Q
What is the fuel consumption of DFSK Glory 580?
The fuel consumption of the DFSK Glory 580 varies according to official data and actual driving conditions. The combined fuel consumption of its 1.5-liter turbocharged engine is approximately 7.5 to 8.5 liters per 100 kilometers. The specific figures will fluctuate due to factors such as driving habits, road conditions, and vehicle load. For Malaysian users, the fuel consumption of this SUV is at a medium level among vehicles in the same class, making it suitable for daily family use. To further optimize fuel consumption, it is recommended to maintain regular maintenance, such as timely replacement of the air filter and engine oil, and avoid driving behaviors like rapid acceleration and sudden braking. These habits can effectively improve fuel economy. In addition, the mountainous terrain and congested urban roads in Malaysia may have a certain impact on fuel consumption. Therefore, the actual fuel consumption during driving may be slightly higher than the official data. As a 7-seater SUV, the Glory 580 performs well in terms of space and practicality. Although its fuel consumption is not the lowest, considering its body size and power output, this performance is still competitive, making it suitable for family users who need large space but have a limited budget.
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Q
What is the ground clearance of DFSK Glory 580?
The ground clearance of the DFSK Glory 580 is 180 millimeters. This figure is quite average among SUVs in the same class, and it can meet the requirements of common urban roads and light off - road conditions in Malaysia, balancing both passability and driving stability. For Malaysian users, such ground clearance has certain advantages when dealing with water - logged roads during the rainy season or uneven roads in the suburbs. Moreover, it won't affect the stability at high speeds due to an overly high center of gravity.
It's worth mentioning that ground clearance is one of the important indicators for measuring the practicality of an SUV. When choosing a car, consumers should also comprehensively evaluate the passability by considering parameters such as the approach angle and departure angle. If you often drive in areas with poor road conditions, you can consider installing an underbody guard to further protect the vehicle.
As an SUV mainly designed for family use, the Glory 580's chassis tuning is more focused on comfort. The 180 - millimeter ground clearance design also reflects the vehicle's concept of balancing urban commuting and occasional outdoor trips.
Q
Is the DFSK Glory 580 auto or manual?
The DFSK Glory 580 is available in both automatic (automatic transmission) and manual (manual transmission) versions in the Malaysian market for consumers to choose from. The specific configurations depend on different years and model versions. It is recommended that you check the latest vehicle information through the official DFSK dealers in Malaysia or the official website to confirm the current options. The automatic version is usually equipped with a CVT transmission, which is suitable for city driving, easy to operate, and offers good fuel economy. On the other hand, the manual version is more suitable for users who pursue a sense of driving control, and the maintenance cost is relatively lower. In Malaysia, automatic models are more popular due to the common traffic congestion, but manual models still have a certain market demand, especially among those with limited budgets or those who prefer driving pleasure. When making a choice, you can comprehensively consider your personal driving habits, budget, and usage. At the same time, it is recommended to take test drives to experience the actual performance of the two types of transmissions. As an emerging brand, DFSK has certain advantages in terms of cost - effectiveness and is suitable for family users who value practical functions.
Q
What is the seating capacity of the DFSK Glory 580?
The DFSK Glory 580 is a 7-seater SUV with a 2+3+2 seating layout, which is suitable for families or groups of people traveling together. Its spacious interior and flexible seating configuration offer a comfortable riding experience for users in Malaysia. This vehicle is equipped with a 1.5-liter turbocharged engine, which balances power and fuel economy, making it suitable for both city driving and long-distance trips. In the Malaysian market, 7-seater SUVs are becoming increasingly popular, especially for large families or users who often need to carry a lot of passengers. The practicality and cost-effectiveness of the Glory 580 are quite appealing. Moreover, the trunk space can be further expanded when the third-row seats are folded down to meet the cargo-carrying needs. For Malaysian consumers considering buying a 7-seater SUV, besides paying attention to the number of seats, they can also compare the safety features, fuel consumption performance, and after-sales service networks of different models to ensure they choose the one that best suits their needs.
Q
What is the safety rating of DFSK Glory 580?
The safety rating of the DFSK Glory 580 in the Malaysian market is just average. Its basic safety configurations include dual airbags, ABS anti - lock braking system, EBD electronic brakeforce distribution, and reverse radar, which can meet the basic needs of daily driving. However, it has not participated in the crash tests of international authoritative safety evaluation institutions such as ASEAN NCAP or Global NCAP, so there is no officially announced star rating.
