产品描述

Product Overview

Planetary Concrete Mixer

MP series planetary concrete mixer used for mixing concrete .It is not only applies in common concrete ,precast concrete but also in high performance concrete. Planetary Concrete Mixers widely apply to produce precast concrete, common commercial concrete and high performance concrete.

It is suitable for mixing dry hard concrete (roller compacted concrete). It is widely used in the production of building blocks and prefabricated parts, and also can be used to produce of steel fiber reinforced concrete, color concrete and dry mortar, etc.

We also could customize observing door, skip hopper, extended funnel with bag breaker for bag, cement weighting device and water metering device according to customers’ requirement.

FEATURES AT A GLANCE

Our Advantage

Customized service:Unique top opening design.Position and size of the feeding inlet according to the customer’s needs.

Capacity :50L~1500L

♦Durable chill cast wear sleeves and paddles
♦Hard wearing chill cast tiles for wall and floor
♦Heavy duty discharge door mechanisms
♦Spring tensioned mixing arms for safety
♦Motor and gearbox are located on top of the mixer for easy cleaning and maintenance

Full Process Solution Provider of SDCAD

                           MP50                                                              MP250                                                             MP500          

                           MP750                                                         MP1000                                                             MP2000

SDCADI Planetary Mixer Features
* Optimum Homogenization of mixing materials.
* Adopt special high-strength, high-reliability planetary reducer with patent.
* Simple Structure, Simple and Convenient Maintenance.
* Flexible Layout, 1-3 unloading doors are optional for different production lines.
* Dustproof movable covers assisted by gas springs.
* Interlocking device and safety switch on every movable cover.
* Interchangeable wear-resistant liners with counter sunk fixing bolts.
* All on-board engineering is protected in PVC-coated metal conduits and connected to a heavy-duty aluminum junction box.

PRODUCT CONFIGURATION
Mixing Locus Diagrams

This diagrams show the perfect mixing action of the SDCAD planetary mixer from 5 to 60 seconds after material is added. Note that the floor is completely swept by the mixing stars action every 4 revolutions (6 seconds) and that each zone is covered at regular intervals in time.

              Reduction Gearbox                                         Maintenance Access                                       Mixing Device

            The hydraulic power unit                                      Hydraulic Unit                                            Water spray pipe

Mixing Pan with Wear Linings

     SDCAD Planetary mixer is meticulously engineered with high-strength structural steel and durable wear-resistant CZPT plates.Our planetary mixer achieves a stringent control of the roundness and flatness error of the mixing drum, ensuring a maximum deviation of only 2-3mm for pristine discharge. 

     The CZPT plates of our planetary mixer are carefully selected to cater to the specific mixing requirements of diverse raw materials. These include high-chromium alloy cast,  PE polymer,
surfacing, stainless steel, and other suitable options, depending on the specific raw materials to be mixed.

PRODUCT SPECIFICATIONS

Model

MP330

MP500

MP750

MP1000

MP1500

MP2000

MP2500

MP3000

Output Capacity (L)

330

500

750

1000

1500

2000

2500

3000

Input Capacity (L)

500

750

1125

1500

2250

3000

3750

4500

Input Mass (kg)

800

1200

1800

2400

3600

4800

6000

7200

Mixing Power (kw)

15

18.5

30

37

55

75

90

110

Discharge Power (kw)

2.2

2.2

2.2

3

3

4

4

4

Lifting Power (kw)

4

4

7.5

11

15

22

Skipper Capacity (L)

580

870

1300

1740

2610

3480

Skipper Mass (kg)

870

1305

1950

2610

3615

5220

Skipper Speed (m/s)

0.25

0.25

0.25

0.25

0.25

0.25

Weight (kg)

1700

2000

3500

6000

7000

8500

10500

11000

Dimension (mm)

1910 * 1590* 1747

2220* 2071* 1880

2581* 2336 * 2195

2891* 2602* 2217

3223* 2902* 2425

3625*3230* 2630

2893* 3550* 2695

3893* 3550* 2975

Packaging and Transportation

Our Services

1.According to your inquiry, We will reply to you in 24 hours.
2.Best After-sales: We will send the technical personnel to the site for installation, commissioning and training work.
3.Warranty period 12 Months, in addition to the force majeure and man-made factors, the damage caused by design, process and manufacturing equipment, the seller is responsible for sending people to offer free repair.
4.We will send the spare parts as soon as possible when necessary, equipment repair parts provided by the seller are original,authentic, quality goods.

