Product Description

Small/Mini/Compact/Agricultural/Farm/Garden Telescopic Wheel Front End Shovel Backhoe Loader For Sale

General introduction:

STEEL CZPT M915 telescopic wheel loader is a new design to the market which besides the normal function of loaders, also have rear output and 3 point hitch for attachments to be used at the rear end, thus it can be used as both a loader and a tractor.
Compared with other Chinese wheel loaders, STEEL CAMEL loader is more compact size, better mobility in very tight space and narrow indoors.
With Perkin/Yanma/Kohle engine, 4 independent hydraulic wheel motors, flexible articulation, STEEL CAMEL loader is powerful and better through capacity on all rough tarrain.

Multifunction working device:

1.Telescopic boom with 3562mm reach

2.Big hydraulic auluary for attachments, 41l/min, or 82L/min, 2 gears meet different work requirement.

3.Electrical output for some special attachments

4. Hydraulic quick coupling for easy changing attachments

5. Boom floating and self levering

Loader technical data:

There’s 3 different models of STEEL CZPT M900 series mini telescopic loader, all have same features and design, just differs in sizes, details as below: 

Detailed images:

Inside cabin

Telescopic boom

Tipping cabin 

Rear hydraulic output and 3 point hitch 

skid steer loader adapter plate (optional). Customers who had some attachments can choose this option to save money buy new ones

Applications:

Loader+Tractor, 1 Multi-purpose helper for all your works
Front part is loader, with telescopic boom, hydraulic output, quick hitch and coupling system for various attachments, like bucket, fork, grapple, auger, hammer, lawn mower, etc.

Rear part is tractor, with hydraulic output, 3-point hitch, hydraulic PTO, for rotary tiller, flail mower, plough, harrow, trailer, etc.
STEEL CZPT series machines are widely used in farming, agriculture, landscaping, gardening, construction, municiple, etc.


Attachments

Packing and loading:

Till now STEEL CZPT products, telehandlers, wheel loaders, excavators, attachments etc. have been servicing customers in many countries, like Germany, Russia, Poland, UK, Argentina, Australia, USA, Canada, Indonisia, Spain……

  

Our Service:

Inquiry Now:
With more than 10 years’ experience of production and exporting, I’m ready to be your reliable consultant about products and importing procedure anytime. 

Model M910  M915 M920
Dimension with cabin (LxWxH) 2690x1300x2285mm 3400x1500x2300mm 3650x1500x2350mm
Max.lifting height (boom retract)  2512mm 3000mm 3200mm
Max.lifting height (boom extend)  3030mm 3562mm 3900mm
Pulling force 12kN 18kN 19kN
Bucket capacity 0.5cbm 0.8cbm 1 cbm
Max. loading capacity 1000kg 1500kg 2000kg
Min. turning radius 2120mm 2800mm 3100mm
Turning angle 450 450 450
Min. ground clearance 268mm 330mm 330mm
Speed 0-10 km/h 0~12~24km/h, two speed 0~12~24km/h, two speed
Operating weight 1850 kg 2300kg 2600kg
Standard tire 26X12-12 31X15.5-15 31X15.5-15
Tire pressure 2.8 bar 2.8 bar 2.8 bar
Oil tank capacity 45L 80L 80L
Pressure 190bar 190 bar 190bar
Working oil flow 33.5L/minx2 41L/min x 2 50L/min x 2
Tracking oil flow 78L/min 120L/min 120L/min
Oil model(mineral oil) L-HL46 L-HL46 L-HL46
Fuel tank capacity 30L 42L 52L
Battery 60Ah, 12V 60Ah, 12V 60Ah, 12V
Engine Perkin/Yanma Perkin/Yanma/Kohle Yanma/Kohle/Chinese
Rated power 33hp 50hp 68hp-74hp

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Pre-Sales Service:
 
After Sales Service:
* Inquiry and consulting support. 
* Oversea sample testing support. 
* Visiting our Factory.
* Transporting from factory to door
* Training how to instal the machine,
* Training how to use the machine. 
* Engineers available to service machinery overseas.
* Warranty and whole workling life service
Model M910  M915 M920
Dimension with cabin (LxWxH) 2690x1300x2285mm 3400x1500x2300mm 3650x1500x2350mm
Max.lifting height (boom retract)  2512mm 3000mm 3200mm
Max.lifting height (boom extend)  3030mm 3562mm 3900mm
Pulling force 12kN 18kN 19kN
Bucket capacity 0.5cbm 0.8cbm 1 cbm
Max. loading capacity 1000kg 1500kg 2000kg
Min. turning radius 2120mm 2800mm 3100mm
Turning angle 450 450 450
Min. ground clearance 268mm 330mm 330mm
Speed 0-10 km/h 0~12~24km/h, two speed 0~12~24km/h, two speed
Operating weight 1850 kg 2300kg 2600kg
Standard tire 26X12-12 31X15.5-15 31X15.5-15
Tire pressure 2.8 bar 2.8 bar 2.8 bar
Oil tank capacity 45L 80L 80L
Pressure 190bar 190 bar 190bar
Working oil flow 33.5L/minx2 41L/min x 2 50L/min x 2
Tracking oil flow 78L/min 120L/min 120L/min
Oil model(mineral oil) L-HL46 L-HL46 L-HL46
Fuel tank capacity 30L 42L 52L
Battery 60Ah, 12V 60Ah, 12V 60Ah, 12V
Engine Perkin/Yanma Perkin/Yanma/Kohle Yanma/Kohle/Chinese
Rated power 33hp 50hp 68hp-74hp

###

Pre-Sales Service:
 
After Sales Service:
* Inquiry and consulting support. 
* Oversea sample testing support. 
* Visiting our Factory.
* Transporting from factory to door
* Training how to instal the machine,
* Training how to use the machine. 
* Engineers available to service machinery overseas.
* Warranty and whole workling life service

The Benefits of Spline Couplings for Disc Brake Mounting Interfaces

Spline couplings are commonly used for securing disc brake mounting interfaces. Spline couplings are often used in high-performance vehicles, aeronautics, and many other applications. However, the mechanical benefits of splines are not immediately obvious. Listed below are the benefits of spline couplings. We’ll discuss what these advantages mean for you. Read on to discover how these couplings work.

