CN208247386U - Wood-plastic floor pipeline system full-automation production equipment - Google Patents
Wood-plastic floor pipeline system full-automation production equipment Download PDFInfo
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- CN208247386U CN208247386U CN201820622382.5U CN201820622382U CN208247386U CN 208247386 U CN208247386 U CN 208247386U CN 201820622382 U CN201820622382 U CN 201820622382U CN 208247386 U CN208247386 U CN 208247386U
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- Extrusion Moulding Of Plastics Or The Like (AREA)
Abstract
The utility model discloses Wood-plastic floor pipeline system full-automation production equipments, including extruding machine;Water-cooling system comprising soaking compartment, water-cooled metal part drain slot, air-dry component, and wherein water-cooled metal part includes water cooling module, water inlet pipe and outlet pipe with sizing chamber and waterway;Trailer system, it includes traction component, the traction component includes upper endless chain and lower endless chain, respectively around the multiple traction modules and driving unit of upper endless chain and the lower circumferentially-spaced distribution of endless chain, wherein forming the traction channel equal with extrusion molding plate thickness between upper endless chain lower part and the traction module on lower endless chain top;Cutting system.On the one hand the utility model under the cooperation of sizing chamber, fast implements the cooling of extruded sheet;On the other hand enable extruded sheet after cooling to rapidly enter subsequent processing, meet continuous-flow type continuous production, while forming traction channel by way of sectionally smooth join, it is ensured that extruded sheet will not skid in moving process.
Description
Technical field
The utility model belongs to Wood-plastic floor production equipment field, and in particular to a kind of Wood-plastic floor pipeline system is full-automatic
Change production equipment.
Background technique
In recent years, interior decoration largely uses solid wooden floor board, solid wooden compound floor etc. as floor decorative material.And solid wood
Floor has that high-quality timber is in short supply, timber utilization rate is not high, occurs some consolidated floors and composite floor board in the market
Meet consumer demand, still, in use, because the glue that compound tense uses can give out many harmful substance (such as first
Aldehyde), the health of people has been seriously affected, therefore, has gradually formed a kind of wood-plastic composite material products of novel environment friendly,
The middle and higher density fiberboard generated wooden phenol in the process is produced, regenerated plastics are added by Granulation Equipments and are made into wood and plastic composite
Then material carries out extrusion group and is made into Wood-plastic floor.
However, from after the mold discharge of extruding machine, substantially forming ground plate shape in actual processing, because temperature is higher, preventing
Only it is deformed, and needs to be quickly cooled down sizing, while also to ensure the intensity on floor itself.And cooling mode has water cooling and air-cooled
Two ways, but in view of convenient for manipulation and processing cost for, it is more using the comparison of water cooling.
Currently, used water-cooling pattern is immersion type, although the water in soaking compartment is in flow regime, it is cooled down
Effect is general, and can not carry out shaping to extruded sheet;The moisture of extrusion molding plate surface not can be removed after water cooling simultaneously, directly affect life
Produce the continuity of processing.
Summary of the invention
Technical problem to be solved in the utility model is with overcoming the deficiencies of the prior art and provide the completely new wood moulding of one kind
Slat production line formula full-automation production equipment.