Industry Application
Successful Project
SALES AND SERVICE NETWORKSIMILAR PRODUCTS

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售后服务: Provide a Complete Installation and Operation Manu
保修单: One Year
类型: Concrete Mixer
Shotcrete Type: Dry
Machining Process: Welded Molding Machine
Structure: Rotor Type
定制化:
可用的

|

定制请求

动力输出轴

How do manufacturers ensure the compatibility of drive shafts with different equipment?

Manufacturers employ various strategies and processes to ensure the compatibility of drive shafts with different equipment. Compatibility refers to the ability of a drive shaft to effectively integrate and function within a specific piece of equipment or machinery. Manufacturers take into account several factors to ensure compatibility, including dimensional requirements, torque capacity, operating conditions, and specific application needs. Here’s a detailed explanation of how manufacturers ensure the compatibility of drive shafts:

1. Application Analysis:

Manufacturers begin by conducting a thorough analysis of the intended application and equipment requirements. This analysis involves understanding the specific torque and speed demands, operating conditions (such as temperature, vibration levels, and environmental factors), and any unique characteristics or constraints of the equipment. By gaining a comprehensive understanding of the application, manufacturers can tailor the design and specifications of the drive shaft to ensure compatibility.

2. Customization and Design:

Manufacturers often offer customization options to adapt drive shafts to different equipment. This customization involves tailoring the dimensions, materials, joint configurations, and other parameters to match the specific requirements of the equipment. By working closely with the equipment manufacturer or end-user, manufacturers can design drive shafts that align with the equipment’s mechanical interfaces, mounting points, available space, and other constraints. Customization ensures that the drive shaft fits seamlessly into the equipment, promoting compatibility and optimal performance.

3. Torque and Power Capacity:

Drive shaft manufacturers carefully determine the torque and power capacity of their products to ensure compatibility with different equipment. They consider factors such as the maximum torque requirements of the equipment, the expected operating conditions, and the safety margins necessary to withstand transient loads. By engineering drive shafts with appropriate torque ratings and power capacities, manufacturers ensure that the shaft can handle the demands of the equipment without experiencing premature failure or performance issues.

4. Material Selection:

Manufacturers choose materials for drive shafts based on the specific needs of different equipment. Factors such as torque capacity, operating temperature, corrosion resistance, and weight requirements influence material selection. Drive shafts may be made from various materials, including steel, aluminum alloys, or specialized composites, to provide the necessary strength, durability, and performance characteristics. The selected materials ensure compatibility with the equipment’s operating conditions, load requirements, and other environmental factors.

5. Joint Configurations:

Drive shafts incorporate joint configurations, such as universal joints (U-joints) or constant velocity (CV) joints, to accommodate different equipment needs. Manufacturers select and design the appropriate joint configuration based on factors such as operating angles, misalignment tolerances, and the desired level of smooth power transmission. The choice of joint configuration ensures that the drive shaft can effectively transmit power and accommodate the range of motion required by the equipment, promoting compatibility and reliable operation.

6. Quality Control and Testing:

Manufacturers implement stringent quality control processes and testing procedures to verify the compatibility of drive shafts with different equipment. These processes involve conducting dimensional inspections, material testing, torque and stress analysis, and performance testing under simulated operating conditions. By subjecting drive shafts to rigorous quality control measures, manufacturers can ensure that they meet the required specifications and performance criteria, guaranteeing compatibility with the intended equipment.

7. 符合标准:

Manufacturers ensure that their drive shafts comply with relevant industry standards and regulations. Compliance with standards, such as ISO (International Organization for Standardization) or specific industry standards, provides assurance of quality, safety, and compatibility. Adhering to these standards helps manufacturers meet the expectations and requirements of equipment manufacturers and end-users, ensuring that the drive shafts are compatible and can be seamlessly integrated into different equipment.

