CN103254839A - Device for preparing structural adhesive films - Google Patents

Device for preparing structural adhesive films Download PDF

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Publication number
CN103254839A
CN103254839A CN2013102012009A CN201310201200A CN103254839A CN 103254839 A CN103254839 A CN 103254839A CN 2013102012009 A CN2013102012009 A CN 2013102012009A CN 201310201200 A CN201310201200 A CN 201310201200A CN 103254839 A CN103254839 A CN 103254839A
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China
Prior art keywords
frame
powder clutch
clutch assembly
scroll
assembly
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Pending
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CN2013102012009A
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Chinese (zh)
Inventor
毛勇
王德志
曲春艳
王海民
张杨
冯浩
宿凯
李洪峰
杨海冬
李公淳
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Institute of Petrochemistry of Heilongjiang Academy of Sciences
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Institute of Petrochemistry of Heilongjiang Academy of Sciences
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Priority to CN2013102012009A priority Critical patent/CN103254839A/en
Publication of CN103254839A publication Critical patent/CN103254839A/en
Pending legal-status Critical Current

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Abstract

The invention relates to a device for preparing structural adhesive films, and aims at solving the problems that in the prior art the working space is large, the cost is high and the working efficiency is low as the work of preparing carrier-free adhesive films, isotopic carrier adhesive films and carrier adhesive films is accomplished through two machines, deviation occurs to thickness precision when the carrier adhesive films are prepared, and fiber beams cannot be sufficiently dipped in an adhesive matrix when adhesive films which take fiber fabric as the carrier are prepared. The device comprises a first frame mechanism, a second frame mechanism, a first tension mechanism, an extrusion rolling mechanism, a first rotating shaft mechanism, a second rotating mechanism, a thermal roller mechanism, a third rotating mechanism, a cutter, a winding roller component, a cooling roller, a second tension mechanism, a third tension mechanism, a cooling roller mechanism, three coiling shaft mechanisms, two power output mechanisms, two traction roller mechanisms, five uncoiling shaft mechanisms, five magnetic powder clutch components and a plurality of transmission chains. The device is applied to production of structural adhesive films.

