
Large Lathe
The lathe, a tool developed centuries ago for shaping wood and metal, has played a critical role in shaping the world as we know it. With modern advancements in technology, the lathe has transformed into a massive machine capable of handling complex projects and requirements.
Large lathe

The lathe, a tool developed centuries ago for shaping wood and metal, has played a critical role in shaping the world as we know it. With modern advancements in technology, the lathe has transformed into a massive machine capable of handling complex projects and requirements. Enter the large lathe, with its robust construction and sophisticated design; this revolutionary machinery has taken center stage in powering some of the biggest operations worldwide.
The large lathe is a crucial component in many industries. From manufacturing airplane parts, building ships, and constructing international infrastructure, to mining, railroad engineering, and even musical instrument making - all these fields rely on the innovation and accuracy that a large lathe provides.
One of the significant advantages of large lathes is their ability to handle an immense range of materials, densities, shapes, and sizes. Such machines can easily turn metals like steel, aluminum, and titanium, as well as handle softer materials such as wood, plastics, and composites. It is this versatility that makes these machines an essential part of almost any manufacturing or construction process.
Precision is also a crucial quality of the large lathe, allowing for exact specifications, measurements, and accuracy in production. The impact of precise components on industries such as aerospace, medical equipment, and automotive manufacturing, cannot be overstated. With large lathes, a high degree of precision is expected, which leads to improved efficiency, cost-effectiveness, and product consistency.


Furthermore, the development of automated computer-controlled lathes has revolutionized the industry even further. Programmable lathes allow for even greater speed, precision, and complexity in the production process. This advancement has resulted in a faster and more efficient process with less material wastage, reducing costs and increasing profit margins for businesses.
In addition to its practical uses, the large lathe also has exceptional aesthetic appeal. The sheer immensity of the machine imparts a sense of awe and inspiration. It is something that undoubtedly registers with anyone familiar with engineering or manufacturing. The precision and beauty of a lathe in action captivate the mind and stir the imagination.
In summary, the large lathe represents a pinnacle of human ingenuity and innovation. Its combination of versatility, precision, and efficiency has revolutionized the manufacturing and construction industry, making large-scale projects possible while reducing costs and increasing product consistency. Indeed, the large lathe continues to inspire and enable ever-greater advances to shape the modern world in which we live.
CK61125×2000 CNC lathe
1.CK61125 × 2000 Mechanical Specification Table
|
Maximum turning diameter on the bed |
1250mm |
|
Maximum turning diameter on the tool holder |
820mm |
|
Width of guide |
600m |
|
Machining length |
2000 |
|
Spindle end |
A2-11 |
|
Spindle through hole diameter |
105 mm |
|
Spindle speed |
30-835 |
|
Principal axis |
Manual shift to fourth gear |
|
Drag board z to the minimum moving unit |
0.001mm/min |
|
Drag plate X to the minimum moving unit |
0.001mm/min |
|
Drag board z stroke |
1500mm/2000/3000 |
|
Drag board x/z to fast moving speed |
6000/4000mm/min |
|
Tailstock sleeve taper hole |
Six Mohs |
|
Tail seat sleeve diameter |
130mm |
|
Maximum travel of tailstock sleeve |
250mm |
|
Main motor power |
15KW motor |
|
Z-axis repeated positioning accuracy |
0.015mm |
|
X axis repeated positioning accuracy |
0.01mm |
|
Electric tool holder repeated positioning accuracy |
0.002mm |
|
Machine weight |
6T/7T/8T |
2.Optional
|
Spindle transmission form |
Variable frequency stepless speed regulation/two speed change/three speed change |
|
chuck |
Manual chuck/hydraulic chuck |
|
system |
Siemens 840 Fanuc Mitsubishi Syntech ( China KND Digital) GSK( China Guangzhou Digital) H N C( China Huazhong Digital) |
3.Brands and specifications of main components used
|
Serial Number |
Component Name |
Brand manufacturer |
producer |
Model and specifications |
|
1 |
CNC system |
GSK |
China |
|
|
2 |
Main motor |
GSK |
China |
5.5kW |
|
3 |
spindle bearing |
Harbin |
domestic |
|
|
4 |
X-axis ball screw |
firing |
domestic |
Φ40*8 |
|
5 |
Z-axis ball screw |
firing |
domestic |
Φ 50 * 10(63 * 10 for three meters) |
|
6 |
chuck |
Wafangdian |
domestic |
400 three claws/630mm four claws |
|
7 |
tool carrier |
Hongda/Wenchang |
domestic |
4-station electric |
|
8 |
Electronic handwheel |
Zhehong |
domestic |
|
|
9 |
Electrical appliances, allergy protectors |
schneider |
France |
|
|
10 |
coupling |
Sanmu |
Japan |
|
|
11 |
Cooling device |
Luokai/Jianyang |
Taiwan |
|
|
12 |
Centralized automatic lubrication system |
domestic |
||
|
13 |
Precision Nut |
Yingxi |
||
|
Note: When encountering a shortage of supply, products from other brands will be used as substitutes, but there will be no difference in quality and grade. |
||||
4.Attached accessories
|
Serial Number |
Product Name |
specifications |
number |
|
1 |
Operating Instructions |
GSK |
1 |
|
2 |
Program manual |
GSK |
1 |
|
3 |
circuit diagram |
Dalian Second Machinery Co., Ltd |
1 |
|
4 |
Random Precision Table |
Dalian Second Machinery Co., Ltd |
1 |
|
5 |
toolbox |
15″ |
1 set |
|
6 |
Foundation supplies |
1 set |
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