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Deisel Forklift

This is a heavy-duty diesel fork designed specifically for heavy-duty cargo transportation applications, with high efficiency and low operating costs. It adopts excellent design, manufacturing technology, and reliable power and hydraulic systems
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CPCD7T
CPCD7T
CPCD7T
CPCD7T
CPCD7T
  • CPCD

  • NIULI

Detailed Introduction to CPCD7T Fuel-Powered Forklift

The CPCD7T is a widely used 7-ton internal combustion counterbalanced fuel-powered forklift. With its stable performance and strong power, it undertakes the core task of heavy cargo handling in various scenarios such as logistics and warehousing, industrial production, and ports and terminals, and is an important equipment for enterprises to improve operation efficiency. This document will provide a detailed explanation from the aspects of model interpretation, core parameters, performance characteristics, and mainstream brand models.

I. Model Meaning Interpretation

The model of CPCD7T consists of multiple letters and numbers, each part representing a specific attribute of the forklift. The specific meanings are as follows:
  • C: Core category identifier, representing "forklift", which is the unified classification prefix for this type of engineering vehicle.

  • P: Structural form identifier, representing "counterbalanced", which means balancing the front load through the counterweight at the rear of the forklift to ensure stable operation. It is the most widely used forklift structure type currently.

  • C: Power source identifier, representing "diesel engine", indicating that the forklift uses diesel as fuel, which is different from other power types of forklifts such as electric (D) and gasoline (Q).

  • D: Transmission mode identifier, representing "hydraulic transmission", which realizes power transmission through the hydraulic system, resulting in smoother operation, effectively reducing the labor intensity of the driver, and adapting to operation scenarios with frequent starts and stops.

  • 7: Rated load identifier, representing that the rated lifting capacity of the forklift is 7 tons, which is the core parameter for measuring the load-bearing capacity of the forklift.

  • T: Series/improvement identifier, usually a custom symbol of the manufacturer, which may represent a specific product series, technical improvement version, or adapted operation environment type. The definition may vary among different brands.

II. Core Technical Parameters

The parameters of CPCD7T determine its operation capacity and applicable scenarios. The following are the typical technical parameters of this model of forklift (there may be slight differences among different brands and models, please refer to the specific product manual for details):
Parameter Category
Specific Indicators
Description
Load-Bearing Capacity
Rated Load Capacity: 7000kg, Load Center Distance: 600mm
Load center distance refers to the distance from the center of gravity of the cargo to the front end of the vertical section of the fork, which is an important reference benchmark for load-bearing capacity.
Lifting Performance
Standard Lifting Height: 3000mm, Customizable Heightening
According to the height requirements of warehouse shelves, some manufacturers can provide customized versions with a lifting height of 4-6m.
Driving Performance
No-Load Speed: 26-29km/h, Loaded Speed: 20-26km/h (Some models such as Niuli CPCD7T have a unified speed of 24km/h)
To ensure safety when loaded, the driving speed will be appropriately reduced, and some models are equipped with speed adjustment functions.
Power System
Engine Rated Power: About 85kW (The Isuzu A-6BG1QC engine equipped in Niuli CPCD7T is 82.3kW)
Mainstream models are equipped with well-known brand engines such as Xichai, Yuchai, and Isuzu, which have strong power and high reliability.
Mast Performance
Forward Tilt: 6°, Backward Tilt: 12°
Forward tilt facilitates picking and placing goods, while backward tilt improves stability when carrying heavy loads and prevents goods from sliding off.
Steering System
Full Hydraulic Steering or Hydraulic Power Steering
The steering is light and flexible, with a minimum turning radius of about 3.45-6m (Niuli CPCD7T is 3450mm, with large differences among different brands), adapting to operations in narrow spaces.