Description

A kind of device for preparing structural film adhesive
Technical field
The present invention relates to a kind of device for preparing structural film adhesive.
Background technology
Structural adhesive is a kind of sizing agent for the splicing of load bearing structure spare, it can transmit bigger static state, dynamic load, and work that can be reliably and with long-term in environment for use, wherein advantage such as membrane structure sizing agent (abbreviation structural film adhesive) bondline thickness homogeneous and controllable, fugitive constituent are low because having, high strength, high tenacity, high-durability and high reliability has obtained to be extensive use of in aerospace and other field.Structural film adhesive generally is divided into the membranaceous sqtructural adhesive of carrier free (being called for short the carrier free glued membrane), single face complex carrier glued membrane (being called for short unbalance loading body glued membrane) and two-sided complex carrier glued membrane (being called for short the carrier glued membrane) by the carrier complex form.
In the prior art, the membrane equipment of structural film adhesive can't realize that these three kinds of structural film adhesives of carrier free glued membrane, unbalance loading body glued membrane and carrier glued membrane finish production at a continuous equipment.(one is individual layer glued membrane rolling equipment to need to adopt two equipment in the prior art, another is carrier glued membrane equipment complex) preparation carrier glued membrane, need three processes, twice compacting monofilm, once-combined carrier, and deviation often appears in existing membrane equipment thickness and precision when the carrier glued membrane prepares.In addition, the design of existing membrane equipment is primarily aimed at the fabric carrier of this class monofilament state of nylon gauze, polyester gauze and non-woven fabrics, can't realize that the sizing agent matrix causes the tow subsurface defect to influence mechanical property and the reliability of sizing agent to the abundant infiltration of fibre bundle when preparation fibrous braid multifibres Shu Zaiti (as the glass wool cloth carrier).
Summary of the invention
Preparation carrier free glued membrane, unbalance loading body glued membrane and three kinds of glued membranes of carrier glued membrane need two machines to finish in the prior art in order to solve in the present invention, working space is big, cost is high, inefficiency, deviation appears in thickness and precision when making the carrier glued membrane, can't realize the sizing agent matrix to the problem of the abundant infiltration of fibre bundle when the preparation fibrous braid is the glued membrane of carrier, and then a kind of device for preparing structural film adhesive is provided.
The present invention addresses the above problem the technical scheme that adopts to be: described device comprises first frame mechanism, second frame mechanism, the first Scroll mechanism, first tension mechanism, extruding calendering mechanism, first power take-off mechanism, the first rotation axis mechanism, the second rotation axis mechanism, the hot pressing roller mechanism, the first powder clutch assembly, the 3rd rotating mechanism, the second powder clutch assembly, second power take-off mechanism, the 3rd Scroll mechanism, cut-off knife, twine the rod assembly, the first take off roll mechanism, cooling roller, the second take off roll mechanism, second tension mechanism, the 3rd tension mechanism, cooling roller mechanism, the 3rd powder clutch assembly, the 4th powder clutch assembly, the second Scroll mechanism, the 5th powder clutch, five unreeling shaft mechanisms and many transmission chains; Be positioned at the first frame mechanism top left and be provided with extruding calendering mechanism, right-hand member near first frame mechanism is provided with second frame mechanism, the upper surface of the first frame mechanism top-support is provided with unreeling shaft mechanism from left to right successively, the first Scroll mechanism, unreeling shaft mechanism, unreeling shaft mechanism and the second Scroll mechanism, the left end of first frame mechanism is provided with a unreeling shaft mechanism, and described unreeling shaft mechanism is positioned at extruding calendering mechanism below, the second frame mechanism upper surface is provided with a unreeling shaft mechanism, first frame mechanism middle part is equipped with cooling roller from left to right successively, the hot pressing roller mechanism, twine the rod assembly, the first take off roll mechanism and cooling roller mechanism, the middle part of second frame mechanism is equipped with the second take off roll mechanism, first frame mechanism bottom is equipped with first power take-off mechanism from left to right successively, the first rotation axis mechanism, the second rotation axis mechanism, the 5th