CN104005094B - A kind of big reeling device of infrared drying - Google Patents

A kind of big reeling device of infrared drying Download PDF

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Publication number
CN104005094B
CN104005094B CN201410244179.5A CN201410244179A CN104005094B CN 104005094 B CN104005094 B CN 104005094B CN 201410244179 A CN201410244179 A CN 201410244179A CN 104005094 B CN104005094 B CN 104005094B
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big
filature
hornblock
axle sleeve
carriage
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CN104005094A (en
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江文斌
傅雅琴
陈文兴
张孟丽
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Zhejiang Sci Tech University ZSTU
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Zhejiang Sci Tech University ZSTU
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Abstract

The invention provides a kind of big reeling device of infrared drying, big and carriage of heat preservation is used including filature, described filature is with being in removably in carriage of heat preservation greatly, the lower front of described carriage of heat preservation has gathering hole, and front upper has movable front shroud, and under movable front shroud open mode, described filature is with removing from carriage of heat preservation greatly, it is provided with lampshade on described movable front shroud, infrared electric heating pipe is set in described lampshade, on the downside of the rear portion of described insulated boxcar, is also equipped with infrared electric heating pipe;Infrared electric heating pipe in described lampshade is connected on tube stand, and tube stand is by regulating screw mandrel and nut is fixed on described lampshade, by the infrared electric heating pipe in regulation screw mandrel and nut regulating lampshade and filature by big distance.The present invention can make big filature meet silk reeling technology requirement so that can be with big winding during automatic silk reeling machine filature, it is to avoid follow-up rereeling operation.

Description

A kind of big reeling device of infrared drying
Technical field
The present invention relates to a kind of big reeling device of infrared drying.
Background technology
For automatic silk reeling machine, raw silk during filature be wound up into girth less than 700mm little on.According to the needs of raw silk storage and transport, then the silk sheet on little rewind again Zhou Changwei 1500mm big on, this process is referred to as " rereeling ".Also need when rereeling further the silk sheet being wound on big to be dried by the way of heating.The most this raw silk produces, drying mode, operation is many, the most time-consuming, in order to raise labour productivity, shorten raw silk work flow, use big winding-structure when filature, be a kind of solution, but current filature drying mode and device can not meet the technological requirement of big filature, and current when rereeling, cannot be used for greatly filature, it is therefore desirable to develop a kind of special big reeling device of automatic silk reeling machine configuring functions/drying.
Summary of the invention
Present invention technical problem the most to be solved is to provide a kind of big reeling device of infrared drying, it is possible to make big filature meet silk reeling technology requirement so that can be with big winding during automatic silk reeling machine filature, it is to avoid follow-up rereeling operation.To this end, the present invention is by the following technical solutions:
A kind of big reeling device of infrared drying, it is characterized in that it includes filature big and carriage of heat preservation, described filature is with being in removably in carriage of heat preservation greatly, the lower front of described carriage of heat preservation has gathering hole, and front upper has movable front shroud, and under movable front shroud open mode, described filature is with removing from carriage of heat preservation greatly, it is provided with lampshade on described movable front shroud, infrared electric heating pipe is set in described lampshade, on the downside of the rear portion of described insulated boxcar, is also equipped with infrared electric heating pipe;Infrared electric heating pipe in described lampshade is connected on tube stand, and tube stand is by regulating screw mandrel and nut is fixed on described lampshade, by the infrared electric heating pipe in regulation screw mandrel and nut regulating lampshade and filature by big distance.
Using on the basis of technique scheme, the present invention also can use technical scheme further below:
Described carriage of heat preservation is sequentially connected with is formed by front lamp tube housing plate, movable front shroud, rear cowl, platform floor, movable front shroud is circular arc cover, the big concentric of described circular arc and filature, the rotation guide rail of movable front shroud is set on carriage of heat preservation, the fixed guide pin coordinated with guide rail on movable front shroud.
