Computer Controlled Milling Machine

Computer Controlled Milling Machine

Item Unit Specifications
System operating system set GSK 25I
Number of control servo axes axis 3 axis
Worktable Work table size mm 1000×600
Work table load g 600
T-slot of worktable (number-size×spacing) mm 4- 18×130
Travel Left and right stroke (X) mm 800
Back and forth stroke (Y) mm 500
Up and down stroke (Z) mm 520
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Product Introduction

Dongguan Jide Precision Machinery Technology Co., Ltd. is one of the most credible manufacturers and suppliers of computer controlled milling machine in China. If you're going to wholesale high quality computer controlled milling machine made in China, welcome to get quotation and free sample from our factory. All customized products are with high quality and competitive price.

 


V11(1)



Description of functions and features:


On the basis of inheriting the advantages of traditional vertical CNC milling machine, such as strong rigidity, symmetrical structure, and strong stability, the computer controlled milling machine introduces the concept of dynamic rigidity design and optimizes the design of moving parts. The machine tool has the characteristics of strong rigidity, large torque, and quick response, and is suitable for the needs of various mechanical processing fields such as automobiles, aerospace, military industry, and hardware.


The spindle adopts Taiwan brand.


The three-axis movement adopts linear slide rails, and the three-axis rapid movement can reach 48 m/min to ensure accurate positioning.


The base of the machine tool, the table, the column, the beam, the saddle, and the spindle box are made of resin sand molded HT300 inoculated cast iron. After secondary annealing treatment, the casting stress and the internal stress caused by rough machining are completely eliminated, ensuring high structural rigidity and stability.


The castings are calculated and analyzed by the finite element analysis method, and the reasonable structural strength and the matching of reinforcing ribs provide high mechanical rigidity.

Meehanite casting FC30

Machine specification 


Machine details

Item

Unit

Specifications

System

operating system

set

GSK  25I


Number of control servo axes

axis

3 axis

Worktable

Work table size

mm

1000×600


Work table load

g

600


T-slot of worktable (number-size×spacing)

mm

4- 18×130

Travel

Left and right stroke (X)

mm

800


Back and forth stroke (Y)

mm

500


Up and down stroke (Z)

mm

520

Spindle

Spindle taper hole (specification/installation size)

mm

BT40


Spindle speed

rpm

0-10000rpm


Spindle drive mode


Belt


Distance from spindle center to column guide rail (suitable for vertical machines)

mm

500


Distance from spindle end surface to table surface

mm

100-640

Guideway

X/Y/Z axis roller screw specifications


3612/3612/3612


X-axis guide/line guide specification


Sliding roller linear guideway


Y-axis guide/line guide specification


Sliding roller linear guideway


Z-axis guide/line guide specification


Sliding roller linear guideway

Motor

X.Y.Z motor connection mode


Belt


Spindle motor parameters (power)

w

7.5


X Y Z axis motor parameters (power)

w

2 2 3


Spindle cooler capacity (gear type/750)


250


 

Processing cooling pump horsepower

 

 

w

 

450W

Feed

X. Y. Z axis processing speed

m/min

12 12 12


X.Y.Z axis rapid feedrate moving speed

m/min

36 36 36

Power supply/air

pressure

Air source

kg/cm²

6kg/cm²


Power requirement

va

20KVA

Machine

accuracy

positioning accuracy

mm

±0.005/300


Repeatability

mm

±0.005/300

Machine     specifications

Net weight of machine tool

T

4.5T


Floor area of machine tool (length*width*height)

mm

2800*2500*2550


Six advantages

Computer controlled milling machine Details determine quality, ingenuity casts classics

Quality assurance

production plant

Complete specifications

easy installation

low noise

Perfect after-sales


CNC system

CNC numerical control system, servo start, finish finishing

workbench

The hardness of the working surface and high-frequency quenching can reach HRC55℃ and above, and the grinding process is carried out by the guide rail grinding machine

Spindle

The main shaft adopts P4 bearings with high precision and strong rigidity


What is an injection mold produced by cnc machining center 



Mold injection molding is a processing method used in the mass production of certain complex-shaped parts. The specific principle refers to: the heated and melted plastic raw material is pushed by the screw of the injection molding machine into the cavity of the plastic mold under high pressure, and after cooling and solidifying, the plastic molding product is obtained.


