CN211595852U - Spinning assembly capable of quickly assembling and disassembling spinneret plate - Google Patents
Spinning assembly capable of quickly assembling and disassembling spinneret plate Download PDFInfo
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- CN211595852U CN211595852U CN201922062401.0U CN201922062401U CN211595852U CN 211595852 U CN211595852 U CN 211595852U CN 201922062401 U CN201922062401 U CN 201922062401U CN 211595852 U CN211595852 U CN 211595852U
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Abstract
The utility model discloses a install and remove spinning subassembly of spinneret fast, including the subassembly body, the top of the subassembly body is provided with the spiral cover, one side of the subassembly body is provided with the guide key, the opposite side of the subassembly body has been seted up into the thick liquid mouth, the outside of advancing the thick liquid mouth is provided with rather than matched with advances thick liquid aluminium packing ring, the below of spiral cover just is located the inside of the subassembly body is provided with into the fused mass board, the bottom of advancing the fused mass board has been seted up into and has been melted the chamber, advance to melt the chamber through advance the thick liquid passageway with advance the thick liquid mouth and connect, the below of advancing to melt the chamber just is located be provided with the sea sand layer in the subassembly body, the below on sea sand layer just is located be provided with the plain net in the subassembly body, the bottom of plain net is provided with withstand voltage board. Has the advantages that: therefore, in a specific using process, the spinning net can be detached and mounted again by detaching the pressing cap, and the spinning net can be detached and mounted by workers quickly.
Description
Technical Field
The utility model relates to a spinning subassembly field particularly, relates to a spinning subassembly of quick assembly and disassembly spinneret.
Background
Spinning is also known as chemical fiber forming. A process for making chemical fibers. The process of forming chemical fiber by making some high molecular compound into colloidal solution or melting into melt and extruding from fine holes of spinneret. Spinning, also known as chemical fiber forming. A process for making chemical fibers. The process of forming chemical fiber by making some high molecular compound into colloidal solution or melting into melt and extruding from fine holes of spinneret. The spinning colloidal solution or melt is delivered to the spinneret by a metering pump. The forming method mainly comprises two main types of solution spinning and melt spinning. In recent years, many new special spinning methods have appeared.
The traditional spinning assembly fixes the spinning net by arranging a plurality of high-strength bolts, although the installation method can keep the spinning net stable in the working process, the spinning net needs to be disassembled and re-installed, so that the great labor and time are consumed, and the use of workers is inconvenient; simultaneously, plain net among the tradition makes the thick liquids pass through setting up a plurality of drainage holes, and this kind of setting mode need set up rather than matched with device and just can make the more clear of thick liquids reposition of redundant personnel at the in-process of work, and then also inconvenient use.
SUMMERY OF THE UTILITY MODEL
To the problem among the correlation technique, the utility model provides a install and remove spinning subassembly of spinneret fast to overcome the above-mentioned technical problem that current correlation technique exists.
Therefore, the utility model discloses a specific technical scheme as follows:
the utility model provides a spin pack of quick assembly and disassembly spinneret, includes the subassembly body, the top of subassembly body is provided with the spiral cover, one side of subassembly body is provided with the guide key, the opposite side of subassembly body has been seted up into the thick liquid mouth, the outside of entering the thick liquid mouth is provided with rather than matched with advances thick liquid aluminium packing ring, the below of spiral cover just is located the inside of subassembly body is provided with into the fused mass board, the bottom of advancing the fused mass board has been seted up into and has been melted the chamber, advance to melt the chamber through advance thick liquid passageway with it is connected to advance the thick liquid mouth, the below of advancing to melt the chamber and being located the internal sea sand layer that is provided with of subassembly, the below of sea sand layer just is located the internal plain net that is provided with of subassembly, the bottom of plain net is provided with the pressure resisting plate, be provided with on the pressure resisting plate a plurality of with plain net matched with runner, one side of plain net is kept away from to the pressure resisting plate is provided with the break plate, one side of break plate is The net, the intermediate position of spouting the silk screen alternates and is provided with the pressure cap, spout the silk screen through the backing plate with press the cap to be connected.
Furthermore, in order to increase the bee performance of the device in the spinning process, the device is connected with a spinning net through a bound filter net gasket, a drainage plate matched with the flow channel is arranged on the distribution plate and around the outer side of the pressing cap, and the drainage plate is connected with the spinning net through the bound filter net gasket.
