Produktbeskrivning

Produktbeskrivning

 

Features:

1.Universal 3 point hitch with hydraulic offset, cat.1&2

2.PTO Shaft 160cm

3.Gearbox PTO 540 r.p.m with free-wheel

4. 3  transmission belts 

5. Adjustable roller unit

6. Adjustable pair of skids

7. Electronically balanced spiral rotor

8.400g hammers

9.Front safety flap

Specifications:
 

Model Net Weight (Kg) Gross Weight (Kg) Cutting Width 400g Hammer Tilt Up Angle Tilt Down Angle
AGLM110 252 293 1070mm 18 55° 90°
AGLM130 268 311 1270mm 22
AGLM150 285 330 1470mm 26

Why choose CHINAMFG IMPLEMENT:

Any quality problem you have in 1 year, we promise to help you solve  asap.

Every customer to us is unique, best service will give you.

We provide you our machine with good material and promise not to deduct the material.

Every model of our machine will have a testing before the delivery to the port.

If you want to visit our factory, our boss will give you a best reception.

Every year’s Christmas we prepare gifts to our customer.

Every year we  attend the agricultural exhibition in Germany or Italy.

 

Förpackning och frakt

 

Transport

Workshop

Certificate

  /* 22 januari 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/)))

Typ: Professional Mowers
Moving Way: Tractor-Mounted
Cutter Type: Rotary Lawn Mower
Applicable Area: 500-1000m²
Feature: 2-Stroke, Height Adjustable Handles, Steel Chassis, Mulch
Certifiering: CE
Anpassning:
Tillgänglig

|

Anpassad förfrågan

kraftuttagsaxel

Can PTO shafts be adapted for use in both agricultural and industrial settings?

Yes, PTO (Power Take-Off) shafts can be adapted for use in both agricultural and industrial settings. While PTO shafts are commonly associated with agricultural machinery, they are versatile components that can be utilized in various applications beyond the agricultural sector. With appropriate modifications and considerations, PTO shafts can effectively transfer power in industrial settings as well. Here’s a detailed explanation of how PTO shafts can be adapted for both agricultural and industrial use:

1. Standard PTO Shaft Design: PTO shafts have a standardized design that allows for compatibility and interchangeability across different equipment and machinery. This standardization enables PTO shafts to be used in various applications, including both agricultural and industrial settings. The basic components of a PTO shaft, such as the universal joints, splined shafts, and protective guards, remain consistent, regardless of the specific application. This consistency allows for easy adaptation and integration into different machinery and equipment.

2. Shaft Length and Sizing: PTO shafts can be customized in terms of length and sizing to suit specific requirements in both agricultural and industrial settings. The length of the shaft can be adjusted to accommodate different distances between the power source and the driven machinery. This flexibility allows for optimal power transmission and ensures compatibility with various equipment setups. Similarly, the sizing of the PTO shaft, including the diameter and splined shaft specifications, can be tailored to meet the torque and power requirements of different applications, whether in agriculture or industry.

3. Power Requirements: PTO shafts are designed to transfer power from a power source to driven machinery. In agricultural settings, the power source is typically a tractor or other agricultural vehicles, while in industrial settings, it can be an engine, motor, or power unit specific to the industry. PTO shafts can be adapted to handle different power requirements by considering factors such as torque capacity, rotational speed, and the specific demands of the machinery or equipment being driven. By selecting the appropriate PTO shaft based on the power requirements, the shaft can effectively transfer power in both agricultural and industrial applications.

4. Safety Considerations: Safety is a critical aspect of PTO shaft design and usage, regardless of the application. PTO shafts incorporate safety features such as protective guards and shields to prevent accidental contact with rotating components. These safety measures are essential in agricultural and industrial settings to minimize the risk of entanglement, injury, or damage. Adapting PTO shafts for industrial use may require additional safety considerations based on the specific hazards present in industrial environments. However, the core safety principles and features of PTO shafts can be applied and adapted to ensure safe operation in both settings.