Although the structure of the mold may vary due to the variety and performance of the plastic, the shape and structure of the plastic product, and the type of the injection machine, the basic structure is the same. The mold is mainly composed of pouring system, temperature adjustment system, molding parts and structural parts. Among them, the pouring system and molding parts are the parts that are in direct contact with the plastic and change with the plastic and the product. They are the most complex and the most changing parts in the mold, requiring the highest processing finish and precision.

Injection mold is a tool for producing plastic products; it is also a tool for giving plastic products complete structure and precise dimensions. Injection molding is a processing method used in the mass production of certain complex-shaped parts. Specifically, it refers to injecting the heated and melted plastic into the mold cavity under high pressure from the injection molding machine, and after cooling and solidifying, a molded product is obtained.

Mold Composition

Although the structure of the mold may vary due to the variety and performance of the plastic, the shape and structure of the plastic product, and the type of the injection machine, the basic structure is the same. The mold is mainly composed of pouring system, temperature adjustment system, molding parts and structural parts. Among them, the pouring system and molding parts are the parts that are in direct contact with the plastic and change with the plastic and the product. They are the most complex and the most changing parts in the mold, requiring the highest processing finish and precision.


The injection mold consists of a moving mold and a fixed mold. The moving mold is installed on the movable template of the injection molding machine, and the fixed mold is installed on the fixed template of the injection molding machine. During injection molding, the movable mold and the fixed mold are closed to form the gating system and the cavity, and the movable mold and the fixed mold are separated to take out the plastic product when the mold is opened. In order to reduce the heavy workload of mold design and manufacturing, most injection molds use standard mold bases.


When the single parting surface injection mold is opened, the movable mold and the fixed mold are separated to take out the plastic part, which is called a single parting surface mold, also known as a double plate mold. It is the simplest and most basic form of injection mold. It can be designed as a single-cavity injection mold or a multi-cavity injection mold according to needs. It is the most widely used injection mold.


Double parting surface injection mold The double parting surface injection mold has two parting surfaces. Compared with the single parting surface injection mold, the double parting surface injection mold adds an intermediate plate that can be partially moved in the fixed mold part (also It is called a movable gate plate, on which there are gates, runners and other parts and components required by the fixed mold), so it is also called a three-plate type (moving template, middle plate, fixed template) injection mold, which is often used for point pouring For single-cavity or multi-cavity injection molds with inlet feeding, when the mold is opened, the intermediate plate is separated from the fixed template by a fixed distance on the guide post of the fixed mold, so that the pouring system condensate can be taken out between the two templates. Double parting surface injection mold has complex structure, high manufacturing cost, and difficult parts processing, so it is generally not used for molding large or extra large plastic products.


Injection mold with lateral parting and core-pulling mechanism When the plastic part has side holes or undercuts, it needs to be molded with laterally movable cores or sliders. After injection molding, the movable mold first moves downward for a certain distance, and then the inclined section of the bent pin fixed on the fixed template forces the slider to move outward, and at the same time, the push rod of the demoulding mechanism pushes the push plate to make the plastic part self-forming Take off the core.


Injection mold with movable molding parts Due to some special structures of plastic parts, the injection mold is required to be equipped with movable molding parts, such as movable punches, movable dies, movable inserts, movable threaded cores or rings, etc. , can be moved out of the mold together with the plastic part during demoulding, and then separated from the plastic part.


Automatic unthreading injection mold For plastic parts with threads, when automatic demoulding is required, a rotatable threaded core or ring can be set on the mold, using the mold opening action or the rotation mechanism of the injection molding machine, or setting a special The transmission device drives the threaded core or threaded ring to rotate, thereby releasing the plastic part.


No-runner injection mold The no-runner injection mold refers to the method of adiabatically heating the runner to keep the plastic between the nozzle and cavity of the injection molding machine in a molten state, so that there is no pouring system condensate when the mold is opened and the plastic part is taken out. The former is called adiabatic runner injection mold, and the latter is called hot runner injection mold.


