cutter Description &amp;nbsp; Overview: A Gear Shaper Cutter is a specialized gear-cutting tool used in the gear shaping process (Fellows method). Designed in the form of a hardened steel gear with relieved cutting clearances, it generates spur gears, helical gears, internal gears, splines, and stepped clusters by replicating a meshing gear action combined with vertical reciprocating cutting strokes. &amp;nbsp; Working Principle: 1. Reciprocating Motion: The cutter moves vertically up and down. On the downstroke (or upstroke depending on setup), the sharp cutting edges shear metal off the gear blank. 2. Rotary Generating Motion: Both the cutter and the workpiece rotate continuously at a synchronized ratio matching their respective tooth counts, gradually forming the involute tooth profile. &amp;nbsp; Types of Gear Shaper Cutters: 1. Disc Type (Bore Type):&amp;nbsp; &amp;nbsp; &amp;nbsp;- Circular disc with a central bore and keyway for arbor mounting. &amp;nbsp; &amp;nbsp;- Most common type for cutting external spur and helical gears. 2. Hub Type:&amp;nbsp; &amp;nbsp; &amp;nbsp;- Features an integrated central hub for improved rigidity when cutting small internal gears or shoulders. 3. Shank Type (Pion Type):&amp;nbsp; &amp;nbsp; &amp;nbsp;- Features an integral precision shank; used for small-diameter internal gears, splines, or tight-clearance bores where disc cutters cannot fit. 4. Rack Type:&amp;nbsp; &amp;nbsp; &amp;nbsp;- Flat, straight-line cutter profile used in specific rack-shaping machines (e.g., Maag process). &amp;nbsp; Common Materials &amp;amp; Coatings: - Base Materials: High-Speed Steel (HSS), Powder Metallurgy HSS (PM-HSS / ASP grades), and Solid Carbide for high-volume production. - PVD Coatings: TiN (Titanium Nitride), TiAlN (Titanium Aluminium Nitride), or AlCrN (Aluminium Chromium Nitride) to reduce friction, increase thermal stability, and extend tool life. &amp;nbsp; Key Advantages: - Internal Gear Capability: Unlike gear hobbing, gear shaping can cut internal gears, blind-bottom splines, and shoulder gears with minimal clearance gaps. - High Precision: Produces extremely accurate involute profiles and high surface finish quality. - Versatility: A single cutter can produce gears with any number of teeth, provided they share the same module/pitch and pressure angle. &amp;nbsp; Primary Applications: - Automotive &amp;amp; Transmission Manufacturing: Gearbox cluster gears, internal ring gears, and synchronizer sleeves. - Industrial Machinery &amp;amp; Aerospace: Aircraft actuator splines, planetary gearboxes, and reduction drives. - Heavy Equipment &amp;amp; Mining: High-torque internal gear rings and winch drives.</description>
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				<title>Mild Steel Duplex Chain Sprocket</title>
				<link>https://www.pitrukrupaengineering.co.in/mild-steel-duplex-chain-sprocket.htm</link>
				<guid>https://www.pitrukrupaengineering.co.in/mild-steel-duplex-chain-sprocket.htm</guid>
				<pubDate>Thu, 06 Aug 2026 00:00:00 +0530</pubDate>
				<description>Mild Steel Duplex Chain Sprocket Description &amp;nbsp; Overview: A Mild Steel Duplex Chain Sprocket is a heavy-duty mechanical power transmission component featuring two parallel sets of teeth integrated onto a single hub or body. Manufactured from low-carbon (mild) steel, it is engineered to drive a duplex roller chain, distributing heavy operational loads across two strands to handle higher torque and horsepower than a standard single-strand (simplex) sprocket. &amp;nbsp; Key Features &amp;amp; Performance Attributes: - Dual-Track Tooth Profile: Features two parallel rows of precision-machined teeth spaced to match standard duplex roller chain pitches. - High Torque Capacity: Transmits up to twice the power of a simplex sprocket without significantly increasing the overall diameter. - Tough &amp;amp; Ductile Core: Mild steel construction provides excellent impact resistance and ductility, preventing sudden brittle fractures under shock loads. - Surface Induction Hardening: Teeth are frequently induction-hardened to extend wear life while retaining a tough, machineable core. - Easy Machinability: Central bore can be readily machined, reamed, keyway-cut, or fitted with taper lock bushes for custom shaft mounting. &amp;nbsp; Common Configurations &amp;amp; Hub Types: - Type A (Plate Type): Flat disc sprocket without a protruding hub, suitable for mounting on existing flanges or shafts. - Type B (Single Hub): Protruding hub extending from one