III. Core Performance Characteristics

As a heavy-duty forklift, the performance design of CPCD7T focuses on the four core goals of "high efficiency, stability, convenience, and durability". The specific characteristics are as follows:

1. Strong Power and Outstanding Heavy-Load Capacity

Equipped with a large-displacement diesel engine, some models are equipped with Yuchai Bosch high-pressure common rail engines or Isuzu 6BG1 engines, which have the characteristics of large torque and stable power output. They can easily meet the handling needs of 7-ton rated load and maintain good power performance even under complex working conditions such as ramps and muddy roads, ensuring that the operation efficiency is not affected.

2. Convenient Operation and Optimized Driving Experience

Adopting a hydraulic transmission system combined with electro-hydraulic reversing technology, the shifting operation is simple, no frequent clutch pedaling is required, which effectively reduces the labor intensity of the driver. Some high-end models are equipped with suspended seats, adjustable steering wheels, and humanized operation panels, with key operation buttons centrally arranged to improve operation convenience. The cab has a wide field of vision, which is convenient for the driver to observe the forks and the surrounding environment, reducing operation risks.

3. Stable Structure and Comprehensive Safety Guarantee

It inherits the classic counterbalanced structure. By optimizing the wheelbase (usually 2800-3000mm) and track design, combined with the weighted counterweight at the rear, the anti-rollover ability during loaded operation is greatly improved. It is equipped with a dual protection system of service brake and parking brake. Some models are also equipped with load sensing devices, which automatically issue an alarm and restrict lifting actions when overloaded, avoiding safety risks from the source.

4. Convenient Maintenance and Controllable Operation Cost

The engine hood is generally equipped with an air spring device, which is easy to open and close without tools, facilitating regular inspection and maintenance of the engine compartment. Key wearing parts such as filters and brake pads adopt a generalized design, which is easy to replace and has sufficient spare parts supply, reducing maintenance waiting time. Mainstream engines adopt energy-saving technologies, with good fuel economy, effectively controlling long-term operation costs.

IV. Mainstream Brands and Representative Models

At present, the mainstream brands of CPCD7T series forklifts are mostly well-known domestic forklift manufacturers. Their products have their own advantages in performance and reliability. The following are some representative brands and models (ranked by market attention and adaptability):

1. Niuli CPCD7T Fuel-Powered Model

As the largest R&D, manufacturing and export base of logistics handling equipment in South China, Niuli Machinery is an influential brand in the domestic forklift field. Its CPCD7T fuel-powered model is known for its high cost-effectiveness and strong adaptability. Specially designed for medium and heavy industrial handling scenarios, it is widely used in building materials markets, medium-sized warehouses and processing and manufacturing workshops. This model strictly complies with industry standards and has balanced core parameters and performance. The specific characteristics are as follows:
In terms of power configuration, the Niuli CPCD7T can be equipped with well-known brand diesel engines (optional Isuzu A-6BG1QC, etc.), with a rated power of 82.3kW and a maximum torque of 416N·m. The 6-cylinder large-displacement design ensures stable and sufficient power output, which can easily meet the 7-ton rated load and climbing requirements of 20% slope, and maintain high-efficiency performance even under continuous operation conditions. The hydraulic transmission system combined with optimized shifting logic ensures smooth operation and low failure rate, reducing the driver's operation threshold.
In terms of structure and size design, this model inherits the classic counterbalanced layout, with a wheelbase of 2250mm, an overall width of 1995mm, and a minimum turning radius of 3450mm. While ensuring heavy-load stability, it can adapt to the space requirements of most industrial sites. The high-strength forks with specifications of 1220mm×150mm×65mm have a maximum outer spacing of 1845mm, which can match various pallets. The mast tilt angle of 6° forward and 12° backward improves the convenience and safety of picking and placing goods. The standard lifting height is 3000mm, and customized heightening versions are available according to needs.
The practical and safety configurations are complete. The 140L large-capacity fuel tank reduces the frequency of refueling and meets the needs of long-term continuous operation. The dual protection of service brake and parking brake, and the 2500mm high safety frame provide comprehensive protection for the driver. The modular body design makes the engine compartment easy to open, the key maintenance components are reasonably arranged, the wearing parts have strong versatility and sufficient spare parts supply, which effectively reduces the later maintenance cost.
Equipped with a Xichai 4DF3 engine with a rated power of 85kW, it has strong power output. It is matched with an automatic transmission, which is easier to operate and suitable for new drivers to get started quickly. The fork specification is 1220mm×150mm×65mm, and forks of different sizes can be replaced according to needs, adapting to various cargo handling scenarios. It is commonly used in heavy-load operation environments such as ports and terminals.

