Categories: Katalog Produk

China best Premium Quality 25 Spline Drive Shaft for CZPT Pajero V73 00-07

Penerangan Produk

As a professional manufacturer for propeller shaft, we have +1000 items for all kinds of car, At present, our products are mainly sold in North America, Europe, Australia, South Korea, the Middle East and Southeast Asia and other regions, applicable models are European cars, American cars, Japanese and Korean cars, etc.

 

Our advantage:

 

1. Full range of products

2. MOQ qty: 1pcs/items

3. Delivery on time

4: Warranty: 1 YEAR

OE NUMBER MR580390
TYPE MITSUBISHI Pajero V73 00-07 auto 25 spline
MATERIAL STEEL
BALANCE STHangZhouRD G16,3200RMP

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Perkhidmatan selepas jualan: 1year
Keadaan: Baru
Color: Black
Penyesuaian:
Tersedia

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Permintaan Tersuai

.kos-penghantaran-tm .status-tm-mati{latar belakang: tiada;padan:0;warna: #1470cc}

Kos Penghantaran:

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tentang kos penghantaran dan anggaran masa penghantaran.
Kaedah Pembayaran:









Bayaran Awal



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Mata wang: US$
Pulangan & bayaran balik: Anda boleh memohon bayaran balik sehingga 30 hari selepas penerimaan produk.

Bolehkah aci spline digunakan dalam kedua-dua jentera mudah alih dan pegun?

Yes, spline shafts can be used in both mobile and stationary machinery. Here’s a detailed explanation:

1. Jentera Mudah Alih:

Aci spline banyak digunakan dalam pelbagai jenis jentera mudah alih. Contohnya:

  • Dalam Aplikasi Automotif: Aci spline biasanya digunakan dalam rangkaian pemacu automotif, di mana ia menghantar tork dari enjin ke roda. Ia terdapat dalam komponen seperti aci transmisi, pembezaan dan gandar.
  • Dalam Peralatan Pembinaan dan Pengalihan Tanah: Aci spline digunakan dalam jentera pembinaan, seperti jengkaut, pemuat dan jentolak. Ia digunakan dalam sistem rangkaian kuasa untuk memindahkan tork dan memacu pam hidraulik atau menggerakkan mesin.
  • Dalam Peralatan Pertanian: Aci spline digunakan dalam jentera pertanian seperti traktor, mesin gabungan dan mesin penuai. Ia membantu memindahkan kuasa dari enjin ke pelbagai komponen yang digerakkan, seperti roda, PTO (power take-off) atau sistem hidraulik.
  • Dalam Kenderaan Luar Jalan: Aci spline terdapat dalam kenderaan luar jalan, termasuk ATV (kenderaan semua rupa bumi) dan kenderaan tentera. Ia membolehkan penghantaran kuasa ke roda atau komponen drivetrain, memastikan mobiliti dan prestasi di rupa bumi yang mencabar.

2. Jentera Pegun:

Aci spline juga digunakan secara meluas dalam jentera pegun merentasi pelbagai industri. Beberapa contohnya termasuk:

  • Dalam Peralatan Mesin: Aci spline digunakan dalam peralatan mesin, seperti mesin bubut, mesin penggilingan dan mesin pengisar. Ia menyediakan penghantaran tork dalam mekanisme gelendong atau skru plumbum, membolehkan kawalan gerakan ketepatan dan operasi penyingkiran bahan.
  • Dalam Kotak Gear Industri: Aci spline memainkan peranan penting dalam kotak gear industri yang digunakan dalam kilang pembuatan dan pemprosesan. Ia menghantar tork antara aci input dan output, membolehkan pengurangan atau peningkatan kelajuan seperti yang diperlukan oleh aplikasi.
  • Dalam Penjanaan Kuasa: Aci spline digunakan dalam peralatan penjanaan kuasa, termasuk turbin dan penjana. Ia membantu menghantar tork antara rotor berputar dan komponen pegun, memudahkan penukaran tenaga.
  • Dalam Sistem Pam dan Pemampat: Aci splin terdapat dalam pam dan pemampat yang digunakan dalam pelbagai industri. Ia menghantar tork dari motor atau penggerak utama ke elemen pendesak atau pemampat, membolehkan pemindahan bendalir atau gas.

Kefleksibelan aci spline menjadikannya sesuai untuk pelbagai aplikasi, baik bergerak mahupun pegun. Keupayaannya untuk menghantar tork dengan cekap, menampung ketidaksejajaran, mengagihkan beban dan menyediakan sambungan yang andal menjadikannya pilihan utama dalam pelbagai jentera merentasi industri.

How do spline shafts handle variations in environmental conditions?

Spline shafts are designed to handle variations in environmental conditions and maintain their performance and reliability. Here’s a detailed explanation:

1. Temperature Variations:

Spline shafts are engineered to withstand a wide range of temperature variations. They are constructed from materials that exhibit good thermal stability, such as high-grade steels or alloys. These materials have low coefficients of thermal expansion, minimizing the effects of temperature changes on the shaft’s dimensional stability. Additionally, proper lubrication with temperature-resistant lubricants helps reduce friction and wear in the spline engagement, even under extreme temperature conditions.