Described filature is with including greatly big support, the center of described big support has trocar sheath, described filature is with also having internal axle sleeve molectron greatly, described trocar sheath is enclosed within outside internal axle sleeve molectron, the aperture of described internal axle sleeve molectron coordinates with big axle, make internal axle sleeve molectron that big axle can be allowed to pass, described internal axle sleeve molectron and the removable connection of trocar sheath and synchronous axial system, described internal axle sleeve molectron has friction position, described friction position is for producing frictional fit with big axle, make internal axle sleeve molectron can rely on described frictional fit by big axle drive rotate and and then drive big holder pivots, and can stop operating under external force and big axle is rotated further;Described internal axle sleeve molectron is with axial positioning element, and axial positioning element is detachably in internal axle sleeve molectron, and described axial positioning element is used for making described internal axle sleeve molectron holding position on big axle;
The surrounding of described big support is evenly arranged with multiple hornblock, and described hornblock is removably mounted, and described hornblock stretches tight a parts as winding when filature, and the working end of described hornblock has axial translot, makes described working end form U-shape structure;
Described filature is with being additionally provided with greatly the drag friction circle coaxial with described trocar sheath, and described drag friction circle is in filature and is connected with big side and with described hornblock;The outline of described drag friction circle is higher than the work surface of described hornblock, and its difference in height is slightly big than stretching tight greatly a thickness;
Described internal axle sleeve molectron is made up of two, left and right body, described trocar sheath by axial limiting in internal axle sleeve molectron, the removable clamping of body of two, described left and right.
The support zone centrage deflection hornblock of described big support diagonal blocks is away from that side of drag friction circle.
Described one of them or several hornblock are connected on its big support by telescoping mechanism expandable the most simultaneously.
Being connected to the hornblock on big support for non-telescoping, its side has the connecting hole for being connected by screw with drag friction circle;Described big support outer end has a connecting seat, and described a connecting seat has insertion site, and the bottom of this kind of hornblock has the hole inserted for insertion site, and this kind of hornblock is also connected by screw with a connecting seat;
For being telescopically connected to the hornblock on big support, its side has feather key, described drag friction circle has the gathering sill coordinated with feather key, it is provided with for hole that is flexible and that guide or groove in the big support of this kind of hornblock, this kind of hornblock is furnished with the second connection seat, described second connects seat has expansion link, expansion link can be along radially movable for hole that is flexible and that guide or groove, described expansion link has can the card division of elastic opening and closing, on the rotatable wheel that described card division is supported on big support under open configuration, in closed state can be with the remainder of expansion link along radially movable for hole that is flexible and that guide or groove, described rotatable wheel connects the handle having its rotation of driving.
Drag friction circle uses narrow sideband connecting lug structure;Connecting lug connects for fixing with hornblock, and drag friction circle is narrower in the regional edge that need not fixing connection, and, the region that need not fix of drag friction circle 7 and raw silk wind has unobstructed region between track.The connecting lug of described drag friction circle has the gathering sill coordinated with described feather key.
For being telescopically connected to the hornblock on big support, the big support portions at the symmetrical side of its big support connected is provided with the scalable filature balance weight by big balance.
Described axial positioning element is pin, and the outer end of two bodies in described left and right is respectively provided with the through hole inserted for pin, and the end face of described pin is arranged in internal axle sleeve molectron by spring compression as described friction position, described pin.
The outer end of described internal axle sleeve molectron has for the through hole with bayonet fittings, described internal axle sleeve molectron have for and trocar sheath between carry out the convex key of power transmission.
The circumferential surface that the inner of two bodies in described left and right has along body extends integral part of buckle and bayonet socket, and the interface arrangment that two, described left and right body is formed by buckle and bayonet fittings carries out removable clamping.
Described inner sleeve shaft assembly also includes sheath, described sheath is detachably folded between one of them body and trocar sheath, and with body synchronous axial system, sheath has rib, rib is for keeping off outside the gap between adjacent two big internal axle sleeve molectrons, sheath has the step on the opening for the turnover of axial positioning element, described sheath and another body by spacing for trocar sheath on inner sleeve shaft assembly.
