Penerangan Produk

Company Introduction:
 ZheJiang CHINAMFG Hydraulic Co., Ltd is specialized in hydraulic products Design, R&D, and Manufacturing.

We mainly produce Hydraulic Cylinders for the Trucks, Coal Mining Industry, Metal Forming Industry Ship Industry, Oil Rigs and CHINAMFG Engineering.Also, we can design and manufacture various special purpose hydraulic cylinders according to customer design and requirements as agriculture industry, 6 DOF platform, machine tools, etc.

Our annual capacity is 200,000 pcs of cylinders which make our company an important production base for Hydraulic Cylinders in China.

History of Wantong:
 

>Dump truck telescopic hydraulic cylinder was successsfully developed in 2002;
>Began to cooperate with famous brands companies ,Such as CHINAMFG ,SHACMAN in 2005;
>Passed ISO/TS 16949 International Quality management system certification in 2006;
>Began to cooperate with ZMJ,Co.,Ltd in 2009;
>The electroplating production line was completed and had passed the accepance of environmental impact assessment in 2012;
>Has been raised as a listed Company in 2014;
>Cylinder with 10-stage .22-meter stroke for project was successfully developed  in 2015;
>The North American Type Thin-Walltelescopic cylinder was successfully developed in 2015;
>Hydro-Pneumatic Spring and Suspension System was successfully developed in 2016;

 

HS Code8412210000
ApplicationDump truck
Material of cylinder tubeAlloy steel
SealHallite,NOK, Guarnitec, Parker
CoatingAll tubes are chrome plated
Working pressure16mpa-30mpa
Strok5180mm
Colorred black blue gray, according to customer’s requirement
Mounting TypeEarring-trunnion, double trunnion, double earring (eye end), Pin to pin botton
PensijilanISO/TS16949
Packagepallet, plywood case 
WarrantyPeriod of 14 months from the date of manufacture.The manufacture date is engraved on the label of every cylinder.
Main export marketUS, Canada, South Korea, Russia, Australia, Indonesia, Malaysia, Kenya, Philippines, Xihu (West Lake) Dis.via, the United Arab Unites, Singapore
Payment termsT/T, L/C, 
Delivery time20 days after down payment

 
Production Process:
>Each processing under our control, each products, every step under strict quality control;

Exhibitions& Customers:
>We are the supplier of SINOTRUK, CIMC, JAC, SHACMAN, ZMJ and YANKUANG GROUP
manufacturing and refitting company use our telescopic cylinder as first choice.
 
>We attended each Bauma exhibition, the world trade fair for construction equipment, building material machines, mining machines and earn much more opportunity to extend our business to oversea market.

Quality Control:
1, The mechanical properties and chemical elements of the raw material will be inspected to check whether qualified after entering the warehouse.
2, Chemical composition inspection of raw materials, Test the chemical composition of metallic materials, such as C, Si, Mn, P, S, Cr, Ni and other elements.Mainly for raw materials incoming inspection, by testing whether the material qualified, receiving materials.
3, Metallographic analysis of metal materials is usually the raw materials, such as copper, iron, aluminum, magnesium, zinc, titanium, etc., for the processing of structural parts and finished product evaluation, through the metallographic analysis, You can find a variety of possible reasons for failure analysis in time, Prediction and analysis the characteristics of metallic materials and materials, Study material surface, and internal defects, and to improve and verify the process technology of the material;
4, Salt spray test is a major use of salt spray test equipment created by the artificial simulation of salt spray environmental conditions to assess the corrosion resistance of products or metal materials, environmental testing
5, Mechanical performance testing equipment can meet the requirements of mechanical testing, all the use of computer digital display, so the accuracy is more accurate so that the mechanical properties of each cylinder barrel has been greatly improved.
6, Every workpiece is machined according to the confirmed drawings and will be inspected casually by QC according to a certain proportion.The traceable record shall be clear and traceable.
7, The qualified parts are assembled into 1 cylinder and then the pressure test will be done.
Before and after assembly, the basic dimensions and workmanship will be inspected again.
8, An inspection report will come into being before delivery.

Certificated:

Package:

Guarantee and after sale service:
Pre-sale service: Keep communicating with the truck manufacturers, including the selection of product model, the design of a hydraulic system, a test of performance and analysis of the accident. Once the problems occur, we will solve them immediately together with truck manufacturers.
>The sale service: Provide training and technical support for users.
After-sale service: Solve the problem firstly, then analyze responsibility; Replace the system components
immediately if any need.
> 24 hours telephone service hotline.

