Planer Type Boring Machine
Your Professional Planer Type Boring Machine Supplier
Dalian Haidi Machinery Co., Ltd. is a professional manufacturer specializing in the research, development, and production of various machine tools, including single-column vertical lathes, double-column vertical lathes, horizontal lathes, boring-milling machines, machining centers, and gear hobbing machines. The products developed by our company offer a wide range of models, comprehensive specifications, advanced technology, and superior quality.
Professional Team
Our company has a workforce of over 200 employees, including 11 senior engineers, 8 senior managerial personnel, and more than 160 technical workers.
Rich Experience
With over 20 years of production experience, we have established ourselves as a leading manufacturer in the field of vertical lathes, horizontal lathes, machining centers, boring machines, milling machines, drilling machines, slotting machines, and gear hobbing machines.
Production Capacity
We operate our own casting factory, which has an annual output capacity exceeding 20,000 tons. Our company is recognized as the largest enterprise specializing in machine tool casting in southern Liaoning Province.
Sales Market
Our products have been exported to countries such as Australia, Chile, Peru, Turkey, Russia, Indonesia, Saudi Arabia, the United States, Belarus, Argentina, Singapore, and many others, covering approximately 60 countries worldwide.
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CNC Boring MachineModel TK6511/ TKP6511/ TK6513/ TKP6513/ TK6516/ TKP6516 boring machine has a T-shaped layout, with a single column and a side-hanging box structure. The worktable and its sliding seat move along...read more
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CNC Horizontal Boring MachineModel TK6511/ TKP6511/ TK6513/ TKP6513/ TK6516/ TKP6516 boring machine has a T-shaped layout, with a single column and a side-hanging box structure. The worktable and its sliding seat move along...read more
Parameter
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Item |
Unit |
TK6511 |
TKP6511 |
TK6513 |
TKP6513 |
TK6516 |
TKP6516 |
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Worktable size |
Mm |
1000*1250 |
1000*1250 |
1400*1600 |
1400*1600 |
1600*1800 |
1600*1800 |
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|
1250*1400 |
1250*1400 |
2000*2000 |
2000*2000 |
A: 2000*2500 |
A: 2000*2500 B: 2500*3000 |
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B: 2500*3000 |
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Max.worktable loading |
T |
5 |
5 |
10 |
10 |
10/A: 20/B: 30 |
10/A: 20/B: 30 |
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Spindle diameter |
Mm |
Φ110 |
Φ110 |
Φ130 |
Φ130 |
Φ160 |
Φ160 |
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Spindle taper hole |
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ISO 7: 24 NO.50 |
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Shank specification |
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JT50/BT50 |
JT50/BT50 |
JT50/BT50 |
JT50/BT50 |
JT50/BT50 |
JT50/BT50 |
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Spindle speed |
R/min |
10-2500 |
10-2000 |
10-2000 |
10-2000 |
10-1500 |
10-1500 |
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Main motor power |
Kw |
19.5/23.4 |
19.5/23.4 |
25/30 |
25/30 |
41/49.2 |
41/49.2 |
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Spindle max. torque |
Nm |
1300/1600 |
1300/1600 |
2500/3000 |
2500/3000 |
3300/4000 |
3300/4000 |
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Worktable cross travel X |
Mm |
2000/2500/3000 |
2000/2500/3000 |
2000/3000/3500/4000 |
2000/3000/3500/4000 |
3000/3500/4000 |
3000/3500/4000 |
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Spindle box vertical travel Y |
Mm |
1500/2000 |
1500/2000 |
1600/2000/2500/3000 |
1600/2000/2500/3000 |
2000/2500/3000 |
2000/2500/3000 |
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Column longitudinal stroke Z |
Mm |
1200/2000 |
1200/2000 |
1600/2000 |
1600/2000 |
2000 |
2000 |
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Spindle travel W |
Mm |
550 |
550 |
800 |
800 |
1000 |
1000 |
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Distance from spindle center to worktable |
Mm |
60-1560/30-1530 |
100-1700 |
100-1700 |
100-2100 |
100-2100 |
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Distance from spindle end to worktable center |
Mm |
350 |
487 |
850/1050 |
850/1050 |
700/A: 1050/B: 1350 |
800/A: 1100/B: 1350 |
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Worktable rotate B |
° |
0.001*360 |
0.001*360 |
0.001*360 |
0.001*360 |
0.001*360 |
0.001*360 |
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Feed speed |
XYZ |
Mm/min |
1-6000 |
1-6000 |
1-6000 |
1-6000 |
1-6000 |
1-6000 |
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W |
Mm/min |
1-2000 |
1-2000 |
1-3000 |
1-3000 |
1-3000 |
1-3000 |
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|
U |
Mm/min |
/ |
1-1000 |
/ |
1-3000 |
/ |
1-3000 |
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B |
R/min |
0-1.5 |
0-1.5 |
0-1 |
0-1 |
0-1 |
0-1 |
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Rapid movement |
XYZ |
Mm/min |
9 |
9 |
9 |
9 |
9 |
9 |
|
W |
Mm/min |
2.4 |
2.4 |
3 |
3 |
3 |
3 |
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|
U |
Mm/min |
/ |
2.4 |
/ |
3 |
/ |
3 |
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|
B |
R/min |
2.5 |
2.5 |
1 |
1 |
1 |
1 |
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Positioning accuracy |
XYZ |
Mm |
X: 0.02/0.016(grating ruler) |
X: 0.02/0.016(grating ruler) |
X: 0.03/0.022(grating ruler) |
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YZ: 0.018/0.015(grating ruler) |
YZ: 0.02/0.015(grating ruler) |
YZ: 0.022/0.018(grating ruler) |
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W |
Mm |
0.02 |
0.02 |
0.02 |
0.02 |
0.02 |
0.02 |
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U |
Mm |
/ |
0.032 |
/ |
0.032 |
/ |
0.032 |
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B |
' |
10.4*60°: 6 |
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Repeatability |
XYZ |
Mm |
X: 0.011 YZ: 0.01 |
0.013 |
0.013 |
0.013 |
0.013 |
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W |
Mm |
0.016 |
0.016 |
0.018 |
0.018 |
0.018 |
0.018 |
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|
U |
Mm |
/ |
0.018 |
/ |
0.018 |
/ |
0.018 |
|
|
B |
' |
6 |
6 |
6 |
6 |
6 |
6 |
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Handling Challenging Projects
Planer type boring machine can perform complex operations that would be difficult to produce manually. For instance, intricate and varying shapes, patterns, and hole sizes such as those found in aerospace components or automotive parts can be achieved efficiently and effectively with CNC technology.