side, providing additional stability and room for keyways and setscrews. - Type C (Double Hub): Hub extension on both sides for maximum shaft support and high-load distribution. - Taper Lock Bush Type: Designed for quick installation and removal using a standardized internal taper bush. &amp;nbsp; Technical Specifications &amp;amp; Standards: - Standards: ISO 606, BS 228 (British Standard - B Series), ANSI B29.1 (American Standard - A Series). - Material Grade: Low Carbon / Mild Steel (e.g., AISI 1018, AISI 1020, EN8/C45 option for hardened teeth). - Pitch Range: 3/8&quot; (06B-2 / ANSI 35-2) up to 2&quot; (32B-2 / ANSI 160-2) and above. &amp;nbsp; Primary Applications: - Industrial Conveyor Systems: Driving heavy-duty material handling conveyors in assembly and packaging plants. - Heavy Machinery &amp;amp; Equipment: Agricultural machinery, mining equipment, and construction drives. - Power Transmission Drives: Motor-to-gearbox drive systems requiring compact, high-torque transmission. - Automobile &amp;amp; Printing Machinery: Synchronized drive mechanisms operating under continuous load.</description>
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				<title>Mild Steel Simplex Chain Sprocket</title>
				<link>https://www.pitrukrupaengineering.co.in/mild-steel-simplex-chain-sprocket.htm</link>
				<guid>https://www.pitrukrupaengineering.co.in/mild-steel-simplex-chain-sprocket.htm</guid>
				<pubDate>Thu, 06 Aug 2026 00:00:00 +0530</pubDate>
				<description>Mild Steel Simplex Chain Sprocket Description &amp;nbsp; Overview: A Mild Steel Simplex Chain Sprocket is a foundational power transmission component designed to drive or be driven by a single-strand roller chain. Manufactured from low-carbon (mild) steel, it provides a cost-effective, durable, and reliable solution for light-to-medium duty mechanical drive systems across industrial, agricultural, and commercial applications. &amp;nbsp; Key Features &amp;amp; Performance Attributes: - Single-Track Tooth Profile: Features a single row of precision-machined teeth designed to match the pitch, roller diameter, and width of standard simplex chains. - High Toughness &amp;amp; Shock Absorption: Mild steel construction offers excellent ductility and impact resistance, allowing the sprocket to absorb operational shocks without brittle failure. - Inductively Hardened Teeth (Optional): Tooth profiles can undergo induction hardening to significantly reduce wear and increase operational life under continuous friction. - High Machinability: Central hub can easily be bored, reamed, threaded, or broached for custom keyways and setscrews. &amp;nbsp; Common Hub Configurations: - Type A (Plate Type): A flat sprocket disc with no hub extension; compact and lightweight for mounting onto flanges or existing hubs. - Type B (Single Hub): Features a hub projection on one side to accommodate keyways, setscrews, or locking elements while maintaining shaft stability. - Type C (Double Hub): Features hub projections on both sides for maximum shaft support and balanced load distribution. - Taper Lock Type: Machined to accept a standardized taper lock bush for easy installation, alignment, and removal. &amp;nbsp; Technical Specifications &amp;amp; Standards: - Standards: ISO 606 / BS 228 (British Standard - B Series), ANSI B29.1 (American Standard - A Series). - Material Grade: Mild Steel / Low Carbon Steel (e.g., AISI 1018, AISI 1020, C45 / EN8). - Common Chain Pitch Sizes: 3/8&quot; (06B-1 / ANSI 35), 1/2&quot; (08B-1 / ANSI 40), 5/8&quot; (10B-1 / ANSI 50), 3/4&quot; (12B-1 / ANSI 60), up to 1-1/2&quot; and above. &amp;nbsp; Primary Applications: - Light to Medium Conveyors: Material transport in packaging, bottling, and assembly lines. - Agricultural Machinery: Drives for seeders, harvesters, and bailers. - General Industrial Drives: Electric motor to gearbox reductions, pump drives, and HVAC fans. - Bicycles &amp;amp; Motorcycles: Single-strand final drive mechanisms.</description>
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				<title>Aluminium Flat Bar</title>
				<link>https://www.pitrukrupaengineering.co.in/aluminium-flat-bar.htm</link>
				<guid>https://www.pitrukrupaengineering.co.in/aluminium-flat-bar.htm</guid>
				<pubDate>Thu, 06 Aug 2026 00:00:00 +0530</pubDate>