Owing to using technical scheme, the structure of the carriage of heat preservation of the present invention and electrical heating performance improve the processing quality of big filature the most fully, facilitate again the necessary operation in silk reeling process and big dismounting, the filature filature also being able to greatly be suitable for automatic silk reeling machine that girth is 1500mm can be made to be used.
Moreover, the filature of the present invention is with possessing greatly brake, automatically start after brake, a degree of tightness that stretches tight such as is automatically adjusted at the several functions, can be axially located greatly and be connected on big axle, driven by big axle and rotate, again can be by independent brake, and simple in construction, rationally, the most easy for installation but also make overall structure firmly and can dismantle the most piece by piece, it is easy to professional production of classifying, packaging and transport, and, the hornblock of one of them or the part of the present invention can stretch, make big wrapping wire girth variable, can easily by be wound on automatic silk reeling machine special big on raw silk take out and enter subsequent processing.
Accompanying drawing explanation
Fig. 1 is embodiment schematic diagram provided by the present invention.
Fig. 2 is the filature provided by the present invention sectional view by big embodiment.
Fig. 3 is the A direction view of Fig. 2 of the present invention.
Fig. 4 is the A direction view after a present invention hornblock contraction wherein.
Fig. 5 is the axonometric drawing of the telescopic hornblock of the present invention.
Fig. 6 is the axonometric drawing of the non-telescoping hornblock of the present invention.
Fig. 7 is the imperial palace sleeve combination part sectional view of the present invention.
Fig. 8 is the axonometric drawing after the imperial palace sleeve combination part combination of the present invention.
Fig. 9 is the imperial palace sleeve combination part assembling signal axonometric drawing of the present invention.
Detailed description of the invention
Referring to the drawings, a kind of big reeling device of infrared drying provided by the present invention.Some form raw silk 11 from the silk 102 of callus 101 extraction after the collection thread wing 103 is assembled, and raw silk 11 forms big silk sheet by filature with big 112 windings.
The big reeling device of described infrared drying includes filature big and carriage of heat preservation, described filature is in carriage of heat preservation removably with big 112, the lower front of described carriage of heat preservation has gathering hole K, front upper has movable front shroud 110, and under movable front shroud open mode, described filature can remove with big 112 from carriage of heat preservation.
Filature with big 112 be provided around the movable front shroud 110 of the co-axial heart of circular arc, track 111, rear cowl 115, fixed guide pin 113 on movable front shroud 110.As shown in the left half of Fig. 1, there is a parabola shaped front lamp tube housing plate 109 front portion of movable front shroud 110, front fluorescent tube 108 is fixed by front tube stand 107, it is illustrated as the sectional view of front fluorescent tube 108, front tube stand 107 is fixed on front lamp tube housing plate 109 by regulation screw mandrel 106 and nut 105, by fluorescent tube 108 before regulation screw mandrel 106 and nut 105 scalable and filature with big 112 distance, usual distance is 60-120mm.Being provided with platform floor 114 at filature with the lower section of big 112 to be connected with the bottom of rear cowl 115, tube stand 117 after being provided with at the bottom comers of rear cowl 115, rear fluorescent tube 116 is placed on rear tube stand 117.Such structure layout design, filature can be realized be in the carriage of heat preservation being made up of front lamp tube housing plate 109, movable front shroud 110, rear cowl 115, platform floor 114 with big 112, this carriage of heat preservation except lower front have gathering hole enter for raw silk 11 and open in addition to, remaining is for closing, carriage of heat preservation uses this structure composition, both convenient installation, improves again closure namely the heat-insulating property of carriage of heat preservation, can play and prevent distributing of heat, improve the effect of the thermal efficiency.
Parabola shaped front lamp tube housing plate 109 and the bottom comers of rear cowl 115 meet the needs installing fluorescent tube, both described carriage of heat preservation space can have been made less, more compact, headlight pipe 108 and rear fluorescent tube 116 can be made again to keep suitable distance with filature with big 112, avoid fluorescent tube from filature raw silk 11 on big 112 excessively close to, the high temperature preventing fluorescent tube from producing causes damage to being wound on filature raw silk 11 on big 112.
