Product Description
China Factory Directly Provide Large Forklift Spare Part Steering Hydraulic Oil Cylinder with Sensor
Product Specifications :
| Item | Specifications |
| Bore diameter | 60mm~500mm |
| Bod diameter | 30mm~450mm |
| Stroke | 100mm~600mm |
| Woorking Pressure | 17-40Mpa,Customizable |
| Surface treatment of piston rod | HaHard Chrome Plating,Electroplated Milky White Chromium+Hard Chromium,Nickel Plating+Hard Chromium Plating,High-Velocity Oxygen-Fuel CrC NiC,Ceramic Coating,Nitriding,Laser Cladding |
| Material | High tensile cold drawn tube, precision honed for extended seal life |
| Mounting | Earring,Flange,Clevis.Foot,Trunnion,Customizable |
| Seal Type | Parker,NOK, Hallite GAPI or as customer’s requirement |
| Warrenty | 18 months |
| MOQ | 1pcs |
| Production Time | Based on order quantity.normally 30-40 days. |
| Certification | ISO9001,CE, SGS |
| Color | Gery,Yellow,Red,Black,Customizable |
| Packaging | metal case,plywood case,carton or as requirement |
| Service | OEM & ODM |
| Price Advantage | Competitive factory price with guaranteed quality |
| Business Type | Manufacturer |
Product Detail:
The built-in sensor of the steering cylinder is used to accurately measure the steering displacement of large forklifts.
Mounting Method:
Appliactions: Walking Machinery,Large Forklift.
Other Products:
Our Factory:
Inspection Process:
| Inspection Type | Inspection Standard |
| Raw Material Inspection | Before storage, QC takes the measurement of the raw materials. |
| Process Material Inspection | During the production, QCs conduct a random inspection. Before the hydraulic cylinder parts transferred to the next process, QCs takes inspection. |
| Final Function Testing | All the hydraulic cylinders take hydraulic function test |
Inspection of Mechanical Properties of Raw Materials
Process Material Inspection
Final Function Testing
Packing & Delivery:
About US:
Our Certificate
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.
If possible, when contact with us, please apply information as below
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Bore |
Rod |
Stroke |
Work Pressure |
Mounting |
Work environment |
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Or you can offer us your sketch diagram or photos so that we could understand you exactly meaning, help us avoid mistakes.
And if you have samples, we can manufacture according to your samples after sending to us.
Welcome to our factory if you have any time.
Your satisfaction is our biggest motivation.
Now, you can contact with us for any question or inquiry.
FAQ:
1, What does your company do?
A: we are a supplier of high quality hydraulic products including Hydraulic Cylinder, Hydraulic Motor, Hydraulic Power Pack, Hydraulic station and other Hydraulic components.
2, Are you a manufacture or a trading company?
A: We are a manufacturer.
3, What certificate do you have?
A: All our factories are ISO certificated. And our main suppliers of materials and parts are with CE, RoHS, CSA and UL certificates.
4, How long is your delivery time?
A: The delivery time depends on different products and quantity. The cylinder usually need about 45-60 days and the Motor need about 30-50 days.
5, Can you make parts as customer’s requirement or drawing?
A: Yes, we can OEM for you as your drawings. Our engineer also can give you professional support for technical suggestions.
6, What kind of payment terms do you accept?
A: We prefer T/T through bank. 30% when order is confirmed and 70% before shipment. L/C is also acceptable for amount over 20,000USD.
7, What is your warranty policy?
A: All our products are warranted for 1 full year from date of delivery against defects in materials and workmanship. This warranty does not cover parts that are worn out through the course of normal operation or are damaged through negligence. We serious remind that unclean hydraulic oil will definitely cause damage to your Hydraulic components. And this damage is not included in the warranty range. So we strongly suggest you to use new clean oil or make sure the system oil are clean when using our parts
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| Certification: | GS, RoHS, CE, ISO9001 |
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| Pressure: | Medium Pressure |
| Work Temperature: | High Temperature |
| Acting Way: | Double Acting |
| Working Method: | Straight Trip |
| Adjusted Form: | Regulated Type |
| Samples: |
US$ 600/Set
1 Set(Min.Order) | |
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| Customization: |
Available
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How does a forklift hydraulic cylinder handle variations in cylinder size?