Material:Steel
Structure:General Cylinder
Power:Hydraulic
Standard:Standard
Pressure Direction:Single-acting Cylinder
Double-Acting Cylinder Type:Common Cylinder
Penyesuaian:
Tersedia

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silinder hidraulik

What advancements in hydraulic cylinder technology have improved energy efficiency?

Advancements in hydraulic cylinder technology have led to significant improvements in energy efficiency, allowing hydraulic systems to operate more efficiently and reduce energy consumption. These advancements aim to minimize energy losses, optimize system performance, and enhance overall efficiency. Here’s a detailed explanation of some key advancements in hydraulic cylinder technology that have improved energy efficiency:

1. Efficient Hydraulic Circuit Design:

– The design of hydraulic circuits has evolved to improve energy efficiency. Advancements in circuit design techniques, such as load-sensing, pressure-compensated systems, or variable displacement pumps, help match the hydraulic power output to the actual load requirements. These designs reduce unnecessary energy consumption by adjusting the flow and pressure levels according to the system demands, rather than operating at a fixed high pressure.

2. High-Efficiency Hydraulic Fluids:

– The development of high-efficiency hydraulic fluids, such as low-viscosity or synthetic fluids, has contributed to improved energy efficiency. These fluids offer lower internal friction and reduced resistance to flow, resulting in decreased energy losses within the system. Additionally, advanced fluid additives and formulations enhance lubrication properties, reducing friction and optimizing the overall efficiency of hydraulic cylinders.

3. Advanced Sealing Technologies:

– Seal technology has advanced significantly, leading to improved energy efficiency in hydraulic cylinders. High-performance seals, such as low-friction or low-leakage seals, minimize internal leakage and friction losses. Reduced internal leakage helps maintain system pressure more effectively, resulting in less energy waste. Additionally, innovative sealing materials and designs enhance durability and extend seal life, reducing the need for frequent maintenance and replacement.

4. Electro-Hydraulic Control Systems:

– The integration of advanced electro-hydraulic control systems has greatly contributed to energy efficiency improvements. By combining electronic control with hydraulic power, these systems enable precise control over cylinder operation, optimizing energy usage. Proportional or servo valves, along with position or force feedback sensors, allow for accurate and responsive control, ensuring that hydraulic cylinders operate at the required level of performance while minimizing energy waste.

5. Energy Recovery Systems:

– Energy recovery systems, such as hydraulic accumulators, have been increasingly utilized to improve energy efficiency in hydraulic cylinder applications. Accumulators store excess energy during low-demand periods and release it when there is a peak demand, reducing the need for the hydraulic pump to provide the full power continuously. By utilizing stored energy, these systems can significantly reduce energy consumption and improve overall system efficiency.

6. Smart Monitoring and Control:

– Advancements in smart monitoring and control technologies have enabled real-time monitoring of hydraulic systems, allowing for optimized energy usage. Integrated sensors, data analytics, and control algorithms provide insights into system performance and energy consumption, enabling operators to make informed decisions and adjustments. By identifying inefficiencies or suboptimal operating conditions, energy consumption can be minimized, leading to improved energy efficiency.

7. System Integration and Optimization:

– The integration and optimization of hydraulic systems as a whole have played a significant role in improving energy efficiency. By considering the entire system layout, component sizing, and interaction between different elements, engineers can design hydraulic systems that operate in the most energy-efficient manner. Proper sizing of components, minimizing pressure drops, and reducing unnecessary piping or valve restrictions all contribute to improved energy efficiency of hydraulic cylinders.

8. Research and Development:

– Ongoing research and development efforts in the field of hydraulic cylinder technology continue to drive energy efficiency advancements. Innovations in materials, component design, system modeling, and simulation techniques help identify areas for improvement and optimize energy usage. Additionally, collaboration between industry stakeholders, research institutions, and regulatory bodies fosters the development of energy-efficient hydraulic cylinder technologies.