The head of described guide pin 113 is in " T " font, it is stuck in track 111 and can move along track, the movable front shroud 110 of fixed guide pin 113 can with fluorescent tube 108 before all-in-one-piece fixed thereto together around filature with big 112 axis rotation, activity front shroud 110 and the position of front fluorescent tube 108 when the left figure of Fig. 1 is normal filature, when the right figure of Fig. 1 is to need to take off from machine after filature is wound up into certain thickness with the raw silk 11 on big 112, the state after the movable front shroud 110 with front fluorescent tube 108 is upwards pushed.
Described front fluorescent tube 108 and rear fluorescent tube 116 structure are disjunctor parallel double tube, for heating heating wire by initial end enter fluorescent tube parallel double tube in one, another root of parallel double tube it is back to by the other end, again from initial end out, 2 wiring so formed are positioned at same one end of disjunctor parallel double tube, it is simple to the connection of power supply.Described disjunctor parallel double tube is transparent quartz tube, in pipe, side is gold-plated reflecting layer, the infrared ray produced after the heating wire heating power being positioned in disjunctor parallel pipe appears from without gold-plated side after gold-plated reflecting layer is totally reflected, before during installation, the side without Gold plated Layer of fluorescent tube 108 and rear fluorescent tube 117 faces toward filature with big 112, gold-plated reflecting layer away from filature with big 112, the infrared ray that the most front fluorescent tube 108 and rear fluorescent tube 116 produce all is radiated filature raw silk 11 on big 112, has the advantages that the thermal efficiency is high, energy consumption is low.
The left figure of Fig. 1 and right figure are with 120 as line of symmetry, and in addition to movable shroud upper panel 110 and corresponding part position difference, remaining is the most identical.
nullReferring to the drawings,Filature provided by the present invention includes big support 6 with big 112,Each filature is with being generally of greatly the big shelves of 4-12 shelves,The present embodiment is 6 grades,The center of described big support 6 has trocar sheath 60,Described filature also has internal axle sleeve molectron 30 with big 112,Trocar sheath 60 is enclosed within outside internal axle sleeve molectron 30,The aperture big axle special with automatic silk reeling machine of described internal axle sleeve molectron 30 coordinates,Make internal axle sleeve molectron 30 that big axle can be allowed to pass,Described internal axle sleeve molectron 30 and the removable connection of trocar sheath 60 and synchronous axial system,Described internal axle sleeve molectron 30 has friction position,Described friction position is for producing frictional fit with big axle,Make internal axle sleeve molectron 30 that described frictional fit can be relied on to be driven by big axle rotate and and then drive big support 6 to rotate,And can stop operating under external force and not affect big axle and be rotated further;Described internal axle sleeve molectron 30 is with axial positioning element, and axial positioning element is detachably in internal axle sleeve molectron 30, and described axial positioning element is used for making described internal axle sleeve molectron holding position on big axle.
The surrounding of described big support 6 is evenly arranged with multiple plastic hornblock 5,5a, and described hornblock 5,5a are removably mounted, and one of them or several hornblock 5a are installed by expandable also simultaneously;Described hornblock 5,5a stretch tight a parts as winding when filature, use hornblock 5,5a so that it can be readily formed several functions structure, and described hornblock 5, the working end of 5a have axial notch 501, make described working end form U-shape structure;This axial notch 501 plays the direct contact surface reduced with raw silk 11 and amasss, it is easy to be dried, simultaneously because the raw silk 11 being wound on hornblock 5 produces huge tension force because of dry shrinkage, under the effect of this tension force, " u "-shaped groove can play effect that micro-deformation shrinks, and can alleviate spinline tension, improve raw silk quality.The work surface 505 of described hornblock 5 requires smooth surface.