2. Moisture and Corrosion Resistance:

Spline shafts can be designed to resist moisture and corrosion, ensuring their performance in humid or corrosive environments. Protective coatings, such as platings or surface treatments, can be applied to the shaft’s surfaces to enhance their resistance to moisture, oxidation, and corrosion. Additionally, selecting materials with inherent corrosion resistance, such as stainless steel or specialized alloys, can further enhance the spline shaft’s ability to handle environmental conditions.

3. Dust and Contaminant Protection:

Spline shafts used in environments with high levels of dust, dirt, or contaminants can be equipped with protective measures. Seals, gaskets, or covers can be employed to prevent the ingress of particles into the spline engagement. These protective measures help maintain the integrity of the spline profile, minimize wear, and ensure smooth operation even in dirty or dusty conditions.

4. Lubrication and Maintenance:

Proper lubrication is essential for the reliable operation of spline shafts, especially in challenging environmental conditions. Lubricants with appropriate viscosity and additives can be selected to provide effective lubrication and protection against wear, friction, and corrosion. Regular maintenance and lubrication intervals should be followed to ensure optimal performance and longevity of the spline shaft.

5. Shock and Vibration Resistance:

Spline shafts are designed to withstand shock and vibration encountered in various applications. The spline engagement and shaft design can incorporate features such as tighter tolerances, increased contact area, or damping elements to minimize the effects of shock and vibration. Additionally, proper fastening and mounting techniques help secure the shaft and reduce the risk of loosening or failure due to dynamic loads.

6. Environmental Sealing:

In certain applications where spline shafts are exposed to harsh environmental conditions, such as underwater or in chemical environments, environmental sealing can be employed. Sealing methods such as O-rings, gaskets, or specialized seals provide an additional barrier against external elements, ensuring the integrity and performance of the spline shaft.

7. Compliance with Standards:

Spline shafts used in specific industries or applications may need to comply with industry standards or regulations regarding environmental conditions. Manufacturers can design and test their spline shafts to meet these requirements, ensuring that the shafts can handle the specified environmental conditions and perform reliably.

By incorporating design considerations, appropriate materials, protective coatings, lubrication, and maintenance practices, spline shafts can effectively handle variations in environmental conditions. This enables them to maintain their functionality, performance, and longevity even in challenging operating environments.

What is a spline shaft and what is its primary function?

A spline shaft is a mechanical component that consists of a series of ridges or teeth (called splines) that are machined onto the surface of the shaft. Its primary function is to transmit torque while allowing for the relative movement or sliding of mating components. Here’s a detailed explanation:

1. Structure and Design:

A spline shaft typically has a cylindrical shape with external or internal splines. The external spline shaft has splines on the outer surface, while the internal spline shaft has splines on the inner bore. The number, size, and shape of the splines can vary depending on the specific application and design requirements.

2. Torque Transmission:

The main function of a spline shaft is to transmit torque between two mating components, such as gears, couplings, or other rotational elements. The splines on the shaft engage with corresponding splines on the mating component, creating a mechanical interlock. When torque is applied to the spline shaft, the engagement between the splines ensures that the rotational force is transferred from the shaft to the mating component, allowing the system to transmit power.

3. Relative Movement:

Unlike other types of shafts, a spline shaft allows for relative movement or sliding between the shaft and the mating component. This sliding motion can be axial (along the shaft’s axis) or radial (perpendicular to the shaft’s axis). The splines provide a precise and controlled interface that allows for this movement while maintaining torque transmission. This feature is particularly useful in applications where axial or radial displacement or misalignment needs to be accommodated.

4. Load Distribution:

Another important function of a spline shaft is to distribute the applied load evenly along its length. The splines create multiple contact points between the shaft and the mating component, which helps to distribute the torque and axial or radial forces over a larger surface area. This load distribution minimizes stress concentrations and reduces the risk of premature wear or failure.

5. Versatility and Applications:

Spline shafts find applications in various industries and systems, including automotive, aerospace, machinery, and power transmission. They are commonly used in gearboxes, drive systems, power take-off units, steering systems, and many other rotational mechanisms where torque transmission, relative movement, and load distribution are essential.

6. Pertimbangan Reka Bentuk:

When designing a spline shaft, factors such as the torque requirements, speed, applied loads, and environmental conditions need to be considered. The spline geometry, material selection, and surface finish are critical for ensuring proper engagement, load-bearing capacity, and durability of the spline shaft.

In summary, a spline shaft is a mechanical component with splines that allows for torque transmission while accommodating relative movement or sliding between mating components. Its primary function is to transmit rotational force, distribute loads, and enable axial or radial displacement in various applications requiring precise torque transfer and flexibility.


editor by CX 2024-04-17

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