powder clutch, the first powder clutch assembly, the 3rd rotating mechanism and the second powder clutch assembly, the bottom of second frame mechanism is equipped with second power take-off mechanism and the 3rd Scroll mechanism from left to right, the 3rd powder clutch assembly is arranged on second frame mechanism, and the 3rd powder clutch assembly is between second power take-off mechanism and the second take off roll mechanism, the 4th powder clutch assembly is arranged on second frame mechanism, and the 4th powder clutch assembly is between second power take-off mechanism and the 3rd Scroll mechanism, first tension mechanism, second tension mechanism is successively set on the left part of first frame mechanism from the bottom to top, the 3rd tension mechanism is arranged on first frame mechanism, and the 3rd tension mechanism is positioned at the top of hot pressing roller mechanism, the output shaft of first power take-off mechanism is rotationally connected by transmission chain with extruding calendering mechanism, the output shaft of first power take-off mechanism and the first rotation axis mechanism are rotationally connected by transmission chain, the first transmission shaft mechanism and the second transmission shaft mechanism pass through meshed transmission gear, the second rotation axis mechanism and the 5th powder clutch, the first Scroll mechanism and the 3rd rotating mechanism are rotationally connected by transmission chain, the 5th powder clutch and hot pressing roller mechanism are rotationally connected by transmission chain, the 3rd rotating mechanism and the first powder clutch assembly, the second Scroll mechanism and the second powder clutch assembly are rotationally connected by transmission chain, second power take-off mechanism and the 3rd powder clutch assembly, the 4th powder clutch assembly is rotationally connected by transmission chain, the 3rd powder clutch assembly and the second take off roll mechanism are rotationally connected by transmission chain, the 4th powder clutch assembly and the 3rd Scroll mechanism are rotationally connected by transmission chain, are provided with cut-off knife between first frame mechanism and second frame mechanism.
The invention has the beneficial effects as follows: device of the present invention can prepare carrier free glued membrane, unbalance loading body glued membrane and carrier glued membrane, carrier free glued membrane, unbalance loading body glued membrane and carrier glued membrane can be finished on a table apparatus continuously, take working space little, save cost, working efficiency has improved 20%-40%, thickness and precision height when making the carrier glued membrane, the sizing agent matrix soaks into more abundant to fibre bundle when preparation fibrous braid multifibres Shu Zaiti glued membrane, the present invention has simple in structure, characteristics easy to use.
Description of drawings
Fig. 1 is one-piece construction front view of the present invention, and Fig. 2 is the vertical view of Fig. 1.
Embodiment
Embodiment one: in conjunction with Fig. 1-Fig. 2 a kind of device for preparing structural film adhesive of present embodiment is described, described device comprises first frame mechanism 1, second frame mechanism 2, the first Scroll mechanism 4, first tension mechanism 5, extruding calendering mechanism 6, first power take-off mechanism 7, the first rotation axis mechanism 9, the second rotation axis mechanism 10, hot pressing roller mechanism 11, the first powder clutch assembly 12, the 3rd rotating mechanism 13, the second powder clutch assembly 14, second power take-off mechanism 15, the 3rd Scroll mechanism 16, cut-off knife 17, twine rod assembly 18, the first take off roll mechanism 19, cooling roller 20, the second take off roll mechanism 21, second tension mechanism 22, the 3rd tension mechanism 23, cooling roller mechanism 24, the 3rd powder clutch assembly 25, the 4th powder clutch assembly 26, the second Scroll mechanism 27, the 5th powder clutch 28, five unreeling shaft mechanisms 3 and many transmission chains 8; Be positioned at first frame mechanism, 1 top left and be provided with extruding calendering mechanism 6, right-hand member near first frame mechanism 1 is provided with second frame mechanism 2, the upper surface of first frame mechanism, 1 top-support is provided with unreeling shaft mechanism 3 from left to right successively, the first Scroll mechanism 4, unreeling shaft mechanism 3, unreeling shaft mechanism 3 and the second Scroll mechanism 27, the left end of first frame mechanism 1 is provided with a unreeling shaft mechanism 3, and described unreeling shaft mechanism 3 is positioned at extruding calendering mechanism 6 belows, second frame mechanism, 2 upper surfaces are provided with a unreeling shaft mechanism 3, first frame mechanism, 1 middle part is equipped with cooling roller 20 from left to right successively, hot pressing roller mechanism 11, twine rod assembly 18, the first take off roll