Described filature is additionally provided with the drag friction circle 7 coaxial with described trocar sheath with big 112, described drag friction circle 7 be in filature with big 112 side and be connected with described hornblock 5;The outline 701 of described drag friction circle 7, higher than distance s=6-18mm of foot work surface 505, is preferred with 8-12mm;Time when filature because of scram; taken turns by the friction brake of reeling machine and be in close contact with the friction position (such as outline 701) coordinated with it on drag friction circle 7; under the effect of frictional force; filature is made to stop rapidly with big 112; being wound on filature As time goes on its thickness of the silk sheet on big 112 during filature for being continuously increased, its sheet thickness is about 6-8mm, and therefore the value of s meets this requirement; can avoid interference with, protection is wound on filature and uses the raw silk 11 on big from damage.The outline of described drag friction circle 7 can be the flange with one fixed width as shown in Figure 2, this flange is to preferably contact with friction brake wheel, too narrow, frictional force is little is unfavorable for Quick brake, the widest, takes up room, affects utilization rate of equipment and installations, therefore selects 8-12mm to be preferred.
As shown in Figure 4, in order to alleviate construction weight, drag friction circle 7 uses narrow sideband connecting lug structure.Connecting lug 70 is to meet the fixing needs with hornblock 5, narrower in the regional edge that need not fix, and the most both ensure that drag friction circle 7 had certain rigidity, and had alleviated again weight.Simultaneously, there is between the winding track of drag friction circle 7 and raw silk 11 unobstructed region 20, time being easy to fall thread in this region, finger stretches into and does not damage raw silk 11, what is more important: the raw silk 11 after winding needs to fix with cotton thread lacing, the existence in unobstructed region 20, can meet lacing and connect the technological requirement of cotton thread.
As shown in Figure 6, being connected to the hornblock 5 on big support 6 for non-telescoping, its side has the connecting hole 502 for being connected by screw 17 with drag friction circle 7;Described big support 6 outer end has connection seat 61, and described connection seat 61 has insertion site 610, and the bottom of described hornblock 5 has the hole 504 inserted for insertion site 610, described hornblock 5 also with is connected seat 61 and passes through screw 4 and connect, drawing reference numeral 503 is screw hole.
nullFor being telescopically connected to the hornblock 5a on big support 6,Can be connected to by telescoping mechanism on its big support 6 expandable,Big support 6 is telescopic big shelves at the big shelves for hornblock 5a,Use this kind of mode in the present embodiment: hornblock 5a side has feather key 506,The connecting lug 70 of described drag friction circle 7 has the gathering sill 703 coordinated with feather key 506,It is provided with in the big support of this kind of hornblock 5a for hole that is flexible and that guide or groove 62,This kind of hornblock 5a is furnished with the second connection seat 61a,Described second connects seat 61a has expansion link 8,Expansion link 8 can be along radially movable to realize flexible purpose for hole that is flexible and that guide or groove 62,Described expansion link 8 has can the card division 80 of elastic opening and closing,Described card division 80 is on the rotatable wheel 1 being supported under open configuration on big support,In closed state can be with the remainder of expansion link 8 along radially movable for hole that is flexible and that guide or groove 62,Described rotatable wheel 1 connects the handle 10 driving its rotation,The described wheel 1 that rotates can be circular wheel or cam.Drawing reference numeral 9 is for being in the spring leaf supporting described card division within expansion link 8, and drawing reference numeral 16 is the rotary shaft of card division 80, is also the installation axle of spring leaf 9.Drawing reference numeral 507 is the hornblock 5a side connecting hole of the corresponding connector such as screw, pin 13, and described hornblock 5a is connected seat 61a by screw, pin 13 etc. and connects with second.
The end face of feather key 506 is semicircle, highly becomes "eight" shape for 2-6mm, the lower port of gathering sill 703, the width of gathering sill 703 is not less than the width of feather key 506, for matched in clearance, such structure is easy to feather key 506 and is entered in gathering sill 703, and diagonal blocks 5a plays preferable positioning action.
