Produktbeskrivning
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• Agricultural equipment |
• Armament |
• Automobile industry |
• Computing equipment |
• Medical / dental instruments |
• Measuring instruments |
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•Miscellaneous equipment |
•Pharmaceutical industry |
• Orthopedic implants |
• Safety equipment |
• Petrochemical industry |
• Industrial valves |
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•Fixing and movable equipment |
• Sanitary fittings |
• General machinery |
• Pumps and general connections |
• Food and beverage processing |
• Instrumentation equipment |
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Product Name: |
Factory Custom Made As Drawing Parts Small Electric Motor Pto Shaft |
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Applicable Machining Process |
CNC Machining/ Lathing/ Milling/ Turning/ Boring/ Drilling/ Tapping/ |
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Machining Tolerance |
From 0.005mm-0.01mm-0.1mm |
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Machined Surface Quality |
Ra 0.8-Ra3.2 according to customer requirement |
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Applicable Heat Treatment |
T5~T6 |
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MOQ for batch order |
For cnc machining metal parts: 50 pcs |
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Ledtid |
7-20 days for precision drilled shaft |
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Main Materials |
Steel: carbon steel, alloy steel, stainless steel, 4140,20#,45# ,40Cr,20Cr ,etc |
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Aluminum: AL6061,AL6063,AL6082,AL7075,AL5052 etc. |
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Stainless steel: 201SS,301SS,304SS,316SS etc. |
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Brass: C37700,C28000, C11000,C36000 etc |
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Ytbehandling |
Stainless Steel: Polishing, Passivating, Sandblasting, Laser engraving |
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Steel: Zinc plating, Oxide black, Nickel plating, Chrome platingk, Carburized, Powder Coated |
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Aluminum parts: Clear Anodized, Color Anodized, Sandblast Anodized, Chemical Film,Brushing,Polishing |
Technical Support:
ZheJiang Matech is professional at independent development and design. Our engineers are skilled at AUTO CAD, PRO ENGINEER, SOLID WORKS and other 2D & 3D softwares. We are able to design, develop,produce and deliver your PO according to your drawings, samples or just an idea. Dural control of standard products and OEM products.
Quality Control:
1) Checking the raw material after they reach our factory——- Incoming quality control ( IQC)
2) Checking the details before the production line operated
3) Have full inspection and routing inspection during mass production—In process quality control(IPQC)
4) Checking the goods after they are finished—- Final quality control(FQC)
5) Checking the goods after they are finished—–Outgoing quality control(OQC)
Our Factory
ZheJiang CHINAMFG Machinery Manufacture Co., Ltd.
–Branch of CHINAMFG Industry Ltd.
We specialize in Metal Parts Solution for Vehicle, Agriculture machine, Construction Machine, transportation equipment, Valve and Pump system.
With keeping manufacturing process design, quality plHangZhou, key manufacturing processes and final quality control in house.
We are mastering key competence to supply quality mechanical parts and assembly to our customers for both Chinese and Export Market.
To satisfy different mechanical and functional requirements from our customers we are making a big range of metal products for our clients on base of different blanks solutions and technologies.
These blanks solutions and technologies include processes of Iron Casting, Steel Casting, Stainless Steel Casting, Aluminum Casting and Forging.
During the early involvement of the customer’s design process we are giving professional input to our customers in terms of process feasibility, cost reduction and function approach.
You are welcome to contact us for technical enquiry and business cooperation.
Our Certificate
Our Customer
Our Team
Our Package
Inner Packing →Strong & waterproof plastic big is packed inside, to keep the product in safe condition.Or as customer requests.
Outer Packing →Multilayer wooden box with strong bandages, used for standard export package. Or customized as per customer’s requirements.
Relaterade produkter
Vanliga frågor
1Q: Are you trading company or manufacturer?
A: We are a factory, so we can provide competitive price and fast delivery for you.
2Q: What kind of service can you provide?
A: Our company can provide custom casting, CNC machining, surface treatment according to your requirements.
3Q: What’s kinds of information you need for a quote?
A: In order to quote for you earlier, please provide us the following information together with your inquiry.
