China Blender - China Supplier
China Blender - China Supplier

Blender

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Industry Category: Environment
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Contact Info
  • Add:宜兴市和桥镇南新街德胜路5号, Zip: 214215
  • Contact: 王经理
  • Tel:0510-87871818
  • Email:info@yixing-china.com

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Description
Additional Information

Mixer
 
 
 

Transmission Principle

The cycloidal pinwheel reducer is a novel transmission device that utilizes the K-H-V planetary transmission principle with a small tooth difference, as shown in the figure. The tooth difference between the sun gear (pin gear) Zz and the planetary gear (cycloidal gear) ZB is 1, i.e., Zz - ZB = 1. The transmission process is as follows: a double eccentric sleeve with a 180° offset is mounted on the input shaft. Two roller bearings, referred to as swing arms, are installed on the eccentric sleeve, forming the H mechanism. The central holes of the two cycloidal gears serve as the raceways for the swing arm bearings on the eccentric sleeve. The cycloidal gears mesh with a set of annularly arranged pin teeth on the true gear, forming an internal meshing reduction mechanism with a tooth difference of one tooth (to reduce friction, pin sleeves are used on the pin teeth in reducers with small speed ratios). When the input shaft rotates one full revolution with the eccentric, due to the characteristics of the tooth profile curve on the cycloidal gear and the constraints imposed by the pin teeth on the pin gear, the motion of the cycloidal gear becomes a planar motion with both revolution and rotation. When the input shaft completes one full revolution in the forward direction, the eccentric sleeve also completes one full revolution in the forward direction, while the cycloidal gear rotates in the opposite direction by one tooth, achieving speed reduction. Through the W output mechanism, the low-speed rotation of the cycloidal gear is transmitted to the output shaft via the pin shaft, resulting in a lower output speed.
>Features and Main Structure
·△High Speed Ratio and High Efficiency
A single-stage transmission can achieve a reduction ratio of 1:87 with an efficiency of over 90%. If multi-stage transmission is used, the reduction ratio can be even larger.
·△Compact Structure and Small Size
Due to the planetary transmission principle, the input shaft and output shaft are on the same centerline, allowing the unit to achieve the smallest possible dimensions.
·△Smooth Operation and Low Noise
The large number of meshing teeth on the cycloidal pin gear and the high overlap coefficient, combined with the balanced mechanism of the components, minimize vibration and noise.
·△Reliable Use and Long Service Life
The main components are made of high-carbon chromium steel and undergo quenching treatment (HRC58-62) to achieve high strength. Additionally, some transmission contacts use rolling friction, ensuring durability and a long service life.
·△Reasonable Design and Easy Maintenance
Easy disassembly and installation, minimal number of components, and simple lubrication make the cycloidal gear reducer highly trusted by users.
No.
Name
Material
No.
Name
Material
1
Output Shaft
45
10
Pin Sleeve
GCr15
2
Fastening Ring
45
11
Pin Sleeve
GCr15
3
Oil Seal Cover
HT200
12
Pin Gear Housing
HT200
4
Base
HT200
13
Cycloidal Gear
GCr15
5
Rear Retaining Ring
A3
14
End Cover
HT200
6
Eccentric Sleeve
45
15
Front Retaining Ring
A3
7
Pin Shaft
GCe15
16
Fastening Ring
45
8
Pin Tooth
GCr15
17
Input Shaft
45
9
Spacer Ring
HT200
 
 
 
>Model Example
BLY0-11-0.37, where B represents the cycloidal pinwheel reducer, L represents flange-mounted vertical installation, Y represents a standard motor, 0 represents the reducer number, 11 represents the speed ratio (1450:11 = 132 r/m), and 0.37 represents the motor power of 0.37 KW.
>Specifications and Models
Transmission ratio and input power table for motor-direct-coupled single-stage reducers HZ
BLY0
BLY1
BLY2
BLY3
BLY4
BLY5
BLY6
BLY7
BLY8
Input speed 1450 r/min
(Output speed at lower left is calculated based on 1450 r/min input)
Input speed 1000 r/min
9
Output speed 161 r/m
0.75
2.2/1.5
3/2.2
7.5/5.5/4
 
 
 
 
 
11
Output speed 132 r/m
0.75
2.2/1.5
3/2.2
7.5/5.5/4
11
18.5/15
 
 
 
17
Output speed 85 r/m
0.75
1.5/1.1
3/2.2
7.5/5.5/4
11
18.5/15
22
37
 
23
Output speed 63 r/m
0.55
1.5/1.1
3/2.2
5.5/4
11/7.5
18.5/15
22
37
55
29
Output speed 50 r/m
0.55
1.1/0.75
2.2/1.5
5.5/4/3
7.5/5.5
15
18.5
37
55
35
Output speed 41 r/m
0.37
1.1/1.75
1.5
4/3/2.2
7.5/5.5
15/11
15
30
45
43
Output speed 34 r/m
0.37
0.75/0.55
1.5/1.1
4/3/2.2
5.5/4
11/7.5
11
22
40
59
Output speed 25 r/m
0.25
0.75/0.55
1.1/0.75
2.2/1.5/1.1
4/3
7.5/5.5
7.5
18.5
30
71
Output speed 20 r/m
0.18
0.55/0.37
0.75
2.2/1.5/1.1
3
5.5
7.5
15
22
87
Output speed 17 r/m
0.12
 
 
1.5/1.1
3
5.5
5.5
11
22
 
 

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