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 modern telematics and remote monitoring?
Yes, hydraulic cylinders can indeed be integrated with modern telematics and remote monitoring systems. The integration of hydraulic cylinders with telematics and remote monitoring technology offers numerous benefits, including enhanced operational efficiency, improved maintenance practices, and increased overall productivity. Here’s a detailed explanation of how hydraulic cylinders can be integrated with modern telematics and remote monitoring:
1. Integrazione dei sensori:
– Hydraulic cylinders can be equipped with various sensors to gather real-time data about their performance and operating conditions. Sensors such as pressure transducers, temperature sensors, position sensors, and load sensors can be integrated directly into the cylinder or its associated components. These sensors provide valuable information about parameters such as pressure, temperature, position, and load, enabling remote monitoring and analysis of the cylinder’s behavior.
2. Data Transmission:
– The data collected from the sensors in hydraulic cylinders can be transmitted wirelessly or through wired connections to a central monitoring system. Wireless communication technologies such as Bluetooth, Wi-Fi, or cellular networks can be employed to transmit data in real-time. Alternatively, wired connections such as Ethernet or CAN bus can be utilized for data transmission. The choice of communication method depends on the specific requirements of the application and the available infrastructure.
3. Remote Monitoring Systems:
– Remote monitoring systems receive and process the data transmitted from hydraulic cylinders. These systems can be cloud-based or hosted on local servers, depending on the implementation. Remote monitoring systems collect and analyze the data to provide insights into the cylinder’s performance, health, and usage patterns. Operators and maintenance personnel can access the monitoring system through web-based interfaces or dedicated software applications to view real-time data, receive alerts, and generate reports.
4. Condition Monitoring and Predictive Maintenance:
– Integration with telematics and remote monitoring enables condition monitoring and predictive maintenance of hydraulic cylinders. By analyzing the collected data, patterns and trends can be identified, allowing for the detection of potential issues or anomalies before they escalate into major problems. Predictive maintenance algorithms can be applied to the data to generate maintenance schedules, recommend component replacements, and optimize maintenance activities. This proactive approach helps prevent unexpected downtime, reduces maintenance costs, and maximizes the lifespan of hydraulic cylinders.
5. Performance Optimization:
– The data collected from hydraulic cylinders can also be utilized to optimize their performance. By analyzing parameters such as pressure, temperature, and load, operators can identify opportunities for improving operational efficiency. Insights gained from the remote monitoring system can guide adjustments in system settings, load management, or operational practices to optimize the performance of hydraulic cylinders and the overall hydraulic system. This optimization can result in energy savings, improved productivity, and reduced wear and tear.
6. Integration with Equipment Management Systems:
– Telematics and remote monitoring systems can be integrated with broader equipment management systems. This integration allows hydraulic cylinder data to be correlated with data from other components or related machinery, providing a comprehensive view of the overall system’s performance. This holistic approach enables operators to identify potential interdependencies, optimize system-wide performance, and make informed decisions regarding maintenance, repairs, or upgrades.
7. Enhanced Safety and Fault Diagnosis:
– Telematics and remote monitoring can contribute to enhanced safety and fault diagnosis in hydraulic systems. Real-time data from hydraulic cylinders can be used to detect abnormal conditions, such as excessive pressure or temperature, which may indicate potential safety risks. Fault diagnosis algorithms can analyze the data to identify specific issues or malfunctions, enabling prompt intervention and reducing the risk of catastrophic failures or accidents.
In summary, hydraulic cylinders can be effectively integrated with modern telematics and remote monitoring systems. This integration enables the collection of real-time data, remote monitoring of performance, condition monitoring, predictive maintenance, performance optimization, integration with equipment management systems, and enhanced safety. By harnessing the power of telematics and remote monitoring, hydraulic cylinder users can achieve improved efficiency, reduced downtime, optimized maintenance practices, and enhanced overall productivity in various applications and industries.

Ensuring Controlled and Safe Force Application in Heavy Machinery with Hydraulic Cylinders
Hydraulic cylinders play a critical role in heavy machinery by ensuring controlled and safe force application. The ability to exert and control high forces is essential for heavy machinery operations, such as lifting, pressing, pushing, or pulling heavy loads. Let’s explore how hydraulic cylinders ensure controlled and safe force application in heavy machinery:
- Force Control: Hydraulic cylinders provide precise force control capabilities. The hydraulic system’s pressure can be adjusted to regulate the force exerted by the cylinder. This control allows operators to apply the necessary force for a specific task while ensuring it remains within safe limits. By accurately controlling the force, hydraulic cylinders help prevent excessive force that could damage the machinery or compromise the safety of the operation.
- Load Balancing: In heavy machinery, multiple hydraulic cylinders are often used in conjunction to distribute and balance the applied force. By using multiple cylinders, the load can be evenly distributed across the machinery, minimizing stress concentrations and ensuring controlled force application. This load balancing approach enhances the stability and safety of the machinery, preventing uneven loading that could lead to structural issues or instability.
- Safety Valves: Hydraulic systems in heavy machinery are equipped with safety valves to protect against excessive force or overloading. Safety valves are designed to release hydraulic fluid from the cylinder when the force exceeds a predetermined threshold. This prevents the force from reaching dangerous levels, safeguarding the machinery and preventing potential accidents or damage. Safety valves provide an additional layer of safety and ensure controlled force application even in unexpected circumstances.
- Pressure Relief Systems: Hydraulic cylinders incorporate pressure relief systems to further enhance safety. These systems are designed to relieve excess pressure in the hydraulic system, which could occur due to factors such as thermal expansion or system malfunctions. By relieving excess pressure, the pressure relief systems prevent sudden and uncontrolled force surges, maintaining safe and controlled force application in heavy machinery.
- Structural Integrity: Hydraulic cylinders are designed to withstand the high forces and loads associated with heavy machinery applications. The cylinders are constructed using robust materials, such as high-strength steel, and undergo rigorous testing to ensure their structural integrity. This ensures that the cylinders can safely handle the forces applied during heavy machinery operations without experiencing failures or deformations that could compromise the safety and controlled force application.
In summary, hydraulic cylinders ensure controlled and safe force application in heavy machinery through force control, load balancing, safety valves, pressure relief systems, and robust structural design. These features and design considerations enable operators to exert the necessary force while maintaining safety and preventing excessive loads or force surges. By incorporating hydraulic cylinders into heavy machinery, manufacturers can achieve controlled force application, enhance operational safety, and protect the machinery from damage or failure.

