Jiangsu Sunzo Spring Elasticity Technology Co., Ltd. is a mixed-ownership enterprise established with the participation of China National Nuclear Corporation. The R&D center is located in Nanjing, Jiangsu, while the production base is situated in Sihong, Jiangsu.
Sunzo specializes in the research and development, production, and sales of high-quality elastic components such as disc springs, disc washers, and wave springs. The products are applied in various fields including nuclear power, aviation, aerospace, mili-tary, hydrogen energy, ultra-high voltage, automotive, wind power, shipping, construction bridges, petrochemical, construction machinery, metallurgy, and more.
Sunzo has established in-depth cooperative relationships with several key universities and is a quality partner to many leading companies in the industry. The company boasts a professional product R&D team and a modern testing center. Sunzo has participated in the formulation of international ISO disc spring standards and national standards. The company has successively passed various quality management system certifications, including ISO 9001, IATF 16949, ISO14001, ISO45001, and has obtained over 40 patents. It possesses a complete industrial chain from raw materials to specialized equipment and product manufacturing. The company's environment is beautiful with complete facilities, spanning an area of 60 acres, and it owns multiple self-developed production lines. Sanzhong is dedicated to providing the best elastic technology solutions tailored to customer needs, earning the trust of various high-end clients both domestically and internationally.
Beyond standard spring parts, Jiangsu Sanzhong specializes in custom-designed elastic components, including disc springs and wave springs tailored to specific application requirements. The company offers full customization services—from initial design and technical research to production and performance testing. Customers benefit from collaborative R&D project support, failure analysis, and rigorous inspection services. Whether for innovative product development or technological upgrades, SUNZO provides end-to-end engineering solutions to ensure optimal performance, reliability, and longevity of every custom elastic component
SUNZO can provide the best elasticity technology solution according to customer requirement, earned good reputation and trust from clients home and abroad.

In the field of precision elastic components, technical superiority is not merely an advantage — it is a necessity. Jiangsu Sanzhong Elastic Technology Co., Ltd. (SUNZO) has established itself as a technology-driven manufacturer specializing in disc springs, wave springs, and other high-performance elastic mechanisms. Behind every reliable product lies a robust research and development (R&D) ecosystem that integrates multidisciplinary expertise, advanced numerical simulation, new material exploration, and rigorous performance validation. This article provides an in-depth look at SUNZO's R&D capabilities, technical direction, and engineering achievements.
SUNZO's R&D strength begins with its people. The company has assembled a highly qualified core team with diverse educational backgrounds and professional certifications. The team includes four engineers holding master's degrees and five with bachelor's degrees, ensuring a solid theoretical foundation across multiple engineering disciplines.
In terms of professional titles, the team features one Senior Engineer and three Intermediate Engineers — a credential mix that reflects both deep experience and active technical leadership. Beyond formal qualifications, SUNZO has strategically rehired three retired veteran experts from the elastic component industry. These seasoned professionals bring decades of practical knowledge in spring design, failure prevention, and manufacturing process optimization. Their return to active R&D work provides invaluable mentorship to younger engineers and helps bridge the gap between classic engineering principles and modern innovation.
What distinguishes SUNZO's R&D approach is its broad coverage of disciplinary fields. The team's expertise spans:
This cross-functional knowledge base allows SUNZO to tackle challenging customer requirements that single-discipline suppliers cannot address effectively.
SUNZO's R&D activities are organized around four strategic technical directions:
1. New Materials
The company continuously evaluates advanced spring materials, including high-strength alloy steels, stainless precipitation-hardening grades, and nickel-based superalloys. For disc springs specifically, material uniformity and cleanliness are critical; SUNZO works closely with specialty steel mills to source materials with minimal inclusions and consistent hardenability. Research into composite-material springs and surface coatings (e.g., zinc-phosphate, DLC, or PTFE) further expands application possibilities in corrosive or low-friction environments.
2. New Processes
Traditional spring manufacturing involves blanking, forming, heat treatment, and surface finishing. SUNZO invests in process innovations such as precision edge rounding (to reduce stress concentrations), controlled shot peening (to induce beneficial compressive residual stresses), and isothermal heat treatment (to achieve bainitic microstructures with superior toughness). The company also explores additive manufacturing for prototyping complex wave springs and annular springs that would be difficult to produce with conventional tooling.
3. New Products
While disc springs and wave springs remain core offerings, SUNZO continuously develops specialized variants. Examples include high-precision disc springs with tight thickness tolerances, clutch springs with tailored torque-displacement curves, and mould springs rated for millions of cycles under severe die-casting conditions. Each new product undergoes a structured development process: concept design, numerical simulation, prototype testing, and production scale-up.
4. New Equipment
To maintain process control and repeatability, SUNZO develops or specifies advanced manufacturing and testing equipment. This includes computer-controlled coiling machines, automated disc spring forming presses, vacuum heat treatment furnaces, and servo-hydraulic fatigue testers. In-house equipment modification capabilities allow the R&D team to adapt machinery for unique product geometries or specialized heat treatment cycles.
The image highlights specific mechanical properties achieved for SUNZO's high-precision disc spring:
These figures are noteworthy. A tensile strength approaching 2000 MPa places the material in the ultra-high-strength steel category, typically achieved through careful alloy selection and heat treatment (e.g., quenching and tempering of 50CrV4 or similar spring steels). The exceptionally small gap between tensile strength (1926.5 MPa) and yield strength (1923.9 MPa) — a difference of only 2.6 MPa — indicates that the material exhibits very little work hardening after yielding. This is desirable for disc springs because it means the spring's force-deflection characteristic remains predictable and stable throughout its elastic range. Meanwhile, the 7% elongation after fracture confirms that the material retains sufficient ductility to withstand deflection without brittle cracking — a critical requirement for dynamic applications involving millions of load cycles.
SUNZO places strong emphasis on numerical simulation throughout the product development cycle. Using finite element analysis (FEA), engineers can model disc spring stacks, wave spring compression, or annular spring radial deflection under static and dynamic loads. Simulation enables rapid iteration of geometry parameters (thickness, cone angle, inner/outer diameter ratio) without the cost and lead time of physical tooling. Fatigue life prediction, stress concentration identification, and thermal expansion effects are all analyzed virtually before any metal is cut. This simulation-driven approach reduces development risk, shortens time-to-market, and results in designs that are optimized for both performance and manufacturability.
Elastic components are, at their core, mechanical energy storage devices. Disc springs and wave springs absorb energy when deflected and release it when returned to their free height. SUNZO's R&D team studies the dynamic behavior of these "flexible mechanisms" in systems such as bolted flange connections, shock absorbers, overload clutches, and valve actuators. By understanding how energy is stored and dissipated as heat (hysteresis), engineers can design springs that maintain consistent force over extended service intervals. Applications requiring precise energy management — such as braking systems, tensioning devices, and seismic isolators — benefit directly from this focus.
Jiangsu Sanzhong (SUNZO) has built its R&D organization on a foundation of multidisciplinary talent, strategic technical directions, and advanced simulation tools. From high-precision disc springs with near-theoretical strength limits to custom wave springs for compact assemblies, every product reflects a systematic development process. By integrating new materials, new processes, new product concepts, and new equipment, SUNZO continues to advance the field of elastic components. For customers facing demanding spring applications — whether in heavy machinery, automotive drivetrains, energy infrastructure, or precision instrumentation — SUNZO offers not just components, but engineering partnership backed by measurable technical competence.


