Issue: New
Application: Peanut
Amount of Rows: 2
Doing work Width(mm): 800 mm
Tractor Energy(HP): 18 – fifty five HP
Equipment Type: Harvester Device
Sort: Harvester equipment
Drive Variety: Tractor PTO pushed
Use: Peanut Harvester
Dimension(L*W*H): 2250 x1050 x1000mm
Bodyweight: 258 KG
Certificate: ISO9001:2008
Important Promoting Details: Large Productivity
Warranty: 1 12 months
Advertising and marketing Variety: New Merchandise
Movie outgoing-inspection: Supplied
Equipment Test Report: Supplied
Warranty of main elements: 1 12 months
Main Parts: Gearbox
Showroom Place: None
Applicable Industries: Farms, Retail, Marketing Company
Merchandise Title: Peanut harvester device
Cutting Width: 800mm
Digging depth: 200mm
Matched tractor power: eighteen-55HP
Productivity: .3-.55ha./hour
Driven type: Tractor PTO pushed
Adapted row spacing: three hundred-500mm
Digging kind: Shove sort
Color: Pink
Packaging Particulars: Iron frame web box
Port: HangZhou, HangZhou, ZheJiang , HangZhou, HangZhou

Item DESCRIPTION
This peanut harvester is mounted with the tractor of 18-55hp with back electrical power output shaft. The functioning theory of this digger is that the CZPT shovel digs up the soil and crops, and make crop and soil different however vibration sieve. The soil initial drip down from the clearance of vibration sieve, last but not least the crop crashed down on to the street from the back. The equipment are all manufactured of large-good quality bearings, oil seals and the bearings are dust-proof and waterproof, ensuring the sturdiness of the bearings in rainy weather conditions and sediment. Extend the life of the machine and let you generate more financial positive aspects.
This peanut harvester has functions of high harvesting effectiveness, minimal expense, broad application range, relevant to all varieties of soil, ground and ridge planting peanuts can be manufactured.

Complex SPECIFICATION

Product
Device
4UP-eighty
Operating width
mm
800
Digging rows

Two
Most significant CZPT depth
mm
200
Enter Rotation pace
R/min
540-720
Matched tractor power
HP
17-fifty five
Capability /hour

.33-.fifty four ha./hour
Digging Sort
Sort
Shovel sort
Angle
15° Agriculture Machinery elements for disc harrow (Angle of entering into floor)
Tailored row spacing /Ridge spacing
mm
200-three hundred /650-a thousand
Device fat
KGS
258
Out dimension
mm
2250 x1050 x1000

Solution Display

Related Goods

CANTON Reasonable EXHIBITION

FAQ

Q1: Are you a factory or buying and selling business?
We are a factory with self-supported import and export appropriate.
Q2: How can I have faith in on your company?
We are a entirely registered manufacture and exporting organization by China Export Registration Authorities. In addition, our merchandise have been exporting to a variety of countries including Switzerland, Russia, Spain, Netherlands, Australia, Peru, Thailand, Pakistan, Indonesia, Tanzania, Nigeria, South Africa, Sudan, Congo and so forth. The very good religion, RRF HangZhou CZPT FOOT MOUNTING Pace REDUCER GEARBOX TRANSMISSION punctual, rigid top quality handle and realistic value, during is the pledge we to each client.
Q3: The place is your manufacturing facility situated? How can I visit there?
Our factory is found in HangZhou City, ZheJiang Province, China. About 1 hour away from HangZhou Airport. All our clientele are warmly welcomed to pay a visit to us!
This autumn: How can I location an purchase from your site?
It is extremely easy.After you discover the employ you want on our website and spot an inquiry against it, or, get to the inquiry area and go away us a information there with name, region and telephone number, we will get in contact with you at the earliest. You can also e-mail us right or be a part of us on live chat for instantaneous solutions.
Q5: How can I make the payment?
Payment is manufactured by way of Telegraphic Transfer (T/T) through the bank in opposition to the proforma bill.30% as prepayment and the balance when the items are all set for transport.Irrevocable L/C at sight could be also approved.
Q6: What is the Payment terms?
FOB, the price of the implement with no sea shipment costs.
CIF, like the unit value + marine insurance + Cargo fees to your location port.
CFR, which includes the device expense + Shipment expenses to your spot port.
Q7: At which port do you generally ship the very good?
We usually ship products via HangZhou, ZheJiang , Industrial Gear box for crane and hoisiting VF sequence small worm generate gearbox HangZhou, ZheJiang port of China.
Q8. How about the Warranty ?
twelve months warranty from the time of the goods get there at spot.

MY Get in touch with

Worm Gear Motors

Worm gear motors are often preferred for quieter operation because of the smooth sliding motion of the worm shaft. Unlike gear motors with teeth, which may click as the worm turns, worm gear motors can be installed in a quiet area. In this article, we will talk about the CZPT whirling process and the various types of worms available. We’ll also discuss the benefits of worm gear motors and worm wheel.
worm shaft

worm gear

In the case of a worm gear, the axial pitch of the ring pinion of the corresponding revolving worm is equal to the circular pitch of the mating revolving pinion of the worm gear. A worm with one start is known as a worm with a lead. This leads to a smaller worm wheel. Worms can work in tight spaces because of their small profile.
Generally, a worm gear has high efficiency, but there are a few disadvantages. Worm gears are not recommended for high-heat applications because of their high level of rubbing. A full-fluid lubricant film and the low wear level of the gear reduce friction and wear. Worm gears also have a lower wear rate than a standard gear. The worm shaft and worm gear is also more efficient than a standard gear.
The worm gear shaft is cradled within a self-aligning bearing block that is attached to the gearbox casing. The eccentric housing has radial bearings on both ends, enabling it to engage with the worm gear wheel. The drive is transferred to the worm gear shaft through bevel gears 13A, one fixed at the ends of the worm gear shaft and the other in the center of the cross-shaft.