In order to solve the above technical problems, the utility model adopts the following technical solution:
A kind of Wood-plastic floor pipeline system full-automation production equipment, including
Extruding machine comprising extruder ontology, feeding device and the mold that extrusion formation Wood-plastic floor is set;
Water-cooling system comprising the soaking compartment docked with mould outlet, wherein impregnating trough inner water is in flow regime, water cooling
System further includes the water-cooled metal part being arranged between soaking compartment entrance and extruding machine discharge port, with soaking compartment exports the drip docked
Dry slot carries out air-dried air-dried component positioned at draining to extrusion molding plate surface on slot, wherein water-cooled metal part is formed with including inside
The sizing chamber that matches with extruded sheet and the water cooling module of waterway for cold water flow, the water inlet pipe that is connected with waterway and
Outlet pipe, wherein the extending direction of sizing chamber intersects setting with the extending direction of waterway, and molding from extruding machine discharge port
Extruded sheet is by sizing chamber horizontal transmission into soaking compartment;
Trailer system comprising the traction component moved horizontally for clamping the extruded sheet after water cooling, the traction component packet
It includes up and down with respect to the upper endless chain of activity adjustment and lower endless chain, respectively around upper endless chain and the lower circumferentially-spaced distribution of endless chain
Multiple traction modules and respectively drive the driving unit that endless chain and lower endless chain rotate synchronously, wherein being located at upper ring
The traction channel equal with extrusion molding plate thickness is formed between shape chain lower part and the traction module on lower endless chain top;
Cutting system comprising cut platform, the cutting tool that can be moved synchronously with the extruded sheet and for driving
Dynamic cutting tool completes the driving mechanism cut in the extruded sheet moves synchronously.
Preferably, it is formed the extending direction of chamber and the extending direction of waterway is vertically arranged.Waterway water flowing in this way
Time is shorter, and cold water updates faster, is more advantageous to the rapid cooling of extruded sheet.
A specific implementation according to the present utility model and preferred aspect, waterway are provided inwardly with along sizing cavity length side
Multiple partitions, it is in a plurality of relatively independent water stream channel that plurality of partition, which separates waterway,.It is arranged by a plurality of water stream channel,
Water velocity is further increased, quick heat transfer effect is reached.
Preferably, multiple partitions are uniformly distributed along sizing cavity length direction, between a plurality of relatively independent water stream channel
Arranged in parallel, water inlet pipe and outlet pipe are arranged in a one-to-one correspondence with water stream channel, and respectively with every water stream channel both ends
Connection.
Another specific implementation according to the present utility model and preferred aspect, water cooling module include along sizing cavity length side
To the upper module and lower module from a side rotation closure, sizing chamber is by spicing forming type after upper module and lower module molding.
Preferably, waterway is separately positioned on upper module and lower module, and positioned at the top of sizing chamber after molding under
Portion.
Further, it is preferable that the flow direction in the waterway of top and the flow direction in the waterway of lower part
On the contrary.Heat transfer effect is further increased, cooling is fast implemented, it is ensured that extruded sheet quality after molding.
Another specific implementation according to the present utility model and preferred aspect, water-cooled metal part further include being arranged in waterway
Water inlet end be equipped with deflector, be arranged in inside waterway and be equipped with arc baffle, water in the corner for forming sizing chamber
Stream can quickly flow in waterway after deflector and arc baffle.The maximized speed for improving water flow and passing through
Degree.
In addition, above-mentioned water-cooling system further includes the multiple guide rollers being arranged in the immersion of soaking compartment, wherein being oriented to
Idler wheel can be rotated around own axes direction to be arranged, and flushes at the top of multiple guide rollers and setting is parallel to the horizontal plane.
Preferably, the calibration module that can be adjusted along vertical direction is equipped in the exit of soaking compartment, wherein calibrating die
The channel of standard pattern is equipped in block, the extruded sheet after water cooling is passed through from channel.
Another specific implementation according to the present utility model, is equipped with the bearing wheels with carrying extruded sheet in draining slot,
Middle bearing wheels around the rotation of horizontal axis direction be arranged, air-dried component include blower, ventilation shaft and ventilation spray head, wherein
Ventilation spray head is located at the opposite sides of extruded sheet, and the airflow direction sprayed is vertically arranged.
Preferably, ventilation spray head is located at the outlet end for draining slot.
Preferably, traction module includes the first connecting portion being connected with upper endless chain or lower endless chain, connect from first
Second connecting portion of the portion far from upper endless chain or lower annular link ends, wherein being located at upper endless chain lower part and lower endless chain top
The traction channel equal with extrusion molding plate thickness is formed between second connecting portion.
A specific implementation according to the present utility model and preferred aspect are formed on traction channel side in second connecting portion
Form anti-slip part.
Preferably, it is in lug, nib column that anti-slip part extends along upper endless chain and lower endless chain width direction, and adjacent two
Groove is formed between anti-slip part.