1. Detailed drawings (STEP, CAD, CHINAMFG Works, PROE, DXF and PDF)
2. Material requirement (SUS, SPCC, SECC, SGCC, Copper, AL, ETC.)
3. Surface treatment (powder coating, sand blasting, planting, polishing, oxidization, brushing, etc.)
4. Quantity (per order/ per month/ annual)
5. Any special demands or requirements, such as packing, labels, delivery, etc.
4Q: What shall we do if we do not have drawings?
A: Please send your sample to our factory, then we can copy or provide you better solutions. Please send us pictures or drafts with dimensions (Thickness, Length, Height, Width), CAD or 3D file will be made for you if placed order.
5Q: What makes you different from others?
A: 1. Our Excellent Service
We will submit the quotation in 48 hours if getting detailed information during working days.
2. Our quick manufacturing time
For Normal orders, we will promise to produce within 3 to 4 weeks.
As a factory, we can ensure the delivery time according to the formal contract.
6Q: Is it possible to know how are my products going on without visiting your company?
A: We will offer a detailed production schedule and send weekly reports with photos or videos which show the machining progress.
7Q: Can I have a trial order or samples only for several pieces?
A: As the product is customized and need to be produced, we will charge sample cost, but if the sample is not more expensive, we will refund the sample cost after you placed mass orders.
8Q: Why there is tooling cost?
A: It’s mold cost. Indispensable production process. Only need to pay for first order, and we will bear maintenance cost of mold damage.
9Q: What is your terms of payment?
A: Payment of sample order ≤ 1000USD, 100% T/T full payment.
Payment of tooling or batch order ≥ 5000USD, 70% T/T in advance, balance before shipment.
10Q: What’s your after-sale service?
A: If there is quality problem, please provide photos or test report, we will replace defective goods or return funds.
If you have any other questions please find us online, or send messages via email, WhatsApp for better communication! /* 10 mars 2571 17:59:20 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/)))
| Material: | Kolstål |
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| Ladda: | Customized Shafts |
| Styvhet och flexibilitet: | Flexible Shaft |
| Anpassning: |
Tillgänglig
| Anpassad förfrågan |
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.shipping-cost-tm .tm-status-off{bakgrund: ingen;fyllning: 0;färg: #1470cc}
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Fraktkostnad:
Beräknad frakt per enhet. |
om fraktkostnad och beräknad leveranstid. |
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| Betalningsmetod: |
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Första betalningen Full betalning |
| Valuta: | US$ |
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| Retur och återbetalning: | Du kan ansöka om återbetalning upp till 30 dagar efter att du mottagit produkterna. |
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Hur säkerställer kraftöverföringsaxlar effektiv kraftöverföring samtidigt som säkerheten bibehålls?
Kraftuttagsaxlar (PTO) spelar en avgörande roll för att säkerställa effektiv kraftöverföring från en kraftkälla till drivna maskiner eller utrustning, samtidigt som de upprätthåller säkerheten. Dessa axlar är utformade med olika funktioner och mekanismer för att optimera kraftöverföringens effektivitet och minska potentiella faror. Här är en detaljerad förklaring av hur kraftuttagsaxlar uppnår effektiv kraftöverföring samtidigt som säkerhet prioriteras:
1. Mekanisk kraftöverföring: Kraftöverföringsaxlar fungerar som mekaniska länkar mellan kraftkällan, vanligtvis en traktor eller motor, och den drivna maskinen. De överför rotationskraft från kraftkällan till utrustningen, vilket möjliggör effektiv energiöverföring. Den mekaniska konstruktionen av kraftöverföringsaxlar, inklusive deras diameter, längd och materialsammansättning, är optimerad för att minimera effektförluster under överföringen, vilket säkerställer att en betydande del av den kraft som genereras av källan effektivt levereras till maskinen.
2. Universalkopplingar och flexibla kopplingar: Kraftöverföringsaxlar är utrustade med universalkopplingar och flexibla kopplingar som möjliggör vinkelfeljustering och flexibilitet i rörelse. Universalkopplingar hanterar variationer i uppriktningen mellan kraftkällan och den drivna maskinen, vilket möjliggör smidig kraftöverföring även när de två komponenterna inte är perfekt uppriktade. Flexibla kopplingar hjälper till att kompensera för små feljusteringar, minska vibrationer och förhindra överdriven belastning på axeln och anslutna komponenter, vilket ökar effektiviteten och minskar risken för mekaniskt fel eller skador.
