Product Description
China Manufacturer Mining Dump Truck Spare Parts Front Rear Ride Oil Suspension Nitrogen Hydraulic Cylinder Made in China
Descrizione del prodotto:
Ampiamente utilizzato nelle attrezzature per l'industria carbonifera e mineraria, nell'ingegneria.
La speciale progettazione strutturale, l'impiego di materiali ad alta resistenza e gli speciali processi di trattamento termico e saldatura garantiscono al cilindro dell'olio un'elevatissima resistenza alla fatica in condizioni di alta pressione e carichi pesanti.
I cilindri delle sospensioni anteriori e posteriori possono essere analizzati e calcolati in base ai parametri forniti dai clienti, e possono essere progettate le curve di rigidità e smorzamento richieste dai clienti.
La superficie dello stelo del pistone adotta uno speciale trattamento superficiale per garantire un'eccellente resistenza all'usura e alla corrosione dello stelo del pistone.
Selezionare anelli di tenuta resistenti per soddisfare le difficili condizioni di lavoro dell'area mineraria, garantendo eccellenti prestazioni di tenuta e tenuta alla polvere del cilindro dell'olio.
Selezionare un'ampia serie e un anello di guida integrato ad alta capacità portante, con elevata resistenza alla forza laterale.
L'interno del cilindro di sollevamento può essere progettato con una struttura ammortizzante per evitare urti eccessivi durante i processi di sollevamento e abbassamento.
Il cilindro dello sterzo può essere dotato di un sensore di spostamento integrato per monitorare la corsa del cilindro in tempo reale.
L'accumulatore a pistone adotta un design a doppio pistone, con camere ad alta e bassa pressione per adattarsi alle diverse condizioni stradali.
L'affidabile struttura di tenuta dell'accumulatore a pistone garantisce la separazione di olio e gas.
Esposizione del prodotto:
Front suspension cylinder for mining dump truck
Rear suspension cylinder for mining dump truck
Specifiche:
| Articolo | Specifiche |
| Diametro del foro | 150mm-450mm,Customized |
| Diametro dell'asta | 120mm-400mm,Customized |
| Colpo | 200-500 mm, personalizzato |
| Pressione di esercizio | 7-45Mpa, personalizzato |
| Trattamento superficiale dello stelo del pistone | Cromatura HaHard, Cromatura bianco latte elettrodeposta + Cromatura dura, Nichelatura + Cromatura dura, CrC NiC ad alta velocità con ossigeno combustibile, Rivestimento ceramico, Nitrurazione, Placcatura laser |
| Tubo e canna | Tubo trafilato a freddo ad alta resistenza, levigato con precisione per una maggiore durata della guarnizione |
| Tipo di sigillo | Parker, NOK, Hallite GAPI o secondo le esigenze del cliente |
| Certificato | ISO9001, CE, SGS. |
| Colore | Giallo, Rosso, Nero, Rosa, Personalizzato |
| Confezione | cassa di metallo; cassa di compensato; cartone o secondo necessità |
| Quantità minima d'ordine | 1 pz, secondo i prodotti |
| Marca | tianjian or customer’s logo |
| Servizio | OEM e ODM |
| Tempo di produzione | In base alla quantità ordinata. Normalmente 30-45 giorni. |
| Vantaggio di prezzo | Prezzo di fabbrica competitivo con qualità garantita |
| Tipo di attività | Produttore |
Metodo di montaggio:
Applicazioni: Autocarro con cassone ribaltabile per attività minerarie
La nostra fabbrica:
Processo di ispezione:
| Tipo di ispezione | Standard di ispezione |
| Ispezione delle materie prime | Prima dello stoccaggio, il controllo qualità effettua la misurazione delle materie prime. |
| Ispezione dei materiali di processo | Durante la produzione, i controlli qualità effettuano un'ispezione casuale. Prima che i componenti del cilindro idraulico vengano trasferiti al processo successivo, i controlli qualità eseguono un'ispezione. |
| Test di funzionalità finale | Tutti i cilindri idraulici vengono sottoposti a test di funzionalità idraulica |
Packing & Delivery:
About US:Certificates
ZheJiang Tianjian Hydraulic Technology Co.,Ltd is specializing in the production of various types of hydraulic cylinders as well as cylinder barrel, piston cylinder and other cylinder accessories.
As a highly specialized manufacturer of hydraulic cylinders, tianjian provides design optimization solutions and reliable products to many customers at home and abroad. No matter in construction machinery, railway bridge machinery, port ship machinery, metallurgy and mining machinery, oil and light industry machinery, special vehicles and other industries, tianjian can provide various standard and non-standard hydraulic cylinder design optimization schemes and products according to users’ requirements, and provide integrated services for perfection and quality.