5. Specialized Attachments: PTO shafts can be equipped with specialized attachments or adapters to accommodate different driven machinery or equipment. In agricultural settings, PTO shafts commonly connect to implements such as mowers, balers, or sprayers. In industrial settings, PTO shafts may be adapted to connect to various industrial machinery, including pumps, generators, compressors, or conveyors. These specialized attachments ensure compatibility and efficient power transfer between the PTO shaft and the driven equipment, allowing for seamless integration in both agricultural and industrial applications.

6. Miljöhänsyn: PTO shafts can be adapted to address specific environmental conditions in both agricultural and industrial settings. For example, in agricultural applications, PTO shafts may need to withstand exposure to dirt, dust, moisture, and varying weather conditions. Industrial settings may have their unique environmental challenges, such as exposure to chemicals, high temperatures, or abrasive materials. By selecting PTO shaft materials, protective coatings, and seals suitable for the specific environment, the shafts can be adapted to ensure reliable and durable performance in various settings.

7. Överensstämmelse med standarder: PTO shafts, whether used in agricultural or industrial settings, need to comply with relevant safety standards and regulations. Manufacturers adhere to guidelines and requirements set by organizations such as the American Society of Agricultural and Biological Engineers (ASABE) or other regional safety authorities. Compliance ensures that PTO shafts meet safety criteria and performance standards applicable to both agricultural and industrial environments. Users can rely on standardized PTO shafts that have undergone testing and certification, offering assurance regarding their reliability and safety.

By considering the factors mentioned above, PTO shafts can be adapted to effectively transfer power in both agricultural and industrial settings. The versatile nature of PTO shafts, coupled with customization options, safety considerations, specialized attachments, and compliance with standards, allows for their successful integration into a wide range of machinery and equipment across various industries.

kraftuttagsaxel

Finns det några begränsningar eller nackdelar med kraftuttagsaxlar?

Även om kraftuttagsaxlar (PTO) erbjuder många fördelar när det gäller kraftöverföring och mångsidighet, har de också vissa begränsningar och nackdelar. Det är viktigt att beakta dessa faktorer när man använder kraftuttagsaxlar för att säkerställa säker och effektiv drift. Här är en detaljerad förklaring av några begränsningar och nackdelar som är förknippade med kraftuttagsaxlar:

1. Säkerhetsrisker: En av de främsta farhågorna med kraftuttagsaxlar är risken för säkerhetsrisker. Kraftuttagsaxlar roterar med höga hastigheter och kan utgöra en betydande risk om de inte skyddas eller hanteras korrekt. Oavsiktlig kontakt med en exponerad eller otillräckligt skyddad kraftuttagsaxel kan leda till allvarliga skador, inklusive intrassling, amputation eller till och med dödsfall. Det är avgörande att följa säkerhetsriktlinjer, implementera korrekt skydd och säkerställa att operatörerna är välutbildade i säker hantering för att minska dessa risker.

2. Underhåll och smörjning: Kraftöverföringsaxlar kräver regelbundet underhåll och smörjning för att säkerställa optimal prestanda och livslängd. Rörliga delar, såsom universalkopplingar och splines, måste inspekteras, rengöras och smörjas med rekommenderade intervall. Försummelse av underhåll kan leda till för tidigt slitage, minskad effektivitet och potentiella fel. Korrekt underhåll, inklusive regelbundna inspektioner och snabb smörjning, är avgörande för att mildra dessa problem.

3. Justering och vinklar: Kraftöverföringsaxlar är beroende av korrekt uppriktning och vinklar för att säkerställa effektiv kraftöverföring. Felaktig uppriktning eller alltför stora vinklar mellan kraftkällan och drivna maskiner kan orsaka ökat slitage och belastning på komponenterna, vilket leder till förtida haverier. Att säkerställa korrekt uppriktning och vinkeljustering, med hjälp av justerbara glidok eller andra metoder, är viktigt för att förhindra överdriven belastning på kraftöverföringsaxeln och tillhörande utrustning.

