Springs Manufacturer & Supplier in Europe

Springs Manufacturer & Supplier in Europe - PipingProjects.eu

Springs Manufacturer and Supplier in Europe

PipingProjects.eu is one of the leading Springs Manufacturer in Europe. We are renowned for our dedication to manufacturing superior fastening products. We are a reputable Springs Supplier in Europe, offering a wide selection of products made to withstand the demanding requirements of many sectors. Our well constructed Springs offer dependability, performance, and longevity in various environments. We supply premium Springs in Europe because we put our customers needs first by offering exceptional goods and unmatched customer service.

What are Springs?

Spring Fasteners are fastening mechanisms that use spring qualities to attach or keep items together. These fasteners often feature a spring-loaded mechanism to hold components in place or allow for speedy installation and disassembly. Spring fasteners include spring-loaded pins, clips, clamps, and latches and locks. They are widely employed in various sectors and applications requiring quick assembly, disassembly, or secure attachment. Spring fasteners are prominent in industrial, automotive, aerospace, and consumer products due to their simplicity, dependability, and ease of use.

Top leading Manufacturing Companies

What sets us apart as a prominent Springs Manufacturers in Europe?

We are proud of our modern facilities and precise engineering knowledge, which have earned us a reputation as one of the top Springs Manufacturer in Europe. Because of our unwavering dedication to quality, every fastener we produce exceeds the highest standards for strength and longevity, making them ideal for various applications in various industries. We work hard to establish long-term relationships with our clients by tailoring our services to their requirements and being dependable and trustworthy. To surpass industry norms, we intend to set new ones and prioritize continuous innovation and development.

Our extensive selection of high-quality products meets our client's different needs. We focus on prompt delivery and good customer service to guarantee our clients have the fasteners they want for their needs. We can give professional guidance and support throughout the procurement process owing to our vast inventory and trained personnel, establishing us as a well-known Springs Supplier in Europe.

Piping Projects Europe
Springs Manufatcurer, Supplier and Dealer in Europe

Fastener

Fastener Manufacturer in Europe
Fastener Supplier in Europe
Fastener Dealer in Europe

Springs - Specifications

  • Diameters : 0.036" to 9.250"
  • Length : 0.130* (3.302 mm) to 9.880° (250.952 mm)
  • Diameter : 1/2" - 1"
  • Temperature Range: upto 450°C
  • Standards : JIS, AISI, ASME, ASTM, AMS, GB, DIN, EN, GOST
  • Method : Hot Rolled & Cold Rolled
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Springs Specification Chart

PipingProjects.eu is a top Springs Manufacturer in Europe, supplies a wide range of Spring Fastener standards to fit a variety of sizes and grades.

Springs Size & Specification
Fateners size Specifications
Spring  Wire Size 1.5 mm - 7.5 mm
Spring Style dual, single, triple, conical
Springs Types compression, tension, torsion, wave and valve springs
Temperature Range upto 450°C
Manufacturing Process Winding, Heat Treatment, Grinding, Coating, Finishing
DIN Standard 2095
Grade
Stainless Steel 200 Series - 201, 202, 205.
300 Series
301, 302, 303, 304, 304L, 308, 309, 309S, 310, 310S, 314, 316, 316L, 316TI, 317, 317L, 321, 347.
400 Series
405, 409, 429, 430, 430F, 430FSe, 434, 436, 442, 446, 403, 410, 414,416, 416Se, 420,420F, 422, 431, 440A, 440B, 440C.
500 Series - 501, 502.
600 Series - 630 (17-4 PH).
Titanium Titanium 6-4, Gr 1, Gr 2, Gr 3, Gr 4, Gr 5, Gr 7, Gr 9, 5-2.5, 6-2-4-2, 6-4 ELI, 6-6-2.
Hastelloy C22, C276, X, B-2.
Monel 400, K500.
Nickel Alloy Nickel 200 Nickel 201, Alloy 20, Alloy 286, Alloy 218 (Nitronic 60), Nitronic 50 (XM-19).
Cupro Nickel Cu 90-10 (C70600,CW352H), Cu 70-30 (C71500, CW354H).
Inconel 601, 625, 660A, 718, X-750, 825, 925, 608.
Duplex / Super Duplex D S31803, D S32205, SD S32750, SD S32760, SD S32950.
Chromium Molybdenum Steel A387 Gr 2, A387 Gr 12, A387 Gr 11, A387 Gr 22, A387 Gr 22L, A387 Gr 7, A387 Gr 21, A387 Gr 21L, A387 Gr 9, A387 Gr 91.
Nichrome Alloy CrNi 20/80.
Copper ASTM B1, ASTM B2, ASTM B3, ASTM B152, ASTM B124, ASTM B133.
Brass Alloy 260, Alloy 272, Alloy 330, Alloy 353, Alloy 360, Alloy C48200 - C48500, Alloy 464.
Bronze Alloy 954, Alloy 933.
Case Hardening Steels 10C4, 15C8, 15Cr3, 16Mn5Cr4, 20MnCr5, 15Ni5Cr4Mo1, 15Ni5Cr4Mo2, 20Ni7Mo2, 20NiCrMo2, 14CrNi6.
En Series En8, En9, En19, En24, En30B, En31, En36, En45, En47, En48.
Mild Steel Sae 4118, Sae 4120, Sae 4120, Sae 4130, Sae 4135, Sae 4137, Sae 4140, Sae 4142, Sae 4145, Sae 4147, Sae 4150, Sae 4161, Sae 8620.