				<description>Aluminium Flat Bar Description &amp;nbsp; Overview: An Aluminium Flat Bar is a versatile, solid metal stock manufactured primarily through an extrusion process. Known for its high strength-to-weight ratio, excellent corrosion resistance, and ease of machining, it provides a lightweight alternative to steel for structural, decorative, electrical, and manufacturing uses. &amp;nbsp; Key Characteristics &amp;amp; Advantages: - Lightweight &amp;amp; Strong: Approximately one-third the weight of steel, making it ideal for weight-sensitive assemblies. - Corrosion Resistance: Forms a natural protective oxide layer that resists atmospheric corrosion, rust, and chemical exposure. - Workability: Highly machinable, easy to drill, cut, weld, bend, and anodize or powder-coat for custom decorative finishes. - Electrical &amp;amp; Thermal Conductivity: Offers high thermal and electrical conductivity, making specific alloys suitable for electrical busbars and heat sinks. &amp;nbsp; Common Alloys &amp;amp; Tempers: 1. 6061-T6 (Structural Grade):&amp;nbsp; &amp;nbsp; &amp;nbsp;- High strength, good weldability, and excellent mechanical properties. &amp;nbsp; &amp;nbsp;- Used for structural frames, brackets, machinery parts, and truck beds. 2. 6063-T52 (Architectural Grade):&amp;nbsp; &amp;nbsp; &amp;nbsp;- Superior surface finish, smoother edges, and high corrosion resistance. &amp;nbsp; &amp;nbsp;- Ideal for trim, store fixtures, railings, decorative framing, and door frames. 3. 2024 / 7075 (Aircraft Grade):&amp;nbsp; &amp;nbsp; &amp;nbsp;- Ultra-high strength alloys used in high-stress aerospace and military applications. 4. 1100 / 1350 (Electrical Grade):&amp;nbsp; &amp;nbsp; &amp;nbsp;- High purity aluminium offering maximum electrical conductivity for electrical busbars and grounding bars. &amp;nbsp; Manufacturing Standards &amp;amp; Finishes: - Standards: ASTM B221, EN 755, AMS specs. - Finishes: Mill finish (standard raw extruded finish), Anodized (clear, black, or color-coated for corrosion protection), or Polished. &amp;nbsp; Primary Applications: - Fabrication &amp;amp; Construction: Frame structures, bracing, base plates, and supports. - Architectural Trim: Edging, molding, handrail components, and window/door frames. - Transportation: Vehicle chassis components, trailer framing, and marine fixtures. - Electrical Systems: Electrical busbars, transformer enclosures, and grounding strips.</description>
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				<title>Heat Exchanger Tube Sheet</title>
				<link>https://www.pitrukrupaengineering.co.in/heat-exchanger-tube-sheet.htm</link>
				<guid>https://www.pitrukrupaengineering.co.in/heat-exchanger-tube-sheet.htm</guid>
				<pubDate>Thu, 06 Aug 2026 00:00:00 +0530</pubDate>
				<description>Heat Exchanger Tube Sheet Description &amp;nbsp; Overview: A Tube Sheet is a critical structural and pressure-retaining component in shell and tube heat exchangers, boilers, pressure vessels, and condensers. It serves a dual purpose: supporting the thousands of individual tubes that form the heat-transfer bundle and acting as a pressure-tight seal to prevent cross-contamination between the fluid inside the tubes and the fluid flowing around the shell. &amp;nbsp; Key Functions &amp;amp; Design Elements: 1. Tube Support: Holds the ends of heat exchanger tubes in a uniform pattern (triangular or square pitch) to optimize fluid flow and thermal transfer. 2. Fluid Isolation: Creates a tight physical seal separating tube-side fluid (inside the tubes) from shell-side fluid (outside the tubes). 3. Pressure Containment: Must withstand differential pressure between the shell side and tube side without flexing or degrading. &amp;nbsp; Tube-to-Tubesheet Joint Methods: - Expanded Joint: Tubes are mechanically roller-expanded into grooved holes in the tube sheet to form a tight friction fit. - Welded Joint: Tubes are seal-welded or strength-welded directly to the front face of the tube sheet for high-pressure or hazardous chemical service. - Expanded &amp;amp; Welded Joint: Combines both mechanical expansion and welding for maximum strength and leak prevention. &amp;nbsp; Common Types &amp;amp; Configurations: - Fixed Tube Sheet: Permanently welded or bolted to the shell at both ends; simple and economical, best for clean fluids with minimal thermal expansion differential. - Floating Tube Sheet: One tube sheet remains fixed while the other is free to move axially inside the shell, accommodating thermal expansion/contraction. - U-Tube Tube Sheet: A single tube sheet is used; bent U-tubes handle thermal expansion naturally. - Double Tube Sheet: Features two adjacent tube sheets with a small air gap between them; used when zero cross-contamination of fluids is strictly required (e.g., pharmaceutical, nuclear). &amp;nbsp; Manufacturing Standards &amp;amp; Materials: - Design Standards: ASME Section VIII Div 1 (Appendix 14/TEMA), TEMA (Tubular Exchanger Manufacturers Association), EN 13445. - Common Materials: Carbon Steel (ASTM A105 / SA516 Gr 70), Stainless Steel (304L, 316L, 321), Duplex Stainless Steel, Titanium, Brass/Bronze, and Clad Steels (e.g., Carbon steel base with explosion-bonded Stainless/Titanium layer).</description>