mechanism 19 and cooling roller mechanism 24, the middle part of second frame mechanism 2 is equipped with the second take off roll mechanism 21, first frame mechanism, 1 bottom is equipped with first power take-off mechanism 7 from left to right successively, the first rotation axis mechanism 9, the second rotation axis mechanism 10, the 5th powder clutch 28, the first powder clutch assembly 12, the 3rd rotating mechanism 13 and the second powder clutch assembly 14, the bottom of second frame mechanism 2 is equipped with second power take-off mechanism 15 and the 3rd Scroll mechanism 16 from left to right, the 3rd powder clutch assembly 25 is arranged on second frame mechanism 2, and the 3rd powder clutch assembly 25 is between second power take-off mechanism 15 and the second take off roll mechanism 21, the 4th powder clutch assembly 26 is arranged on second frame mechanism 2, and the 4th powder clutch assembly 26 is between second power take-off mechanism 15 and the 3rd Scroll mechanism 16, first tension mechanism 5, second tension mechanism 22 is successively set on the left part of first frame mechanism 1 from the bottom to top, the 3rd tension mechanism 23 is arranged on first frame mechanism 1, and the 3rd tension mechanism 23 is positioned at the top of hot pressing roller mechanism 11, the output shaft of first power take-off mechanism 7 is rotationally connected by transmission chain 8 with extruding calendering mechanism 6, the output shaft of first power take-off mechanism 7 and the first rotation axis mechanism 9 are rotationally connected by transmission chain 8, the first transmission shaft mechanism 9 and the second transmission shaft mechanism 10 pass through meshed transmission gear, the second rotation axis mechanism 10 and the 5th powder clutch 28, the first Scroll mechanism 4 and the 3rd rotating mechanism 13 are rotationally connected by transmission chain 8, the 5th powder clutch 28 is rotationally connected by transmission chain 8 with hot pressing roller mechanism 11, the 3rd rotating mechanism 13 and the first powder clutch assembly 12, the second Scroll mechanism 27 and the second powder clutch assembly 14 are rotationally connected by transmission chain 8, second power take-off mechanism 15 and the 3rd powder clutch assembly 25, the 4th powder clutch assembly 26 is rotationally connected by transmission chain 8, the 3rd powder clutch assembly 25 and the second take off roll mechanism 21 are rotationally connected by transmission chain 8, the 4th powder clutch assembly 26 and the 3rd Scroll mechanism 16 are rotationally connected by transmission chain 8, are provided with cut-off knife 17 between first frame mechanism 1 and second frame mechanism 2.
Embodiment two: a kind of device for preparing structural film adhesive of present embodiment is described in conjunction with Fig. 1-Fig. 2, described device also comprises hot-plate 29, hot-plate 29 is arranged on first frame mechanism 1, and hot-plate 29 is positioned at the left side of hot pressing roller mechanism 11, interleaving paper by 29 pairs of processes of hot-plate heats, and other is identical with embodiment one.
Embodiment three: a kind of device for preparing structural film adhesive of present embodiment is described in conjunction with Fig. 1-Fig. 2, described device also comprises cooling plate 30, cooling plate 30 is arranged on first frame mechanism 1, and cooling plate 30 is positioned at the left side of cooling roller mechanism 24, interleaving paper by 30 pairs of processes of cooling plate cools off, and other is identical with embodiment one.
Embodiment four: a kind of device for preparing structural film adhesive of present embodiment is described in conjunction with Fig. 1-Fig. 2, described device also comprises the first thickness measuring assembly 31 and the second thickness measuring assembly 32, the first thickness measuring assembly 31 is arranged on first frame mechanism 1, and the first thickness measuring assembly 31 is positioned at the left side of hot pressing roller mechanism 11, the second thickness measuring assembly 32 is arranged on first frame mechanism 1 and second frame mechanism 2, and the second thickness measuring assembly 32 is positioned at the right side of cooling roller mechanism 24, and other is identical with embodiment one.
Embodiment five: a kind of device for preparing structural film adhesive of present embodiment is described in conjunction with Fig. 1-Fig. 2, described winding rod assembly 18 comprises that first twines rod 33 and the second winding rod 34, the first winding rod 33 and second twines rod 34 and from top to bottom is arranged side by side, and the axis of the axis of the first winding rod 33 and the second winding rod 34 is parallel with first frame mechanism, 1 broad ways medullary ray, first distance of twining between rod 33 and the second winding rod 34 is d, the numerical value of d is 5mm-15mm, and other is identical with embodiment one.
Principle of work
The carrier free glued membrane:
At first respectively put an interleaving paper in the unreeling shaft mechanism 3 of the unreeling shaft mechanism 3 of first frame mechanism, 1 left side top and left bottom; with the interleaving paper of the unreeling shaft mechanism 3 of first frame mechanism, 1 upper left side bottom through first tension mechanism 5; simultaneously with the interleaving paper of the unreeling shaft mechanism 3 at first frame mechanism, 1 upper left side top through second tension mechanism 22; two-layer interleaving paper all passes the stack in the extruding calendering mechanism 6 successively; cooling roller 20 and the first thickness measuring assembly 31 enter into the first take off roll mechanism 19; open first power take-off mechanism 7; two-layer interleaving paper is through 24 coolings of cooling roller mechanism up and down; the interleaving paper of the unreeling shaft mechanism 3 of first frame mechanism, 1 left side top is by 27 rollings of the second Scroll mechanism; the interleaving paper of the unreeling shaft mechanism 3 of first frame mechanism, 1 left bottom through the second take off roll mechanism 21 by 16 rollings of the 3rd Scroll mechanism; polyethylene barrier film in 3 in the unreeling shaft mechanism on second frame mechanism 2 is wrapped in the 3rd Scroll mechanism 16 simultaneously; sizing material is joined in the extruding calendering mechanism 6; make sizing material by pushing the stack in the calendering mechanism 6 by preheating; slowly open second power take-off mechanism 15; glued membrane is after process cooling roller mechanism 24 under the provide protection of two-layer interleaving paper; the interleaving paper of the unreeling shaft mechanism 3 of first frame mechanism, 1 left side top is by 27 rollings of the second Scroll mechanism, and glued membrane enters into the 3rd Scroll mechanism 16 and rollings along with the polyethylene barrier film in 3 in the interleaving paper of the unreeling shaft mechanism 3 of first frame mechanism, 1 left bottom and the unreeling shaft mechanism on second frame mechanism 2 covers.
Unbalance loading body glued membrane:
At first respectively put an interleaving paper in the unreeling shaft mechanism 3 of the unreeling shaft mechanism 3 of first frame mechanism, 1 left side top and left bottom; with the interleaving paper of the unreeling shaft mechanism 3 of first frame mechanism, 1 upper left side bottom through first tension mechanism 5; simultaneously with the interleaving paper of the unreeling shaft mechanism 3 at first frame mechanism, 1 upper left side top through second tension mechanism 22; two-layer interleaving paper passes stack and the cooling roller 20 in the extruding calendering mechanism 6 successively; the interleaving paper of the unreeling shaft mechanism 3 of first frame mechanism, 1 left side top is packed up by the first Scroll mechanism 4; glued membrane and another layer interleaving paper are through the first thickness measuring assembly 31; enter hot pressing roller mechanism 11 after hot-plate 29 heating; simultaneously with two unreeling shaft mechanisms 3 between the first Scroll mechanism 4 and the second Scroll mechanism 27 wherein 3 one in unreeling shaft mechanism place carrier (described carrier be nylon gauze; a kind of in polyester gauze or the non-woven fabrics); interleaving paper is placed by another unreeling shaft mechanism 3; carrier and interleaving paper are entered in the hot pressing roller mechanism 11; enter into the first take off roll mechanism 19 again; slowly starting the press mold machine then cools off through entering cooling roller mechanism 24 behind the cooling plate at two-layer interleaving paper and carrier under the traction of the first take off roll mechanism 19; the interleaving paper on upper strata is rolled by the second Scroll mechanism 27 then; the interleaving paper of lower floor is through cut-off knife 17 cutting edges; the second thickness measuring assembly, 32 thickness measurings and the second take off roll mechanism 21 are by 16 rollings of the 3rd Scroll mechanism; sizing material joined in the extruding calendering mechanism 6 make sizing material slowly open first power take-off mechanism 7 and second power take-off mechanism 15 by the stacks that push in the calendering mechanism 6 by preheating; glued membrane is after process cooling roller mechanism 24 under the provide protection of two-layer interleaving paper; the interleaving paper of the unreeling shaft mechanism 3 of first frame mechanism, 1 left side top is by 27 rollings of the second Scroll mechanism, and glued membrane enters into the 16 also rollings of the 3rd Scroll mechanism down along with the polyethylene barrier film in 3 in the interleaving paper of the unreeling shaft mechanism 3 of first frame mechanism, 1 left bottom and the unreeling shaft mechanism on second frame mechanism 2 covers.
The carrier glued membrane
The preparation of carrier glued membrane is undertaken by following two steps:
Step 1: the preparation of individual layer glued membrane