A forklift hydraulic cylinder is designed to handle variations in cylinder size and accommodate different lifting capacities. Here’s an explanation of how it achieves this:
The hydraulic cylinder’s ability to handle variations in cylinder size is primarily dependent on its design and the following factors:
1. Piston Diameter:
The piston diameter of the hydraulic cylinder determines the lifting force it can generate. Forklift hydraulic cylinders are designed with different piston diameters to accommodate various load capacities. Larger piston diameters provide higher lifting capacities, while smaller diameters are suitable for lighter loads. The cylinder is designed and manufactured to match the required lifting capacity based on the forklift’s specifications.
2. Cylinder Construction:
The hydraulic cylinder is constructed to withstand the forces exerted during lifting operations. The materials used in its construction, such as high-strength steel, are selected based on the anticipated load capacities. The cylinder’s structural integrity ensures that it can handle the stress and pressure exerted during lifting, regardless of the cylinder size.
3. Hydraulic System Pressure:
The hydraulic system pressure plays a crucial role in determining the lifting capacity of the cylinder. By increasing or decreasing the pressure of the hydraulic fluid, the lifting force generated by the cylinder can be adjusted. The forklift’s hydraulic system is designed to provide sufficient pressure to match the lifting requirements of different cylinder sizes.
4. Control Valves and Flow:
The forklift’s hydraulic system incorporates control valves that regulate the flow of hydraulic fluid to the cylinder. These valves allow the operator to control the speed and force of the cylinder’s extension and retraction. By adjusting the flow rate, the lifting capacity can be tailored to suit the specific cylinder size and the load being lifted.
5. Sealing Mechanisms:
The hydraulic cylinder incorporates seals to prevent fluid leakage and maintain pressure. These seals, designed to accommodate different cylinder sizes, ensure a proper seal between the piston and cylinder barrel. They are selected based on the specific requirements of the cylinder size to maintain optimal performance and prevent leakage.
In summary, a forklift hydraulic cylinder handles variations in cylinder size by incorporating design elements such as piston diameter, appropriate construction materials, hydraulic system pressure, control valves, and sealing mechanisms. These factors work together to ensure that the cylinder can generate the required lifting force and withstand the forces exerted during lifting operations, regardless of the cylinder size.

How does a forklift hydraulic cylinder contribute to load tilt control?
A forklift hydraulic cylinder plays a significant role in load tilt control, allowing for precise adjustment and manipulation of the load angle. Here’s an explanation of how the hydraulic cylinder contributes to load tilt control:
The forklift hydraulic cylinder contributes to load tilt control in the following ways:
1. Tilt Angle Adjustment:
The hydraulic cylinder is responsible for controlling the tilt angle of the forklift’s mast and forks. By extending or retracting the hydraulic cylinder, the operator can adjust the tilt angle of the load. This adjustment enables the forklift to safely handle loads of different shapes, sizes, and weights, ensuring optimal stability during transport and stacking operations.
2. Smooth and Controlled Movement:
The hydraulic cylinder provides smooth and controlled movement during load tilting. The hydraulic system, consisting of the cylinder and hydraulic fluid, allows for precise control of the cylinder’s extension and retraction speed. This controlled movement ensures that the load tilt is gradual, minimizing the risk of sudden shifts or instability that could lead to accidents or damage to the load.
3. Load Stabilization:
Load tilt control is essential for load stabilization. The hydraulic cylinder allows the operator to adjust the tilt angle to ensure proper weight distribution and balance of the load. By tilting the load in the desired direction, the forklift can securely hold and transport the load without compromising stability. This contributes to safe and efficient material handling operations.