The both ends of another specific implementation according to the present utility model, groove are set there are drop and to one end inclination
It sets, anti-slip part is made of flexible absorbent material, and trailer system further includes that setting will on upper endless chain top and lower endless chain lower part
The pressure roller that anti-slip part moisture press dry, wherein the water being extruded arranges the opposite side of upward endless chain and lower endless chain from groove.
Preferably, under the transmission of upper endless chain and lower endless chain, pressure roller can force anti-slip part to groove deformation and quilt
Squeezing.In this example, on the one hand the setting of groove is convenient for draining, and is on the other hand convenient for absorbing moisture for more in second connecting portion
Anti-slip part carries out the squeezing by root.
The traction module being preferably located on endless chain and lower endless chain is symmetrically set about traction channel-length direction
It sets.That is, forming traction channel is the smaller paragraph type of spacing.
Due to the implementation of above technical scheme, the utility model has the advantages that compared with prior art
On the one hand the utility model under the premise of realizing extruded sheet sizing, fast implements extruded sheet by water-cooled metal part
Cooling;On the other hand under the draining for draining slot, and air-dry by way of, enable extruded sheet after cooling quickly into
Enter subsequent processing, meet continuous-flow type continuous production, while forming traction channel by way of sectionally smooth join, it is ensured that extruded sheet
It will not skid in moving process, and can be realized the uniform translation of extruded sheet, and then convenient for the molding of extruded sheet and cut, together
When structure it is simple, easy to implement and at low cost.
Detailed description of the invention
Fig. 1 is the schematic front view of the utility model automated production equipment;
Fig. 2 is the structure of the main view of extruding machine and water-cooling system in Fig. 1;
Fig. 3 be in Fig. 2 A-A to schematic cross-sectional view (arrow direction is water (flow) direction);
Fig. 4 is the schematic front view of the structure of trailer system in Fig. 1;
Wherein: 1, extruding machine;10, extruder ontology;11, feeding device;12, mold;
A, water-cooling system;2, soaking compartment;3, water-cooled metal part;30, water cooling module;30a, sizing chamber;30b, waterway;
30c, partition;30d, water stream channel;301, upper module;302, lower module;31, water inlet pipe;32, outlet pipe;33, deflector;34,
Arc baffle;4, guide roller;5, calibration module;6, slot is drained;60, bearing wheels;7, component is air-dried;71, ventilation spray head.
, trailer system;B1, traction component;B10, upper endless chain;B11, lower endless chain;B12, traction module;121, first
Interconnecting piece;122, second connecting portion;Q, channel is drawn;A, anti-slip part;B, groove;B4, pressure roller;B5, limit for width component;B50, limit
Wheel;500, race;
C, cutting system;C1, platform is cut;C2, cutting tool;C3, driving mechanism.
Specific embodiment
In order to make the above objects, features, and advantages of the present application more apparent, with reference to the accompanying drawing to the application
Specific embodiment be described in detail.Many details are explained in the following description in order to fully understand this Shen
Please.But the application can be implemented with being much different from other way described herein, those skilled in the art can be not
Similar improvement is done in the case where violating the application intension, therefore the application is not limited by the specific embodiments disclosed below.
In the description of the present application, it is to be understood that term " center ", " longitudinal direction ", " transverse direction ", " length ", " width ",
" thickness ", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outside", " up time
The orientation or positional relationship of the instructions such as needle ", " counterclockwise ", " axial direction ", " radial direction ", " circumferential direction " be orientation based on the figure or
Positional relationship is merely for convenience of description the application and simplifies description, rather than the device or element of indication or suggestion meaning must
There must be specific orientation, be constructed and operated in a specific orientation, therefore should not be understood as the limitation to the application.
In addition, term " first ", " second " are used for descriptive purposes only and cannot be understood as indicating or suggesting relative importance
Or implicitly indicate the quantity of indicated technical characteristic.Define " first " as a result, the feature of " second " can be expressed or
Implicitly include at least one this feature.In the description of the present application, the meaning of " plurality " is at least two, such as two, three
It is a etc., unless otherwise specifically defined.