In summary, advancements in hydraulic cylinder technology have resulted in notable improvements in energy efficiency. Efficient hydraulic circuit designs, high-efficiency hydraulic fluids, advanced sealing technologies, electro-hydraulic control systems, energy recovery systems, smart monitoring and control, system integration and optimization, as well as ongoing research and development efforts, all contribute to reducing energy consumption and enhancing the overall energy efficiency of hydraulic cylinders. These advancements not only benefit the environment but also offer cost savings and improved performance in various hydraulic applications.

silinder hidraulik

Handling Challenges of Different Fluid Viscosities in Hydraulic Cylinders

Hydraulic cylinders are designed to handle the challenges associated with different fluid viscosities. The viscosity of hydraulic fluid can vary based on temperature, type of fluid used, and other factors. Hydraulic systems need to accommodate these variations to ensure optimal performance and efficiency. Let’s explore how hydraulic cylinders handle the challenges of different fluid viscosities:

  1. Fluid Selection: Hydraulic cylinders are designed to work with a range of hydraulic fluids, each with its specific viscosity characteristics. The selection of an appropriate fluid with the desired viscosity is crucial to ensure optimal performance. Manufacturers provide guidelines regarding the recommended viscosity range for specific hydraulic systems and cylinders. By choosing the right fluid, hydraulic cylinders can effectively handle the challenges posed by different fluid viscosities.
  2. Viscosity Compensation: Hydraulic systems often incorporate features to compensate for variations in fluid viscosity. For example, some hydraulic systems utilize pressure compensating valves that adjust the flow rate based on the viscosity of the fluid. This compensation ensures consistent performance across different operating conditions and fluid viscosities. Hydraulic cylinders work in conjunction with these compensation mechanisms to maintain precision and control, regardless of the fluid viscosity.
  3. Temperature Control: Fluid viscosity is highly dependent on temperature. Hydraulic cylinders employ various temperature control mechanisms to address the challenges posed by temperature-induced viscosity changes. Heat exchangers, coolers, and thermostatic valves are commonly used to regulate the temperature of the hydraulic fluid within the system. By controlling the fluid temperature, hydraulic cylinders can maintain the desired viscosity range, ensuring reliable and efficient operation.
  4. Efficient Filtration: Contaminants in hydraulic fluid can affect its viscosity and overall performance. Hydraulic systems incorporate efficient filtration systems to remove particles and impurities from the fluid. Clean fluid with the appropriate viscosity ensures optimal functioning of hydraulic cylinders. Regular maintenance and filter replacements are essential to uphold the desired fluid viscosity and prevent issues related to fluid contamination.
  5. Proper Lubrication: Different fluid viscosities can impact the lubrication properties within hydraulic cylinders. Lubrication is essential for minimizing friction and wear between moving parts. Hydraulic systems employ lubricants specifically formulated for the anticipated fluid viscosity range. Adequate lubrication ensures smooth operation and extends the lifespan of hydraulic cylinders, even in the presence of varying fluid viscosities.

In summary, hydraulic cylinders employ various strategies to handle the challenges associated with different fluid viscosities. By selecting appropriate fluids, incorporating viscosity compensation mechanisms, controlling temperature, implementing efficient filtration, and ensuring proper lubrication, hydraulic cylinders can accommodate variations in fluid viscosity. These measures enable hydraulic systems to deliver consistent performance, precise control, and efficient operation across different fluid viscosity ranges.

silinder hidraulik

Bagaimanakah pengeluar memastikan kualiti dan keserasian silinder hidraulik?

Pengilang menggunakan pelbagai langkah untuk memastikan kualiti dan keserasian silinder hidraulik, memastikan ia memenuhi piawaian industri, keperluan prestasi dan keperluan khusus pelanggan mereka. Berikut ialah penjelasan terperinci tentang kaedah dan amalan yang digunakan oleh pengeluar untuk memastikan kualiti dan keserasian silinder hidraulik:

1. Reka Bentuk dan Kejuruteraan:

– Pengilang menggaji jurutera dan pereka mahir yang mempunyai kepakaran dalam sistem hidraulik dan reka bentuk silinder. Mereka menggunakan perisian dan alatan reka bentuk canggih untuk mencipta silinder hidraulik yang memenuhi spesifikasi dan keperluan prestasi yang dikehendaki. Melalui analisis dan simulasi yang teliti, pengeluar boleh memastikan bahawa silinder direka bentuk untuk berfungsi secara optimum dan memberikan daya, panjang lejang dan kebolehpercayaan yang diperlukan.