Further, in order to increase the sealing performance between the screw cap and the melt inlet plate, a second aluminum gasket is arranged, and the screw cap is connected with the melt inlet plate through the second aluminum gasket.
Further, in order to improve the sealing performance of the device in the working process, the plain net and the component body and the pressure-resistant plate and the component body are respectively connected through the first aluminum gasket by arranging the first aluminum gasket.
Furthermore, in order to ensure pressure balance in the operation process, the drainage cavity is formed in the top of the flat net, the bottom end of the drainage cavity is provided with the filter layer, sea sand is arranged in the filter layer, the flow distribution plate is arranged below the filter layer, a plurality of flow distribution mechanisms are uniformly arranged on the flow distribution plate, and the bottom of the flat net is positioned below the flow distribution plate and is provided with a first flow distribution cavity matched with the flow distribution mechanisms.
Further, for the texture that makes thick liquids is more even to through setting up reposition of redundant personnel mechanism, reposition of redundant personnel mechanism includes the collection chamber, just the collection chamber is like the circular cone radially, the bottom in collection chamber is provided with four second reposition of redundant personnel chambeies.
The utility model has the advantages that:
1. this practicality is compared with traditional spinning unit, through the cap of pressing that sets up trapezoidal thread to in specific use, will press the cap to dismantle and can dismantle and install once more the spinning net, replaced spinning unit is through the bolted connection's that sets up six high strength mode in the tradition, and then the staff of being convenient for is quick dismantles and installs the spinning net.
2. This practicality is through setting up reposition of redundant personnel mechanism to the set chamber cooperatees with the reposition of redundant personnel chamber, can make the plain net under the condition that thick liquids reposition of redundant personnel at the in-process of circulation becomes clearer, guarantees that the pressure that the plain net received is balanced, simultaneously, makes the more even circulation of thick liquids, also makes the texture of thick liquids more even, and then can improve the device's play silk quality.
Drawings
Fig. 1 is a schematic structural diagram of a spinning assembly for quickly mounting and dismounting a spinneret plate according to an embodiment of the present invention;
fig. 2 is a schematic view of a partial structure of a spin pack assembly for quick mounting and dismounting of a spinneret plate according to an embodiment of the present invention;
fig. 3 is a second partial schematic view of a spinning assembly for quick mounting and dismounting of a spinneret according to an embodiment of the present invention;
fig. 4 is a third schematic view of a partial structure of a spinning assembly for quickly mounting and dismounting a spinneret plate according to an embodiment of the present invention;
fig. 5 is a cross-sectional view of a flat web of a spin pack assembly for quick assembly and disassembly of spinnerets in accordance with an embodiment of the present invention;
fig. 6 is a schematic structural view of a spinning assembly dividing mechanism for quickly mounting and dismounting a spinneret plate according to an embodiment of the present invention.
In the figure:
1. an assembly body; 2. screwing a cover; 3. a guide key; 4. a pulp inlet; 5. a slurry inlet aluminum gasket; 6. feeding a melt plate; 7. entering a melting cavity; 8. a slurry inlet channel; 9. a layer of sea sand; 10. flattening the net; 1001. a drainage lumen; 1002. a filter layer; 1003. a flow distribution plate; 1004. a flow dividing mechanism; 1005. a first diversion chamber; 1006. a collection chamber; 1007. A second diversion cavity; 11. a pressure-resistant plate; 12. a distribution plate; 13. a flow channel; 14. spraying a silk screen; 15. pressing the cap; 16. a base plate; 17. a drainage plate; 18. a first aluminum washer; 19. a second aluminum gasket; 20. and a filter screen gasket is wrapped.
