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  • Shear Test | TSP Mfg.

    testing capabilities Shear Test A Shear Test measures the ability of a material or fastener to resist forces that cause sliding failure along a plane parallel to the applied force. Unlike tensile testing, which pulls a component apart lengthwise, shear testing evaluates how well a fastener or component can withstand lateral or transverse forces. This property is critical for fasteners used in assemblies where loads are not purely axial but involve side-to-side stresses. How the Test is Performed Preparation – The fastener or specimen is mounted in a shear fixture designed for the test. Application of Force – A controlled load is applied by a testing machine, exerting force across the fastener’s cross-section or shear plane. Monitoring – The load is increased gradually until the fastener or specimen fails by shearing. Recording Results – The maximum load carried before failure is measured and converted into shear strength data. Analysis – Results are compared against design requirements and material specifications. Why It is Performed Shear testing ensures that fasteners can perform safely and reliably under service conditions where lateral or shear forces are present. It is particularly important for components in rotating machinery, aerospace structures, and heavy industrial applications, where failure in shear could compromise both equipment integrity and safety. Confirms shear strength meets design specifications Verifies material selection and heat-treatment processes Prevents premature failures in shear-critical applications Provides confidence in safety and performance under real-world conditions Application to Engineered Fasteners Engineered fasteners are frequently subjected to shear forces in bolted joints, couplings, and assemblies. For example, bolts used in turbomachinery, aerospace, or defense systems may experience both tensile and shear loads simultaneously. By conducting shear testing, TSP Manufacturing ensures: Fasteners meet shear strength requirements for critical industries Proper material performance under both axial and transverse loads Prevention of catastrophic joint failures in service Reliable performance for safety-critical applications in oil & gas, aerospace, nuclear, and defense sectors Standards & Compliance At TSP Manufacturing, shear testing is performed in compliance with ASTM, ISO, and customer-specific standards to ensure consistent, repeatable, and verifiable results. Our testing equipment is regularly calibrated, and procedures are carried out by trained professionals, ensuring accuracy and traceability. This rigorous approach demonstrates our commitment to delivering engineered fasteners and machined components that meet the highest levels of performance and reliability. DOING WHATEVER IT TAKES Need product help or engineering support? Contact our team of fastener experts today CONTACT OUR PRODUCTS Explore our products Specialty Engineered Fasteners Learn more about our Engineered Fasteners, precision-crafted for specialized and critical applications in diverse industries. Machined Parts Learn more about our custom-designed Machined Components expertly crafted for applications across a range of industries. Precision Shear Products Explore our shear product manufacturing and quality capabilities, delivering precision solutions for the most demanding applications.

  • Survey | TSP Mfg.

    Survey CUSTOMER SURVEY We value your feedback TSP Manufacturing strives to maintain excellent service to our customers. In order to achieve this goal, we would greatly appreciate your response to the questions below. Company name* Survey completed by:* Email:* Please rate the following aspects of your experience: How would you rate the quality of our products? 1 2 3 4 5 N/A How would you rate our overall customer service? 1 2 3 4 5 N/A How would you rate our response time? 1 2 3 4 5 N/A How would you rate our delivery? 1 2 3 4 5 N/A How would you rate our technical support? 1 2 3 4 5 N/A How would you rate the quality of documentation? 1 2 3 4 5 N/A How easy is the purchasing process with our company? 1 2 3 4 5 N/A We value clear communication with our customers. How would you rate our communication, whether via phone, email, and/or in person? 1 2 3 4 5 N/A Feedback/comments: Thank you in advance for your time and cooperation. SUBMIT

  • John Warren | TSP Mfg.