At first respectively put an interleaving paper (wherein needing to place two-sided interleaving paper in the unreeling shaft mechanism 3 of left bottom) in the unreeling shaft mechanism 3 of the unreeling shaft mechanism 3 of first frame mechanism, 1 left side top and left bottom; with the two-sided interleaving paper of the unreeling shaft mechanism 3 of first frame mechanism, 1 upper left side bottom through first tension mechanism 5; simultaneously with the interleaving paper of the unreeling shaft mechanism 3 at first frame mechanism, 1 upper left side top through second tension mechanism 22; two-layer interleaving paper passes the stack in the extruding calendering mechanism 6 successively; cooling roller 20 and the first thickness measuring assembly 31; enter into the first take off roll mechanism 19; open first power take-off mechanism 7; two-layer interleaving paper is through 24 coolings of cooling roller mechanism up and down; the interleaving paper of the unreeling shaft mechanism 3 of first frame mechanism, 1 left side top is by 27 rollings of the second Scroll mechanism; the two-sided interleaving paper of the unreeling shaft mechanism 3 of first frame mechanism, 1 left bottom through the second take off roll mechanism 21 by 16 rollings of the 3rd Scroll mechanism; sizing material is joined in the extruding calendering mechanism 6; make sizing material slowly open second power take-off mechanism 15 by the stack that pushes in the calendering mechanism 6 by preheating; glued membrane is after process cooling roller mechanism 24 under the provide protection of two-layer interleaving paper; the interleaving paper of the unreeling shaft mechanism 3 of first frame mechanism, 1 left side top is by 27 rollings of the second Scroll mechanism; glued membrane has namely been finished the preparation of individual layer glued membrane along with the two-sided interleaving paper of the unreeling shaft mechanism 3 of first frame mechanism, 1 left bottom enters into the 3rd Scroll mechanism 16 and rolling.
Step 2: carrier recombination process
At first respectively put an interleaving paper in the unreeling shaft mechanism 3 of the unreeling shaft mechanism 3 of first frame mechanism, 1 left side top and left bottom; with the interleaving paper of the unreeling shaft mechanism 3 of first frame mechanism, 1 upper left side bottom through first tension mechanism 5; simultaneously with the interleaving paper of the unreeling shaft mechanism 3 at first frame mechanism, 1 upper left side top through second tension mechanism 22; two-layer interleaving paper passes the stack in the extruding calendering mechanism 6 successively; cooling roller 20; the interleaving paper of the unreeling shaft mechanism 3 of first frame mechanism, 1 left side top is packed up by the first Scroll mechanism 4; glued membrane and another layer interleaving paper are through the first thickness measuring assembly 31; enter hot pressing roller mechanism 11 after hot-plate 29 heating; simultaneously with two unreeling shaft mechanisms 3 between the first Scroll mechanism 4 and the second Scroll mechanism 27 wherein 3 one in unreeling shaft mechanism place carrier; the individual layer glued membrane (double-deck release paper protects) that another unreeling shaft mechanism 3 places by the step 1 preparation; carrier is entered in the hot pressing roller mechanism 11 through tension mechanism 23 backs and individual layer glued membrane; if also needing to walk S curve (if monofilament fabric carrier such as nylon gauze then need not to twine axle through 33 and 34 two) through 33 and 34 liang of winding rollers, the carrier of fibrous braid multifibres bundle enters into the first take off roll mechanism 19 again; slowly start first power take-off mechanism 7 then; one deck interleaving paper under the traction of the first take off roll mechanism 19; carrier and individual layer glued membrane are through entering 24 coolings of cooling roller mechanism behind the cooling plate; the two-sided interleaving paper on upper strata is rolled by the second Scroll mechanism 27 then; lower floor's interleaving paper then; carrier and individual layer glued membrane process cut-off knife 17 and the second thickness measuring assembly 32 and the second take off roll mechanism, 21 backs are by 16 rollings of the 3rd Scroll mechanism; sizing material joined in the extruding calendering mechanism 6 make sizing material by being expressed to the stack in the calendering mechanism 6 by preheating; slowly open second power take-off mechanism 15; the individual layer glued membrane under hot-plate 29 preheatings with before the carrier that places and other individual layer glued membrane compound in hot pressing roller mechanism 11; under the polyethylene barrier film in 3 in the unreeling shaft mechanism on second frame mechanism 2 covers, enter into the 3rd Scroll mechanism 16 and rollings at last through compound cutan, namely make the carrier glued membrane.