Right-angle injection mold The right-angle injection mold is only suitable for angle injection molding machines. The difference from other injection molds is that the feeding direction of this type of mold is perpendicular to the direction of mold opening and closing during molding. Its main channel is opened on both sides of the moving and fixed mold parting surfaces, and its cross-sectional area is usually constant, which is different from other injection molding machine molds. The end of the main channel is designed to prevent the injection molding machine from In case of wear and deformation of the nozzle and the inlet end of the main flow channel, a replaceable flow channel insert can be provided.


In most injection molds, the demoulding device is installed on the side of the movable mold, which is beneficial to the work of the ejector device in the mold opening and closing system of the injection molding machine. In actual production, because some plastic parts are limited by the shape, it is better to leave the plastic part on the side of the fixed mold for molding. In order to make the plastic part out of the mold, it is necessary to set the demoulding on the side of the fixed mold. mechanism

.

The injection mold consists of a moving mold and a fixed mold. The moving mold is installed on the movable template of the injection molding machine, and the fixed mold is installed on the fixed template of the injection molding machine. During injection molding, the movable mold and the fixed mold are closed to form the gating system and the cavity, and the movable mold and the fixed mold are separated to take out the plastic product when the mold is opened. In order to reduce the heavy workload of mold design and manufacturing, most injection molds use standard mold bases.


Gating system


The gating system refers to the part of the runner before the plastic enters the cavity from the nozzle, including the main runner, cold material cavity, runner and gate.


The gating system, also known as the runner system, is a set of feed channels that guide the plastic melt from the nozzle of the injection machine to the cavity. It usually consists of a main channel, a runner, a gate and a cold cavity. It is directly related to the molding quality and production efficiency of plastic products.


main channel


It is a channel in the mold that connects the nozzle of the injection molding machine to the runner or cavity. The top of the sprue is concave to connect with the nozzle. The inlet diameter of the main channel should be slightly larger than the nozzle diameter (0.8mm) to avoid overflow and prevent the two from being blocked due to inaccurate connection. The inlet diameter depends on the size of the product, generally 4-8mm. The diameter of the sprue should expand inward at an angle of 3° to 5° to facilitate the demoulding of the excess in the flow path.


cold hole


It is a cavity at the end of the sprue to catch the cold material generated between the two injections at the end of the nozzle, so as to prevent the blockage of the runner or gate. Once the cold material is mixed into the cavity, internal stress is easily generated in the manufactured product. The diameter of the cold slug hole is about 8-10mm, and the depth is 6mm. In order to facilitate demoulding, its bottom is often borne by a demoulding rod. The top of the demoulding rod should be designed as a zigzag hook or a sunken groove, so that the main channel can be pulled out smoothly when demoulding.


Runner


It is the channel connecting the sprue and each cavity in the multi-slot mold. In order to make the molten material fill each cavity at an equal speed, the arrangement of the runners on the mold should be symmetrical and equidistant. The shape and size of the cross-section of the runner have an impact on the flow of the plastic melt, the ease of product demoulding and mold manufacturing.


If the flow of the same amount of material is concerned, the flow channel with a circular cross-section has the least resistance. But because the specific surface of the cylindrical runner is small, it is unfavorable to the cooling of the debris in the runner, and the runner must be opened on the two halves of the mold, which is labor-intensive and difficult to align.


Therefore, trapezoidal or semicircular cross-section runners are often used, and they are opened on half of the mold with ejector pins. The surface of the runner must be polished to reduce flow resistance and provide faster filling speed. The size of the runner depends on the type of plastic, the size and thickness of the product. For most thermoplastics, the cross-sectional width of the runner does not exceed 8m, the extra-large one can reach 10-12m, and the extra-small one can reach 2-3m. Under the premise of meeting the needs, the cross-sectional area should be reduced as much as possible to increase the debris in the shunt channel and prolong the cooling time.


gate


It is a channel connecting the main channel (or runner) and the cavity. The cross-sectional area of the channel can be equal to that of the main channel (or branch channel), but it is usually reduced. So it is the part with the smallest cross-sectional area in the entire runner system. The shape and size of the gate have a great influence on the quality of the product.