    John Warren President BIO John Warren is the President of WN Global and TSP Mfg., where he leads the company’s strategic growth and operational excellence across advanced manufacturing solutions serving the global energy and industrial sectors. With more than 35 years of international leadership experience, he has built a reputation for transforming organizations, strengthening commercial performance, and aligning engineered products with the rigorous technical and compliance needs of customers who design, build, and operate critical equipment across the energy value chain. A seasoned global executive, John has worked across four continents—including the United States, West Africa, Scandinavia, and Australasia—where he has driven both operational efficiency and commercial expansion. His deep understanding of upstream oil and gas, industrial manufacturing, and power‑generation applications enables him to bridge technical capability with real‑world customer challenges in demanding environments. Before joining the WN Global family of companies, John served as Senior Business Development Manager for a major international oilfield services manufacturer. In this role, he strengthened the company’s market position and expanded commercial opportunities across Australia, New Zealand, and Papua New Guinea. His success in building partnerships with key operators in these regions reflected both his commercial acumen and his ability to position engineered solutions to meet evolving market and regulatory requirements. John began his career as a mechanical engineer, a foundation that continues to define his leadership approach. His progression through roles in engineering, sales, operations, technology, and business development has given him a rare combination of technical rigor and commercial insight—an asset in an industry where performance, reliability, and safety standards are non‑negotiable. He excels at aligning manufacturing capability with customer expectations around quality, traceability, compliance, and delivery performance. Throughout his career, John has been an active contributor to industry thought leadership. He is a member of both the Society of Petroleum Engineers (SPE) and the International Association of Drilling Contractors (IADC). He has co‑authored multiple SPE technical papers and holds several U.S. patents for innovations that have advanced performance and safety in energy‑sector applications. His contributions to engineering innovation earned him the prestigious Hart’s Award for Innovation. John holds a Bachelor of Science in Mechanical Engineering from Colorado State University and has completed executive programs at Texas A&M University. BACK

  • Heat Treatment: Austenitizing | TSP Mfg.

    MANUFACTURING PROCESSES Heat Treatment: Austenitizing Austenitizing is a critical stage in the heat treatment process, particularly for engineered fasteners and components made from steel and certain alloys. It is the process of heating the material to a temperature where its crystal structure transforms into austenite, a face-centered cubic (FCC) structure that allows for the redistribution of carbon and other alloying elements within the metal. This transformation is essential for subsequent heat treatment steps like quenching and tempering. The Austenitizing Process: 1. Preparation: The fastener or component is cleaned to remove any surface contaminants (oil, grease, or scale) that could interfere with the heat treatment process. 2. Heating to Austenitizing Temperature: The component is heated to a temperature range specific to the material: For carbon steels: Typically between 750°C and 950°C (1382°F to 1742°F). For alloy steels: The temperature varies depending on alloying elements but is generally higher. The goal is to transform the steel’s microstructure from ferrite (body-centered cubic, BCC) and pearlite into austenite (FCC). 3. Soaking: The component is held at the austenitizing temperature for a specific period to ensure uniform heating and complete transformation to austenite. The soaking time depends on the material’s size, composition, and thermal conductivity. 4. Redistribution of Carbon: During austenitizing, carbon and other alloying elements dissolve into the austenite, creating a uniform composition that sets the stage for subsequent heat treatment steps. 5. Cooling (Quenching): After austenitizing, the component is rapidly cooled (quenched) to lock in the desired microstructure, such as martensite, which provides high strength and hardness. Key Considerations for Austenitizing in Fastener Manufacturing: Material Selection: Not all materials can be austenitized; it is most effective for steels and specific alloys designed for heat treatment. Controlled Atmosphere: Using vacuum or inert gases (e.g., argon or nitrogen) prevents oxidation and decarburization during heating. Post-Treatment Inspection: Fasteners are inspected for hardness, microstructure, and dimensional stability after heat treatment to ensure quality. Benefits of Austenitizing for Fasteners: Uniform Microstructure: Austenitizing ensures that carbon and alloying elements are evenly distributed, providing consistent properties throughout the fastener. Improved Strength: Austenite transforms into martensite upon quenching, greatly enhancing the fastener’s hardness and strength. Customizable Properties: By controlling the austenitizing temperature and time, manufacturers can tailor the fastener’s properties to meet specific application requirements. Foundation for Toughness: Subsequent tempering processes build on the martensitic structure formed after austenitizing, balancing hardness and ductility. Applications in Engineered Fasteners: Austenitizing is a fundamental step in producing fasteners with enhanced mechanical properties, including: Bolts and Screws: High-strength bolts used in aerospace, automotive, and structural applications. Threaded Rods and Studs: Components requiring high tensile strength and wear resistance. Critical Fasteners: Custom fasteners used in extreme environments, such as oil & gas, nuclear power, and turbomachinery. Challenges in Austenitizing: Temperature Control: Precise control of temperature is crucial; overheating can lead to grain growth, weakening the fastener, while underheating may result in incomplete transformation. Decarburization: If not done in a controlled atmosphere (e.g., vacuum or inert gas), carbon can be lost from the surface, reducing the fastener’s strength. Quenching Cracks: Improper quenching after austenitizing can cause thermal stresses and cracking, especially in larger or more complex fasteners. Cold Heading Hot Heading EDM Milling Turning Swiss Machining Drilling Roll Threading Cut Threading Broaching Heat Treatment Austenitizing Tempering Normalizing Stress Relieving Grinding Polishing Dot Peen Marking Laser Marking MANUFACTURING Explore our manufacturing capabilities OUR PRODUCTS Explore our products Specialty Engineered Fasteners Learn more about our Engineered Fasteners, precision-crafted for specialized and critical applications in diverse industries. Machined Parts Learn more about our custom-designed Machined Components expertly crafted for applications across a range of industries. Precision Shear Products Explore our shear product manufacturing and quality capabilities, delivering precision solutions for the most demanding applications. DOING WHATEVER IT TAKES Need product help or engineering support? Contact our team of fastener experts today CONTACT