Applications of Springs

  • Automotive Industry: Springs are extensively utilized in automotive suspension systems to absorb shocks and vibrations, resulting in a smoother ride. They can also be found in clutches, brakes, and engine valves.
  • Manufacturing & Machinery: Springs are essential components of manufacturing equipment and machinery. They are used in presses, stamping machines, and moulds to provide force, keep tension, or aid in movement throughout production.
  • Consumer Goods: Springs may be found in various consumer items, including toys, furniture, appliances, and electronics. They perform duties such as opening and closing mechanisms in pens, lighters, and switches and tensioning mechanisms in retractable ropes and seat belts.
  • Aerospace & Defense: Springs are used in aviation and aerospace applications for landing gear, control surfaces, and devices that require precise force and motion control. They can be found in armament systems, communication devices, and various mechanical assemblies.
  • Medical Devices: Springs are essential components of medical equipment and devices such as surgical tools, prosthetic limbs, insulin pumps, and respirators. They aid with motions, manage pressure, and guarantee that equipment performs precisely.
  • Industrial Equipment: Springs are employed in industrial equipment to isolate vibrations, absorb shock, and reduce noise. They can be found in conveyor systems, heavy machinery, and industrial robots to help with movement and control.
  • Valves & Pumps: Valves and pumps use springs to regulate fluid flow, maintain pressure, and control the opening and closing processes. They ensure accurate functioning and avoid leaks in fluid handling systems.
  • Electronics: Springs are used in many electrical and electronic applications, including switches, connectors, relays, and battery connections. They offer mechanical support, make electrical connections more accessible, and allow components to move inside electronics.

Springs Chemical Composition

As a trusted Springs Supplier in Europe, we understand how important chemical composition is to the performance and longevity of our products. Our springs are precisely made from high-quality materials such as carbon steel, stainless steel, and specialty alloys to provide maximum strength, resilience, and corrosion resistance in a wide range of applications.

Chemical Composition of Springs
Steel grade C [%] Si [%] Mn [%] P [%] ­max. S [%] ­max. Cr [%] ­max. / – Mo [%] Ni [%] ­max. V [%]
C55S 0.52 – 0.60 0.15 – 0.35 0.60 – 0.90 0.025 0.010 0.40 0.10 0.40
C60S 0.57 – 0.65 0.15 – 0.35 0.60 – 0.90 0.025 0.010 0.40 0.10 0.40
C67S 0.65 – 0.73 0.15 – 0.35 0.60 – 0.90 0.025 0.010 0.40 0.10 0.40
C75S 0.70 – 0.80 0.15 – 0.35 0.60 – 0.90 0.025 0.010 0.40 0.10 0.40
C100S 0.95 – 1.05 0.15 – 0.35 0.30 – 0.60 0.025 0.010 0.40 0.10 0.40
51CrV4 0.47 – 0.55 0.40 0.70 – 1.10 0.025 0.010 0.90 – 1.20 0.10 0.40 0.10 – 0.25
80CrV2 0.75 – 0.85 0.15 – 0.35 0.30 – 0.50 0.025 0.010 0.40 – 0.60 0.10 0.40 0.15 – 0.25

Are Springs suitable for high temperature applications?

  • Springs may be acceptable for high-temperature applications, depending on the material used and the working circumstances. Specific grades of stainless steel, such as 17-7 PH stainless steel or Inconel alloys, are well-known for their resilience to high temperatures and corrosion, making them ideal for high-temperature applications.
  • These materials have exceptional mechanical qualities at high temperatures and can sustain strength and elasticity even under extreme circumstances. However, examining the precise temperature range and ambient variables is critical when selecting springs for high-temperature applications since prolonged heat exposure might impair the spring's material qualities and performance.
  • Furthermore, load capacity, spring design, and operating environment must be carefully considered to achieve peak performance and lifespan. Proper thermal insulation or cooling systems may also be required to safeguard the springs and keep them operational in high-temperature situations.
  • In conclusion, while certain spring materials may resist high temperatures, careful material selection, design considerations, and environmental conditions are required to ensure consistent performance in high-temperature applications.

