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CHELIC Shock Absorbers, Gas Springs(Orifice Type:Multi Orifice Type)

CHELIC offers products Shock Absorbers, Gas Springs specified by Orifice Type Multi Orifice Type from Automation Components product category. There are a total of 2 items. Search and select detailed specifications of parts for your machine with free CAD downloads. CHELIC products are available to order through MISUMI online 24 hours a day. Free shipping, no minimum order.

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    Shock Absorber, 2-Stage Absorption, without Cap

    Shock Absorber, 2-Stage Absorption, without Cap

    CHELIC

    The shock absorbers are available from M8 to M27 in type and from 6 mm to 25 mm in stroke. A cap is not provided for this product. Some in-stock items also can be shipped the same day when available. Small jig cylinder by a Taiwanese manufacturer specialized in pneumatic devices/accessories established in 1988. Sales are expanding in countries around the world and the product has been well-received worldwide.

    CAD :
    2D
    Structure Nominal Mounting Screw [M] Overall Length L(mm) Stroke S(mm) Max. Absorbed Energy(J) Main Body, Related Components Orifice Type Operating Environment Body Material Nominal Mounting Screw [Inch]
    Fixed Type 8 ~ 20 46.6 ~ 88 6 ~ 15 - Main Body Multi Orifice Type Standard Steel -
    From: ₹ 4,570.40
    Days to Ship: 5 Day(s) or more
    day to ship 5 Day(s) or more
  • You can add up to 6 items per a category to the compare list.

    Shock Absorber, 2-Stage Absorption, with Cap

    Shock Absorber, 2-Stage Absorption, with Cap

    CHELIC

    Brand-name products provided by MISUMI-VONA are offered based on customers' needs that selected from products of Asian manufacturers carefully. Please select an item according to the user's various usage scenes. Pneumatic device accessories by Taiwan CHELIC Corporation, founded in 1988, are highly received in the markets around the world. In particular, the quality of the cylinder has been praised by customers and is used in a variety of fields.

    CAD :
    2D
    Structure Nominal Mounting Screw [M] Overall Length L(mm) Stroke S(mm) Max. Absorbed Energy(J) Main Body, Related Components Orifice Type Operating Environment Body Material Nominal Mounting Screw [Inch]
    Fixed Type 10 ~ 20 62.6 ~ 103 7 ~ 15 - Main Body Multi Orifice Type Standard Steel -
    From: ₹ 4,574.40
    Days to Ship: 5 Day(s) or more
    day to ship 5 Day(s) or more
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Structure
Nominal Mounting Screw [M]
Overall Length L(mm)
Stroke S(mm)
Max. Absorbed Energy(J)
Main Body, Related Components
Orifice Type
Operating Environment
Body Material
Nominal Mounting Screw [Inch]

You can add up to 6 items per a category to the compare list.

Shock Absorber, 2-Stage Absorption, without Cap

    You can add up to 6 items per a category to the compare list.

    Shock Absorber, 2-Stage Absorption, with Cap
      Brand

      CHELIC

      CHELIC

      Product Series

      Shock Absorber, 2-Stage Absorption, without Cap

      Shock Absorber, 2-Stage Absorption, with Cap

      CAD
      • 2D
      • 2D
      From

      ₹ 4,570.40-

      ₹ 4,574.40-

      Days to Ship 5 Day(s) or more 5 Day(s) or more
      StructureFixed TypeFixed Type
      Nominal Mounting Screw [M]8 ~ 2010 ~ 20
      Overall Length L(mm)46.6 ~ 8862.6 ~ 103
      Stroke S(mm)6 ~ 157 ~ 15
      Max. Absorbed Energy(J)--
      Main Body, Related ComponentsMain BodyMain Body
      Orifice TypeMulti Orifice TypeMulti Orifice Type
      Operating EnvironmentStandardStandard
      Body MaterialSteelSteel
      Nominal Mounting Screw [Inch]--

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      1. 1

      Related Categories to Shock Absorbers, Gas Springs

      FAQ Shock Absorbers, Gas Springs

      Question: How do shock absorbers function in industrial machinery, and what are their primary applications and benefits in maintaining equipment performance?
      Answer: Shock absorbers are mechanical devices that are designed to dampen the impact of sudden movements or vibrations in machinery. They work by absorbing the kinetic energy generated by the impact and dissipating it as heat. The primary applications of shock absorbers in industrial machinery include improving machine performance, reducing wear and tear on equipment, and preventing damage to the machinery and its components. By reducing the impact of sudden movements and vibrations, shock absorbers can help extend the lifespan of machinery and improve overall productivity.
      Question: What factors should be considered when selecting the appropriate shock absorber for a specific machine or piece of equipment?
      Answer: When selecting a shock absorber for a specific machine or piece of equipment, several factors should be considered. These include the weight and speed of the equipment, the type of impact or vibration that needs to be absorbed, the mounting position of the shock absorber, and the environment in which the equipment will be operating. It is also important to consider the lifespan and maintenance requirements of the shock absorber, as well as its cost.
      Question: What are the types of shock absorbers?
      Answer: There are several types of shock absorbers, including hydraulic shock absorbers, pneumatic shock absorbers, and spring shock absorbers. Hydraulic shock absorbers use fluid to dampen the impact, while pneumatic shock absorbers use compressed gas. Spring shock absorbers use a coiled spring to absorb the impact. Each type of shock absorber has its advantages and disadvantages, and the choice of which type to use depends on the specific application and requirements.
      Question: What is the typical lifespan of effective shock absorbers?
      Answer: The typical lifespan of effective shock absorbers depends on several factors, including the type and quality of the shock absorber, the severity, frequency of the impacts, and the operating conditions of the equipment. In general, high-quality shock absorbers can last for many years with proper maintenance and replacement when necessary. It is important to monitor the condition of shock absorbers regularly and replace them as soon as signs of wear or damage are detected to ensure optimal performance and safety of the equipment.
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