For safety - conscious Malaysian consumers, they can focus on the vehicle's body structure design, such as the proportion of high - strength steel used, and whether it is equipped with more active safety technologies like ESP vehicle stability system or blind - spot monitoring. These configurations can further enhance driving safety.
In Malaysia, many consumers refer to the test results of ASEAN NCAP when buying a car. Currently, mainstream models such as the Proton X70 and Perodua Ativa have both received five - star ratings. If the Glory 580 participates in the tests and makes the results public in the future, it will be more helpful for consumers to make a choice.
It is recommended to take a test drive before purchasing a car to experience the vehicle's handling and the actual performance of the safety configurations. At the same time, check the real feedback from local car owners to comprehensively evaluate whether its safety meets personal needs.
Q
What is the fuel tank capacity of the DFSK Glory 580?
The fuel tank capacity of the DFSK Glory 580 is 58 liters. This design can meet the needs of daily commuting and long - distance travel, offering a long driving range and reducing the inconvenience of frequent refueling. For Malaysian users, a 58 - liter fuel tank capacity is above the average level among SUVs in the same class, making it suitable for family use or for consumers who often need to travel across states.
In addition, the fuel tank capacity is closely related to the vehicle's fuel economy. The 1.5T turbocharged engine equipped in the Glory 580 performs well in terms of fuel efficiency, which can further optimize the cost of using the vehicle. If you often drive long distances, it is recommended to regularly check the tire pressure and maintain the engine to ensure maximum fuel efficiency.
Meanwhile, the gas station network in Malaysia is quite well - developed. You can easily find a gas station whether in the city or the suburbs. Therefore, a 58 - liter fuel tank capacity is a very practical choice for local usage scenarios.
Q
Who makes the DFSK Glory 580?
The DFSK Glory 580 is an SUV model produced by Dongfeng Sokon Industry Group Co., Ltd. (DFSK) in China. DFSK is an automaker jointly established by Dongfeng Motor Corporation and Sokon Industry Group, specializing in the production of economy - class passenger cars and commercial vehicles. As a 7 - seater SUV targeting family users, the Glory 580 mainly sells itself with its spacious interior, practical features, and affordable price. In the Malaysian market, it is sold through DFSK's local dealer network, and its cooling system and other features have been optimized for the tropical climate. It's worth noting that DFSK, as an international brand, has a presence in multiple global markets. Its models are often adjusted according to local needs. For example, in Malaysia, it offers a right - hand - drive version that meets local certification standards. For Malaysian consumers, this vehicle offers a 7 - seater layout and intelligent connectivity features that are relatively rare in its class. Meanwhile, it has relatively low maintenance costs, making it suitable for family users who value practicality. If you're interested in this car, it's recommended that you visit an authorized dealer for a test drive to experience its actual performance and learn about the latest promotional policies and after - sales service plans.
Q
What is the top speed of the DFSK Glory 580?
The top speed of the DFSK Glory 580 is approximately 180 kilometers per hour. This SUV is equipped with a 1.5-liter turbocharged engine, which provides a smooth power output and is suitable for both urban commuting and long-distance driving in Malaysia. As an economical family SUV, the Glory 580 performs well in terms of fuel efficiency and space practicality. Its chassis tuning also balances comfort and stability, making it capable of handling the diverse road conditions in Malaysia.
For consumers who value cost - effectiveness, this vehicle offers a good range of configuration options, including an intelligent connectivity system and safety features such as a rear - view camera and a vehicle stability control system. In the Malaysian market, similar models in the same class, like the Proton X70 and the Perodua Aruz, also offer comparable performance. However, the Glory 580 stands out as an option for budget - conscious buyers due to its affordable price and practical interior space.
It should be noted that drivers should comply with local speed limits during actual driving to ensure road safety.
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Q
Does more RPM mean more torque?
The relationship between engine speed (RPM) and torque is not a simple linear proportionality, but rather an inverse relationship under the premise of constant power. At low engine speeds, due to the extended fuel injection and intake duration, the combustion pressure inside the cylinders increases, resulting in higher torque output, which is suitable for scenarios requiring strong traction such as vehicle launch, hill climbing, or heavy loads. Conversely, torque decreases at high speeds, but power may increase to support high-speed driving. This characteristic stems from the physical formula "Power = Torque × Speed × Constant." Therefore, different vehicle models are calibrated for torque curves based on their intended purposes. For example, diesel engines or turbocharged engines typically emphasize high torque at low speeds, while high-performance vehicles prioritize power output at high speeds. In daily driving, rationally utilizing transmission gear ratios to match speed and torque (such as using first gear for high-torque hill climbing and higher gears for low-RPM cruising) can optimize fuel economy and dynamic performance.