  • Materials | TSP Mfg.

    SERVICING THE CUSTOMER Materials Engineered for Excellence Our engineered fasteners are crafted using a diverse range of high-performance materials, including alloy steels, aluminum, MP35N, nickel alloys, titanium, brass, bronze, copper, PH grades, stainless steel, and more. Designed for exceptional strength, corrosion resistance, and precision tolerances, these fasteners are critical components for demanding industries such as oil & gas, turbomachinery, marine and offshore, nuclear, aerospace, robotics and automation, defense, and space. MATERIALS Explore our materials Alloy Steels A193 B7, B7M, B16 A194 Gr 2H, 2HM, 7, 7M, 8A, 8MA A320 L7, L7M, L43 A354 BC, BD SAE J429 Gr 5, Gr 8 Aluminum Alloy 2024 T4 Alloy 6061 T6 MP35N MP35N Nickel Alloys Hastelloy C-276, C-22, B, G Inconel 600, 601, 625, X750, 718 Incoloy 800H, 925 N0945, N0945X Monel 400, K500 Nickel 200 Nitronic 50, 60 Rene 41 Titanium Gr 2 Gr 5 (6Al-4V) Brass C360 C464 Bronze Manganese Bronze Silicon Bronze Copper Beryllium Copper PH Grades 17-4 Stainless Steel 303 | 304 | 309 | 310 | 316 | 317 | 321 | 330 | 347 410 | 416 | 430 | 440 A286 A453 Gr 660A, 660B, 660D A193 Gr B8 Cl 1, B8 Cl 2, B8M Cl 1, B8M Cl 2 C501 Other Materials Plastics Nylon Stellite 6B Precision for Demanding Industries Supported by our team of metallurgists, engineers, and quality control experts, we deliver reliable supply solutions tailored to meet the most rigorous material specifications. CONTACT Coatings and Platings In partnership with our sister company Subsea Coating Technologies and other Providers; TSP Manufacturing delivers ASTM, ISO, and Customer specified Coatings, Platings, and Surface Treatments. Compliance TSP Manufacturing works to stay fully compliant with all regulations applicable to our product. Many of our customers are required to report Conflict Mineral content. TSP Manufacturing can review customer usage and create a customized report on our Conflict Mineral compliance. Get a quote for your upcoming project CONTACT