What factors should be considered when selecting the right hydraulic cylinder for an application?
When selecting the right hydraulic cylinder for an application, several important factors need to be considered. These factors help ensure that the chosen hydraulic cylinder is suitable for the specific requirements of the application and will perform reliably. Here are the key factors to consider:
1. Load Requirements:
– One of the crucial factors to consider is the load requirement of the application. Determine the maximum load that the hydraulic cylinder needs to handle. Consider both the static load (when the cylinder is stationary) and the dynamic load (when the cylinder is in motion). The load requirement will impact the cylinder’s bore size, rod diameter, and overall strength. Choose a hydraulic cylinder with a load capacity that exceeds the application’s maximum load to ensure safety and longevity.
2. Stroke Length:
– The stroke length refers to the distance the hydraulic cylinder needs to extend and retract to perform the desired motion. Measure the required stroke length based on the application’s operational requirements. It is essential to choose a hydraulic cylinder with a stroke length that matches or exceeds the required distance. Consider any potential variations or adjustments in the stroke length that may be needed in the future.
3. Operating Pressure:
– Consider the operating pressure required for the application. The hydraulic cylinder must be capable of withstanding the maximum pressure within the hydraulic system. Ensure that the selected cylinder has a pressure rating that exceeds the application’s maximum operating pressure. This ensures safety and prevents premature failure.
4. Speed Requirements:
– Determine the required speed of the hydraulic cylinder’s movement for the application. Consider both the extension and retraction speeds. Select a cylinder that can achieve the desired speed while maintaining precise control and stability. It is important to choose a cylinder that can handle the required speed without compromising performance or safety.
5. Mounting:
– Evaluate the available space and mounting requirements for the hydraulic cylinder. Consider the mounting type (such as flange, foot, trunnion, or clevis), the available mounting points, and any specific mounting constraints. Ensure that the selected cylinder can be easily and securely mounted in the desired location.
6. Environmental Factors:
– Assess the environmental conditions in which the hydraulic cylinder will operate. Consider factors such as temperature extremes, humidity, exposure to chemicals, dust, or corrosive substances. Choose a cylinder that is designed to withstand the specific environmental conditions of the application. This may involve selecting appropriate materials, coatings, or seals to ensure the longevity and performance of the cylinder.
7. Cylinder Configuration:
– Determine the appropriate cylinder configuration based on the application’s requirements. Consider factors such as single-acting or double-acting cylinders, telescopic cylinders for limited space, or custom configurations for unique applications. Evaluate the specific needs of the application to select the most suitable cylinder configuration.
8. Maintenance and Serviceability:
– Consider the maintenance and service requirements of the hydraulic cylinder. Evaluate factors such as ease of access for maintenance, availability of spare parts, and the reputation of the manufacturer or supplier in terms of customer support and after-sales service. Choosing a reliable and reputable brand can ensure ongoing support and availability of spare parts when needed.
9. Compliance and Standards:
– Depending on the industry and application, certain compliance standards may need to be met. Consider any industry-specific regulations, safety standards, or certifications that the hydraulic cylinder should comply with. Ensure that the selected cylinder meets the required standards and certifications for the application.
10. Cost and Budget:
– Finally, consider the cost and budget for the hydraulic cylinder. While it is important to select a cylinder that meets the application’s requirements, it is also necessary to consider the overall cost-effectiveness. Evaluate the initial purchase cost, long-term maintenance costs, and the expected lifespan of the cylinder. Balancing the cost and quality will help in selecting a hydraulic cylinder that provides the best value for the application.
By considering these factors in the selection process, it becomes possible to choose the right hydraulic cylinder that meets the specific requirements of the application in terms of load capacity, stroke length, operating pressure, speed, mounting, environmental conditions, maintenance needs, compliance, and cost-effectiveness. Proper selection ensures optimal performance, reliability, and longevity of the hydraulic cylinder in the intended application.


editor by CX 2024-01-17