Claims (5)

1. device for preparing structural film adhesive, it is characterized in that: described device comprises first frame mechanism (1), second frame mechanism (2), the first Scroll mechanism (4), first tension mechanism (5), extruding calendering mechanism (6), first power take-off mechanism (7), the first rotation axis mechanism (9), the second rotation axis mechanism (10), hot pressing roller mechanism (11), the first powder clutch assembly (12), the 3rd rotating mechanism (13), the second powder clutch assembly (14), second power take-off mechanism (15), the 3rd Scroll mechanism (16), cut-off knife (17), twine rod assembly (18), the first take off roll mechanism (19), cooling roller (20), the second take off roll mechanism (21), second tension mechanism (22), the 3rd tension mechanism (23), cooling roller mechanism (24), the 3rd powder clutch assembly (25), the 4th powder clutch assembly (26), the second Scroll mechanism (27), the 5th powder clutch (28), five unreeling shaft mechanisms (3) and many transmission chains (8); Be positioned at first frame mechanism (1) top left and be provided with extruding calendering mechanism (6), right-hand member near first frame mechanism (1) is provided with second frame mechanism (2), the upper surface of first frame mechanism (1) top-support is provided with unreeling shaft mechanism (3) from left to right successively, the first Scroll mechanism (4), unreeling shaft mechanism (3), unreeling shaft mechanism (3) and the second Scroll mechanism (27), the left end of first frame mechanism (1) is provided with a unreeling shaft mechanism (3), and described unreeling shaft mechanism (3) is positioned at extruding calendering mechanism (6) below, second frame mechanism (2) upper surface is provided with a unreeling shaft mechanism (3), first frame mechanism (1) middle part is equipped with cooling roller (20) from left to right successively, hot pressing roller mechanism (11), twine rod assembly (18), the first take off roll mechanism (19) and cooling roller mechanism (24), the middle part of second frame mechanism (2) is equipped with the second take off roll mechanism (21), first frame mechanism (1) bottom is equipped with first power take-off mechanism (7) from left to right successively, the first rotation axis mechanism (9), the second rotation axis mechanism (10), the 5th powder clutch (28), the first powder clutch assembly (12), the 3rd rotating mechanism (13) and the second powder clutch assembly (14), the bottom of second frame mechanism (2) is equipped with second power take-off mechanism (15) and the 3rd Scroll mechanism (16) from left to right, the 3rd powder clutch assembly (25) is arranged on second frame mechanism (2), and the 3rd powder clutch assembly (25) is positioned between second power take-off mechanism (15) and the second take off roll mechanism (21), the 4th powder clutch assembly (26) is arranged on second frame mechanism (2), and the 4th powder clutch assembly (26) is positioned between second power take-off mechanism (15) and the 3rd Scroll mechanism (16), first tension mechanism (5), second tension mechanism (22) is successively set on the left part of first frame mechanism (1) from the bottom to top, the 3rd tension mechanism (23) is arranged on first frame mechanism (1), and the 3rd tension mechanism (23) is positioned at the top of hot pressing roller mechanism (11), the output shaft of first power take-off mechanism (7) is rotationally connected by transmission chain (8) with extruding calendering mechanism (6), the output shaft of first power take-off mechanism (7) and the first rotation axis mechanism (9) are rotationally connected by transmission chain (8), the first transmission shaft mechanism (9) and the second transmission shaft mechanism (10) pass through meshed transmission gear, the second rotation axis mechanism (10) and the 5th powder clutch (28), the first Scroll mechanism (4) and the 3rd rotating mechanism (13) are rotationally connected by transmission chain (8), the 5th powder clutch (28) is rotationally connected by transmission chain (8) with hot pressing roller mechanism (11), the 3rd rotating mechanism (13) and the first powder clutch assembly (12), the second Scroll mechanism (27) and the second powder clutch assembly (14) are rotationally connected by transmission chain (8), second power take-off mechanism (15) and the 3rd powder clutch assembly (25), the 4th powder clutch assembly (26) is rotationally connected by transmission chain (8), the 3rd powder clutch assembly (25) is rotationally connected by transmission chain (8) with the second take off roll mechanism (21), the 4th powder clutch assembly (26) is rotationally connected by transmission chain (8) with the 3rd Scroll mechanism (16), is provided with cut-off knife (17) between first frame mechanism (1) and second frame mechanism (2).
2. according to the described a kind of device for preparing structural film adhesive of claim 1, it is characterized in that: described device also comprises hot-plate (29), and hot-plate (29) is arranged on first frame mechanism (1), and hot-plate (29) is positioned at the left side of hot pressing roller mechanism (11).
3. according to the described a kind of device for preparing structural film adhesive of claim 1, it is characterized in that: described device also comprises cooling plate (30), and cooling plate (30) is arranged on first frame mechanism (1), and cooling plate (30) is positioned at the left side of cooling roller mechanism (24).
4. according to the described a kind of device for preparing structural film adhesive of claim 1, it is characterized in that: described device also comprises the first thickness measuring assembly (31) and the second thickness measuring assembly (32), the first thickness measuring assembly (31) is arranged on first frame mechanism (1), and the first thickness measuring assembly (31) is positioned at the left side of hot pressing roller mechanism (11), the second thickness measuring assembly (32) is arranged on first frame mechanism (1) and second frame mechanism (2), and the second thickness measuring assembly (32) is positioned at the right side of cooling roller mechanism (24).
5. according to the described a kind of device for preparing structural film adhesive of claim 1, it is characterized in that: described winding rod assembly (18) comprises that first twines rod (33) and the second winding rod (34), the first winding rod (33) and second twines rod (34) and from top to bottom is arranged side by side, and the axis of the axis of the first winding rod (33) and the second winding rod (34) is parallel with first frame mechanism (1) broad ways medullary ray, first distance of twining between rod (33) and the second winding rod (34) is d, and the numerical value of d is 5mm-15mm.
CN2013102012009A 2013-05-27 2013-05-27 Device for preparing structural adhesive films Pending CN103254839A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2013102012009A CN103254839A (en) 2013-05-27 2013-05-27 Device for preparing structural adhesive films