In this application unless specifically defined or limited otherwise, term " installation ", " connected ", " connection ", " fixation " etc.
Term shall be understood in a broad sense, for example, it may be being fixedly connected, may be a detachable connection, or integral;It can be mechanical connect
It connects, is also possible to be electrically connected;It can be directly connected, can also can be in two elements indirectly connected through an intermediary
The interaction relationship of the connection in portion or two elements, unless otherwise restricted clearly.For those of ordinary skill in the art
For, the concrete meaning of above-mentioned term in this application can be understood as the case may be.
In this application unless specifically defined or limited otherwise, fisrt feature in the second feature " on " or " down " can be with
It is that the first and second features directly contact or the first and second features pass through intermediary mediate contact.Moreover, fisrt feature exists
Second feature " on ", " top " and " above " but fisrt feature be directly above or diagonally above the second feature, or be merely representative of
First feature horizontal height is higher than second feature.Fisrt feature can be under the second feature " below ", " below " and " below "
One feature is directly under or diagonally below the second feature, or is merely representative of first feature horizontal height less than second feature.
It should be noted that it can be directly another when element is referred to as " being fixed on " or " being set to " another element
On one element or there may also be elements placed in the middle.When an element is considered as " connection " another element, it can be with
It is directly to another element or may be simultaneously present centering elements.Term as used herein " vertically ", " level
", "upper", "lower", "left", "right" and similar statement for illustrative purposes only, be not offered as being uniquely to implement
Mode.
As shown in Figure 1, the Wood-plastic floor pipeline system full-automation production equipment of the present embodiment, including extruding machine 1, water cooling
System A, trailer system B, cutting system C.
Extruding machine 1 includes extruder ontology 10, feeding device 11 and the mold that extrusion formation Wood-plastic floor is arranged in
12;
In conjunction with Fig. 2 and Fig. 3, water-cooling system A comprising the soaking compartment 2 docked with 12 discharge port of mold, wherein soaking compartment 2
Interior water is in flow regime, and water-cooling system further includes the water-cooled metal being arranged between 1 discharge port of 2 entrance of soaking compartment and extruding machine
Part 3, exported with soaking compartment 2 dock drain slot 6, carry out air-dried air-dried component 7 on slot 6 to extrusion molding plate surface positioned at draining.
Specifically, water-cooled metal part 3 includes that inside is formed with the sizing chamber 30a to match with extruded sheet and for cold water flow
The water cooling module 30 of waterway 30b, the water inlet pipe 31 and outlet pipe 32 that are connected with waterway 30b.
In this example, the extending direction of the extending direction and waterway 30b of the chamber 30a that is formed is vertically arranged.Waterway water in this way
The time of flowing is shorter, and cold water updates faster, is more advantageous to the rapid cooling of extruded sheet.
Water cooling module 30 includes the upper module 301 and lower die along sizing chamber 30a length direction from a side rotation closure
Block 302, spicing forming type after sizing chamber 30a is molded by upper module 301 and lower module 302.
Waterway 30a is separately positioned on upper module 301 and lower module 302, and is located at the top of sizing chamber 30a after molding
The lower part and.
In this example, water velocity and heat transfer effect are further increased, respectively multiple partition 30c inside waterway 30a,
The extending direction of middle partition 30c is consistent with the sizing width direction of chamber 30a.
Therefore, it is in a plurality of relatively independent water stream channel 30d that multiple partition 30c, which separate waterway 30b, meanwhile, water inlet
Pipe 31 and outlet pipe 32 and water stream channel 30d are arranged in a one-to-one correspondence, and are connected to respectively with every both ends water stream channel 30d.?
That is a plurality of water stream channel 30d is spliced to form above-mentioned waterway 30a.
Specifically, multiple partition 30c are uniformly distributed along sizing chamber 30a length direction, a plurality of relatively independent water flow is logical
It is arranged in parallel between road 30d.