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				<title>lap-joint Flanges</title>
				<link>https://www.pitrukrupaengineering.co.in/lap-joint-flange.htm</link>
				<guid>https://www.pitrukrupaengineering.co.in/lap-joint-flange.htm</guid>
				<pubDate>Thu, 06 Aug 2026 00:00:00 +0530</pubDate>
				<description>Lap Joint Flange Description &amp;nbsp; Overview: A Lap Joint Flange is a specialized two-piece flange assembly used in piping systems where frequent dismantling for inspection, cleaning, or maintenance is required. It consists of a loose backing flange that slides over the pipe and a separate short pipe section with a flared shoulder called a &quot;stub end.&quot; The stub end is butt-welded directly to the pipe, while the backing flange remains free to rotate around the stub end to align bolt holes easily. &amp;nbsp; Key Components &amp;amp; Working Principle: 1. Stub End: A short pipe fitting welded directly to the line. Its flared face acts as the actual flange sealing face where the gasket rests. 2. Backing Flange: A ring flange with a curved radius at the center bore that rests against the back of the stub end shoulder. It exerts clamping pressure when bolted. &amp;nbsp; Core Advantages: - Free Rotation: The flange ring can spin 360 degrees around the stub end, making bolt hole alignment effortless during installation. - Cost Efficiency: For stainless steel or exotic alloy piping systems, only the stub end needs to be made of expensive corrosion-resistant material; the outer backing flange can be cheaper carbon steel. - Non-Welded Ring: The backing flange is not welded to the pipe, allowing quick removal for cleaning or replacement without cutting welds. &amp;nbsp; Common Specifications: - Standards: ASME B16.5, ASME B16.47, EN 1092-1, DIN 2642. - Pressure Ratings: Standard ANSI Class 150 and Class 300 (rarely used in high-pressure or high-stress environments). - Facing Type: Plain flat face on the stub end (the backing flange itself has a machined internal radius to match the stub end shoulder). &amp;nbsp; Primary Applications: - Systems requiring frequent line disassembly or cleaning (e.g., food processing, paper pulp, pharmaceutical lines). - Low-pressure, non-critical process piping systems. - High-cost material systems (e.g., Titanium, Nickel Alloys, Stainless Steel) to reduce overall material expense.</description>
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				<title>ANSI Standard Flange</title>
				<link>https://www.pitrukrupaengineering.co.in/ansi-standard-flange.htm</link>
				<guid>https://www.pitrukrupaengineering.co.in/ansi-standard-flange.htm</guid>
				<pubDate>Thu, 06 Aug 2026 00:00:00 +0530</pubDate>
				<description>ANSI Standard Flange Description &amp;nbsp; Overview: An ANSI Standard Flange is a circular, bolted piping connector built to precise US dimensional and mechanical standards. It provides a standardized method for joining process piping, equipment, and valves, allowing for quick assembly, disassembly, cleaning, or line modification without cutting the pipes. &amp;nbsp; Core ANSI/ASME Specifications: - ASME/ANSI B16.5: Covers pipe flanges and flanged fittings from NPS 1/2 through NPS 24 (Nominal Pipe Size). - ASME/ANSI B16.47: Covers large-diameter steel flanges from NPS 26 through NPS 60 (Series A and Series B). - ASME/ANSI B16.36: Covers orifice flanges used for flow measurement. &amp;nbsp; Pressure Classes (Pressure-Temperature Ratings): ANSI flanges are categorized into standard pressure classes measured in &quot;Class&quot; (often referred to as # or lb): - Class 150 - Class 300 - Class 600 - Class 900 - Class 1500 - Class 2500 Higher class ratings indicate thicker walls, larger bolt circles, and greater ability to withstand elevated operating pressures and temperatures. &amp;nbsp; Common Types of ANSI Flanges: 1. Weld Neck Flange (WN): Features a long tapered hub welded directly to the pipe; best for high-pressure, severe-stress conditions. 