worm wheel

In a worm gearbox, the pinion or worm gear is centered between a geared cylinder and a worm shaft. The worm gear shaft is supported at either end by a radial thrust bearing. A gearbox’s cross-shaft is fixed to a suitable drive means and pivotally attached to the worm wheel. The input drive is transferred to the worm gear shaft 10 through bevel gears 13A, one of which is fixed to the end of the worm gear shaft and the other at the centre of the cross-shaft.
Worms and worm wheels are available in several materials. The worm wheel is made of bronze alloy, aluminum, or steel. Aluminum bronze worm wheels are a good choice for high-speed applications. Cast iron worm wheels are cheap and suitable for light loads. MC nylon worm wheels are highly wear-resistant and machinable. Aluminum bronze worm wheels are available and are good for applications with severe wear conditions.
When designing a worm wheel, it is vital to determine the correct lubricant for the worm shaft and a corresponding worm wheel. A suitable lubricant should have a kinematic viscosity of 300 mm2/s and be used for worm wheel sleeve bearings. The worm wheel and worm shaft should be properly lubricated to ensure their longevity.

Multi-start worms

A multi-start worm gear screw jack combines the benefits of multiple starts with linear output speeds. The multi-start worm shaft reduces the effects of single start worms and large ratio gears. Both types of worm gears have a reversible worm that can be reversed or stopped by hand, depending on the application. The worm gear’s self-locking ability depends on the lead angle, pressure angle, and friction coefficient.
A single-start worm has a single thread running the length of its shaft. The worm advances one tooth per revolution. A multi-start worm has multiple threads in each of its threads. The gear reduction on a multi-start worm is equal to the number of teeth on the gear minus the number of starts on the worm shaft. In general, a multi-start worm has two or three threads.
Worm gears can be quieter than other types of gears because the worm shaft glides rather than clicking. This makes them an excellent choice for applications where noise is a concern. Worm gears can be made of softer material, making them more noise-tolerant. In addition, they can withstand shock loads. Compared to gears with toothed teeth, worm gears have a lower noise and vibration rate.
worm shaft

CZPT whirling process

The CZPT whirling process for worm shafts raises the bar for precision gear machining in small to medium production volumes. The CZPT whirling process reduces thread rolling, increases worm quality, and offers reduced cycle times. The CZPT LWN-90 whirling machine features a steel bed, programmable force tailstock, and five-axis interpolation for increased accuracy and quality.
Its 4,000-rpm, 5-kW whirling spindle produces worms and various types of screws. Its outer diameters are up to 2.5 inches, while its length is up to 20 inches. Its dry-cutting process uses a vortex tube to deliver chilled compressed air to the cutting point. Oil is also added to the mixture. The worm shafts produced are free of undercuts, reducing the amount of machining required.
Induction hardening is a process that takes advantage of the whirling process. The induction hardening process utilizes alternating current (AC) to cause eddy currents in metallic objects. The higher the frequency, the higher the surface temperature. The electrical frequency is monitored through sensors to prevent overheating. Induction heating is programmable so that only certain parts of the worm shaft will harden.

Common tangent at an arbitrary point on both surfaces of the worm wheel

A worm gear consists of two helical segments with a helix angle equal to 90 degrees. This shape allows the worm to rotate with more than one tooth per rotation. A worm’s helix angle is usually close to 90 degrees and the body length is fairly long in the axial direction. A worm gear with a lead angle g has similar properties as a screw gear with a helix angle of 90 degrees.
The axial cross section of a worm gear is not conventionally trapezoidal. Instead, the linear part of the oblique side is replaced by cycloid curves. These curves have a common tangent near the pitch line. The worm wheel is then formed by gear cutting, resulting in a gear with two meshing surfaces. This worm gear can rotate at high speeds and still operate quietly.
A worm wheel with a cycloid pitch is a more efficient worm gear. It reduces friction between the worm and the gear, resulting in greater durability, improved operating efficiency, and reduced noise. This pitch line also helps the worm wheel engage more evenly and smoothly. Moreover, it prevents interference with their appearance. It also makes worm wheel and gear engagement smoother.
worm shaft

Calculation of worm shaft deflection

There are several methods for calculating worm shaft deflection, and each method has its own set of disadvantages. These commonly used methods provide good approximations but are inadequate for determining the actual worm shaft deflection. For example, these methods do not account for the geometric modifications to the worm, such as its helical winding of teeth. Furthermore, they overestimate the stiffening effect of the gearing. Hence, efficient thin worm shaft designs require other approaches.
Fortunately, several methods exist to determine the maximum worm shaft deflection. These methods use the finite element method, and include boundary conditions and parameter calculations. Here, we look at a couple of methods. The first method, DIN 3996, calculates the maximum worm shaft deflection based on the test results, while the second one, AGMA 6022, uses the root diameter of the worm as the equivalent bending diameter.
The second method focuses on the basic parameters of worm gearing. We’ll take a closer look at each. We’ll examine worm gearing teeth and the geometric factors that influence them. Commonly, the range of worm gearing teeth is one to four, but it can be as large as twelve. Choosing the teeth should depend on optimization requirements, including efficiency and weight. For example, if a worm gearing needs to be smaller than the previous model, then a small number of teeth will suffice.

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