Q
What is the maximum torque a human can apply?
The maximum torque that a human can apply with one hand typically ranges from 60 to 120 Newton-meters, with the specific value depending on individual strength, force application posture, and tool usage. When an average adult uses a standard wrench, a grip force of 200 Newtons can generate approximately 100 Newton-meters of torque when calculated with a 0.5-meter lever arm. However, due to muscle efficiency limitations, the actual output is mostly 50%-70% of the theoretical value. Professional athletes or manual laborers can achieve 25-30 Newton-meters through training, while specially trained individuals such as rock climbing enthusiasts can generate finger torque of up to 40 Newton-meters. Tools can significantly amplify torque output; for example, a regular wrench can multiply human force by 3-5 times, but sustained force application requires consideration of muscle fatigue. Daily operations like tightening screws or turning a steering wheel typically maintain torque within the range of 5-50 Newton-meters. Torque calculation follows the physical principle of force multiplied by lever arm, and in practical operations, attention should be paid to the influence of force application angle and joint range of motion on the final torque value.
Q
What is low RPM high torque?
Low RPM high torque refers to the characteristic of an engine that can deliver substantial torque within a relatively low RPM range (typically 1500-3000 rpm). This design significantly enhances a vehicle's launch acceleration and hill-climbing capability. When engine power remains constant, torque is inversely proportional to RPM. Consequently, generating high torque at low RPM enables the crankshaft to produce greater power per revolution, providing ample traction without requiring high engine speeds—particularly advantageous for urban stop-and-go driving or mountainous terrain. Turbocharged models often excel in this regard; for instance, certain popular local SUVs achieve peak torque at 1800 rpm, facilitating loaded hill ascents or overtaking maneuvers. By contrast, low-torque engines must rely on higher RPMs to compensate for power deficiency, resulting in increased fuel consumption and acceleration lag. Notably, the low-RPM high-torque characteristic also reduces shift frequency, minimizes mechanical wear, and improves driving smoothness—especially beneficial for drivers frequently encountering congested conditions. When evaluating this parameter during vehicle selection, prioritize models whose torque curve peaks earlier, typically indicated in specifications as "XX N·m @ 1500-4000 rpm."
Q
How much torque is 1800 RPM?
The torque value at 1800 RPM needs to be calculated in combination with engine power, and the specific numerical value depends on the power output at this rotational speed. According to the physical formula "Power = Torque × Rotational Speed ÷ 9550", when power is constant, torque is inversely proportional to rotational speed. This means that when the engine speed is 1800 RPM, if the vehicle is in a low-speed, high-load working condition (such as climbing a slope or starting with a heavy load), the torque output will be relatively high to provide sufficient traction; while during flat-road cruising, the torque at the same rotational speed may decrease moderately to optimize fuel efficiency. Turbocharged engines usually form a wide torque plateau in the range of 1500-4500 RPM, and 1800 RPM falls precisely within this range, delivering over 90% of the peak torque. For example, a 1.5T engine can generate approximately 250-300 Nm of torque at this rotational speed. In actual driving, by monitoring the tachometer and coordinating throttle control, the torque characteristics at this rotational speed can be effectively utilized to achieve smooth acceleration or overcome gradients. It should be noted that different engine calibrations will result in variations in torque curves, so it is recommended to consult the torque-speed curve diagram of the specific vehicle model to obtain accurate data.
Q
Why is it almost impossible to rev to 21000 RPM?
It is nearly impossible to increase the engine speed to 21,000 revolutions per minute, primarily constrained by the comprehensive limitations of material physical limits, mechanical structural strength, and engineering design. The inertial forces exerted on moving components within the engine, such as pistons and connecting rods, at ultra-high speeds would far exceed the tensile strength of metallic materials, resulting in component deformation or even fracture. Taking current mass-produced naturally aspirated engines as an example, the Lexus LFA's 9,000 revolutions per minute already approaches the acoustic and mechanical balance limits of naturally aspirated engines, while turbocharged engines like the Bugatti Veyron, which prioritize low-end torque output, typically limit the redline speed to approximately 6,400 revolutions per minute. Furthermore, emission regulations and noise standards further diminish the viability of ultra-high-speed engines, with modern technology favoring efficiency improvements through turbocharging or hybrid systems. Even for diesel engines, their compression ignition characteristics generally result in lower maximum speeds compared to gasoline engines, typically not exceeding 5,000 revolutions per minute. These technical challenges and safety considerations collectively determine that achieving 21,000 revolutions per minute remains within the theoretical realm under current engineering frameworks.
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