2. Slip-On Flange (SO): Slides over the end of the pipe and is welded inside and outside; cost-effective and easy to align. 3. Blind Flange (BL): Solid disc used to seal off pipeline ends or pressure vessel openings. 4. Threaded Flange (TH): Connects via NPT screw threads without welding; ideal for low-pressure or hazardous areas where welding is prohibited. 5. Socket Weld Flange (SW): Pipe inserts into a recessed socket and is fillet-welded; used for smaller diameter, high-pressure lines. 6. Lap Joint Flange (LJ): Used in conjunction with a stub-end fitting; allows easy alignment of bolt holes during installation. &amp;nbsp; Facing Types: - Raised Face (RF): Standard 1/16 in or 1/4 in raised surface that focuses pressure on the gasket area. - Flat Face (FF): Entire face is flat, preventing cracking when mating to cast-iron or brittle material flanges. - Ring Type Joint (RTJ): Deep groove machined into the face for a metal ring gasket, used in extreme high-pressure/high-temperature environments. &amp;nbsp; Common Materials: - Carbon Steel: ASTM A105 (Standard high-temperature carbon steel), A350 LF2 (Low-temperature). - Stainless Steel: ASTM A182 F304/304L, F316/316L (Corrosion-resistant applications). - Alloy Steel: ASTM A182 F11, F22, F91 (High-temperature power generation).</description>
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				<title>Stainless Steel Blind Flange</title>
				<link>https://www.pitrukrupaengineering.co.in/stainless-steel-blind-flange.htm</link>
				<guid>https://www.pitrukrupaengineering.co.in/stainless-steel-blind-flange.htm</guid>
				<pubDate>Thu, 06 Aug 2026 00:00:00 +0530</pubDate>
				<description>Stainless Steel Blind Flange Description &amp;nbsp; Overview: A Stainless Steel Blind Flange (BLRF/BLFF) is a solid, circular steel plate featuring bolt holes around its outer perimeter but no center opening. It is designed to be bolted to another flange to terminate flow, isolate a piping section, or provide an accessible entry point for line inspection, maintenance, or future pipeline extensions. &amp;nbsp; Key Features &amp;amp; Construction: - Solid Construction: Complete flat or raised center disc capable of withstanding full system line pressure. - Easy Access: Unlike permanent welded caps, a blind flange can be unbolted and removed for maintenance or system expansion. - Common Material Grades: &amp;nbsp; * SS 304 / 304L: Standard grade providing excellent general corrosion resistance, suitable for water, food, and general industrial applications. &amp;nbsp; * SS 316 / 316L: High-grade stainless steel containing molybdenum for enhanced resistance to chlorides, chemicals, and marine environments. - Common Flange Facings: &amp;nbsp; * Raised Face (RF): Concentrates gasket compression for standard-to-high pressure seals. &amp;nbsp; * Flat Face (FF): Used in lower-pressure systems or when mating with brittle equipment. &amp;nbsp; * Ring Type Joint (RTJ): Features a metal gasket groove for extreme high-pressure and high-temperature environments. &amp;nbsp; Manufacturing Standards &amp;amp; Pressure Class: - Standards: ASME B16.5, ASME B16.47, EN 1092-1, DIN standards. - Pressure Classes: Class 150, 300, 600, 900, 1500, and 2500. &amp;nbsp; Primary Applications: 1. Pipeline Isolation: Sealing off sections of piping during maintenance or modifications. 2. Pressure Testing: Capping line ends during hydrostatic or pneumatic pressure tests. 3. System Endpoints: Closing temporary or permanent terminal ends in chemical, oil &amp;amp; gas, water treatment, and food processing facilities.</description>
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				<title>Lithium Ion Battery Enclosure</title>
				<link>https://www.pitrukrupaengineering.co.in/lithium-ion-battery-enclosure.htm</link>
				<guid>https://www.pitrukrupaengineering.co.in/lithium-ion-battery-enclosure.htm</guid>
				<pubDate>Fri, 31 Jul 2026 00:00:00 +0530</pubDate>