2. Pemilihan Bahan:

– Bahan berkualiti tinggi adalah penting untuk ketahanan, prestasi dan keserasian silinder hidraulik. Pengilang memilih bahan seperti keluli atau aloi lain dengan teliti berdasarkan kekuatan, rintangan kakisan dan kesesuaiannya untuk aplikasi hidraulik. Mereka mendapatkan bahan daripada pembekal yang bereputasi dan menjalankan pemeriksaan kualiti untuk memastikan bahan tersebut memenuhi piawaian dan spesifikasi yang diperlukan.

3. Kawalan Kualiti:

– Pengilang melaksanakan proses kawalan kualiti yang mantap sepanjang pengeluaran silinder hidraulik. Ini termasuk pemeriksaan dan ujian yang ketat pada pelbagai peringkat pembuatan, daripada pemeriksaan bahan mentah hingga pemasangan akhir. Kakitangan kawalan kualiti menjalankan pemeriksaan dimensi, pemeriksaan kemasan permukaan dan ujian fungsi untuk mengesahkan bahawa silinder memenuhi toleransi, kriteria prestasi dan keperluan keserasian yang ditetapkan.

4. Pengujian dan Pengesahan:

– Silinder hidraulik menjalani prosedur pengujian dan pengesahan untuk memastikan prestasi, kebolehpercayaan dan keserasiannya. Pengilang menjalankan pelbagai ujian, seperti ujian tekanan, ujian kebocoran, ujian beban dan ujian ketahanan. Ujian ini mensimulasikan keadaan operasi dunia sebenar dan mengesahkan bahawa silinder dapat menahan beban, tekanan dan faktor persekitaran yang dijangkakan. Di samping itu, pengeluar mungkin melakukan ujian keserasian untuk memastikan silinder dapat disepadukan dengan lancar dengan komponen sistem hidraulik yang lain.

5. Pematuhan dengan Piawaian:

– Pengilang mematuhi piawaian dan peraturan industri untuk memastikan kualiti dan keserasian silinder hidraulik. Mereka mematuhi piawaian seperti ISO 9001 untuk sistem pengurusan kualiti dan ISO 6020/2 atau ISO 6022 untuk silinder hidraulik. Pematuhan dengan piawaian ini memastikan proses pembuatan, langkah kawalan kualiti dan prestasi produk memenuhi penanda aras yang diiktiraf di peringkat antarabangsa.

6. Pensijilan dan Akreditasi:

– Pengilang boleh mendapatkan pensijilan dan akreditasi daripada organisasi yang diiktiraf untuk menunjukkan komitmen mereka terhadap kualiti dan keserasian. Pensijilan seperti pensijilan ISO atau pensijilan pihak ketiga memberikan jaminan kepada pelanggan bahawa silinder hidraulik telah menjalani penilaian yang ketat dan memenuhi piawaian kualiti dan keserasian tertentu.

7. Kerjasama Pelanggan:

– Pengilang secara aktif berinteraksi dengan pelanggan untuk memahami keperluan khusus mereka dan memastikan keserasian. Mereka bekerjasama rapat dengan pelanggan untuk mengumpulkan butiran khusus aplikasi, seperti keadaan operasi, keperluan beban dan faktor persekitaran. Pendekatan kolaboratif ini membolehkan pengeluar menyesuaikan silinder hidraulik dan menyediakan penyelesaian yang sepadan dengan keperluan pelanggan, memastikan keserasian dan prestasi optimum.

8. Penambahbaikan Berterusan:

– Pengilang komited terhadap penambahbaikan berterusan dalam proses dan produk mereka. Mereka melabur dalam penyelidikan dan pembangunan untuk menggabungkan teknologi, bahan dan teknik pembuatan terkini. Dengan sentiasa mengikuti perkembangan industri, pengeluar boleh meningkatkan kualiti, prestasi dan keserasian silinder hidraulik mereka dari semasa ke semasa.

Dengan melaksanakan amalan reka bentuk dan kejuruteraan yang berkesan, memilih bahan berkualiti tinggi, menjalankan kawalan kualiti, prosedur pengujian dan pengesahan yang ketat, mematuhi piawaian industri, mendapatkan pensijilan, bekerjasama dengan pelanggan dan melaksanakan penambahbaikan berterusan, pengeluar memastikan kualiti dan keserasian silinder hidraulik. Langkah-langkah ini membantu menghasilkan silinder berprestasi tinggi yang andal dan memenuhi pelbagai keperluan industri dan aplikasi.
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editor by CX 2023-10-21

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