In the field of industrial elastic components, Jiangsu Sunzo Spring Elasticity Technology Co., Ltd. (hereinafter referred to as "Sunzo Spring") has always adhered to the core philosophy that "customer satisfaction is our eternal pursuit." It is driving industry transformation through innovative service models. In June 2025, we will conduct a semi-annual customer satisfaction survey, accompanied by four major upgrade initiatives: establishing a regional rapid-response service network, building a "cost-quality-delivery" trinity competitive system, creating a customer demand data conversion mechanism, and setting up a dedicated customer service hotline. These actions collectively form a complete closed-loop of Sanzhong Elastic's "customer-centric" strategy, ensuring that each survey serves as a new starting point for service upgrades.
1. Regionalized Service Matrix
Establish regional sales & service centers
Each region is equipped with corresponding sales engineers to ensure the achievement of the "5-50-100" response standard:
✓ 5-minute work order confirmation
✓ On-site arrival within 24 hours for a 50-kilometer radius (for orders requiring customer visits/services)
✓ 100% issue documentation and tracking
2. Whole-Process Time Efficiency Control System
Pre-Sales Phase:
• 24-hour technical consultation response (including non-working days)
During-Sales Phase:
• Key node quality inspection report push
After-Sales Phase:
• 24-hour issue diagnosis
• 48-hour solution implementation
The "Cost-Quality-Delivery" Trinity Competitive System
In-depth Application of Satisfaction Surveys
1. Three-Dimensional Diagnostic Model
Product Dimension: Material Performance / Operational Condition Adaptability
Service Dimension: Response Efficiency / Professionalism
Strategic Dimension: Technology Needs for the Next 3 Years
2. Data Transformation Mechanism
Establish a Customer Demand Research Center
Create a "Problem-Improvement-Validation" Closed Loop:
✓ Provide improvement solutions within 30 days
✓ Release quarterly optimization achievement reports

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