Detailed Description
Referring to the drawings and the detailed description, as shown in fig. 1-6, the spinning assembly of the quick assembly/disassembly spinneret plate according to the embodiment of the present invention comprises an assembly body 1, a screw cap 2 is disposed on the top of the assembly body 1, a guide key 3 is disposed on one side of the assembly body 1, a slurry inlet 4 is disposed on the other side of the assembly body 1, a slurry inlet aluminum gasket 5 is disposed outside the slurry inlet 4, a melt inlet plate 6 is disposed below the screw cap 2 and inside the assembly body 1, a melt inlet cavity 7 is disposed at the bottom end of the melt inlet plate 6, the melt inlet cavity 7 is connected with the slurry inlet 4 through a slurry inlet channel 8, a sea sand layer 9 is disposed below the melt inlet cavity 7 and inside the assembly body 1, a plain net 10 is disposed below the sea sand layer 9 and inside the assembly body 1, the bottom end of the plain net 10 is provided with a pressure-resistant plate 11, the pressure-resistant plate 11 is provided with a plurality of flow channels 13 matched with the plain net 10, one side of the pressure-resistant plate 11, which is far away from the plain net 10, is provided with a distribution plate 12, one side of the distribution plate 12, which is far away from the pressure-resistant plate 11, is provided with a silk-spraying net 14 at the bottom inside the component body 1, a pressing cap 15 is inserted in the middle position of the silk-spraying net 14, the silk-spraying net 14 is connected with the pressing cap 15 through a backing plate 16, so that the traditional high-strength bolt connection mode is replaced by the pressing cap 15, the silk-spraying net 14 is convenient to be rapidly installed and detached, the pressing cap 15 is in a trapezoidal thread shape, the upper and lower ports of the flow channels 13 are funnel-shaped, the lower end of the flow channel at the outermost side is inclined towards the drainage plate, the diameter of the drainage tube increases from inside to outside through the drainage channel.
In one example, for the above-mentioned distributing plate 12, the distributing plate 12 is provided with a flow guide plate 17 which is matched with the flow channel 13 and surrounds the outer side of the pressing cap 15, the flow guide plate 17 is connected with the silk-spraying net 14 through a covered filter gasket 20, so that the honey bee performance of the device in the silk-spraying process is increased by arranging the covered filter gasket 20 to be connected with the silk-spraying net 14.
In one example, for the screw cap 2, the screw cap 2 is connected with the melt inlet plate 6 through a second aluminum gasket 19, so that the tightness between the screw cap 2 and the melt inlet plate 6 is increased by arranging the second aluminum gasket 19.
In one example, for the flat net 10, the flat net 10 and the component body 1 and the pressure-resistant plate 11 and the component body 1 are respectively connected through an aluminum gasket one 18, so that the sealing performance of the device during operation is improved by arranging the aluminum gasket one 18.
In an example, for the flat screen 10, a drainage cavity 1001 is formed in the top of the flat screen 10, a filter layer 1002 is arranged at the bottom end of the drainage cavity 1001, sea sand is arranged in the filter layer 1002, a flow distribution plate 1003 is arranged below the filter layer 1002, a plurality of flow distribution mechanisms 1004 are uniformly arranged on the flow distribution plate 1003, a first flow distribution cavity 1005 matched with the flow distribution mechanisms 1004 is formed in the bottom of the flat screen 10 and below the flow distribution plate 1003, so that the device can distribute flow clearly in the working process by arranging the flat screen 10, pressure balance in the working process is further ensured, and the sea sand is thinner than a sea sand layer 9.
In one example, for the above-mentioned flow dividing mechanism 1004, the flow dividing mechanism 1004 includes a collection chamber 1006, and the collection chamber 1006 is in a conical-like radial shape, and four second flow dividing chambers 1007 are provided at the bottom end of the collection chamber 1006, so that the texture of the slurry is more uniform by providing the flow dividing mechanism 1004.
The working principle is as follows: during the use, thick liquids from advancing in the thick liquids mouth 4 flow into the device, through advancing the thick liquids passageway 8 on the fuse-element board 6, flow to advancing melting chamber 7, and then behind the impurity removal in thick liquids of sea sand layer 9, flow in the drainage chamber 1001 of plain net 10, later, filter the impurity through filtering layer 1002 secondary again, after the filtration is finished in proper order through set chamber 1006 and the second reposition of redundant personnel chamber 1007 of reposition of redundant personnel mechanism 1004, flow into the drainage board 17 in the break plate 12 through the runner concentrate on the withstand voltage board 11, later, spout the silk screen through spouting silk screen 14 again.