I nostri clienti
Se possibile, quando ci contatti, ti preghiamo di fornire le informazioni di seguito
|
Foro |
Asta |
Colpo |
Pressione di lavoro |
Montaggio |
Ambiente di lavoro |
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Oppure puoi fornirci il tuo schizzo, diagramma o foto in modo che possiamo capire esattamente cosa intendi e aiutarci a evitare errori.
E se avete dei campioni, possiamo produrli in base ai vostri campioni dopo averceli inviati.
Se hai tempo, ti aspettiamo nella nostra fabbrica.
La vostra soddisfazione è la nostra più grande motivazione.
Ora puoi contattarci per qualsiasi domanda o richiesta.
Domande frequenti:
1. Di cosa si occupa la vostra azienda?
A: siamo un fornitore di prodotti idraulici di alta qualità, tra cui cilindri idraulici, motori idraulici, centraline idrauliche, stazioni idrauliche e altri componenti idraulici.
2. Siete un'azienda manifatturiera o commerciale?
A: Siamo un produttore.
3. Che certificato hai?
R: Tutti i nostri stabilimenti sono certificati ISO. I nostri principali fornitori di materiali e componenti sono certificati CE, RoHS, CSA e UL.
4. Quanto tempo ci vuole per la consegna?
R: I tempi di consegna dipendono dai prodotti e dalla quantità. Il cilindro richiede solitamente circa 45-60 giorni, mentre il motore circa 30-50 giorni.
5. Potete realizzare parti in base alle esigenze o ai disegni del cliente?
R: Sì, possiamo realizzare prodotti OEM in base ai vostri disegni. I nostri ingegneri possono anche fornirvi supporto professionale per suggerimenti tecnici.
6. Quali sono le modalità di pagamento accettate?
R: Preferiamo il pagamento tramite bonifico bancario. 30% alla conferma dell'ordine e 70% prima della spedizione. La L/C è accettabile anche per importi superiori a 20.000 USD.
7. Qual è la vostra politica di garanzia?
R: Tutti i nostri prodotti sono garantiti per 1 anno intero dalla data di consegna contro difetti di materiali e lavorazione. Questa garanzia non copre i componenti usurati durante il normale funzionamento o danneggiati per negligenza. Ricordiamo vivamente che l'olio idraulico sporco causerà sicuramente danni ai componenti idraulici. Tali danni non sono inclusi nella garanzia. Pertanto, consigliamo vivamente di utilizzare olio nuovo e pulito o di assicurarsi che l'olio del sistema sia pulito quando si utilizzano i nostri componenti.
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| Certification: | GS, RoHS, CE, ISO9001 |
|---|---|
| Pressure: | Medium Pressure |
| Work Temperature: | High Temperature |
| Acting Way: | Double Acting |
| Working Method: | Straight Trip |
| Adjusted Form: | Regulated Type |
| Samples: |
US$ 3000/Piece
1 Piece(Min.Order) | |
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| Customization: |
Available
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Can hydraulic cylinders be integrated with advanced control systems and automation?
Yes, hydraulic cylinders can be integrated with advanced control systems and automation technologies to enhance their functionality, precision, and overall performance. The integration of hydraulic cylinders with advanced control systems allows for more sophisticated and precise control over their operation, enabling automation and intelligent control. Here’s a detailed explanation of how hydraulic cylinders can be integrated with advanced control systems and automation:
1. Electronic Control:
– Hydraulic cylinders can be equipped with electronic sensors and transducers to provide real-time feedback on their position, force, pressure, or velocity. These sensors can be integrated with advanced control systems, such as programmable logic controllers (PLCs) or distributed control systems (DCS), to monitor and control the operation of hydraulic cylinders. By integrating electronic control, the position, speed, and force of hydraulic cylinders can be precisely monitored and adjusted, allowing for more accurate and automated control.
2. Closed-Loop Control:
– Closed-loop control systems use feedback from sensors to continuously monitor and adjust the operation of hydraulic cylinders. By integrating hydraulic cylinders with closed-loop control systems, precise control over position, velocity, and force can be achieved. Closed-loop control enables the system to automatically compensate for variations, external disturbances, or changes in operating conditions, ensuring accurate and consistent performance. This integration is particularly beneficial in applications that require precise positioning, synchronization, or force control.