The function of the gate is:

A. Control the material flow rate:


B. During the injection, the backflow can be prevented due to the early solidification of the melt stored in this part:


C. Make the passing melt subject to strong shear to increase the temperature, thereby reducing the apparent viscosity to improve fluidity:


D. It is convenient to separate the product from the runner system. The design of the shape, size and position of the gate depends on the nature of the plastic, the size and structure of the product. Generally, the cross-sectional shape of the gate is rectangular or circular, and the cross-sectional area should be small and the length should be short. This is not only based on the above-mentioned effects, but also because it is easier to enlarge a small gate, but it is difficult to shrink a large gate. The gate position should generally be selected at the place where the product is the thickest without affecting the appearance.


The design of the gate size should take into account the nature of the plastic melt. Cavity It is the space in which plastic products are formed in the mold. The components used to form the cavity are collectively referred to as molded parts.


Each molded part often has a special name. The forming part that constitutes the shape of the product is called the die (also known as the female die), and the part that constitutes the internal shape of the product (such as holes, grooves, etc.) is called the core or punch (also known as the male die). When designing a molded part, the overall structure of the cavity must first be determined according to the properties of the plastic, the geometric shape of the product, the dimensional tolerance and the use requirements.


The second is to select the parting surface, the position of the gate and the vent hole and the demoulding method according to the determined structure.

Finally, the design of each part is carried out according to the size of the control product and the combination of each part is determined. When the plastic melt enters the cavity, there is a high pressure, so the molded parts should be selected reasonably and checked for strength and stiffness.


In order to ensure the smooth and beautiful surface of plastic products and easy demoulding, the surface in contact with plastic should have a roughness Ra>0.32um and be corrosion-resistant. Formed parts are generally heat-treated to increase hardness and made of corrosion-resistant steel.


Temperature control system


In order to meet the mold temperature requirements of the injection process, a temperature adjustment system is required to adjust the mold temperature. For injection molds for thermoplastics, the cooling system is mainly designed to cool the mold. The common method of mold cooling is to set up a cooling water channel in the mold, and use the circulating cooling water to take away the heat of the mold; in addition to using hot water or steam in the cooling water channel, the heating of the mold can also be installed inside and around the mold. Heating element.


molded parts


Refers to the various parts that make up the shape of the product, including moving molds, fixed molds and cavities, cores, molding rods, and exhaust ports. The molded part consists of a core and a die. The core forms the inner surface of the product, and the die forms the shape of the outer surface of the product. After the mold is closed, the core and the cavity form the cavity of the mold. According to the process and manufacturing requirements, sometimes the core and die are composed of several pieces, and sometimes they are made into a whole, and inserts are only used in easily damaged and difficult-to-process parts.


exhaust vent


It is a groove-shaped air outlet opened in the mold to discharge the original gas and the gas brought in by the melt. When the molten material is injected into the cavity, the air originally stored in the cavity and the gas brought in by the melt must be discharged out of the mold through the exhaust port at the end of the material flow, otherwise the product will have pores, poor connection, The mold is not fully filled, and even the accumulated air will burn the product due to the high temperature generated by compression.


In general, the vent hole can be set either at the end of the molten material flow in the cavity or on the parting surface of the mold. The latter is to open a shallow groove with a depth of 0.03-0.2mm and a width of 1.5-6mm on one side of the die. During injection, there will not be a lot of molten material seeping out of the vent hole, because the molten material will cool and solidify there and block the channel. The opening position of the exhaust port must not face the operator to prevent the molten material from accidentally spraying out and hurting people. In addition, it is also possible to use the matching gap between the ejector rod and the ejection hole, the matching gap between the ejector block and the stripping plate and the core, etc. to exhaust.


structural parts

It refers to various parts that make up the mold structure, including: various parts for guiding, demoulding, core pulling and parting. Such as front and rear splints, front and rear buckle templates, pressure plates, pressure columns, guide columns, stripping plates, stripping rods and return rods, etc.


