SKU 65040a187baa Categoria Marcação
  1. Multi-turn wave spring with shim ends are made of a single filament of round-edged, pre-tempered flat wire from a continuous coil. This results in uniform diameters and wave heights. They replace conventional round wire springs when space is critical, typically occupying only 1/3 to 1/2 of the compressed height space, while providing more deflection with the same load specifications.
  2. Multi-turn wave spring with shim ends should be used for all applications requiring tight load deflection specifications where axial space is critical.

Mola ondulada multi-voltas com extremidades com calço 17-7ph Aço carbono / aço inoxidável

Descrição do produto

Multi-turn wave spring with shim ends 17-7ph Carbon / Stainless Steel

Descrição:

  1. Multi-turn wave spring with shim ends are made of a single filament of round-edged, pre-tempered flat wire from a continuous coil. This results in uniform diameters and wave heights. They replace conventional round wire springs when space is critical, typically occupying only 1/3 to 1/2 of the compressed height space, while providing more deflection with the same load specifications.
  2. Multi-turn wave spring with shim ends should be used for all applications requiring tight load deflection specifications where axial space is critical.

 

As an indispensable and important part in modern industrial production, the multi- turn wave spring with shim ends plays a relatively large role, and the reason why it can play a major role in so many industries is a big one The reason is that it has advantages and superior performance that other produtos do not have. So, let’s briefly discuss its advantages.

  1. The Multi-turn wave spring with shim ends has good wear resistance and has a longer serviço life. It has to be said that because the materials used are more particular, and repeated experiments are carried out in the process of production and processing, it can be better ensured that it is relatively wear-resistant, even if it is used for a long time, its appearance will not be affected in any way.
  2. The Multi-turn wave spring with shim ends has good high temperature resistance and is more adaptable to the environment. It is very worth mentioning that even when working in a very high temperature environment, it can maintain its performance at a high level without being affected.

 

After precipitation hardening, 17-7 appears blue, brown or silver as a result of open air heat treatment, while controlled air heat treatment provides bright colors. Corrosion resistance similar to 302 stainless steel, this alloy is used almost exclusively in multi-turn wave spring with shim ends, but offers high tensile and yield strengths for special retaining ring applications. In fatigue and high stress applications, 17-7 performs better than even the best high-grade carbon steels. The spring properties are achieved by precipitation hardening from the C state to the CH900 state. As a result, the material can withstand temperatures of 650°F (343°C) without loss of spring properties. The 17-7 PH CH900 temper exhibits magnetic properties similar to high carbon steels.

O uso de aço inoxidável 17-7PH para fazer molas pode atender aos requisitos especiais de desempenho de alguns produtos. Por isso, seus materiais e processos de fabricação são especiais.

Main features of multi-turn wave spring with shim ends 17-7ph:

  1. Boa resistência à corrosão: Como um aço inoxidável de endurecimento por precipitação, tem resistência à corrosão semelhante a 304.
  2. Tem resistência à tração muito forte, e a resistência pode ser temperada e revenida, podendo chegar a 2000MPA.
  3. Alta resistência à fadiga da mola: Esta é a característica notável do fio de aço inoxidável 17-7PH.
  4. Boa resistência ao calor
  5. Uso principal: antena, fio mola para uso militar e peças elásticas que requerem alta resistência.

 

Especificação:

Número da peça Opera em
Diâmetro do Furo
Lears Shaft
Diâmetro
Carregar Altura de trabalho Altura Livre Ondas Voltas pensamento Parede Radial Taxa de Primavera
milímetros milímetros (n) milímetros milímetros milímetros milímetros N/MM
LM15-H1 15 10 80 3.2 5.18 3.5 3 0.25 1.47 40.4
LM15-L1 15 11 25 2.57 5.18 2.5 3 0.25 1.47 9.58
LMS15-M1 15 10 50 3.43 5.18 3.5 3 0.23 1.47 28.57
LMS15-H2 15 10 80 4.19 6.91 3.5 4 0.25 1.47 29.41
LMS15-L2 15 11 25 3.43 6.91 2.5 4 0.25 1.47 7.18
LMS15-M2 15 10 50 4.57 6.91 3.5 4 0.23 1.47 21.37
LMS15-H3 15 10 80 5.23 8.64 3.5 5 0.25 1.47 23.46
LMS15-L3 15 11 25 4.27 8.64 2.5 5 0.25 1.47 5.72
LMS15-M3 15 10 50 5.72 8.64 3.5 5 0.23 1.47 17.12
LMS15-H4 15 10 80 6.27 10.36 3.5 6 0.25 1.47 19.56
LMS15-L4 15 11 25 5.13 10.36 2.5 6 0.25 1.47 4.78
LMS15-M4 15 10 50 6.86 10.36 3.5 6 0.23 1.47 14.29
LMS15-H5 15 10 80 7.32 12.09 3.5 7 0.25 1.47 16.77
LMS15-L5 15 11 25 5.99 12.09 2.5 7 0.25 1.47 4.1
LMS15-M5 15 10 50 8 12.09 3.5 7 0.23    
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