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A belt conveyor—also known as a belt transporter or sidewall belt elevator—is a friction-driven machine designed for continuous material transportation.
  • Lifting Height1.68/2/2.5/3m
  • PVC Conveyor Belt Length2.3/2.8/3.5/4.2m
  • Daya Motor0.75-3kw
  • Feed Hopper (mm) Inlet: 600*500; Height from Ground: 720
  • PVC Conveyor Belt Total Width: 570mm; Inner Sidewall Width: 400mm; Baffle Spacing: 320mm

What Is a Belt Conveyor?

A belt conveyor—also known as a belt transporter or sidewall belt elevator—is a friction-driven machine designed for continuous material transportation. It’s widely used across industries like food processing, chemical engineering, and more, making it ideal for stable conveyance of various materials. Beyond pure material transport, it can also integrate with the process requirements of industrial production lines to form rhythmic, assembly-line-style transport systems.

<trp-post-container data-trp-post-id='1272'>Belt Conveyor</trp-post-container>(images 2)
<trp-post-container data-trp-post-id='1272'>Belt Conveyor</trp-post-container>(images 3)

How Does a Belt Conveyor Work?

The working principle of a belt conveyor relies on friction-driven motion dan continuous circular movement. It uses a conveyor belt to carry materials and achieve directional transport. Below is an overview of its core operating steps:

  1. Start-up of the Drive UnitThe electric motor provides power, which is transmitted to the drive pulley via a reducer and coupling to make it rotate. This serves as the power source for the entire system.
  2. Movement of the Conveyor BeltFriction is generated between the drive pulley and the conveyor belt, driving the belt to move in a closed circular loop. The conveyor belt acts as both a traction mechanism (to transmit power) and a carrying mechanism (to support materials).
  3. Material Loading & ConveyingMaterials are fed onto the conveyor belt at the feeding end. Relying on friction with the belt, they move along with it. Idlers (or support plates) hold up the conveyor belt and materials, reducing operational resistance and ensuring smooth transport.
  4. Material UnloadingWhen materials reach the discharge end, they separate from the conveyor belt—either via a discharge device (e.g., a scraper) or gravity—completing the transport process.
<trp-post-container data-trp-post-id='1272'>Belt Conveyor</trp-post-container>(images 4)

Key Application Industries

1. Food Processing Industry

It’s used for conveying items like flour, seasonings, fruits, and vegetables. Sidewall belt conveyors are especially useful here: they effectively prevent powdery or granular raw materials from spilling or rolling during transport, ensuring the materials stay clean and are delivered accurately.

2. Chemical Engineering Industry

The chemical sector often handles powdery, granular, or bulk raw materials—such as fertilizer ingredients, plastic pellets, and pigments. Sidewall belt conveyors prevent these chemical materials from leaking or flying during transport, safeguarding the safety and cleanliness of the production environment.

<trp-post-container data-trp-post-id='1272'>Belt Conveyor</trp-post-container>(images 5)
<trp-post-container data-trp-post-id='1272'>Belt Conveyor</trp-post-container>(images 6)
<trp-post-container data-trp-post-id='1272'>Belt Conveyor</trp-post-container>(images 7)

Technical Advantages

1. High-Efficiency Conveying Performance

  • Continuous Uninterrupted ConveyingNo need for shutdowns during loading/unloading, with conveying efficiency far exceeding traditional transportation methods.
  • Long-Span Conveying CapacityBoth light-duty and heavy-duty models are available to match different scale requirements.

2. Structural Design Benefits

  • Modularity & StandardizationComponents (e.g., idlers, drive units) are standardized, reducing maintenance difficulty and enabling quick replacements.
  • Low Energy ConsumptionIdlers are equipped with rolling bearings to reduce friction, resulting in low energy use.
  • Low Noise & Environmental FriendlinessOperates with low noise, minimizing disruption to the work environment.

3. Reliable Operation

  • Low Failure RateUnlike scraper or bucket elevators, it avoids issues like chain jamming or cable breakage, ensuring high equipment stability and uptime.
  • Strong SafetyEnclosed designs prevent material splashing, and no need for close-range manual operation reduces the risk of workplace injuries.

4. Adaptability & Flexibility

  • Multi-Scenario Loading/UnloadingSupports single-point feeding and multi-point discharging. When paired with scrapers or pneumatic devices, it enables precise sorting.
  • Flexible Process IntegrationCan be linked with other equipment (e.g., automated sorting systems) to match the tempo of production lines.

Belt Conveyor Models & Configurations

Based on material type, production requirements, and application scenarios, belt conveyors come in different models and configurations. Below are common specifications:

<trp-post-container data-trp-post-id='1272'>Belt Conveyor</trp-post-container>(images 8)
<trp-post-container data-trp-post-id='1272'>Belt Conveyor</trp-post-container>(images 9)
<trp-post-container data-trp-post-id='1272'>Belt Conveyor</trp-post-container>(images 10)
Lifting HeightPVC Conveyor Belt Length (m)Motor Power (kw)Feed Hopper (mm)PVC Conveyor Belt (mm)
1.68m2.30.75Inlet: 600*500; Height from Ground: 720Total Width: 570; Inner Sidewall Width: 400; Baffle Spacing: 320
2m2.81.1Inlet: 600*500; Height from Ground: 720Total Width: 570; Inner Sidewall Width: 400; Baffle Spacing: 320
2.5m3.51.5Inlet: 600*500; Height from Ground: 720Total Width: 570; Inner Sidewall Width: 400; Baffle Spacing: 320
3m4.23Inlet: 600*500; Height from Ground: 720Total Width: 570; Inner Sidewall Width: 400; Baffle Spacing: 320

Belt Conveyor Selection Guide

1. Analyze Material Characteristics

Physical Properties

  • Particle Size & Moisture: Large-sized materials require reinforced structural design; high-moisture materials need water-resistant conveyor belts (e.g., rubber belts).
  • Corrosiveness & Temperature: Acidic/alkaline materials call for corrosion-resistant materials (e.g., plastic, alloy); high-temperature materials need heat-resistant conveyor belts.

Conveying Capacity Requirements

Determine the belt width and speed based on hourly conveying volume to avoid overloading.

2. Conveying Requirements & Distance Parameters

Distance

Consider whether the transport distance is short or long.

Belt Width & Speed

  • Belt width is determined by material volume: use steel belts for heavy loads and light-duty belts for light loads.
  • Speed rule: High speed is suitable for long-distance horizontal transport; low speed is better for steep-incline transport or fragile materials.

Daya Motor

Calculate power based on conveying volume, distance, and speed to avoid insufficient power or energy waste.

3. Equipment Configuration & Environmental Adaptation

Structure Type

Choose linear, inclined, or curved conveyors based on your workflow design. For limited space, opt for mobile or telescopic models.

Installation Environment

Take into account factors like site size, turning needs, and sealing requirements (e.g., dust-proof designs for dusty environments).

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