  • Plug Gauge | TSP Mfg.

    testing capabilities Plug Gauge A Plug Gauge is a precision inspection tool used to verify the internal dimensions of cylindrical components, such as threaded holes or bores. Plug gauges provide a simple and highly accurate method for confirming that a part’s internal diameter or thread depth meets design specifications. They are especially useful for quality inspection of engineered fasteners, ensuring mating parts will fit correctly and function as intended. How the Inspection is Performed Calibration – The plug gauge is checked and, if necessary, adjusted to match the nominal diameter or thread standard for the part being tested. Insertion – The gauge is inserted into the internal feature of the component, such as a threaded hole or bore. Fit Verification – A proper fit indicates that the part is within tolerance, while a tight or loose fit signals that the part may be out of specification. Repeatability – Multiple parts can be quickly tested with the same gauge, making it ideal for high-volume production. Documentation – Inspection results are recorded for traceability and quality assurance. Why It is Performed Plug Gauge inspection ensures that internal dimensions, such as bores and threads, meet tight tolerances. This is critical because even small deviations can affect assembly, load transfer, and overall component performance. Using plug gauges allows TSP Manufacturing to verify dimensional accuracy efficiently and reliably, preventing defective parts from entering service. Confirms internal diameters and thread dimensions Detects out-of-tolerance components before assembly Provides fast, repeatable inspection for high-volume production Ensures consistent quality and fit for mating parts Application to Engineered Fasteners Engineered fasteners often engage with other components through threaded holes or precision bores. Accurate internal dimensions are essential for proper load distribution, secure fastening, and safe operation. By using Plug Gauge inspections, TSP Manufacturing ensures: Accurate thread and bore dimensions for proper mating and assembly Conformance to design tolerances for safety-critical applications Consistent quality across production runs Reliability in high-performance industries such as aerospace, defense, oil & gas, and nuclear Standards & Compliance TSP Manufacturing performs Plug Gauge inspections in accordance with ASME, ASTM, ISO, and customer-specific standards . Our gauges are routinely calibrated, and inspectors follow rigorous protocols to ensure precise, traceable measurements. Adherence to these standards reinforces TSP’s credibility and commitment to delivering engineered fasteners that consistently meet the highest quality and performance expectations. DOING WHATEVER IT TAKES Need product help or engineering support? Contact our team of fastener experts today CONTACT OUR PRODUCTS Explore our products Specialty Engineered Fasteners Learn more about our Engineered Fasteners, precision-crafted for specialized and critical applications in diverse industries. Machined Parts Learn more about our custom-designed Machined Components expertly crafted for applications across a range of industries. Precision Shear Products Explore our shear product manufacturing and quality capabilities, delivering precision solutions for the most demanding applications.

  • ESP Artificial Lift | TSP Mfg.