Meanwhile the flow direction in the waterway 30b of top and be located at lower part waterway 30b in flow direction phase
Instead.Heat transfer effect is further increased, cooling is fast implemented, it is ensured that extruded sheet quality after molding.
In this example, from the molding extruded sheet of 1 discharge port of extruding machine by sizing chamber 30a horizontal transmission into soaking compartment 2.
Water-cooled metal part 3 further include be arranged in waterway 30b water inlet end be equipped with deflector 33, be arranged in waterway
It is equipped with arc baffle 34 inside 30c and in the corner for forming sizing chamber 30a, water flow passes through deflector 33 and arc baffle
After 34, can quickly it be flowed in waterway 30b.The maximized speed for improving water flow and passing through.
In addition, above-mentioned water-cooling system further includes the multiple guide rollers 4 being arranged in the immersion of soaking compartment 2, wherein leading
Way roller 4 can be rotated around own axes direction to be arranged, and flushes at the top of multiple guide rollers 4 and setting is parallel to the horizontal plane.
Meanwhile it being equipped with the calibration module 5 that can adjust along vertical direction in the exit of soaking compartment 2, wherein calibrating die
The channel of standard pattern is equipped in block 5, the extruded sheet after water cooling is passed through from channel.
In this example, the setting of slot 6 is drained, convenient for draining the water of extrusion molding plate surface.
Specifically, being equipped with the bearing wheels 60 with carrying extruded sheet in draining slot 6, wherein bearing wheels 60 are around horizontal axis
Direction rotation setting.
Air-drying component 7 includes blower, ventilation shaft and ventilation spray head 71, wherein ventilation spray head 71 is located at extruded sheet
Opposite sides, and the airflow direction sprayed is vertically arranged.It is maximized to realize that extruded sheet surface air-dries by the air-flow type of flow
Rate.
Ventilation spray head 71 is located at the outlet end for draining slot 6.
Therefore, it after using above-mentioned water-cooling system A, has the advantage that
1, under the premise of extruded sheet is formed, it is arranged by the water stream channel above and below sizing chamber, rapidly by extruded sheet
Heat is taken away, to realize fast cooling;
2, the flow direction in the water stream channel of upper and lower part is on the contrary, further increase cooling efficiency and cooling quality;
3, by the setting of deflector and arc baffle, so that water flow is quickly and stable;
4, extruded sheet first passes through the rapid cooling of water-cooled metal part, cools down impregnating, can effectively shorten cooling section, thus
Simplify equipment, reduces cost;
5, under the draining for draining slot, and by way of air-drying, extruded sheet after cooling is rapidly entered down
One process meets continuous-flow type continuous production.
Meanwhile as shown in figure 4, trailer system B comprising the draw groups moved horizontally for clamping the extruded sheet after water cooling
Part B1.
Traction component B1 includes up and down with respect to the upper endless chain B10 of activity adjustment and lower endless chain B11, respectively around upper ring
Multiple traction module B12 of shape chain B10 and the circumferentially-spaced distribution of lower endless chain B11 and respectively drive endless chain B10 and under
The driving unit that endless chain B11 is rotated synchronously.
Traction module B12 includes the first connecting portion 121 being connected with upper endless chain B10 or lower endless chain B11, from first
Second connecting portion 122 of the interconnecting piece 121 far from upper endless chain B10 or the end lower endless chain B11, wherein being located at upper endless chain B10
The traction channel Q equal with extrusion molding plate thickness is formed between lower part and the second connecting portion 122 on the lower top endless chain B11.
Specifically, the traction module B12 being located on upper endless chain B10 and lower endless chain B11 is about the traction length side channel Q
To be symmetrical arranged.That is, forming traction channel is the smaller paragraph type of spacing.
It is not in slipping phenomenon meanwhile in order to further ensure that in transmit process, in this example, in second connecting portion
122 form formation anti-slip part a on the traction side channel Q.
It is in lug, nib column that anti-slip part a extends along upper endless chain B10 and lower endless chain B11 width direction, and adjacent two
Groove b is formed between anti-slip part a.