Adapting to Changing Specifications
With planer type boring machine, customization becomes a easy. When specifications are altered, reprograming the planer type boring machine allows for seamless adaptation to meet changing production needs, increasing flexibility and adaptability.
Faster and More Efficient Production
Planer type boring machine is more effective than manual operations for producing precise and shorter production times. The improved efficiency offered by CNC boring results in quicker turnaround and better productivity.
Safer Operations and Reduced Accidents
The automated process of planer type boring machines makes the manufacturing environment far safer. This benefit is due to the operator's significantly less direct interaction with manual boring equipment.
Increased Precision and Repeatability
The computer-controlled movements of planer type boring machine ensure that holes are far more accurate with less chance of errors, instilling confidence in the quality of the work. Additionally, planer type boring machines offer high-quality repeatability when mass production is required.

Materials That Can Be Processed by Planer Type Boring Machines
Aluminum
Aluminum's strength combined with low weight and easy mach inability makes it a machine of choice for planer type boring machines. The latent heat transfer characteristic enables the use of high machining speeds requiring finishing rate that are also not compromised.
Steel
The steel, a kind of metal with the fame for its hardness and durability, puts ordinary planer type boring machines to severe tests on their toughness. Iron-carbides are being aggressively machined with high-speed steel (HSS) cutting tools. They manufacture machinery and construction elements for the industry.
Titanium
Titanium, which impresses with much higher strength-to-weight ratio than other alloys, in turn means that we need very exact CNC mill operations. Its non insurability at high temperatures and corrosion resistance makes it look great for industries of aerospace and medical.
Brass
The ready to machine properties and a low friction coefficient of brass, make it a preferred material for CNC manual milling. The most noteworthy example is in the components of electrical systems and consequently in the fittings.
Copper
Copper possesses thermal and electrical conductivity traced to all necessary steps involved in planer type boring machine processing. A key component made of electrical devices and heat exchangers, its softness requires its special handling to prevent deformation, whose suitability therefore adds carefully to precision and efficiency.
Plastics
Properties of plastic spectrum offer numerous opportunities for CNC bored mills, ranging from rigidity to flexibility. There are different types of materials which are selected based on the application from biometrics devices to the consumer products including for example ABS, polycarbonate, and PTFE.
Precautions for Operating Planer Type Boring Machine
Setup Accuracy
The error level during planer type boring machine operations has a significant influence on the setup accuracy. A precision method in which workpieces and tools are accurately positioned is required to facilitate perfect assembly.
Calibration
Calibration of the planer type boring machine guarantees that the machine is operated within given tolerance limits frequent assessments correct for the deviations, so the machine runs accurately.
Tool Selection
Since the utilization of precise tool for each operation influences the efficiency of the planer type boring machine, the type of tool to be used in the planer type boring machine impacts the effectiveness of the machine. The determinants for the type of tool can be the hardness of the material you are cutting and its type.
Spindle Alignment
The process of center less grinding is crucial since the thread alignment determines the quality and accuracy of hole CNC drilling and boring operations. Indisputably, exact positioning is the key factor that guarantees that tools work correctly when being held relative to the workpiece and it also diminishes errors from taking place and part quality happens to improve.
Feed Rate
Feed rate is that speed at which a tool moves on to material and that too at the planer type boring machine. A well-adjusted feed rate that provides sufficient smoothness helps in attaining good quality cutting speed prevents tool breakage and establishes uniform surface finish.
Speed Adjustments
Spindle speed is used for adjusting rotation rate and cutting motion dynamics, affecting roundness and surface quality. Implementation of optimal speed settings allows for higher productivity and cut tool durability. This adjustment stands as a critical element in heat generating management process and machined part precision.
Packaging and Shipping
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Packaging |
The machines standard will be packed in wood case. If the machine is very heavy, we will reinforce the box with iron frame. |
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Shipping |
Shipping by sea, by air, by express are acceptable. According to your requirements. |
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FAQ
As one of the leading planer type boring machine manufacturers and suppliers in China, we warmly welcome you to buy cheap planer type boring machine made in China here from our factory. All our products are with high quality and low price.
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