3. Konstant hastighet (CV) leder: CV-leder används ofta i kraftöverföringsaxlar för att upprätthålla konstant hastighet och momentöverföring, särskilt i applikationer där den drivna maskinen kräver flexibilitet eller arbetar i olika vinklar. CV-leder möjliggör jämn kraftöverföring utan betydande fluktuationer, även när den drivna maskinen är i en vinkel i förhållande till kraftkällan. Genom att minimera hastighetsvariationer och effektförlust på grund av ändrade vinklar bidrar CV-leder till effektiv kraftöverföring samtidigt som de säkerställer jämn prestanda och minskar sannolikheten för mekanisk stress eller för tidigt slitage.
4. Säkerhetsskydd och sköldar: Säkerhet är en avgörande faktor vid konstruktionen av kraftuttagsaxlar. Skyddsanordningar och skärmar installeras för att täcka den roterande axeln och andra rörliga delar. Dessa skydd fungerar som fysiska barriärer för att förhindra oavsiktlig kontakt med de roterande komponenterna, vilket avsevärt minskar risken för intrassling, skada eller skador. Skyddsanordningar är vanligtvis tillverkade av hållbara material som metall eller plast och är utformade för att möjliggöra den rörelse som krävs för kraftöverföring samtidigt som de ger tillräckligt skydd. Regelbunden inspektion och underhåll av dessa skydd är avgörande för att säkerställa deras effektivitet i att upprätthålla säkerheten.
5. Skjuvbults- eller slirkopplingsmekanismer: Kraftuttagsaxlar har ofta brytbultar eller slirkopplingar som säkerhetsfunktioner för att skydda drivlinans komponenter och förhindra skador vid för högt vridmoment eller plötsligt motstånd. Brytbultar är konstruerade för att brytas eller gå sönder när vridmomentet överstiger ett förutbestämt tröskelvärde, vilket kopplar bort kraftuttagsaxeln från kraftkällan. Detta hjälper till att förhindra skador på axeln, drivna maskiner och kraftkälla. Slirkopplingar fungerar på liknande sätt genom att låta kraftuttagsaxeln slira vid för högt motstånd, vilket skyddar komponenterna från överbelastning. Dessa mekanismer fungerar som säkerhetsåtgärder för att bibehålla kraftuttagsaxelns och tillhörande utrustnings integritet samtidigt som risken för mekaniska fel eller olyckor minimeras.
6. Överensstämmelse med säkerhetsstandarder: Kraftöverföringsaxlar är konstruerade och tillverkade för att uppfylla relevanta säkerhetsstandarder och föreskrifter. Tillverkare följer riktlinjer och krav som fastställts av organisationer som American Society of Agricultural and Biological Engineers (ASABE) eller andra regionala säkerhetsmyndigheter. Efterlevnad av dessa standarder säkerställer att kraftöverföringsaxlar uppfyller specifika säkerhetskriterier, inklusive vridmomentkapacitet, skyddskonstruktion och andra säkerhetsaspekter. Användare kan lita på standardiserade kraftöverföringsaxlar som har genomgått tester och certifiering, vilket ger ytterligare en garanti för deras säkerhet och prestanda.
7. Operatörsutbildning och träning: För att säkerställa säker och effektiv drift är det viktigt att operatörerna får ordentlig utbildning och träning om kraftuttagsaxlar. Operatörerna bör vara bekanta med de specifika säkerhetsfunktionerna, underhållskraven och säkra driftsprocedurerna för de kraftuttagsaxlar som används i deras tillämpningar. Detta inkluderar att förstå vikten av att använda lämplig personlig skyddsutrustning, regelbundet inspektera utrustningen för slitage eller skador och följa rekommenderade underhållsscheman. Operatörernas medvetenhet och efterlevnad av säkerhetsprotokoll bidrar avsevärt till att upprätthålla en säker arbetsmiljö och maximera effektiviteten i kraftöverföringen.