1. Guide parts

In order to ensure that the movable mold and the fixed mold can be accurately centered when the mold is closed, guiding parts must be set in the mold. In the injection mold, four sets of guide posts and guide sleeves are usually used to form the guide parts, and sometimes it is necessary to set mutually matching inner and outer tapered surfaces on the movable mold and the fixed mold to assist in positioning.


2. Launch agency

During the mold opening process, a push-out mechanism is needed to push or pull out the plastic product and its condensate in the runner. Push out the fixed plate and the push plate to clamp the push rod. Generally, a reset rod is also fixed in the push rod, and the reset rod resets the push plate when the moving and fixed molds are closed.


3. Side core pulling mechanism

Some plastic products with undercuts or side holes must be laterally parted before being pushed out, and the side core can be successfully demoulded after the side core is pulled out. At this time, a side core pulling mechanism needs to be set in the mold.


  The plastic mold consists of a moving mold and a fixed mold. The moving mold is installed on the movable template of the injection molding machine, and the fixed mold is installed on the fixed template of the injection molding machine. During injection molding, the movable mold and the fixed mold are closed to form the gating system and the cavity, and the movable mold and the fixed mold are separated to take out the plastic product when the mold is opened.


     Although the structure of plastic molds may vary due to the variety and performance of plastics, the shape and structure of plastic products, and the type of injection machine, the basic structure is the same.

1. The structure of plastic molds is divided by function

It is mainly composed of pouring system, temperature adjustment system, forming parts system, exhaust system, guiding system, ejection system, etc. Among them, the pouring system and molding parts are the parts that are in direct contact with the plastic and change with the plastic and the product. They are the most complex and the most changing parts in the mold, requiring the highest processing finish and precision.


1. Pouring system:

It refers to the part of the flow path before the plastic enters the cavity from the nozzle, including the main flow path, cold material cavity, runner and gate.


2. Forming parts system:

Refers to the combination of various parts that make up the shape of the product, including moving molds, fixed molds, cavities (concave molds), cores (punch molds), and forming rods. The core forms the inner surface of the product, and the cavity (die) forms the outer surface shape of the product. After the mold is closed, the core and the cavity form the cavity of the mold. According to the process and manufacturing requirements, sometimes the core and die are composed of several pieces, and sometimes they are made into a whole, and inserts are only used in easily damaged and difficult-to-process parts.


3. Temperature adjustment system:

In order to meet the mold temperature requirements of the injection process, a temperature adjustment system is required to adjust the mold temperature. For injection molds for thermoplastics, the cooling system is mainly designed to cool the mold (the mold can also be heated). The common method of mold cooling is to set up a cooling water channel in the mold, and use the circulating cooling water to take away the heat of the mold; in addition to using cooling water to pass hot water or hot oil, the heating of the mold can also be installed inside and around the mold. Electric heating element.


4. Exhaust system:

It is set up to discharge the air in the cavity and the gas generated by the melting of plastic to the outside of the mold during the injection molding process. When the exhaust is not smooth, the product surface will form gas marks (gas marks), burnt and other defects; the exhaust of the plastic mold The air system is usually a groove-shaped air outlet opened in the mold to discharge the original cavity air and the gas brought in by the melt.


     When the molten material is injected into the cavity, the air originally stored in the cavity and the gas brought in by the melt must be discharged out of the mold through the exhaust port at the end of the material flow.


Otherwise, the product will have air holes, poor connection, insufficient mold filling, and even the accumulated air will burn the product due to high temperature due to compression. In general, the vent hole can be set either at the end of the molten material flow in the cavity or on the parting surface of the mold.


     The latter is to open a shallow groove with a depth of 0.03-0.2mm and a width of 1.5-6mm on one side of the die. During injection, there will not be a lot of molten material seeping out of the vent hole, because the molten material will cool and solidify there and block the channel. The opening position of the exhaust port must not face the operator to prevent the molten material from accidentally spraying out and hurting people. In addition, it is also possible to use the matching gap between the ejector rod and the ejector hole, the matching gap between the ejector block, the stripping plate and the core, etc. to exhaust.