To sum up, with the help of the above technical scheme of the utility model, the utility model discloses compare with traditional spinning subassembly, press cap 15 through setting up trapezoidal thread to in concrete use, will press cap 15 to dismantle and can dismantle and install silk screen 14, replaced spinning subassembly in the tradition through the bolted connection's that sets up six high strength mode, and then the staff of being convenient for is quick to spouting silk screen 14 and dismantle and install. This practicality is through setting up reposition of redundant personnel mechanism 1004 to set chamber 1006 and second reposition of redundant personnel chamber 1007 cooperate, can make plain net 10 along with the thick liquids shunt under the more clear circumstances at the in-process of circulation, guarantee the pressure balance that the plain net received, simultaneously, make the more even circulation of thick liquids, also make the texture of thick liquids more even, and then can improve the device go out the silk quality.
The above description is only a preferred embodiment of the present invention, and should not be taken as limiting the invention, and any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention should be included in the protection scope of the present invention.
Claims (6)
1. The spinning assembly for quickly assembling and disassembling the spinneret plate is characterized by comprising an assembly body (1), wherein a rotary cover (2) is arranged at the top of the assembly body (1), a guide key (3) is arranged on one side of the assembly body (1), a slurry inlet (4) is formed in the other side of the assembly body (1), a slurry inlet aluminum gasket (5) matched with the slurry inlet (4) is arranged on the outer side of the slurry inlet (4), a melt inlet plate (6) is arranged below the rotary cover (2) and inside the assembly body (1), a melt inlet cavity (7) is formed in the bottom end of the melt inlet plate (6), the melt inlet cavity (7) is connected with the slurry inlet (4) through a slurry inlet channel (8), a sea sand layer (9) is arranged below the melt inlet cavity (7) and inside the assembly body (1), a plain net (10) is arranged below the sea sand layer (9) and inside the assembly body (1), the bottom of plain net (10) is provided with withstand voltage board (11), be provided with on withstand voltage board (11) a plurality of with plain net (10) matched with runner (13), withstand voltage board (11) are kept away from one side of plain net (10) is provided with break plate (12), break plate (12) are kept away from one side of withstand voltage board (11) and be located the inside bottom of subassembly body (1) is provided with spouts silk screen (14), the intermediate position of spouting silk screen (14) alternates and is provided with and presses cap (15), spout silk screen (14) through backing plate (16) with press cap (15) to be connected.
2. The spinning pack of the quick-mounting/dismounting spinneret plate according to claim 1, wherein the distribution plate (12) is provided with a flow guide plate (17) which is matched with the flow channel (13) and surrounds the outer side of the pressing cap (15), and the flow guide plate (17) is connected with the spinneret plate (14) through a covered screen gasket (20).
3. The spinneret pack assembly according to claim 1, wherein the screw cap (2) is connected to the melt feed plate (6) by a second aluminum washer (19).
4. The spinning pack for quickly assembling and disassembling the spinneret plate according to claim 1, wherein the flat net (10) and the pack body (1) and the pressure plate (11) and the pack body (1) are respectively connected through an aluminum gasket I (18).
5. The spinning pack for quickly assembling and disassembling the spinneret plate according to claim 1, wherein a drainage cavity (1001) is formed in the top of the flat net (10), a filter layer (1002) is arranged at the bottom end of the drainage cavity (1001), sea sand is arranged in the filter layer (1002), a splitter plate (1003) is arranged below the filter layer (1002), a plurality of splitter mechanisms (1004) are uniformly arranged on the splitter plate (1003), and a first splitter cavity (1005) matched with the splitter mechanisms (1004) is formed in the bottom of the flat net (10) and below the splitter plate (1003).
6. The spinning pack of the quick-speed spinneret assembly and disassembly system of claim 5, wherein the flow dividing mechanism (1004) comprises a collecting cavity (1006), the collecting cavity (1006) is conical-like radial, and four second flow dividing cavities (1007) are arranged at the bottom end of the collecting cavity (1006).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201922062401.0U CN211595852U (en) | 2019-11-26 | 2019-11-26 | Spinning assembly capable of quickly assembling and disassembling spinneret plate |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201922062401.0U CN211595852U (en) | 2019-11-26 | 2019-11-26 | Spinning assembly capable of quickly assembling and disassembling spinneret plate |
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Publication Number | Publication Date |
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CN211595852U true CN211595852U (en) | 2020-09-29 |
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CN201922062401.0U Active CN211595852U (en) | 2019-11-26 | 2019-11-26 | Spinning assembly capable of quickly assembling and disassembling spinneret plate |
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CN (1) | CN211595852U (en) |
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2019
- 2019-11-26 CN CN201922062401.0U patent/CN211595852U/en active Active
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