8. Collaboration and Feedback:

Manufacturers often collaborate closely with equipment manufacturers, OEMs (Original Equipment Manufacturers), or end-users to gather feedback and incorporate their specific requirements into the drive shaft design and manufacturing processes. This collaborative approach ensures that the drive shafts are compatible with the intended equipment and meet the expectations of the end-users. By actively seeking input and feedback, manufacturers can continuously improve their products’ compatibility and performance.

In summary, manufacturers ensure the compatibility of drive shafts with different equipment through a combination of application analysis, customization, torque and power capacity considerations, material selection, joint configurations, quality control and testing, compliance with standards, and collaboration with equipment manufacturers and end-users. These efforts enable manufacturers to design and produce drive shafts that seamlessly integrate with various equipment, ensuring optimal performance, reliability, and compatibility in different applications.

动力输出轴

传动轴可以根据特定车辆或设备的要求进行定制吗?

是的,传动轴可以根据特定车辆或设备的要求进行定制。定制允许制造商调整传动轴的设计、尺寸、材料和其他参数,以确保其与特定车辆或设备的兼容性和最佳性能。以下是传动轴定制方式的详细说明:

1. 尺寸定制:

传动轴可根据车辆或设备的尺寸要求进行定制。这包括调整总长度、直径和花键配置,以确保在特定应用中实现合适的配合和间隙。通过定制尺寸,传动轴可以无缝集成到传动系统中,而不会产生任何干涉或限制。

2. 材料选择:

传动轴的材料选择可根据车辆或设备的具体要求进行定制。可以选择不同的材料,例如钢合金、铝合金或特种复合材料,以优化强度、重量和耐久性。材料的选择可以根据应用的扭矩、速度和运行条件进行调整,从而确保传动轴的可靠性和使用寿命。

3. 关节配置:

传动轴可采用不同的连接件配置,以满足特定车辆或设备的需求。例如,万向节(U型接头)适用于工作角度较小、扭矩需求适中的应用,而等速万向节(CV接头)则常用于工作角度较大、动力传输更平顺的应用。连接件配置的选择取决于工作角度、扭矩容量和所需性能等因素。

4. 扭矩和功率容量:

定制化设计使得传动轴能够根据特定车辆或设备的需求,具备合适的扭矩和功率容量。制造商可以分析应用场景的扭矩需求、运行工况和安全裕度,从而确定传动轴的最佳扭矩额定值和功率容量。这确保了传动轴能够承受所需的负载,而不会出现过早失效或性能问题。

5. 平衡和振动控制:

传动轴可通过精密平衡和振动控制措施进行定制。传动轴的不平衡会导致振动、磨损加剧,并可能引发传动系统问题。通过在制造过程中采用动态平衡技术,制造商可以最大限度地减少振动,确保平稳运行。此外,还可以将减振器或隔振系统集成到传动轴设计中,以进一步降低振动并提升系统整体性能。

6. 集成和安装注意事项:

传动轴的定制化设计充分考虑了特定车辆或设备的集成和安装要求。制造商与车辆或设备的设计人员紧密合作,确保传动轴能够无缝集成到传动系统中。这包括调整安装点、接口和间隙,以确保传动轴在车辆或设备内部的正确对准和安装。

7. 协作与反馈:

制造商通常与车辆制造商、原始设备制造商 (OEM) 或最终用户合作,收集反馈并将他们的具体要求融入传动轴的定制流程中。通过积极寻求意见和反馈,制造商可以满足特定需求,优化性能,并确保与车辆或设备的兼容性。这种协作方式能够提升定制流程,最终打造出完全符合应用需求的传动轴。

8. 符合标准:

定制传动轴可根据相关的行业标准和法规进行设计。符合 ISO(国际标准化组织)等标准或特定行业标准,可确保定制传动轴满足质量、安全和性能要求。遵循这些标准可保证传动轴的兼容性,并能无缝集成到特定车辆或设备中。

总而言之,传动轴可通过尺寸定制、材料选择、接头配置、扭矩和功率容量优化、平衡和振动控制、集成和安装考量、与利益相关者的协作以及符合行业标准等方式进行定制,以满足特定车辆或设备的需求。定制化使传动轴能够精确地适应应用需求,从而确保兼容性、可靠性和最佳性能。

动力输出轴

传动轴在各种应用中如何传递旋转动力?