    Downhole fastening solutions Engineered Fasteners for Critical ESP & Artificial Lift Systems Home / Industries / Oil & Gas / ESP Artificial Lift / Electrical Submersible Pump (ESP) and artificial lift systems operate in some of the most demanding environments in the oil and gas industry. Extreme pressures, elevated temperatures, corrosive fluids, and continuous vibration place extraordinary demands on every component. TSP MANUFACTURING DELIVERS ENGINEERED FASTENERS Manufactured SPECIFICALLY FOR THE RELIABILITY, INTEGRITY, AND LONGEVITY REQUIRED IN CRITICAL ESP AND ARTIFICIAL LIFT APPLICATIONS. APPLICATION FOCUS Engineered for Downhole Reliability Fasteners used in ESP and artificial lift assemblies are not commodity components. They are load-bearing, safety-critical parts that must maintain clamping force and dimensional stability throughout extended service cycles. Our engineered fasteners are developed to support: Continuous high axial and torsional loading Exposure to corrosive well fluids and sour environments Elevated downhole temperatures Vibration, cyclic fatigue, and pressure fluctuations PERFORMANCE ENGINEERING Engineered for Mission-Critical Performance We work closely with ESP and artificial lift OEMs to deliver custom fastening solutions that meet exact application requirements. Capabilities include: Custom bolt, stud, nut, and specialty fastener designs Tight tolerances and controlled thread forms High-strength and corrosion-resistant materials Application-specific heat treatment and surface finishes MATERIALS & METALLURGY Materials for Extreme Environments Material selection is critical in ESP and artificial lift applications. We manufacture fasteners from a wide range of alloys selected to withstand corrosive, high-temperature, and high-pressure environments, including: Alloy steels such as 4140, 4340, 6150, and 8620 Stainless steels and precipitation-hardened grades such as A286, 316, 410, 2205, and 17-4 Nickel alloys such as 718, 725, 925, Monel 400, and Monel K500 MP35N Titanium and other specialty materials QUALITY & TRACEABILITY Controlled Manufacturing & Quality Assurance Fasteners for critical ESP and artificial lift systems demand uncompromising quality control. Our processes are built around repeatability, verification, and documented compliance. Quality practices include: Controlled machining and threading processes Dimensional inspection and verification Mechanical testing and validation as required Full material and process traceability KEY FEATURES Supporting the Full ESP & Artificial Lift System Our engineered fasteners are used throughout ESP and artificial lift assemblies, including: Pump and motor assemblies Couplings and housings Flanges and structural interfaces High-load and high-vibration connections A Trusted Partner for Critical Oil & Gas Applications With experience serving leading ESP and artificial lift manufacturers, TSP Manufacturing is a trusted partner for fasteners used in mission-critical oil and gas equipment. Our focus on engineered solutions, material expertise, and quality assurance helps customers meet the demands of today’s most challenging downhole environments. DOING WHATEVER IT TAKES Ready to discuss your application? Contact our team to review your ESP or artificial lift fastening requirements and learn how our engineered fasteners can support long-term system performance. CONTACT OUR PRODUCTS Explore our products Specialty Engineered Fasteners Learn more about our Engineered Fasteners, precision-crafted for specialized and critical applications in diverse industries. Machined Parts Learn more about our custom-designed Machined Components expertly crafted for applications across a range of industries. Precision Shear Products Explore our shear product manufacturing and quality capabilities, delivering precision solutions for the most demanding applications. Valve Stems Learn more about our Engineered Valve Stems, designed for demanding applications requiring exceptional strength, durability, and precision. Get a quote for your upcoming project CONTACT

  • Travis Arbing | TSP Mfg.

    Travis Arbing Purchasing Manager BIO As Purchasing Manager at TSP Manufacturing, Travis Arbing plays a pivotal role in sourcing and managing the materials essential for producing high-performance engineered fasteners. With a focus on quality, efficiency, and cost optimization, Travis ensures the supply chain supports the company’s commitment to excellence in serving critical industries. His expertise in supplier relationships and procurement strategies contributes to the seamless production of critical components for demanding applications. BACK

  • Oil & Gas | TSP Mfg.