Sammanfattningsvis säkerställer kraftöverföringsaxlar effektiv kraftöverföring samtidigt som säkerheten bibehålls genom sin mekaniska konstruktion, införlivande av universalkopplingar och CV-kopplingar, installation av säkerhetsskydd och skydd, implementering av brytbult- eller slirkopplingsmekanismer, efterlevnad av säkerhetsstandarder och operatörsutbildning. Genom att kombinera dessa funktioner och metoder ger kraftöverföringsaxlar tillförlitlig och säker kraftöverföring, vilket minimerar kraftförluster och potentiella risker i samband med deras drift.

How do PTO shafts handle variations in load and torque during operation?
PTO (Power Take-Off) shafts are designed to handle variations in load and torque during operation by employing specific mechanisms and features that ensure efficient power transfer and protection against overload conditions. Here’s a detailed explanation of how PTO shafts handle variations in load and torque:
1. Mechanical Design: PTO shafts are engineered with robust mechanical design principles that enable them to handle variations in load and torque. They are typically constructed using high-strength materials such as steel, which provides durability and resistance to bending or twisting forces. The shaft’s diameter, wall thickness, and overall dimensions are carefully calculated to withstand the expected torque levels and load variations. The mechanical design of the PTO shaft ensures that it can transmit power reliably and accommodate the dynamic forces encountered during operation.
2. Universal Joints: Universal joints are a key component of PTO shafts that allow for flexibility and compensation of misalignment between the power source and driven machinery. These joints can accommodate variations in angular alignment, which may occur due to changes in load or movement of the machinery. Universal joints consist of a cross-shaped yoke with needle bearings that allow for smooth rotation and transfer of torque, even when the shafts are not perfectly aligned. The design of universal joints enables PTO shafts to handle variations in load and torque while maintaining consistent power transmission.
3. Slip Clutches: Slip clutches are often incorporated into PTO shafts to provide overload protection. These clutches allow the PTO shaft to slip or disengage momentarily when excessive torque or resistance is encountered. Slip clutches typically consist of friction plates that can be adjusted to a specific torque setting. When the torque surpasses the predetermined limit, the clutch slips, preventing damage to the PTO shaft and connected equipment. Slip clutches are particularly useful when sudden changes in load or torque occur, providing a safety mechanism to protect the PTO shaft and associated machinery.
4. Torque Limiters: Torque limiters are another protective feature found in some PTO shafts. These devices are designed to automatically disengage the power transmission when a predetermined torque threshold is exceeded. Torque limiters can be mechanical, such as shear pin couplings or friction clutches, or electronic, utilizing sensors and control systems. When the torque exceeds the set limit, the torque limiter disengages, preventing further power transfer and protecting the PTO shaft from overload conditions. Torque limiters are effective in handling sudden spikes in torque and safeguarding the PTO shaft and associated equipment.
5. Underhåll och inspektion: Regular maintenance and inspection of PTO shafts are essential to ensure their proper functioning and ability to handle variations in load and torque. Routine maintenance includes lubrication of universal joints, inspection of shaft integrity, and tightening of fasteners. Regular inspections allow for early detection of wear, misalignment, or other issues that may affect the PTO shaft’s performance. By addressing maintenance and inspection requirements, operators can identify and address any concerns that may arise due to variations in load and torque, ensuring the continued safe and efficient operation of the PTO shaft.
6. Operator Awareness and Control: Operators play a crucial role in managing variations in load and torque during PTO shaft operation. They should be aware of the machinery’s operational limits, including the recommended torque ratings and load capacities of the PTO shaft. Proper training and understanding of the equipment’s capabilities enable operators to make informed decisions and adjust the operation when encountering significant load or torque changes. Operators should also be vigilant in monitoring the equipment’s performance, watching for any signs of excessive vibration, noise, or other indications of potential issues related to load and torque variations.
By incorporating robust mechanical design, utilizing universal joints, slip clutches, torque limiters, and implementing proper maintenance practices, PTO shafts are equipped to handle variations in load and torque during operation. These features ensure reliable power transmission, protect against overload conditions, and contribute to the safe and efficient functioning of the PTO shaft and the machinery it drives.

