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SMC Floating Joints

Floating Joints products in the Automation Components category from SMC. The product can be selected based on many product specifications such as Type, Connecting Thread Nominal M, Connection Type, Cylinder Side, Connection Type, Work Piece Side, Applicable Cylinder. SMC offers products around 1 items and the product specifications can easily be compared. Search and select detailed specifications of parts for your machine with free CAD downloads. SMC products are available to order through MISUMI online 24 hours a day. Free shipping, no minimum order.
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Type
Connecting Thread Nominal M(mm)
Connection Type, Cylinder Side
Connection Type, Work Piece Side
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Connecting Thread Nominal P(mm)
Holder Type
Flange Shape
Main Body Material
Cylinder Connector Details
Allowable Misalignment U(mm)
Allowable Angular Deviation(deg)
Metallic Head
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Sale
Low Profile Cylinder CQ2 Dedicated/Electric Actuator Rod Type LEY Dedicated Simple Joint
Until 31/03/2025
Brand

SMC

Product Series

Low Profile Cylinder CQ2 Dedicated/Electric Actuator Rod Type LEY Dedicated Simple Joint

From

฿ 214.20

Special Price

On Sale Until 31/03/2025

Days to Ship Same day
TypeFloating Joints / Cylinder Connector / Related Part
Connecting Thread Nominal M(mm)M3 ~ M8
Connection Type, Cylinder SideThreaded
Connection Type, Work Piece SideThreaded
Applicable CylinderAir Cylinder
Connecting Thread Nominal P(mm)1~1.75
Holder TypeSide Mount / Top Mount
Flange Shape-
Main Body MaterialStainless Steel ~ Steel
Cylinder Connector DetailsConnector Only / Holder Single Item
Allowable Misalignment U(mm)±1
Allowable Angular Deviation(deg)-
Metallic HeadNo
Stud Material-

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  1. 1

Application example related to this category

Related Categories to Floating Joints

FAQ Floating Joints

Question: What are Floating Joints and their primary function?
Answer: Floating Joints are mechanical components designed to compensate for misalignment between a cylinder rod and the driven workpiece. They absorb both lateral (side-to-side) and angular (rotational) misalignment, ensuring smooth linear motion and preventing damage to connected parts.
Question: How do Floating Joints improve installation accuracy?
Answer: Floating Joints significantly reduce the need for precise alignment during installation. Their ability to accommodate misalignment simplifies the process, reducing the need for high-precision machining and alignment of connected components.
Question: What types of Floating Joints are available?
Answer: Floating Joints are offered in various configurations to suit different applications:
Quick Connection Type: Facilitates easy and fast installation with a holder.
Tapped Type: Connects directly to components with tapped threads.
Flange Mounting: Mounts via either round or square flanges.
Screw Mount Type: Features various sizes with threaded connections.
Question: What materials are used in Floating Joints?
Answer: Floating Joints are commonly constructed from brass, stainless steel, or carbon steel. Surfaces are often treated with hard chrome plating or electrophoretic paint to enhance durability and resistance to abrasion and corrosion.
Question: How do I choose the right Floating Joint for my application?
Answer: Consider the following factors when selecting a Floating Joint:
Connecting Thread Nominal (M): The size of the thread on both the cylinder side and the workpiece side.
Connection Type: Threaded, tapped, or flange mount.
Applicable Cylinder: Compatibility with air or hydraulic cylinders.
Allowable Misalignment and Angular Deviation: Ensure the joint can handle the expected misalignment in your specific setup.
Question: What are the operational limits of Floating Joints?
Answer: Temperature Range: Typically -20°C to 70°C (-4°F to 158°F), but can vary depending on materials and surface treatment.
Misalignment Capacity: Varies by type and size. Check specifications for allowable lateral offsets and angular deviation.
Question: What precautions should be taken when using Floating Joints?
Answer: Avoid Rotary Motion: Floating Joints are designed for linear motion only.
Cushioning Mechanism: Use cylinders with built-in cushioning to prevent impact damage to the joint.
External Stop Structures: Consider external stop cushioning to absorb excessive impact loads and protect equipment.
Question: Can Floating Joints be used in compact or confined spaces?
Answer: Yes, compact and ultra-short Floating Joint designs are available specifically for use in tight spaces.
Question: What are the benefits of using Floating Joints in automation systems?
Answer: Reduced Installation Time: Simplified alignment saves time.
Increased Longevity: Reduced stress on components extends their lifespan.
Versatility: Suitable for a wide array of factory automation applications.