Drag friction circle 7 can not only play the braking big effect of filature, and it also assists in big organizational structure, dismountable hornblock 5,5a is connected in series, adds big structural strength;And owing to it is at side reinforcement by connection hornblock 5,5a, the connecting portion centrage making described hornblock 5,5a and big support 6 can be partial to hornblock 5,5a away from that side of drag friction circle 7, also further increases its structural strength and stability hence for for single hornblock 5,5a.
Owing to filature is driven by friction with the rotation of big 112, internal axle sleeve molectron 30 may be worn and torn because of friction, it is often necessary to changes, and therefore internal axle sleeve molectron 30 preferably meets the convenient requirement of dismounting and change with the combination of big support 6.In the present invention, described internal axle sleeve molectron 30 is made up of two, left and right body 32,33, described trocar sheath 60 by axial limiting in internal axle sleeve molectron 30;The removable clamping of body of two, described left and right;
Described internal axle sleeve molectron 30 have for and trocar sheath 60 between carry out the convex key 34 of power transmission.
The circumferential surface that the inner of two, described left and right body 32,33 is respectively provided with along body extends integral part of buckle 36 and bayonet socket 35, and the interface arrangment that two, described left and right body 32,33 is cooperatively formed by buckle 36 and bayonet socket 35 carries out removable clamping.It is bonding that this connected mode need not adhesive, when the abrasion of imperial palace sleeve combination part 30 is changed, can directly disengage by external force.
Described axial positioning element is pin 302, described pin 302 is compressed by spring 303 and is arranged in internal axle sleeve molectron 30, two, described left and right body is respectively provided with the through hole 301 inserted for pin 302, make described pin 302 can coordinate through described through hole 301 and big axle, internal axle sleeve molectron 30 is made to be axially located, so that multiple filatures are with being connected to greatly on big axle, it are positioned and drive rotation and stopped by independent braking.
The end face of described pin 302 is as described friction position, under the thrust effect of spring, big support 6 is driven to rotate by producing frictional fit with big axle, being rotated further of big axle is not affected when big support 6 stops operating under external force (skidding) acts on, after external force is removed, big support 6 can be driven to rotate by frictional fit again.
Described inner sleeve shaft assembly 30 also includes that sheath 31, sheath 31 are located between body 32 or body 33 and trocar sheath 60, sheath 31 have with its residing for this one end body 32 or 33 on the key 37 that coordinates of groove 38, with circumferentially positioned synchronous axial system.Sheath 31 has rib 310, and its end is beyond the body 32 or 33 of its this one end residing, with gear outside in gap between the internal axle sleeve molectron of adjacent two big supports, prevents silk by mistake on inner sleeve shaft assembly 30 and big axle, has good anti-winding function.Sheath 31 also can coordinate with the position limiting structure 300 on the body of the other end, by trocar sheath 60 axial limiting in internal axle sleeve molectron 30.Sheath 31 has the opening 311 facilitating it to pass in and out.
By respective outer side edges with each other between body 32,33, sheath 31 and trocar sheath 60, complete fabricated structure, need not additional fasteners and adhesive, structure has the features such as reliable operation fail-safe, assembling, convenient disassembly, smooth running, when internal axle sleeve molectron 30 abrasion is changed, can directly disengage by external force, very convenient, realize maintenance nondestructive demounting, when changing internal axle sleeve molectron 30, big support 6, trocar sheath 60 will not be caused damage.