What benefits do PTO shafts offer for various types of machinery?
PTO shafts (Power Take-Off shafts) offer several benefits for various types of machinery in agricultural and industrial applications. They provide a flexible and efficient means of power transmission, enabling machinery to perform specific tasks and functions. Here’s a detailed explanation of the benefits that PTO shafts offer for different types of machinery:
Versatility: PTO shafts contribute to the versatility of machinery by allowing them to be powered by a common power source, such as a tractor or an engine. This means that a single power source can be used to drive multiple implements or machines by simply connecting and disconnecting the PTO shaft. For example, in agriculture, a tractor equipped with a PTO shaft can power various implements such as mowers, balers, tillers, sprayers, and grain augers. Similarly, in industrial applications, PTO shafts enable the use of a single engine or motor to power different machines or equipment, such as generators, pumps, compressors, and industrial mixers.
Efficiency: PTO shafts offer an efficient method of power transfer from the power source to the machinery. By directly connecting the power source to the driven machine, PTO shafts minimize energy losses that may occur with other power transmission methods. This direct power transfer results in improved overall efficiency and performance of the machinery. Additionally, PTO shafts allow for the adjustment of rotational speed and power output to match the requirements of the specific machinery, ensuring optimal operation and reducing unnecessary energy consumption.
Cost Savings: The use of PTO shafts can lead to cost savings in multiple ways. Firstly, by utilizing a single power source to drive multiple machines or implements, the need for separate engines or motors for each piece of equipment is eliminated, reducing capital costs. Secondly, PTO shafts eliminate the requirement for additional fuel or energy sources, as they tap into the existing power source, resulting in lower fuel or energy expenses. Additionally, the versatility offered by PTO shafts allows for improved equipment utilization, maximizing the return on investment.
Flexibility: PTO shafts provide flexibility in terms of equipment setup and configuration. They can be adjusted in length or equipped with telescopic sections, allowing for easy adaptation to different equipment arrangements and varying distances between the power source and the driven machinery. This flexibility enables operators to quickly connect and disconnect the PTO shafts as needed, facilitating efficient equipment changes and reducing downtime. Moreover, the ability to adjust the rotational speed and power output of the PTO shafts adds further flexibility, accommodating the specific requirements of different machinery and applications.
Ease of Use: PTO shafts are relatively easy to use, making them accessible to operators with minimal training. The process of connecting and disconnecting the PTO shafts is straightforward, often involving a simple coupling or locking mechanism. This ease of use enhances equipment operability, allowing operators to quickly switch between different implements or machines without significant effort or time-consuming procedures. Furthermore, the direct power transfer through PTO shafts simplifies equipment operation, as the machinery can be powered by the existing power source without the need for additional controls or power management systems.
Increased Productivity: PTO shafts contribute to increased productivity in agricultural and industrial operations. By enabling the use of versatile machinery configurations, operators can perform a wide range of tasks using a single power source. This eliminates the need for manual labor or the use of multiple machines, streamlining workflow and reducing the time required to complete various operations. The efficiency and reliability of power transfer through PTO shafts also contribute to improved productivity by ensuring consistent and effective operation of machinery, resulting in enhanced output and reduced downtime.
Safety: While not directly related to machinery performance, PTO shafts also offer safety benefits. The implementation of safety shields or guards on PTO shafts helps prevent accidental contact with the rotating shaft, reducing the risk of injuries to operators. These safety features are designed to cover the rotating shaft and universal joints, ensuring that operators cannot come into contact with them during operation. Proper training on PTO shaft operation and adherence to safety guidelines further enhance operator safety when working with PTO-driven machinery.
In summary, PTO shafts offer a range of benefits for various types of machinery. These benefits include increased versatility, improved efficiency, cost savings, flexibility in equipment configurations, ease of use, increased productivity, and enhanced operator safety. PTO shafts play a crucial role in agricultural and industrial applications by enabling the direct power transfer from a common power source to different machines or implements, resulting in optimized performance and operational effectiveness.


editor by CX 2024-01-10