Springs Mechanical Properties

Mechanical Properties of Springs
Material Tensile Strength (MPa) Yield Strength (MPa) Modulus of Elasticity (GPa) Hardness (HV)
Carbon Steel 600 - 900 400 - 700 200 - 210 150 - 300
Stainless Steel 600 - 1000 300 - 800 193 - 200 150 - 300
Alloy Steel 700 - 1200 500 - 1000 200 - 210 150 - 400
Titanium Alloy 900 - 1300 800 - 1200 110 - 120 300 - 400

Various Types of Springs We Supply

As a trusted Springs Manufacturers in Europe, Our vast selection of Springs, which are shown below, may suit a wide range of industrial needs.

Springs Dimension Chart

Dimension Chart of Springs
d Wire diameter (mm) De External diameter (mm) Di Internal diameter (mm) LO Unloaded length (mm) Ln Max. loaded length (mm) Sn Maximum travel (mm) Fn Maximum load at Ln (N) R Spring constant (N/mm)
0.15 1.45 1.15 3.05 1.55 1.50 0.85 0.55
0.15 1.45 1.15 4.83 2.29 2.54 0.85 0.32
0.15 1.45 1.15 6.35 2.90 3.45 0.85 0.23
0.15 1.45 1.15 7.87 3,51 4.36 0.85 0.19
0.15 1.45 1.15 9.65 4.24 5.41 0.85 0.16
0.15 1.45 1.15 11.18 4.90 6.28 0.85 0.13
0.15 1.45 1.15 12.70 5.54 7.16 0.85 0.12
0.15 1.45 1.15 14.22 6.58 7.64 0.85 0.12
0.15 1.45 1.15 15.75 7.26 8.49 0.85 0.10
0.18 1.45 1.09 3.05 1.70 1.35 1,41 1.02

Difference between Compression Spring and Tension Spring

  • Compression and tension springs are essential components in mechanical systems, but they perform different functions due to their unique designs and load behaviours. Compression spring's capacity to withstand compressive forces along their axis distinguishes them.
  • When compressed, they store energy and exert force in the opposite direction, returning to their average length once the compressive force is removed. These springs are often used in applications that require things to be pushed, kept in position, or absorbed shocks, such as car suspensions, mattresses, and industrial gear.
  • Tension or extension springs are designed to withstand tensile stresses by elongating or stretching in response to an applied force. When stretched, they store potential energy and release it when the tensile force is released, restoring their original length.
  • Tension springs are commonly employed when things must be pulled, counterbalanced, or held taut, such as garage doors, trampolines, and other equipment. While compression and tension spring both rely on the elastic characteristics of materials to work, their unique designs and modes of action make them useful for various mechanical applications.

Compression Spring size chart

Compression Spring sizes
Wire Diameter (inches) Outer Diameter (inches) Free Length (inches) Load Capacity (pounds)
0.0625 0.500 1.000 10
0.125 0.750 2.000 25
0.1875 1.000 3.000 50
0.250 1.250 4.000 75

advantages of using springs

  • Springs have the unusual capacity to retain mechanical energy when squeezed, stretched, or twisted and then release it when the force is removed. This feature makes them advantageous in applications requiring efficient energy absorption, control, or transmission.
  • Springs effectively absorb shocks and vibrations, protecting sensitive components or structures from harm. Springs in car suspension systems, for example, absorb road shocks, resulting in a smoother and more pleasant ride.
  • Springs provide precise control over forces and movements in mechanical systems. Engineers may create systems with precise force needs and motion characteristics by varying the spring's size, shape, and material qualities.
  • Springs have excellent strength-to-weight ratios, enabling compact and lightweight designs in various applications. Their capacity to store energy in a tiny volume makes them excellent for usage in space-constrained settings.
  • Unlike other systems, springs are frequently less expensive for mechanical support, motion control, and energy storage. Their simplistic designs and mass-production capabilities make them more affordable.
  • Springs are adaptable components that may be used in many industries due to their many types, sizes, and materials. Springs can be designed to satisfy specific performance needs in automotive, aerospace, consumer items, and industrial machinery industries.

Size Chart of Tension Spring

Tension Spring Sizes
Wire Diameter (inches) Outer Diameter (inches) Free Length (inches) Load Capacity (pounds)
0.0625 0.750 5.000 20
0.125 1.000 8.000 40
0.1875 1.500 12.000 80
0.250 2.000 16.000 120

Most Common Uses for Springs

  • Springs Used in Construction
  • Springs Used in Automotive Trim
  • Springs Used in Stamped Machined Products
  • Springs Used in Cookware
  • Springs Used in Appliances
  • Springs Used in Kitchen
  • Springs Used in Sinks
  • Springs Used in Railway Cars
  • Springs Used in Foodservice Equipment
  • Springs Used in Trailers
Construction Steel Industry Architecture Food Industry Industrial Products

Springs Manufacturer & Supplier in Europe

Springs Manufacturer in Europe

Springs Manufacturer in Europe

Springs Supplier in Europe

Springs Supplier in Europe

Piping Projects Europe

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