The both ends of groove b are obliquely installed there are drop and to one end, and anti-slip part a is made of flexible absorbent material, are led
Drawing system further includes that the pressure roller B4 that the top upper endless chain B10 and the lower lower part endless chain B11 press dry anti-slip part a moisture is arranged in,
The water being wherein extruded arranges the opposite side of upward endless chain B10 and lower endless chain B11 from groove b.
Under the transmission of upper endless chain B10 and lower endless chain B11, pressure roller B4 can force anti-slip part a to groove b deformation simultaneously
It is squeezed.In this example, on the one hand the setting of groove b is convenient for draining, and is on the other hand convenient for more absorption water in second connecting portion
The anti-slip part divided carries out the squeezing by root.
Meanwhile upper endless chain B10 in this example and lower endless chain B11 can also be tensioned adjusting, it is ensured that form traction channel Q
Conveyor surface be in a horizontal state.
In addition, traction channel Q disengaging end two sides be additionally provided with limit for width component B5, wherein limit for width component B5 include around
The rotation of vertical direction axial line and the position-limited wheel B50 for being located at traction channel Q width direction two sides, the outer peripheral surface of position-limited wheel B50
On be formed with the race 500 equal with extrusion molding plate thickness.Therefore, it by the setting of limit for width component B5, limits extruded sheet and is moved through
Cheng Zhong, the shaking in extruded sheet width and thickness direction, it is ensured that the stable translation of extruded sheet.
As for above-mentioned cutting system C comprising the cutting tool that cuts platform C1, can be moved synchronously with extruded sheet
C2 and driving mechanism C3 for driving cutting tool C2 to complete to cut in the extruded sheet moves synchronously.
Specifically, being cut into the direct outsourcing of applicant, belong to conventional means, its structure is not explained in detail herein
It states.
The utility model is described in detail above, its object is to allow the personage for being familiar with this field technology can be much of that
It solves the content of the utility model and is implemented, do not limit the protection scope of the present invention, it is all practical according to this
Equivalent change or modification made by novel Spirit Essence should all cover within the protection scope of the present utility model.
Claims (10)
1. a kind of Wood-plastic floor pipeline system full-automation production equipment, it is characterised in that: it includes
Extruding machine comprising extruder ontology, feeding device and the mold that extrusion formation Wood-plastic floor is set;
Water-cooling system comprising the soaking compartment docked with mould outlet, wherein the immersion trough inner water is in flow regime, institute
The water-cooling system stated further includes the water-cooled metal part being arranged between the soaking compartment entrance and the extruding machine discharge port and institute
Draining slot, carrying out air-dried air-dried component on slot to extrusion molding plate surface positioned at described drain for soaking compartment outlet docking is stated, wherein
The water-cooled metal part includes the water cooling of internal the sizing chamber and the waterway for cold water flow for being formed with and matching with extruded sheet
Module, the water inlet pipe and outlet pipe being connected with the waterway, wherein the extending direction and the waterway of the sizing chamber
Extending direction intersect setting, and from the molding extruded sheet of extruding machine discharge port by the sizing chamber to the soaking compartment
Interior horizontal transmission;
Trailer system comprising the traction component moved horizontally for clamping the extruded sheet after water cooling, the traction component include
Up and down with respect to the upper endless chain of activity adjustment and lower endless chain, respectively around the upper endless chain and circumferentially-spaced point of lower endless chain
Multiple traction modules of cloth and the driving unit for respectively driving the upper endless chain and the lower endless chain synchronous rotation,
In between the upper endless chain lower part and the traction module on the lower endless chain top formed and extrusion molding plate thickness phase
Deng traction channel;
Cutting system comprising cut platform, the cutting tool that can be moved synchronously with the extruded sheet and cut out for driving
Cutter completes the driving mechanism cut in the extruded sheet moves synchronously.
