Descrizione del prodotto
| MODEL | P | T | t | h | H | b | d |
| S16 | 100 | 30 | 15 | 27 | 8 | 16 | 14 |
| P102-W385 | 102 | 30 | 13 | 27 | 9 | 14 | 14 |
| RUS270 | 123 | 50 | 24 | 46 | 16 | 25 | 20 20.5 |
| Z20 | 125 | 50 | 24 | 48 | 15 | 26 | 20 |
| P140 | 140 | 78 | 31 | 50 | 19 | 32 | 25 |
| Z30 | 142 | 64 | 28.5 | 50 | 18 | 30.5 | 25 |
| 150 | 150 | 38 | 18 | 40 | 10 | 20 | 18 |
| P155 | 155 | 79 | 39.5 | 63.5 | 36 | 40.5 | 30 |
| Z25 | 160 | 58 | 28 | 55 | 18 | 30 | 25 |
| YD310 | 200 | 43 | 20 | 47 | 12 | 22 | 20 |
| A-3634 | 216 | 64 | 26 | 72 | 20 | 28.5 | 35 |
| X63 | 250 | 60 | 28 | 70 | 20 | 30 | 25 |
| P260 | 260 | 72 | 32 | 75 | 20 | 34 | 32 |
ZheJiang CZPT Precision Casting and Forging Inc. was established in 2003, covering an area of 40,000 square meter with 300 employees. In 2571, the company passed the quality management system certification of GB/T 19001-2016 and ISO 9001:2015, and has a number of invention patents.It is a national high-tech enterprise.
Our main products are bucket teeth,side teeth,bucket adapter for excavator and loader; Forged pipe coupling for concrete pump ; Drop forged chain for scraper conveyor, etc. Other casting and forging parts canalsobecustomized accordingto customer drawings. The main materials are alloy steel, high manganese steel, gray iron, ductile iron, etc.
Our company can produce casting range in 0.1kg-2tons, forging range in 0.1kg-100kgs, casting and forging annual capacity of 10,000tons.From productdesign, mold development to heattreatment, machining and spraying, we provide the whole processof internal manufacturing to better control the cost and quality.
ZheJiang Plus Import and Export Trading Co., Ltd. was established in 2571, is Wanxin’s subsidiary, mainly responsible for marketing and export
FAQ
Q1.Are you a manufacturer or a trading company?
we are totally manufacturer of machinery parts.
Q2.Can i get samples for checking the quality?
we can provide free samples,but you need to pay the freight.
Q3.What’s your MOQ?
For normal prodcuts,we don’t have MOQ.
For customerized products,we will tell you MOQ based on your drawing.
Q4.What’s your delivery time?
it’s about 7-45 days based on your quantity.
Q5.What’s your payment terms?
AmountAmount≥5000USD,T/T 30% as deposit,balance before delivery.
| Materiale: | Lega |
|---|---|
| Struttura: | Combined Chain |
| Trattamento superficiale: | Baking Paint |
| Dimensioni della catena: | 100 |
| Caratteristica: | Resistente al calore |
| Process: | Forging |
| Esempi: |
US$ 100/Piece
1 pezzo (ordine minimo) | |
|---|
| Personalizzazione: |
Disponibile
| Richiesta personalizzata |
|---|

Come si garantisce la corretta tensione e l'allineamento di una catena di trasporto?
Un corretto tensionamento e allineamento sono essenziali per il funzionamento efficiente e affidabile di una catena di trasporto. Ecco i passaggi per garantire un tensionamento e un allineamento corretti:
1. Installazione iniziale:
– Assicurarsi che il telaio e i supporti del trasportatore siano correttamente allineati e livellati prima di installare la catena. Qualsiasi disallineamento o irregolarità può causare problemi di tensione e allineamento.
– Seguire le linee guida e le specifiche del produttore per l'installazione della catena. Ciò include il corretto posizionamento di pignoni, tendicatena e guide.
2. Tensione:
– Regolare la tensione della catena secondo le specifiche raccomandate dal produttore. Una tensione corretta previene cedimenti o tensioni eccessive, riducendo l'usura e prolungando la durata della catena.
– Utilizzare dispositivi di tensionamento, come tenditori regolabili o viti di tensionamento, per ottenere la tensione desiderata. Fare riferimento alle istruzioni del produttore per il metodo di tensionamento appropriato per la specifica catena del trasportatore.
– Controllare e regolare regolarmente la tensione della catena secondo necessità. Fattori come l'usura della catena, le variazioni di carico e le variazioni di temperatura possono influenzare la tensione della catena nel tempo.
3. Allineamento:
– Verificare l'allineamento della catena rispetto ai pignoni e alle guide. Un disallineamento può causare un'usura irregolare, un aumento dell'attrito e la rottura prematura della catena.
– Verificare l'allineamento esaminando visivamente il percorso della catena lungo i pignoni e le guide. Dovrebbe scorrere senza intoppi, senza segni di sfregamento o deviazioni eccessive.
– Utilizzare strumenti di allineamento, come dispositivi di allineamento laser o righelli, per valutare e correggere con precisione eventuali disallineamenti. Regolare la posizione di pignoni, guide e supporti secondo necessità.
4. Manutenzione ordinaria:
– Implementare un programma di manutenzione programmata per ispezionare e mantenere regolarmente la corretta tensione e l'allineamento della catena del trasportatore.
– Monitorare le prestazioni della catena, inclusi i modelli di usura, i livelli di rumorosità e il consumo di energia, come indicatori di potenziali problemi di tensionamento o allineamento.
– Mantenere la catena pulita e priva di detriti o contaminanti che potrebbero comprometterne il movimento e l'allineamento.
Seguendo questi passaggi e monitorando regolarmente la tensione e l'allineamento della catena del trasportatore, è possibile garantire un funzionamento fluido e affidabile, ridurre al minimo l'usura della catena e limitare il rischio di guasti imprevisti.