				<description>Lithium Ion Battery Enclosure A Lithium Ion Battery Enclosure is a precision-engineered protective housing designed to safely accommodate lithium-ion battery packs used in electric vehicles (EVs), energy storage systems (ESS), industrial equipment, and renewable energy applications. Manufactured from high-strength aluminum or steel using advanced fabrication and CNC machining processes, the enclosure provides exceptional structural integrity, impact resistance, and protection against dust, moisture, vibration, and harsh environmental conditions. The enclosure is designed to ensure battery safety, improve thermal management, and provide secure mounting for battery modules, electrical connections, and cooling systems. It is manufactured according to customer drawings and OEM specifications, ensuring high dimensional accuracy and reliable performance. Features High-strength aluminum or steel construction Precision CNC machined and fabricated Excellent corrosion and impact resistance Lightweight design with superior durability Supports efficient thermal management Dustproof and moisture-resistant construction High dimensional accuracy and premium surface finish Custom designs available as per customer requirements Manufactured according to OEM and international quality standards Applications Electric Vehicles (EVs) Hybrid Electric Vehicles (HEVs) Battery Energy Storage Systems (BESS) Solar and Renewable Energy Storage Industrial Battery Systems Electric Buses and Commercial Vehicles Marine and Aerospace Battery Applications Power Backup and Energy Storage Equipment Our Lithium Ion Battery Enclosure is manufactured using advanced engineering processes and strict quality control to deliver maximum safety, reliability, and long-term performance for modern lithium-ion battery systems.</description>
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				<title>Lithium Ion Battery Enclosure Module Plate</title>
				<link>https://www.pitrukrupaengineering.co.in/lithium-ion-battery-enclosure-module-plate.htm</link>
				<guid>https://www.pitrukrupaengineering.co.in/lithium-ion-battery-enclosure-module-plate.htm</guid>
				<pubDate>Fri, 31 Jul 2026 00:00:00 +0530</pubDate>
				<description>Here is a professional engineering description suitable for a website, catalog, or B2B marketplace: Lithium Ion Battery Enclosure Module Plate Lithium Ion Battery Enclosure Module Plate is a precision-engineered structural component designed to securely house and protect lithium-ion battery modules used in electric vehicles (EVs), energy storage systems (ESS), and industrial battery packs. Manufactured using high-quality aluminum alloy or steel with advanced CNC machining and fabrication processes, the enclosure module plate provides excellent strength, dimensional accuracy, and thermal management. The plate is designed to withstand vibration, impact, moisture, and harsh operating conditions while ensuring reliable battery performance and safety. It is manufactured according to customer drawings and specifications, meeting stringent automotive and industrial quality standards. Features High-precision CNC machined construction Lightweight yet high-strength design Excellent corrosion and wear resistance Superior dimensional accuracy and surface finish Supports efficient heat dissipation Custom sizes and designs available High durability and long service life Manufactured as per customer drawings and OEM specifications Applications Electric Vehicle (EV) Battery Packs Hybrid Electric Vehicles (HEV) Battery Energy Storage Systems (BESS) Renewable Energy Storage Units Industrial Battery Modules Electric Buses and Commercial Vehicles Aerospace and Defense Battery Systems Advanced Energy Storage Solutions Our Lithium Ion Battery Enclosure Module Plate is manufactured under strict quality control using advanced machining technology to deliver reliable performance, structural integrity, and long-lasting protection for high-performance lithium-ion battery systems.</description>
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				<title>Stainless Steel Ferrule Fitting Hex Nut</title>
				<link>https://www.pitrukrupaengineering.co.in/stainless-steel-ferrule-fitting-hex-nut.htm</link>
				<guid>https://www.pitrukrupaengineering.co.in/stainless-steel-ferrule-fitting-hex-nut.htm</guid>
				<pubDate>Tue, 11 Aug 2026 00:00:00 +0530</pubDate>
				<description>Precision CNC Machined Stainless Steel Threaded Coupling manufactured for reliable joining and connection of threaded components. Made from high-quality stainless steel with accurate CNC machining, excellent thread quality, smooth surface finish, and good corrosion resistance. Suitable for industrial machinery, piping assemblies, hydraulic systems, automation equipment, and mechanical applications. Custom sizes and thread specifications are available as per drawing or requirement. Specifications: &amp;nbsp; Material: Stainless Steel Grade: SS 304 / SS 316 Process: CNC Turning / CNC Machining Thread Type: Metric / BSP / NPT / Custom Surface Finish: Smooth / Polished Customization: Available</description>
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