    SERVICING THE CUSTOMER Oil & Gas Home / Industries / Oil & Gas / Industry Overview Engineered fasteners and components used in the oil & gas industry are critical to ensuring safety, reliability, and efficiency in highly demanding environments. These components are often subject to extreme pressures, temperatures, and corrosive environments, making their design and material selection essential. KEY FEATURES High Strength: Engineered fasteners must handle high loads and stresses, especially in deep-sea or high-pressure drilling environments. Corrosion Resistance: Materials are selected for resistance to harsh conditions, including saltwater, hydrogen sulfide, and other corrosive agents found in drilling and production environments. Extreme Temperature Tolerance: Fasteners are designed to perform reliably under extreme heat or cold. Precision: Tight tolerances ensure a secure fit and minimize risks of failure during operation. WHEN ONLY THE BEST WILL DO Common Applications: Offshore and Subsea Operations: Used in risers, blowout preventers, and subsea trees. Drilling and Exploration Equipment: Fasteners in drill bits, drill string tools, and rigs. Completion and Production Equipment: A range of precisions parts from valve stems to fasteners used in electrical submersible pumps. Pipeline Infrastructure: High-performance nuts and bolts for flange connections in oil and gas pipelines. Refineries and Processing Facilities: Critical components in reactors, heat exchangers, and pressure vessels. Materials: Materials used in engineered fasteners for the oil & gas industry include: Alloy Steels: Known for strength and durability under high stress. Nickel Alloys: Excellent for high temperatures and corrosive environments. Stainless Steel: Offers good corrosion resistance and strength. Titanium: Lightweight and resistant to corrosion, ideal for specialized applications. MP35N: A nickel-cobalt alloy with superior strength and corrosion resistance in sour gas environments. Industry Standards: Engineered fasteners in oil & gas must comply with stringent industry standards, including: API Standards (e.g., API 20E/API 20F for critical application fasteners, API 6A for wellhead and tree equipment). API Q1 for quality management in the petroleum and natural gas industries. AMPP MR0175/ISO 15156 for materials used in sour gas conditions. ASME Standards for pressure vessel and piping applications. The TSP Manufacturing Advantage TSP Manufacturing specializes in providing custom-engineered fasteners designed for critical applications in the oil & gas sector. Our fasteners deliver exceptional reliability to minimize downtime, with customized solutions to meet specific project requirements, and compliance with all relevant industry regulations and standards. OUR PRODUCTS Explore our products Specialty Engineered Fasteners Learn more about our Engineered Fasteners, precision-crafted for specialized and critical applications in diverse industries. Machined Parts Learn more about our custom-designed Machined Components expertly crafted for applications across a range of industries. Precision Shear Products Explore our shear product manufacturing and quality capabilities, delivering precision solutions for the most demanding applications. Valve Stems Learn more about our Engineered Valve Stems, designed for demanding applications requiring exceptional strength, durability, and precision. DOING WHATEVER IT TAKES Need product help or engineering support? Contact our team of fastener experts today CONTACT Get a quote for your upcoming project CONTACT

  • Valve Stems | TSP Mfg.

    Discover TSP Manufacturing’s precision-engineered valve stems, built for durability, reliability, and high performance in critical industrial applications. OUR PRODUCTS Valve Stems Home / Products / Valve Stems / Engineered Valve Stems We specialize in producing high-performance engineered valve stems designed for demanding applications that require exceptional strength, durability, and precision. Our valve stems are manufactured to meet the most stringent requirements for a wide range of critical uses. WHEN ONLY THE BEST WILL DO Precision-Engineered for Performance Our valve stems are designed and manufactured using advanced engineering techniques and premium materials, including: Alloy Steels Nickel Alloys Titanium PH Grades Stainless Steel These materials are carefully selected to ensure superior mechanical properties, including high corrosion resistance, extreme temperature tolerance, and exceptional wear resistance under the harshest operating conditions. OUR PRODUCTS Manufacturing Excellence & Quality Assurance At TSP Manufacturing, quality is at the core of everything we do. Our valve stems undergo rigorous inspection and testing to ensure compliance with industry standards and customer specifications. We maintain tight tolerances and utilize cutting-edge machining technologies to deliver precision-engineered components that exceed expectations. Our in-house capabilities include: CNC Machining & Multi-Axis Precision Manufacturing Heat Treatment & Surface Coatings Non-Destructive Testing (NDT) & Material Certification Custom Engineering & Prototyping Services Contact our product specialists today CONTACT OUR PRODUCTS Explore other products Specialty Engineered Fasteners Learn more about our Engineered Fasteners, precision-crafted for specialized and critical applications in diverse industries. Machined Parts Learn more about our custom-designed Machined Components expertly crafted for applications across a range of industries. Precision Shear Products Explore our shear product manufacturing and quality capabilities, delivering precision solutions for the most demanding applications. EXCELLENCE IN MANUFACTURING Quality, Materials, and Engineering Solutions Quality Learn more about how we deliver the highest Quality Engineered Fasteners & Components for custom-designed products Materials Learn more about our manufacturing material capabilities for our Engineered Fasteners & Components Services Learn more about our product support and supply chain solutions for our customers Engineered Fastener & Components Get a quote for your upcoming project CONTACT

