Conveyor Components
Rollers, idlers, belting, guides and conveyor frames.
Also searched as: conveyor rollersconveyor beltidlerroller trackbelting
-
160mm x 528mm Belt Conveyor Transition Idler
Diameter: 160 mmLength: 528 mm
-
3 Ply 330 PIW Rubber Conveyor Belting
PIW: 330Ply: 3
-
-
-
-
Conveyor Roller, 108mm Diameter
Diameter: 108 mmLoad Capacity: 100 kg
-
Conveyor System Part Plastic Support Base Bipod
Maximum Load Bearing: 500 kg
-
-
-
-
Dozer Idler Assembly D65EX-16 D65
Hardness Depth: 8-12 mmSurface Hardness: HRC52-58
-
-
-
-
-
Front Idler Model SK200-5
Hardness Depth: 8-12 mmSurface Hardness: HRC52-58
-
-
-
-
-
-
-
Modular and Lightweight Belting
Layer: 1 Layer
-
-
-
-
Roller Track System with Aluminium Frame
Length: 4 m
-
-
-
-
-
Twist Link V Belt
Color: red
About conveyor components
Conveyor components are fundamental to material handling systems, providing the means to transport goods efficiently. This category encompasses a range of parts including rollers, idlers, belting, guides, and structural conveyor frames. Rollers and idlers, often specified by diameter (e.g., 1.9-inch, 2.5-inch) and shaft size, are critical for supporting and moving the belt or product. Variants include gravity rollers, driven rollers, and tapered rollers for curves, available in steel, stainless steel, or PVC. Belting is selected based on application, with common types including PVC, urethane, and rubber, defined by ply count, tensile strength (e.g., PIW rating), and surface finish (e.g., smooth, rough top, cleated). Guides, such as UHMW-PE or nylon wear strips, manage product alignment and prevent spillage. Conveyor frames, typically constructed from aluminum extrusion (e.g., 15 Series, 40 Series) or welded steel, provide the structural integrity, with dimensions and load ratings being primary selection criteria. Components are often chosen based on load capacity, operating speed, environmental conditions (e.g., temperature, washdown), and required service life.
How to choose
Selecting conveyor components involves a systematic approach. First, define the material characteristics: weight, dimensions, and fragility. This dictates the required load capacity and belt type. Second, consider the operational environment: temperature range, presence of abrasives, moisture, or chemicals will influence material choices for belting, rollers, and frames (e.g., stainless steel for washdown). Third, determine the required throughput and speed, which impacts roller diameter, motor sizing (if driven), and belt tensile strength. Finally, evaluate the layout and path: straight sections use standard rollers and frames, while curves necessitate tapered rollers and specialized guides. Account for any accumulation or indexing requirements to specify appropriate control components.