What are the future trends and advancements in conveyor chain technology?
The field of conveyor chain technology is constantly evolving, driven by the need for improved efficiency, productivity, and sustainability. Here are some of the future trends and advancements in conveyor chain technology:
1. Automation and robotics: The integration of conveyor chains with automation and robotics systems is a growing trend. This includes the use of advanced sensors, machine vision, and artificial intelligence to enable autonomous operation, precise positioning, and efficient material handling.
2. Smart and connected systems: Conveyor chains are becoming increasingly connected through the Internet of Things (IoT) technology. This allows for real-time monitoring, data collection, and analysis of various performance parameters such as chain wear, tension, temperature, and energy consumption. Smart systems can optimize maintenance schedules, detect potential failures, and improve overall system efficiency.
3. Lightweight and high-strength materials: The development of lightweight yet high-strength materials is an ongoing focus in conveyor chain technology. Advanced alloys, composites, and engineered plastics offer improved strength-to-weight ratios, reducing energy consumption and increasing the load capacity of conveyor systems.
4. Energy efficiency: Energy efficiency is a key consideration in conveyor chain design. Future advancements aim to minimize power consumption through the use of efficient drive systems, regenerative braking, and smart control algorithms that optimize speed and acceleration profiles. Energy recovery technologies, such as regenerative drives, can also capture and reuse energy during deceleration or braking.
5. Sustainability and environmental friendliness: Conveyor chain technology is moving towards more sustainable and environmentally friendly solutions. This includes the use of eco-friendly materials, improved lubrication techniques to minimize environmental impact, and the adoption of energy-efficient components and systems. Recycling and circular economy concepts are also gaining prominence in the design and manufacturing of conveyor chains.
6. Advanced wear monitoring and predictive maintenance: The future of conveyor chain technology involves advanced wear monitoring systems that can accurately predict the remaining useful life of chains and components. This enables proactive maintenance planning and reduces unplanned downtime. Predictive maintenance algorithms analyze data collected from sensors and provide timely alerts for chain replacement or repair.
These are just a few examples of the future trends and advancements in conveyor chain technology. As technology continues to advance, we can expect further innovations that enhance performance, efficiency, reliability, and sustainability in conveyor systems.

Can a conveyor chain be repaired or does it need to be replaced entirely?
In general, conveyor chains can be repaired in certain cases, but there are instances where replacement is necessary. Here are some considerations:
- Minor Damage: If the conveyor chain has minor damage, such as a broken link or a damaged pin, it may be possible to repair it by replacing the damaged components.
- Significant Wear: If the chain has significant wear, such as elongation or excessive corrosion, it may be more cost-effective to replace the entire chain rather than attempting repairs.
- Critical Components: Some conveyor chains have critical components that cannot be repaired, such as welded attachments or specialized features. In such cases, replacement is usually the only option.
- Manufacturer’s Recommendations: It’s important to consult the manufacturer’s recommendations regarding chain repairability. They can provide specific guidelines on when repair is feasible and when replacement is necessary.
Before deciding whether to repair or replace a conveyor chain, it’s recommended to assess the extent of damage, consider the overall condition of the chain, and evaluate the cost-effectiveness of each option. It’s always advisable to consult with a qualified professional or the chain manufacturer to determine the best course of action.


editor by CX 2023-08-22