在各种应用中,传动轴在将发动机或动力源的旋转动力传递到车轮或被驱动部件方面起着至关重要的作用。无论是在车辆还是机械中,传动轴都能实现高效的动力传输,并促进不同系统的运行。以下详细解释了传动轴如何传递旋转动力:

1. 车辆应用:

在车辆中,传动轴负责将发动机的旋转动力传递到车轮,使车辆能够行驶。传动轴连接变速箱或传动装置的输出轴和差速器,差速器再将动力分配到车轮。发动机产生扭矩后,扭矩通过传动轴传递到车轮,推动车辆前进。这种动力传递使车辆能够加速、保持速度并克服阻力,例如摩擦力和坡度。

2. 机械应用:

在机械设备中,传动轴用于将发动机或电动机的旋转动力传递到各种驱动部件。例如,在工业机械中,传动轴可用于将动力传递给泵、发电机、传送带或其他机械系统。在农业机械中,传动轴通常用于连接动力源和收割机、打捆机或灌溉系统等设备。传动轴通过将旋转动力传递给必要的部件,使这些机器能够执行其预期功能。

3. 动力传输:

传动轴旨在高效可靠地传递旋转动力。它们能够将发动机产生的强大扭矩传递至车轮或被驱动部件。发动机产生的扭矩通过传动轴传递,几乎没有动力损失。通过保持发动机与被驱动部件之间的刚性连接,传动轴确保发动机产生的动力能够有效地用于完成有用的工作。

4. 柔性联轴器:

传动轴的关键功能之一是提供发动机/变速器与车轮或被驱动部件之间的柔性连接。这种柔性使传动轴能够适应角度运动,并补偿发动机与被驱动系统之间的不对中。在车辆中,当悬架系统运动或车轮遇到不平坦的路面时,传动轴会调整其长度和角度,以保持恒定的动力传输。这种柔性有助于防止传动系统部件承受过大的压力,并确保动力传输的平稳性。

5. 扭矩和速度传递:

传动轴负责传递扭矩和转速。扭矩是指发动机或动力源产生的旋转力,而转速是指每分钟的转数(RPM)。传动轴必须能够承受应用所需的扭矩,且不会过度扭曲或弯曲。此外,它们还需要保持所需的转速,以确保被驱动部件的正常运转。传动轴的合理设计、材料选择和平衡有助于实现高效的扭矩和转速传递。

6. 长度和平衡:

传动轴的长度和平衡是影响其性能的关键因素。传动轴的长度取决于发动机或动力源与被驱动部件之间的距离。其尺寸应适当,以避免过度振动或弯曲。传动轴经过精心平衡,以最大限度地减少振动和旋转不平衡,这些因素会影响传动系统的整体性能、舒适性和使用寿命。

7. 安全和维护:

传动轴需要采取适当的安全措施并定期维护。在车辆中,传动轴通常被包裹在保护管或壳体内,以防止与运动部件接触,从而降低受伤风险。在机械设备中,裸露的传动轴周围也可能安装安全护罩或防护装置,以保护操作人员免受潜在危险。定期维护包括检查传动轴的磨损、损坏或错位情况,并确保万向节得到充分润滑。这些措施有助于预防故障,确保最佳性能,并延长传动轴的使用寿命。

总而言之,传动轴在各种应用中传递旋转动力方面发挥着至关重要的作用。无论是在车辆还是机械中,传动轴都能实现从发动机或动力源到车轮或被驱动部件的高效动力传输。它们提供柔性联轴器,处理扭矩和速度传递,适应角度运动,并有助于系统的安全性和维护。通过有效地传递旋转动力,传动轴促进了众多行业中车辆和机械的运行和性能。

China Standard Sdcad Brand Planetary Concrete Mixer Drives The Main Shaft to Rotate by The Overhead Motor  China Standard Sdcad Brand Planetary Concrete Mixer Drives The Main Shaft to Rotate by The Overhead Motor
editor by CX 2024-05-10