5. Guide system:

It is established to ensure that the movable mold and the fixed mold can be accurately centered when the mold is closed, and guide parts must be set in the mold. In the injection mold, four sets of guide posts and guide sleeves are usually used to form the guide parts, and sometimes it is necessary to set mutually matching inner and outer tapered surfaces on the movable mold and the fixed mold to assist in positioning.


6. Ejection system:

It generally includes: thimble, front and rear thimble plates, thimble guide rod, thimble return spring, thimble plate locking screws and other parts. After the product is molded and cooled in the mold, the front and rear molds of the mold are separated and opened, and the plastic product and its condensed material in the runner are pushed out or pulled out of the mold cavity and runner position by the ejector pin, which is pushed by the ejector pin of the injection molding machine. , in order to carry out the next injection molding work cycle.


     2. According to the structure, the plastic mold is generally composed of several parts such as mold base, mold core, auxiliary parts, auxiliary system, auxiliary setting, and dead angle processing mechanism.


1. Formwork:

Generally, we do not need to design, and can be ordered directly from the standard mold base manufacturer, which greatly saves the time required to design the mold, so it is called the plastic mold standard mold base. It constitutes the most basic frame part of the plastic mold.


2. Mold core:

The core part of the mold is the core part of the plastic mold, and it is the most important part of the mold. The forming part of the plastic product is inside the mold core, and most of the processing time is also spent on the mold core. However, compared with some relatively simple molds, it does not have a core part, and the product is formed directly on the template. Most of the early plastic molds were like this, relatively backward.


3. Auxiliary parts:

Commonly used auxiliary parts for plastic molds include positioning rings, sprue bushings, thimbles, grab pins, support columns, ejector plate guide posts, guide sleeves, garbage nails, etc. Some of them are standard parts, and you can directly order the mold base When ordered together, some of them need to be designed by themselves.


4. Auxiliary system:

There are four auxiliary systems for plastic molds: pouring system, ejection system, cooling system and exhaust system. Sometimes, because the plastic materials used need to be heated at a high temperature, some molds also have a heating system.


5. Auxiliary settings:

The auxiliary settings of the plastic mold include ring holes, KO holes (top stick holes) and so on.


6. Dead angle treatment structure:

When the plastic product has a dead angle, the mold will also have one or more structures to deal with the dead angle. Such as sliders, inclined roofs, hydraulic cylinders and so on. Most of the domestic books introduce this kind of mechanism for dealing with dead ends, which is called "core pulling mechanism".


     In fact, plastic molds are not difficult. No matter how the plastic product changes, the structure of the mold used to form the plastic product is nothing more than the above-mentioned aspects. The difference between the molds is whether the mold is large or small? The positions or methods of each auxiliary part, auxiliary setting, and auxiliary system are different. The method, structure, size, etc. of dealing with dead angles have changed. Of course, design experience is particularly important in order to make the designed mold simple to process, easy to assemble, long in life, moderate in price, and good in shape. With good experience, you can deal with problems that arise during design and processing, and you are more confident in dealing with design changes.


3. The structure of the injection machine:

A general-purpose injection machine mainly includes injection device, clamping device, hydraulic transmission system and electrical control system. The main function of the injection device is to plasticize the plastic evenly, and inject a certain amount of molten material into the cavity of the mold with sufficient pressure and speed. The injection device is mainly composed of plasticizing parts (composed of screw, barrel and nozzle), hopper, transmission device, metering device, injection and moving cylinder, etc.


Clamping device:

Its function is to realize the opening and closing of the mold, to ensure the reliable tightness of the molding mold during injection, and to release the product. The mold clamping device mainly consists of front and rear fixed templates, moving templates, tie rods for connecting front and rear templates, mold clamping cylinders, and connecting rod mechanisms. , mold adjustment device and product ejection device.


Hydraulic system and electrical control system:

Its function is to ensure that the injection machine works accurately and effectively according to the predetermined requirements (pressure, speed, temperature, time) and action sequence of the process. The hydraulic system of the injection machine is mainly composed of various hydraulic components, circuits and other auxiliary equipment, and the electrical control system is mainly composed of various electrical appliances and instruments. The hydraulic system and the electrical system are organically organized together to provide power for the injection machine and realize control





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