3. Proportional and Servo Control:
– Hydraulic cylinders can be integrated with proportional and servo control systems to achieve finer control over their operation. Proportional control systems use proportional valves to regulate the flow and pressure of hydraulic fluid, allowing for precise adjustment of cylinder speed and force. Servo control systems, on the other hand, combine feedback sensors, high-performance valves, and advanced control algorithms to achieve extremely precise control over hydraulic cylinders. Proportional and servo control integration enhances the responsiveness, accuracy, and dynamic performance of hydraulic cylinders.
4. Human-Machine Interface (HMI):
– Hydraulic cylinders integrated with advanced control systems can be operated and monitored through human-machine interface (HMI) devices. HMIs provide a graphical user interface that allows operators to interact with the control system, monitor cylinder performance, and adjust parameters. HMIs enable operators to set desired positions, forces, or velocities, and visualize the real-time feedback from sensors. This integration simplifies the operation and monitoring of hydraulic cylinders, making them more user-friendly and facilitating seamless integration into automated systems.
5. Communication and Networking:
– Hydraulic cylinders can be integrated into communication and networking systems, enabling them to be part of a larger automated system. Integration with industrial communication protocols, such as Ethernet/IP, Profibus, or Modbus, allows for seamless information exchange between the hydraulic cylinders and other system components. This integration enables centralized control, data logging, remote monitoring, and coordination with other automated processes. Communication and networking integration enhance the overall efficiency, coordination, and integration of hydraulic cylinders within complex automation systems.
6. Automation and Sequential Control:
– By integrating hydraulic cylinders with advanced control systems, they can be seamlessly incorporated into automated processes and sequential control operations. The control system can execute predefined sequences or programmed logic to control the operation of hydraulic cylinders based on specific conditions, inputs, or timing. This integration enables the automation of complex tasks, such as material handling, assembly operations, or repetitive motions. Hydraulic cylinders can be synchronized with other actuators, sensors, or devices, allowing for coordinated and automated operation in various industrial applications.
7. Predictive Maintenance and Condition Monitoring:
– Advanced control systems can also enable predictive maintenance and condition monitoring for hydraulic cylinders. By integrating sensors and monitoring capabilities, the control system can continuously monitor the performance, health, and condition of hydraulic cylinders. This integration allows for the detection of abnormalities, wear, or potential failures in real-time. Predictive maintenance strategies can be implemented based on the collected data, optimizing maintenance schedules, reducing downtime, and enhancing the overall reliability of hydraulic systems.
In summary, hydraulic cylinders can be integrated with advanced control systems and automation technologies to enhance their functionality, precision, and performance. The integration allows for electronic control, closed-loop control, proportional and servo control, human-machine interface (HMI) interaction, communication and networking, automation and sequential control, as well as predictive maintenance and condition monitoring. These integrations enable more precise control, automation, improved efficiency, and optimized performance of hydraulic cylinders in various industrial applications.

Ensuring Stable Performance of Hydraulic Cylinders Under Fluctuating Loads
Hydraulic cylinders are designed to provide stable performance even under fluctuating loads. They achieve this through various mechanisms and features that allow for efficient load control and compensation. Let’s explore how hydraulic cylinders ensure stable performance under fluctuating loads:
- Piston Design: The piston inside the hydraulic cylinder plays a crucial role in load control. It is typically equipped with seals and rings that prevent leakage of hydraulic fluid and ensure effective transfer of force. The piston design may incorporate features such as stepped or tandem pistons, which provide enhanced load-bearing capabilities and improved stability by distributing the load across multiple surfaces.
- Cylinder Cushioning: Hydraulic cylinders often incorporate cushioning mechanisms to minimize the impact and shock caused by fluctuating loads. Cushioning can be achieved through various methods, such as adjustable cushion screws, hydraulic cushioning valves, or elastomeric cushioning rings. These mechanisms slow down the piston’s movement near the end of the stroke, reducing the impact and preventing sudden stops that could lead to instability.
- Pressure Compensation: Fluctuating loads can result in pressure variations within the hydraulic system. To ensure stable performance, hydraulic cylinders are equipped with pressure compensation mechanisms. These mechanisms maintain a consistent pressure level in the system, regardless of load changes. Pressure compensation can be achieved through the use of pressure relief valves, compensating pistons, or pressure-compensated flow control valves.
- Flow Control: Hydraulic cylinders often incorporate flow control valves to regulate the speed of the cylinder’s movement. By controlling the flow rate of hydraulic fluid, the cylinder’s motion can be adjusted to match the changing load conditions. Flow control valves allow for smooth and controlled movement, preventing abrupt changes that could lead to instability.
- Feedback Systems: To ensure stable performance under fluctuating loads, hydraulic cylinders can be integrated with feedback systems. These systems provide real-time information on the cylinder’s position, velocity, and force. By continuously monitoring these parameters, the hydraulic system can make immediate adjustments to maintain stability and compensate for load fluctuations. Feedback systems can include position sensors, pressure sensors, or load sensors, depending on the specific application.