Due to big support 6 wherein one grade there is telescopic mechanism, in order to make big smooth running, the big support portions of the symmetrical side of the big support therefore connected at scalable hornblock 5a is provided with the scalable filature balance weight 14 by big balance, balance weight 14 is fixed by pin 15, and balance weight 14 weight is revised by the equilibrium condition after the combination of big all parts according to filature.
nullWhen expansion link 8 is pulled out to Fig. 3 state,Card division 80 16 rotates and opens around the shaft under the effect of spring leaf 9,Rotation wheel 1 is withstood in its underpart can stop expansion link 8 indentation when winding raw silk 11,Impact winding,When raw silk 11 winds complete and after completing the operations such as lacing,Need from filature with fall big silk taking-up time,Rotated by swinging handle 10,Under the effect of spinline tension, make there is bigger normal pressure between card division 80 and rotation wheel 1,Card division 80 can be produced horizontal active force when handle 10 shake rotates wheel 1 rotation,It is made 16 to rotate clockwise around the shaft,Final result is that bottom, card division 80 departs from rotating wheel 1,Under the effect of spinline tension,Hornblock 5a can be made、Expansion link 8 produces straight-line displacement,The raw silk 11 tightened is made to become the state got loose,Label 12 is the signal after raw silk gets loose,So can easily take out, with big, the raw silk wound from filature.
The foregoing is only the specific embodiment of the present invention, but the architectural feature of the present invention is not limited thereto, any those skilled in the art is in the field of the invention, and change or the modification made all are contained among protection scope of the present invention.

Claims (8)

1. the big reeling device of infrared drying, it is characterized in that it includes filature big and carriage of heat preservation, described filature is with being in removably in carriage of heat preservation greatly, the lower front of described carriage of heat preservation has gathering hole, front upper has movable front shroud, and under movable front shroud open mode, described filature is with removing from carriage of heat preservation greatly, it is provided with lampshade on described movable front shroud, infrared electric heating pipe is set in described lampshade, on the downside of the rear portion of described insulated boxcar, is also equipped with infrared electric heating pipe;Infrared electric heating pipe in described lampshade is connected on tube stand, and tube stand is by regulating screw mandrel and nut is fixed on described lampshade, by the infrared electric heating pipe in regulation screw mandrel and nut regulating lampshade and filature by big distance;
Described filature is with including greatly big support, the center of described big support has trocar sheath, described filature is with also having internal axle sleeve molectron greatly, described trocar sheath is enclosed within outside internal axle sleeve molectron, the aperture of described internal axle sleeve molectron coordinates with big axle, make internal axle sleeve molectron that big axle can be allowed to pass, described internal axle sleeve molectron and the removable connection of trocar sheath and synchronous axial system, described internal axle sleeve molectron has friction position, described friction position is for producing frictional fit with big axle, make internal axle sleeve molectron can rely on described frictional fit by big axle drive rotate and and then drive big holder pivots, and can stop operating under external force and big axle is rotated further;Described internal axle sleeve molectron is with axial positioning element, and axial positioning element is detachably in internal axle sleeve molectron, and described axial positioning element is used for making described internal axle sleeve molectron holding position on big axle;
The surrounding of described big support is evenly arranged with multiple hornblock, and described hornblock is removably mounted, and described hornblock stretches tight a parts as winding when filature, and the working end of described hornblock has axial translot, makes described working end form U-shape structure;
Described filature is with being additionally provided with greatly the drag friction circle coaxial with described trocar sheath, and described drag friction circle is in filature and is connected with big side and with described hornblock;The outline of described drag friction circle is higher than the work surface of described hornblock, and its difference in height is slightly big than stretching tight greatly a thickness;
Described internal axle sleeve molectron is made up of two, left and right body, described trocar sheath by axial limiting in internal axle sleeve molectron, the removable clamping of body of two, described left and right.
2. a kind of big reeling device of infrared drying as claimed in claim 1, it is characterized in that described carriage of heat preservation is sequentially connected with is formed by front lamp tube housing plate, movable front shroud, rear cowl, platform floor, movable front shroud is circular arc cover, the big concentric of described circular arc and filature, the rotation guide rail of movable front shroud is set on carriage of heat preservation, the fixed guide pin coordinated with guide rail on movable front shroud.
3. a kind of big reeling device of infrared drying as claimed in claim 1, it is characterised in that one of them or several hornblock are installed by expandable also simultaneously.