4. Längdbegränsningar: Kraftuttagsaxlar har begränsningar vad gäller maximal och minimal längd på grund av tekniska begränsningar. Teleskopkonstruktionen möjliggör viss justering, men det finns en praktisk gräns för hur mycket axeln kan förlängas eller dras in. Om avståndet mellan kraftkällan och den drivna maskinen överstiger den maximala eller understiger kraftuttagsaxelns minimilängd kan alternativa lösningar eller modifieringar krävas. I vissa fall kan ytterligare komponenter, såsom drivaxelförlängningar eller växellådor, vara nödvändiga för att överbrygga avståndet.

5. Kompatibilitet: Även om tillverkare strävar efter att säkerställa kompatibilitet kan det fortfarande finnas utmaningar med att hitta rätt kraftuttagsaxel för specifika utrustningskonfigurationer. Utrustning kan ha unika krav vad gäller splinestorlekar, vridmoment eller anslutningsmetoder som kanske inte är lättillgängliga eller kompatibla med standard kraftuttagsaxlar. Anpassning kan krävas för att åtgärda dessa kompatibilitetsproblem, vilket kan leda till ökade kostnader eller ledtider.

6. Buller och vibrationer: Kraftuttagsaxlar i drift kan generera betydande buller och vibrationer, särskilt vid högre hastigheter. Detta kan vara en olägenhet för förarna och kan kräva ytterligare åtgärder för att minska bullernivåerna eller dämpa vibrationer. Överdrivna vibrationer kan också påverka kraftuttagsaxelns och ansluten utrustnings totala prestanda och livslängd. Att implementera vibrationsdämpare eller använda flexibla kopplingar kan bidra till att mildra dessa problem.

7. Effektgränser: Kraftöverföringsaxlar har specifika effektgränser baserat på deras design, material och komponenter. Att överskrida dessa effektgränser kan leda till för tidigt slitage, komponentfel eller till och med axelbrott. Det är avgörande att förstå och följa de rekommenderade effektklassificeringarna för kraftöverföringsaxlar för att säkerställa säker och tillförlitlig drift. I vissa fall kan det vara nödvändigt att uppgradera till en kraftöverföringsaxel med högre kapacitet eller implementera ytterligare kraftöverföringskomponenter för att tillgodose högre effektkrav.

8. Komplex installation och borttagning: Att installera och demontera kraftuttagsaxlar kan vara en komplex process, särskilt i trånga utrymmen eller vid hantering av tung utrustning. Det kan kräva att splines justeras, kopplingar kopplas in och låsmekanismer säkras. Felaktiga installations- eller demonteringstekniker kan leda till skador på axeln eller tillhörande utrustning. Korrekt utbildning, hantering av utrustning och att man följer tillverkarens riktlinjer är avgörande för att förenkla och säkerställa säker installation och demontering av kraftuttagsaxlar.

Trots dessa begränsningar och nackdelar är kraftuttagsaxlar fortfarande flitigt använda och värdefulla komponenter för kraftöverföring inom olika industrier. Genom att ta hänsyn till dessa överväganden och implementera lämpliga säkerhetsåtgärder, underhållspraxis och uppriktningsprocedurer kan de potentiella nackdelarna med kraftuttagsaxlar effektivt mildras, vilket möjliggör säker och effektiv drift.

kraftuttagsaxel

Can you explain the different types of PTO shafts and their applications?