2. Wood-plastic floor pipeline system full-automation production equipment according to claim 1, it is characterised in that: the water
Cold chamber is provided inwardly with multiple partitions along the sizing cavity length side, and the waterway separation is in by the plurality of partition
A plurality of relatively independent water stream channel, the water inlet pipe and outlet pipe are arranged in a one-to-one correspondence with the water stream channel, and respectively
It is connected to water stream channel both ends described in every.
3. Wood-plastic floor pipeline system full-automation production equipment according to claim 2, it is characterised in that: multiple described
Partition is uniformly distributed along sizing cavity length direction, arranged in parallel between a plurality of relatively independent water stream channel.
4. Wood-plastic floor pipeline system full-automation production equipment according to claim 1 or 2 or 3, it is characterised in that: institute
The water cooling module stated includes the upper module and lower module along the sizing cavity length direction from a side rotation closure, described
Chamber be formed by spicing forming type after the upper module and lower module molding.
5. Wood-plastic floor pipeline system full-automation production equipment according to claim 4, it is characterised in that: the water
Cold chamber is separately positioned on the upper module and the lower module, and is located at the upper and lower part of the sizing chamber after molding.
6. Wood-plastic floor pipeline system full-automation production equipment according to claim 5, it is characterised in that: be located at top
Flow direction in the waterway is opposite with the flow direction being located in waterway described in lower part.
7. Wood-plastic floor pipeline system full-automation production equipment according to claim 6, it is characterised in that: the water
Cold metal part further includes that the water inlet end of the waterway is arranged in be equipped with deflector, be arranged and inside waterway and formed
The corner of the sizing chamber is equipped with arc baffle, and water flow, can be fast after the deflector and the arc baffle
Speed flows in the waterway.
8. Wood-plastic floor pipeline system full-automation production equipment according to claim 1, it is characterised in that: described
The bearing wheels being equipped in slot with carrying extruded sheet are drained, wherein the bearing wheels are arranged around the rotation of horizontal axis direction, institute
The air-dried component stated includes blower, ventilation shaft and ventilation spray head, wherein the ventilation spray head is located at opposite the two of extruded sheet
Side, and the airflow direction sprayed is vertically arranged.
9. Wood-plastic floor pipeline system full-automation production equipment according to claim 1, it is characterised in that: described leads
Draw module include the first connecting portion being connected with the upper endless chain or lower endless chain, from the first connecting portion far from described
The second connecting portion of upper endless chain or lower annular link ends, wherein being located at the upper endless chain lower part and the lower endless chain top
The second connecting portion between form the traction channel equal with extrusion molding plate thickness.
10. Wood-plastic floor pipeline system full-automation production equipment according to claim 9, it is characterised in that: described
Second connecting portion formed on the traction channel side and form anti-slip part, the anti-slip part along the upper endless chain and
It is in lug, nib column that lower endless chain width direction, which extends, and groove is formed between adjacent two anti-slip parts, and the two of the groove
End is obliquely installed there are drop and to one end, and the anti-slip part is made of flexible absorbent material, the trailer system
Further include the pressure roller that the upper endless chain top and the lower endless chain lower part press dry the anti-slip part moisture is set, wherein
The water being extruded is arranged from the groove to the opposite side of the upper endless chain and the lower endless chain.
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| Application Number | Priority Date | Filing Date | Title |
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| CN201820622382.5U CN208247386U (en) | 2018-04-27 | 2018-04-27 | Wood-plastic floor pipeline system full-automation production equipment |
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| Application Number | Priority Date | Filing Date | Title |
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| CN201820622382.5U CN208247386U (en) | 2018-04-27 | 2018-04-27 | Wood-plastic floor pipeline system full-automation production equipment |
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Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN108638470A (en) * | 2018-04-27 | 2018-10-12 | 张家港卡福新材料有限公司 | Wood-plastic floor pipeline system full-automation production equipment |
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Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN108638470A (en) * | 2018-04-27 | 2018-10-12 | 张家港卡福新材料有限公司 | Wood-plastic floor pipeline system full-automation production equipment |
| CN108638470B (en) * | 2018-04-27 | 2024-05-28 | 张家港卡福新材料有限公司 | Wood plastic flooring assembly line fully automated production equipment |
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