- Proper Sizing and Selection: Ensuring stable performance under fluctuating loads starts with proper sizing and selection of hydraulic cylinders. It is crucial to choose cylinders with appropriate bore size, rod diameter, and stroke length to match the anticipated load conditions. Oversized or undersized cylinders can lead to instability and reduced performance. Proper sizing also involves considering factors such as the required force, speed, and duty cycle of the application.
In summary, hydraulic cylinders ensure stable performance under fluctuating loads through features such as piston design, cushioning mechanisms, pressure compensation, flow control, feedback systems, and proper sizing and selection. These mechanisms and considerations allow hydraulic cylinders to provide consistent and controlled movement, even in dynamic load conditions, resulting in reliable and stable performance.

How do hydraulic cylinders handle variations in load, pressure, and speed?
Hydraulic cylinders are designed to handle variations in load, pressure, and speed effectively. They incorporate features and components that allow them to adapt to changing operating conditions and maintain optimal performance. Here’s a detailed explanation of how hydraulic cylinders handle variations in load, pressure, and speed:
Variations in Load:
– Hydraulic cylinders are capable of handling variations in load by adjusting the force they exert. The force output of a hydraulic cylinder is determined by the hydraulic pressure and the surface area of the piston. When the load increases, the pressure in the hydraulic system can be adjusted to generate a higher force. This adjustment can be achieved by regulating the flow of hydraulic fluid into the cylinder using control valves. By controlling the pressure and flow, hydraulic cylinders can adapt to different load requirements, ensuring that the force applied is sufficient to handle the load while preventing excessive force that could cause damage.
Variations in Pressure:
– Hydraulic cylinders are designed to handle variations in pressure within the hydraulic system. They are equipped with seals and other components that can withstand high-pressure conditions. When the pressure within the hydraulic system fluctuates, the hydraulic cylinder adjusts accordingly to maintain its performance. The seals prevent fluid leakage and ensure that the hydraulic pressure is effectively transmitted to the piston, allowing the cylinder to generate the required force. Additionally, hydraulic systems often incorporate pressure relief valves and other safety mechanisms to protect the cylinder and the entire system from overpressure conditions.
Variations in Speed:
– Hydraulic cylinders can handle variations in speed through the control of hydraulic fluid flow. The speed of a hydraulic cylinder’s extension or retraction is determined by the rate at which hydraulic fluid enters or exits the cylinder. By adjusting the flow rate using flow control valves, the speed of the cylinder’s movement can be regulated. This allows for precise control over the speed, enabling operators to adapt to varying speed requirements based on the specific task or load. Furthermore, hydraulic systems can incorporate flow control valves with adjustable orifice sizes to fine-tune the speed of the cylinder’s movement.
Load-Sensing Technology:
– Advanced hydraulic systems may incorporate load-sensing technology to further enhance the ability of hydraulic cylinders to handle variations in load, pressure, and speed. Load-sensing systems monitor the load demand and adjust the hydraulic pressure and flow accordingly to meet that demand. This technology ensures that the hydraulic cylinder provides the necessary force while optimizing energy efficiency. Load-sensing systems are particularly beneficial in applications where the load requirements can vary significantly, allowing hydraulic cylinders to adapt in real-time and maintain precise control over force and speed.
Accumulators:
– Hydraulic systems can also utilize accumulators to assist in handling variations in load, pressure, and speed. Accumulators store hydraulic fluid under pressure, which can be released when needed to supplement the flow and pressure in the system. When there are sudden increases in load or pressure demands, accumulators can provide additional fluid to the hydraulic cylinder, ensuring smooth operation and preventing pressure drops. Similarly, accumulators can assist in maintaining consistent speed by compensating for fluctuations in flow rate. They act as a supplemental energy source, helping hydraulic cylinders respond effectively to variations in operating conditions.
In summary, hydraulic cylinders handle variations in load, pressure, and speed through various mechanisms and components. They can adjust the force output to accommodate different load requirements by regulating hydraulic pressure. The seals and components within hydraulic cylinders allow them to withstand variations in pressure within the hydraulic system. By controlling the flow of hydraulic fluid, hydraulic cylinders can regulate the speed of their movement. Advanced technologies such as load-sensing systems and the use of accumulators further enhance the adaptability of hydraulic cylinders to changing operating conditions. These features and mechanisms enable hydraulic cylinders to maintain optimal performance and provide reliable force and motion control in a wide range of applications.


editor by CX 2024-01-16