PTO shafts (Power Take-Off shafts) come in various types, each designed for specific applications and requirements. The different types of PTO shafts offer versatility and compatibility with a wide range of machinery and implements. Here’s an explanation of the most common types of PTO shafts and their applications:

1. Standard PTO Shaft: The standard PTO shaft, also known as a splined shaft, is the most common type used in agricultural and industrial machinery. It consists of a solid steel shaft with splines or grooves along its length. The standard PTO shaft typically has six splines, although variations with four or eight splines can be found. This type of PTO shaft is widely used in tractors and various implements, including mowers, balers, tillers, and rotary cutters. The splines provide a secure connection between the power source and the driven machinery, ensuring efficient power transfer.

2. Shear Bolt PTO Shaft: Shear bolt PTO shafts are designed with a safety feature that allows the shaft to separate in case of overload or sudden shock to protect the driveline components. These PTO shafts incorporate a shear bolt mechanism that connects the tractor’s power take-off to the driven machinery. In the event of excessive load or sudden resistance, the shear bolt is designed to break, disconnecting the PTO shaft and preventing damage to the driveline. Shear bolt PTO shafts are commonly used in equipment that may encounter sudden obstructions or high-stress situations, such as wood chippers, stump grinders, and heavy-duty rotary cutters.

3. Friction Clutch PTO Shaft: Friction clutch PTO shafts feature a clutch mechanism that allows for smooth engagement and disengagement of the power transfer. These PTO shafts typically incorporate a friction disc and a pressure plate, similar to a traditional vehicle clutch system. The friction clutch allows operators to gradually engage or disengage the power transfer, reducing shock loads and minimizing wear on the driveline components. Friction clutch PTO shafts are commonly used in applications where precise control of power engagement is required, such as in hydraulic pumps, generators, and industrial mixers.

4. Constant Velocity (CV) PTO Shaft: Constant Velocity (CV) PTO shafts, also known as homokinetic shafts, are designed to accommodate high angles of misalignment without affecting power transmission. They use a universal joint mechanism that allows for smooth power transfer even when the driven machinery is at an angle relative to the power source. CV PTO shafts are frequently used in applications where the machinery requires a significant range of movement or articulation, such as in articulated loaders, telescopic handlers, and self-propelled sprayers.

5. Telescopic PTO Shaft: Telescopic PTO shafts are adjustable in length, allowing for flexibility in equipment configuration and varying distances between the power source and the driven machinery. They consist of two or more concentric shafts that slide within each other, providing the ability to extend or retract the PTO shaft as needed. Telescopic PTO shafts are commonly used in applications where the distance between the tractor’s power take-off and the implement varies, such as in front-mounted implements, snow blowers, and self-loading wagons. The telescopic design enables easy adaptation to different equipment setups and minimizes the risk of the PTO shaft dragging on the ground.

6. Gearbox PTO Shaft: Gearbox PTO shafts are designed to adapt power transmission between different rotational speeds or directions. They incorporate a gearbox mechanism that allows for speed reduction or increase, as well as the ability to change rotational direction. Gearbox PTO shafts are commonly used in applications where the driven machinery requires a different speed or rotational direction than the tractor’s power take-off. Examples include grain augers, feed mixers, and industrial equipment that requires specific speed ratios or reversing capabilities.

It’s important to note that the availability and specific applications of PTO shaft types may vary based on regional and industry-specific factors. Additionally, certain machinery or implements may require specialized or custom PTO shafts to meet specific requirements.

In summary, the different types of PTO shafts, such as standard, shear bolt, friction clutch, constant velocity (CV), telescopic, and gearbox shafts, offer versatility and compatibility with various machinery and implements. Each type of PTO shaft is designed to address specific needs, such as power transfer efficiency, safety, smooth engagement, misalignment tolerance, adaptability, and speed/direction adjustment. Understanding the different types of PTO shafts and their applications is crucial for selecting the appropriate shaft forthe intended machinery and ensuring optimal performance and reliability.
China Custom CE Hydralic Arm Flail Mower Pto Shaft 160cm  China Custom CE Hydralic Arm Flail Mower Pto Shaft 160cm
editor by CX 2024-04-17