Descrizione del prodotto
Descrizione del prodotto
Free Flow Chian
BS25
| Chain Number | model | Pece | Roller Dia. (D) | Roller Dia.(d) | Weight(kg/m) |
| BS25-C206B | SKVR25-1905 | 19.05 | 18.3 | 11.91 | 0.52 |
| BS25-C208A | SKVR25-2540 | 25.4 | 24.6 | 15.88 | 0.79 |
| BS25-C212A | SKVR25-3810 | 38.1 | 36.6 | 22.23 | 2.19 |
BS30
| Chain Number | model | Pece | Roller Dia. (D) | Roller Dia.(d) | Weight(kg/m) |
| BS30-C212A | SKVR30-3810 | 38.1 | 38 | 18 | 2.14 |
Free flow chian, also called plus speed chain, accumulation chain, Differential chain.
Free flow chian, also called plus speed chain, accumulation chain, Differential chain.
It is a popular chain used in pallet/tray conveyor system.
Free flow chian, also called plus speed chain, accumulation chain, Differential chain.
Free flow chain is 1 of the major products of Seikonveyor. Its production is finished in automatic factory. In every month CZPT factory supplys over 500000 CZPT free flow chain to the market. Include different materials types: Nylon, steel, stainless steel. and different color: black, blue, brown. Our free flow chain is widely used in automatic conveyor system, especially for different kinds of assembly lines
BS25 free flow chain production view
Free flow chian, also called plus speed chain, accumulation chain, Differential chain.
BS30 free flow chain production view
Free flow chian, also called plus speed chain, accumulation chain, Differential chain.
We pick perfect rollers to assemble the free flow chain, to ensure the chain run smooth
Free flow chian, also called plus speed chain, accumulation chain, Differential chain.
Bulk production makes our free flow chain with competitive price in the martke.
Free flow chian, also called plus speed chain, accumulation chain, Differential chain.
For bulk order, we provide plywood crate package to protect it from damage during transportation.
| Materiale: | Plastic |
|---|---|
| Struttura: | Roller Chain |
| Trattamento superficiale: | Galvanostegia |
| Feature: | Fire Resistant, Oil Resistant, Heat Resistant |
| Chain 3: | 3 Speed Chain |
| Chain 2: | Speed Chain |
| Esempi: |
US$ 20/Meter
1 metro (ordine minimo) | |
|---|
| Personalizzazione: |
Disponibile
| Richiesta personalizzata |
|---|

How does a conveyor chain handle inclined or declined conveyance?
A conveyor chain is designed to handle various types of conveyance, including inclined or declined applications. Here’s how a conveyor chain handles these situations:
1. Inclined Conveyance: When a conveyor system is required to move materials uphill, an inclined conveyor chain is used. The chain’s design includes special attachments or cleats that provide additional grip and prevent material from slipping or sliding backward. These attachments are strategically positioned along the chain to ensure effective conveyance on inclines.
2. Declined Conveyance: For conveyors that move materials downhill, a declined conveyor chain is utilized. Similar to inclined conveyance, the chain may have specialized attachments or cleats that help control the speed and prevent material from sliding too quickly. These attachments keep the material in place and ensure a controlled and efficient flow downward.
Both inclined and declined conveyance require careful consideration of the chain’s design, including the type and arrangement of attachments. The size, shape, and weight of the conveyed material also play a role in determining the appropriate chain configuration. It’s important to consult with conveyor chain manufacturers or experts to select the right chain and attachments for specific inclined or declined applications.

How do you calculate the power requirements for a conveyor chain?
Calculating the power requirements for a conveyor chain involves considering various factors. Here’s a step-by-step process:
1. Determine the total weight to be transported: Measure or estimate the total weight of the material or product that will be carried by the conveyor chain. This includes the weight of the product itself, any packaging, and additional loads.
2. Determine the speed of the conveyor: Determine the desired speed at which the conveyor chain will operate. This is typically measured in feet per minute (FPM) or meters per second (m/s).
3. Calculate the required capacity: Multiply the total weight by the desired speed to determine the required capacity of the conveyor system. This will give you the weight per unit of time (e.g., pounds per minute or kilograms per hour).
4. Consider the conveyor’s design factors: Take into account various design factors such as the type and pitch of the conveyor chain, the coefficient of friction between the chain and the conveyor components, and any incline or decline angles of the conveyor system. These factors affect the power requirements.
5. Determine the required power: Use the following formula to calculate the power requirements:
Power (in horsepower) = (Capacity × Friction Factor) ÷ (33,000 × Efficiency)
Where:
– Capacity is the weight per unit of time (from step 3)
– Friction Factor is the ratio of chain tension to chain weight, taking into account the design factors
– 33,000 is a conversion factor to convert the units to horsepower
– Efficiency is the overall efficiency of the conveyor system, typically expressed as a decimal value (e.g., 0.95 for 95% efficiency)
6. Select a suitable motor: Based on the calculated power requirements, select a motor that can provide the necessary power to drive the conveyor chain. Consider factors such as motor type, motor efficiency, and overload capacity.
It’s important to note that the power requirements may vary depending on specific conveyor system designs and operating conditions. Consulting with a qualified engineer or conveyor manufacturer is recommended to ensure accurate calculations and proper motor selection.

Che cos'è una catena di trasporto e come funziona?
Una catena per trasportatori è un tipo di catena meccanica specificamente progettata per l'uso nei sistemi di trasporto. È composta da una serie di maglie interconnesse che formano un anello continuo. Le maglie sono in genere realizzate in metallo e sono unite tra loro tramite perni o altri elementi di collegamento.
Le catene di trasporto funzionano trasferendo potenza e movimento dal meccanismo di azionamento, come un motore o una ruota dentata, al sistema di trasporto per spostare materiali o prodotti lungo un percorso predeterminato. La catena è posizionata su un binario o su guide e, muovendosi, trasporta il carico che le viene applicato.
Il funzionamento di una catena di trasporto prevede le seguenti fasi:
- Trasmissione di potenza:
Il meccanismo di azionamento trasferisce la potenza rotazionale alla catena del trasportatore, in genere tramite un motore e delle ruote dentate. Il motore fornisce la coppia necessaria per azionare la catena.
- Trazione e movimento:
Quando il meccanismo di azionamento fa ruotare le ruote dentate, i denti di queste si innestano con le maglie della catena del trasportatore. Questa interazione crea trazione, facendo muovere la catena lungo il percorso desiderato.
- Capacità di carico:
Il carico da trasportare viene posizionato sulla catena del nastro trasportatore. Il carico può essere costituito da prodotti, materiali o altri oggetti. Man mano che la catena si muove, trasporta il carico lungo il sistema di trasporto, consentendo un trasporto o una movimentazione efficienti.
- Supporto e assistenza:
La catena del trasportatore è supportata e guidata da diversi componenti, come rotaie di guida, rulli o strisce di usura. Questi componenti garantiscono il corretto allineamento e il movimento fluido della catena lungo il sistema di trasporto.
Le catene di trasporto sono comunemente utilizzate in settori quali la produzione, la logistica, l'imballaggio e la movimentazione dei materiali. Offrono un metodo affidabile ed efficiente per spostare prodotti o materiali in modo controllato e automatizzato.


editor by CX 2023-08-05