4. the big reeling device of infrared drying as claimed in claim 3 a kind of, it is characterised in that being connected to the hornblock on big support for non-telescoping, its side has the connecting hole for being connected by screw with drag friction circle;Described big support outer end has a connecting seat, and described a connecting seat has insertion site, and the bottom of this kind of hornblock has the hole inserted for insertion site, and this kind of hornblock is also connected by screw with a connecting seat;
For being telescopically connected to the hornblock on big support, its side has feather key, described drag friction circle has the gathering sill coordinated with feather key, it is provided with for hole that is flexible and that guide or groove in the big support of this kind of hornblock, this kind of hornblock is furnished with the second connection seat, described second connects seat has expansion link, expansion link can be along radially movable for hole that is flexible and that guide or groove, described expansion link has can the card division of elastic opening and closing, on the rotatable wheel that described card division is supported on big support under open configuration, in closed state can be with the remainder of expansion link along radially movable for hole that is flexible and that guide or groove, described rotatable wheel connects the handle having its rotation of driving.
5. a kind of big reeling device of infrared drying as claimed in claim 1, it is characterised in that drag friction circle uses narrow sideband connecting lug structure;Connecting lug connects for fixing with hornblock, and drag friction circle is narrower in the regional edge that need not fixing connection, and, the region that need not fix of drag friction circle and raw silk wind has unobstructed region between track.
6. a kind of big reeling device of infrared drying as claimed in claim 3, it is characterized in that for being telescopically connected to the hornblock on big support, its side has feather key, the connecting lug of described drag friction circle has the gathering sill coordinated with feather key, it is provided with for hole that is flexible and that guide or groove in the big support of this kind of hornblock, this kind of hornblock is furnished with the second connection seat, described second connects seat has expansion link, expansion link can be along radially movable for hole that is flexible and that guide or groove, described expansion link has can the card division of elastic opening and closing, described card division is to be supported under open configuration on the rotatable cam on big support, in closed state can year expansion link remainder along radially movable for the flexible and hole of guiding or groove, described cam connects the handle driving its rotation.
7. a kind of big reeling device of infrared drying as claimed in claim 3, it is characterised in that for being telescopically connected to the hornblock on big support, the big support portions at the symmetrical side of its big support connected is provided with the scalable filature balance weight by big balance.
8. a kind of big reeling device of infrared drying as claimed in claim 1, it is characterized in that the circumferential surface that the inner of two bodies in described left and right has along body extends integral part of buckle and bayonet socket, the interface arrangment that two, described left and right body is formed by buckle and bayonet fittings carries out removable clamping.
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CN110552073A (en) * 2019-10-08 2019-12-10 苏州大学 Drying device and drying method in raw silk degumming process
CN110980426B (en) * 2019-12-19 2021-12-24 楼帆帆 Roll changing device of silk re-reeling machine

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GB518002A (en) * 1938-08-23 1940-02-14 Universal Winding Co Improvements in or relating to filaturing or silk-reeling apparatus
JPS63126909A (en) * 1986-11-13 1988-05-30 Kanebo Silk Eregansu Kk Production of doubled raw silk yarn
JPH038803A (en) * 1989-05-30 1991-01-16 Dainippon Sanshikai Production of uniform conjugate raw silk yarn
JP2003147650A (en) * 2001-11-05 2003-05-21 Masaaki Tomichi Latently hollow raw silk yarn having alternative twist and method for producing the same
CN100352974C (en) * 2004-05-27 2007-12-05 苏州大学 Manufacturing method and apparatus for circular grege silk
CN100357502C (en) * 2005-08-04 2007-12-26 成都天友发展有限公司 Single silk drying winding system of orice reeling machine
CN202881455U (en) * 2012-10-22 2013-04-17 苏州中涛纺织有限公司 Silk-reeling drying device
CN103320871B (en) * 2013-03-26 2015-09-16 浙江理工大学 A kind of silk reeling method and special purpose device twisting dress raw silk
CN203229588U (en) * 2013-03-26 2013-10-09 浙江理工大学 Silk reeling device adopting spinning wheel to achieve winding

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