2. NIULI CPCD70

It highlights intelligent features, equipped with a digital intelligent driving monitoring system, which can display key parameters such as engine speed, water temperature, and oil pressure in real time, facilitating drivers and managers to grasp the equipment operation status. It adopts a full hydraulic flexible steering system, with small steering resistance and comfortable operation. The body is welded with high-strength steel, which is durable and suitable for long-term high-intensity operation in industrial scenarios.

V. Summary of Applicable Scenarios

With its 7-ton heavy-load capacity and stable operation performance, the CPCD7T is mainly suitable for the following scenarios: ① Large manufacturing workshops, used for handling raw materials, semi-finished products and finished products; ② Logistics and warehousing centers, used for accessing heavy goods with high shelves; ③ Ports, terminals and freight stations, used for short-distance transportation of containers and bulk goods; ④ Building materials, metallurgy and other industries, used for handling heavy materials such as steel and stone.


Is a Forklift Safe?

The safety of a forklift is relative, and it depends on three core factors: the safety design of the equipment itself, the standardized operation of the operator, and the safety management of the working environment. Combined with the Niuli CPCD7T fuel-powered forklift you are concerned about, we can analyze it from the following two aspects:

I. Built-in Safety Configurations (Hardware Protection)

Whether it is a heavy-duty fuel-powered forklift like the Niuli CPCD7T or other models, regular manufacturers will equip basic safety devices to reduce operational risks:
  1. Dual Brake System

    Standard equipped with service brake (foot brake) + parking brake (hand brake). Some models are also installed with an emergency stop switch, which can quickly stop the vehicle in case of emergencies and avoid out-of-control situations.

  2. Safety Protection Structures

    • A safety overhead guard is equipped above the driver's head, which can resist the risk of falling goods and impact from foreign objects above. The height of the overhead guard of Niuli CPCD7T reaches 2500mm, providing sufficient protection coverage.

    • The forks are equipped with limit devices to prevent goods from sliding sideways; the limited forward/backward tilt angles of the mast (6°/12°) avoid rollover caused by excessive tilting of the mast under heavy load.

  3. Stability Design

    The counterbalanced structure is the core safety design of forklifts. The Niuli CPCD7T optimizes the wheelbase (2250mm) and counterweight, resulting in a lower center of gravity when fully loaded, which enhances its anti-rollover capability. With a minimum turning radius of 3450mm, it operates more flexibly in narrow spaces and reduces the risk of collision.

  4. Early Warning and Monitoring Devices

    Some high-end models are equipped with additional devices such as load alarm (which sounds an alarm and restricts lifting when overloaded), reverse buzzer, and rearview mirrors, improving the operator's environmental awareness during operation.

II. Key External Factors Affecting Safety (Human + Environment)

Even if the equipment is fully equipped with safety configurations, the following two points directly determine the safety of the forklift:
  1. Professionalism of the Operator

    • Unauthorized operation without training is the biggest safety hazard. Illegal operations such as speeding, sharp turns and sudden stops, overloaded handling, and carrying both goods and passengers can easily lead to accidents like rollover and falling goods.

    • Standard operation requirements: Check the braking and steering systems before starting; keep goods at a low position during driving; slow down when turning; it is strictly forbidden to carry passengers.

  2. Safety of the Working Environment

    • Ground conditions: Flat and hardened ground can prevent the forklift from jolting and slipping; uneven or slippery ground will greatly increase the risk of rollover.

    • Space and obstacles: The width of the passage must match the size of the forklift (the total width of Niuli CPCD7T is 1995mm) to avoid collision with shelves, walls, etc. Clear driving routes and operation areas should be divided in the warehousing area.




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