  • Cleanliness Test | TSP Mfg.

    testing capabilities Cleanliness Test A Cleanliness Test is a quality inspection method used to determine the level of contaminants—such as oils, grease, machining residues, metal shavings, or foreign particles—present on a manufactured component. For engineered fasteners and precision-machined parts, even trace contamination can affect performance, assembly, or long-term reliability, making cleanliness verification a critical part of the quality process. How the Test is Performed Sample Preparation – The fastener or machined component is handled under controlled conditions to prevent outside contamination. Extraction of Contaminants – Solvents, ultrasonic agitation, or pressurized fluids are used to dislodge surface and embedded particles from the part. Collection & Filtration – Dislodged contaminants are collected and passed through a fine filter. Analysis – The particles and residues are measured by weight, size, or count using gravimetric, microscopic, or spectrographic methods. Evaluation Against Standards – Results are compared to customer or industry-defined cleanliness requirements. Why It is Performed Cleanliness Testing is performed to ensure that fasteners and machined components meet strict contamination-free requirements that protect assembly quality, performance, and durability. Prevents assembly issues such as galling, seizing, or torque misapplication Reduces risk of corrosion or premature wear caused by foreign particles Ensures compatibility with lubricants, coatings, and protective finishes Meets customer requirements for industries where contamination can cause system failure, such as aerospace, oil & gas, and defense Application to Engineered Fasteners Engineered fasteners often operate in demanding environments where any contamination can compromise safety and performance. Cleanliness Testing ensures that: Threads are free of foreign matter , ensuring accurate torque and preload during installation Critical surfaces are contaminant-free to support coatings, platings, and corrosion protection systems Fasteners meet customer cleanliness specifications , which are especially stringent in aerospace, nuclear, and defense applications Product integrity and reliability are maintained from manufacturing through installation Standards & Compliance TSP Manufacturing performs Cleanliness Testing in accordance with industry standards such as ISO 16232, VDA 19, and customer-specific cleanliness requirements . Testing equipment is maintained and calibrated, and results are fully documented for traceability. This adherence to recognized cleanliness standards reinforces TSP’s commitment to delivering engineered fasteners and machined components that meet the highest levels of quality, safety, and reliability. DOING WHATEVER IT TAKES Need product help or engineering support? Contact our team of fastener experts today CONTACT OUR PRODUCTS Explore our products Specialty Engineered Fasteners Learn more about our Engineered Fasteners, precision-crafted for specialized and critical applications in diverse industries. Machined Parts Learn more about our custom-designed Machined Components expertly crafted for applications across a range of industries. Precision Shear Products Explore our shear product manufacturing and quality capabilities, delivering precision solutions for the most demanding applications.

  • Veronica Garcia | TSP Mfg.

    Veronica Garcia Quality Assurance Supervisor BIO As Quality Assurance Supervisor at TSP Manufacturing, Veronica Garcia is dedicated to overseeing the implementation of quality systems and ensuring compliance with industry standards. With her strong background in quality assurance and process management, Veronica leads efforts to monitor and improve the quality of the company’s engineered fasteners. She works closely with cross-functional teams to identify areas for improvement, ensuring that each product meets the precise requirements for critical applications. Veronica’s commitment to maintaining excellence in quality is key to TSP Manufacturing’s continued success and reputation for superior products. BACK

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