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Application Number Priority Date Filing Date Title
CN2013102012009A CN103254839A (en) 2013-05-27 2013-05-27 Device for preparing structural adhesive films

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Publication Number Publication Date
CN103254839A true CN103254839A (en) 2013-08-21

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CN2013102012009A Pending CN103254839A (en) 2013-05-27 2013-05-27 Device for preparing structural adhesive films

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110861382A (en) * 2019-10-18 2020-03-06 成都鲁晨新材料科技有限公司 Solvent-free aramid bulletproof prepreg and composite material thereof

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2508941Y (en) * 2001-11-19 2002-09-04 张宏年 Equipment for making double-element ultra thin film silica gel continuous automatic rolling film, multilayered film
CN201573345U (en) * 2009-11-10 2010-09-08 湖北富思特材料科技有限公司 Molding press
CN102380957A (en) * 2011-09-02 2012-03-21 天津海天长丰科技开发有限公司 Large-tow carbon fiber and glass fiber composite preimpregnation equipment

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2508941Y (en) * 2001-11-19 2002-09-04 张宏年 Equipment for making double-element ultra thin film silica gel continuous automatic rolling film, multilayered film
CN201573345U (en) * 2009-11-10 2010-09-08 湖北富思特材料科技有限公司 Molding press
CN102380957A (en) * 2011-09-02 2012-03-21 天津海天长丰科技开发有限公司 Large-tow carbon fiber and glass fiber composite preimpregnation equipment

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110861382A (en) * 2019-10-18 2020-03-06 成都鲁晨新材料科技有限公司 Solvent-free aramid bulletproof prepreg and composite material thereof

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Application publication date: 20130821