4. Precise Positioning:
The hydraulic cylinder enables precise positioning of the load during tilting. By fine-tuning the extension or retraction of the cylinder, the operator can achieve the desired tilt angle with accuracy. This precise positioning is particularly important when dealing with fragile or sensitive loads that require careful handling to prevent damage.
5. Operator Control:
The forklift operator has control over the hydraulic cylinder, allowing them to adjust the load tilt as needed. The operator can use hydraulic controls within the forklift’s cabin to extend or retract the cylinder, thereby adjusting the load tilt angle. This control provides flexibility and adaptability in various material handling scenarios.
In summary, a forklift hydraulic cylinder contributes to load tilt control by allowing for tilt angle adjustment, providing smooth and controlled movement, ensuring load stabilization, enabling precise positioning, and giving the operator control over load tilt adjustments. These features enhance safety, stability, and efficiency during material handling operations, ensuring that loads are securely transported and properly positioned.

How Does a Forklift Hydraulic Cylinder Handle Variations in Lift Height?
A forklift hydraulic cylinder is responsible for raising and lowering the forks or lifting platform, allowing the forklift to handle loads at different heights. It handles variations in lift height through a combination of design features and hydraulic principles. Here’s a detailed explanation of how a forklift hydraulic cylinder handles variations in lift height:
1. Piston and Cylinder Design:
The hydraulic cylinder consists of a piston and a cylinder, which are sealed together to form a closed hydraulic system. The piston is connected to the forks or lifting platform, while the cylinder is fixed to the forklift frame. The design of the piston and cylinder allows for smooth movement and effective transfer of hydraulic pressure to generate lifting force.
2. Hydraulic Fluid and Pressure:
The hydraulic cylinder operates on the principle of Pascal’s Law, which states that when pressure is applied to a fluid in a closed system, it is transmitted equally in all directions. In the case of a forklift hydraulic cylinder, hydraulic fluid is used as the medium to transmit pressure. When hydraulic fluid is pumped into the cylinder, it creates pressure on the piston, causing it to move upward and lift the forks or lifting platform.
3. Cross-Sectional Area and Force:
The cross-sectional area of the piston within the hydraulic cylinder determines the force that can be exerted. A larger piston area can generate a greater lifting force. By varying the diameter of the piston, forklift manufacturers can adjust the lifting capacity and handle variations in lift height. Forklifts designed for heavier loads typically have larger piston areas to generate the necessary lifting force.
4. Valves and Controls:
The hydraulic system of a forklift includes valves and controls that regulate the flow of hydraulic fluid to the cylinder. These valves, such as control valves and relief valves, allow for precise control of the lifting operation. By adjusting the valves, operators can control the speed of ascent and descent, enabling smooth and controlled variations in lift height.
5. Telescopic Cylinders:
In some forklift designs, especially those used for high-reach applications, telescopic cylinders are employed. Telescopic cylinders consist of several nested stages that extend and retract, providing increased lift height. These cylinders allow for a compact design when retracted while offering extended reach when fully extended. Telescopic cylinders enable forklifts to handle variations in lift height without compromising stability or requiring excessively long cylinder strokes.
6. Stability and Counterbalancing:
Handling variations in lift height requires maintaining forklift stability. Forklifts are designed with counterweight systems to balance the load and prevent tipping. The hydraulic cylinder’s operation is coordinated with the counterweight system, ensuring that the center of gravity remains within safe limits during lifting and lowering operations. This counterbalancing helps maintain stability even when handling loads at different heights.
Through careful design, hydraulic principles, and the integration of valves and controls, a forklift hydraulic cylinder effectively handles variations in lift height. The combination of hydraulic pressure, piston and cylinder design, control mechanisms, and counterbalancing ensures precise and controlled lifting operations, allowing forklifts to safely handle loads at different heights as required in various material handling applications.


editor by CX 2024-02-04