Disc brake mounting interfaces are splined

There are two common disc brake mounting interfaces – splined and six-bolt. Splined rotors fit on splined hubs; six-bolt rotors will need an adapter to fit on six-bolt hubs. The six-bolt method is easier to maintain and may be preferred by many cyclists. If you’re thinking of installing a disc brake system, it is important to know how to choose the right splined and center lock interfaces.
splineshaft

Aerospace applications

The splines used for spline coupling in aircraft are highly complex. While some previous researches have addressed the design of splines, few publications have tackled the problem of misaligned spline coupling. Nevertheless, the accurate results we obtained were obtained using dedicated simulation tools, which are not commercially available. Nevertheless, such tools can provide a useful reference for our approach. It would be beneficial if designers could use simple tools for evaluating contact pressure peaks. Our analytical approach makes it possible to find answers to such questions.
The design of a spline coupling for aerospace applications must be accurate to minimize weight and prevent failure mechanisms. In addition to weight reduction, it is necessary to minimize fretting fatigue. The pressure distribution on the spline coupling teeth is a significant factor in determining its fretting fatigue. Therefore, we use analytical and experimental methods to examine the contact pressure distribution in the axial direction of spline couplings.
The teeth of a spline coupling can be categorized by the type of engagement they provide. This study investigates the position of resultant contact forces in the teeth of a spline coupling when applied to pitch diameter. Using FEM models, numerical results are generated for nominal and parallel offset misalignments. The axial tooth profile determines the behavior of the coupling component and its ability to resist wear. Angular misalignment is also a concern, causing misalignment.
In order to assess wear damage of a spline coupling, we must take into consideration the impact of fretting on the components. This wear is caused by relative motion between the teeth that engage them. The misalignment may be caused by vibrations, cyclical tooth deflection, or angular misalignment. The result of this analysis may help designers improve their spline coupling designs and develop improved performance.
CZPT polyimide, an abrasion-resistant polymer, is a popular choice for high-temperature spline couplings. This material reduces friction and wear, provides a low friction surface, and has a low wear rate. Furthermore, it offers up to 50 times the life of metal on metal spline connections. For these reasons, it is important to choose the right material for your spline coupling.
splineshaft

High-performance vehicles

A spline coupler is a device used to connect splined shafts. A typical spline coupler resembles a short pipe with splines on either end. There are two basic types of spline coupling: single and dual spline. One type attaches to a drive shaft, while the other attaches to the gearbox. While spline couplings are typically used in racing, they’re also used for performance problems.
The key challenge in spline couplings is to determine the optimal dimension of spline joints. This is difficult because no commercial codes allow the simulation of misaligned joints, which can destroy components. This article presents analytical approaches to estimating contact pressures in spline connections. The results are comparable with numerical approaches but require special codes to accurately model the coupling operation. This research highlights several important issues and aims to make the application of spline couplings in high-performance vehicles easier.
The stiffness of spline assemblies can be calculated using tooth-like structures. Such splines can be incorporated into the spline joint to produce global stiffness for torsional vibration analysis. Bearing reactions are calculated for a certain level of misalignment. This information can be used to design bearing dimensions and correct misalignment. There are three types of spline couplings.
Major diameter fit splines are made with tightly controlled outside diameters. This close fit provides concentricity transfer from the male to the female spline. The teeth of the male spline usually have chamfered tips and clearance with fillet radii. These splines are often manufactured from billet steel or aluminum. These materials are renowned for their strength and uniform grain created by the forging process. ANSI and DIN design manuals define classes of fit.
splineshaft

Disc brake mounting interfaces

A spline coupling for disc brake mounting interfaces is a type of hub-to-brake-disc mount. It is a highly durable coupling mechanism that reduces heat transfer from the disc to the axle hub. The mounting arrangement also isolates the axle hub from direct contact with the disc. It is also designed to minimize the amount of vehicle downtime and maintenance required to maintain proper alignment.
Disc brakes typically have substantial metal-to-metal contact with axle hub splines. The discs are held in place on the hub by intermediate inserts. This metal-to-metal contact also aids in the transfer of brake heat from the brake disc to the axle hub. Spline coupling for disc brake mounting interfaces comprises a mounting ring that is either a threaded or non-threaded spline.
During drag brake experiments, perforated friction blocks filled with various additive materials are introduced. The materials included include Cu-based powder metallurgy material, a composite material, and a Mn-Cu damping alloy. The filling material affects the braking interface’s wear behavior and friction-induced vibration characteristics. Different filling materials produce different types of wear debris and have different wear evolutions. They also differ in their surface morphology.
Disc brake couplings are usually made of two different types. The plain and HD versions are interchangeable. The plain version is the simplest to install, while the HD version has multiple components. The two-piece couplings are often installed at the same time, but with different mounting interfaces. You should make sure to purchase the appropriate coupling for your vehicle. These interfaces are a vital component of your vehicle and must be installed correctly for proper operation.
Disc brakes use disc-to-hub elements that help locate the forces and displace them to the rim. These elements are typically made of stainless steel, which increases the cost of manufacturing the disc brake mounting interface. Despite their benefits, however, the high braking force loads they endure are hard on the materials. Moreover, excessive heat transferred to the intermediate elements can adversely affect the fatigue life and long-term strength of the brake system.