CN103657509B - The short silk dispersion machine of glass fibre - Google Patents
The short silk dispersion machine of glass fibre Download PDFInfo
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- CN103657509B CN103657509B CN201310585863.5A CN201310585863A CN103657509B CN 103657509 B CN103657509 B CN 103657509B CN 201310585863 A CN201310585863 A CN 201310585863A CN 103657509 B CN103657509 B CN 103657509B
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- glass fibre
- fiber dispersion
- conveyer belt
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Abstract
The invention discloses the short silk dispersion machine of a kind of glass fibre, it comprises frame, frame is connected with and is driven and spaced multiple conveying roller by power set, multiple conveying roller is coated with conveyer belt, frame is connected with fiber dispersion casing, fiber dispersion casing is equipped with loading hopper, two quantitative runners are rotatably connected in fiber dispersion casing, the quantitative runner of upper and lower correspondence is set with elevator belt, elevator belt is densely covered with and promotes nail, combing feed back roller fiber dispersion casing is also equipped with, feed back nail the surface of combing feed back roller is equipped with, also dematerial roller is housed in fiber dispersion casing, de-material palladium nail dematerial roller is equipped with, discharging opening is provided with between the lower front of fiber dispersion casing and conveyer belt.Short for glass fibre silk can be broken up and accurately control it and put into amount in agitator by the present invention, thus ensure that the glass fibre amount that enters in agitator and ensure that the glass fibre of input is more open.
Description
Technical field
The present invention relates to the short silk dispersion machine of a kind of glass fibre.
Background technology
For increasing its intensity in existing enhancement mode compound calcium silicate board with microporous, adding glass fibre when batch mixing, making its shaping rear intensity higher.Before the forming, glass fibre and silico-calcium slurry are put in same agitator, after stirring, passes through mould molding again.Due to glass fibre enter factory time, it is disorderly and unsystematic and easily balling-up is agglomerating, is thus difficult to mix with silico-calcium slurry when stirring, and in slurry, drops into glass fibre by conveyer belt, be difficult to control input amount, be thus difficult to ensure shaping after the quality of compound calcium silicate board with microporous.
Summary of the invention
The technical problem to be solved in the present invention is to provide a kind ofly to be avoided glass fibre agglomerating and effectively can control the short silk dispersion machine of glass fibre of its input amount.
For solving the problems of the technologies described above, the short silk dispersion machine of the glass fibre provided comprises frame, frame is connected with and is driven and spaced multiple conveying roller by power set, multiple conveying roller is coated with conveyer belt, its design feature is: frame is connected with cover and is buckled in fiber dispersion casing above conveyer belt, the rear upper of fiber dispersion casing is equipped with loading hopper, corresponding up and down setting and two the quantitative runners driven by power set is rotatably connected in fiber dispersion casing, the quantitative runner of upper and lower correspondence is set with elevator belt, the quantitative runner of bottom is arranged near conveyer belt, elevator belt is densely covered with and the glass fibre on conveyer belt can be promoted from its conveyer belt rear portion and the lifting thereupon run nail, fiber dispersion casing is also equipped with and is driven and the combing feed back roller at superposed quantitative runner rear by power set, the surface of combing feed back roller is equipped with and follows closely the feed back coordinated and follow closely with promoting, also be equipped with in fiber dispersion casing and driven by power set, the dematerial roller in superposed quantitative runner front, dematerial roller is equipped with and follows closely the de-material palladium coordinated and follow closely with promoting, discharging opening is provided with between the lower front of fiber dispersion casing and conveyer belt.
Turning to of combing feed back roller is consistent with turning to of quantitative runner, and turning to of dematerial roller is contrary with turning to of quantitative runner.
Described frame is equipped with the clearing apparatus of cleaning conveyer belt.
Described clearing apparatus comprises the support being connected to frame lower, and support is elasticly connected with cleaning board, cleaning board is equipped with the hairbrush on the feed surface being fitted in conveyer belt bottom.
Described loading hopper is large, lower young taper suitable for reading, fiber dispersion casing is also equipped with the sub-material spiral driven by described power set, sub-material spiral is by the rotating shaft be rotatably connected on fiber dispersion casing and be connected in rotating shaft, the contrary and symmetrically arranged two ends spiral of the hand of spiral forms.
After adopting said structure, in fiber dispersion casing, the short silk of glass fibre is dropped into by loading hopper, the short silk of glass fibre runs forward under the conveying effect of conveyer belt, triggered by the lifting nail on elevator belt and upwards run with elevator belt when moving to elevator belt position, break up by the roller combing of combing feed back and by agglomerating glass fibre in lifting process and make it to fall after rise on conveyer belt, feed back nail on feed back carding roller and lifting are followed closely to coordinate and to be broken up by agglomerating glass fibre and to control to promote the amount of the short silk of the glass fibre nailed on, after the short silk of glass fibre walks around the quantitative runner on top with elevator belt rising, de-material palladium nail on dematerial roller is dialled down promoting the glass fibre nailed on, thus make it all to drop down onto on conveyer belt, the discharging opening arranged through front end is again put in batch mixing agitator.In sum, short for glass fibre silk can be broken up and accurately control it and put into amount in agitator by the present invention, thus ensure that the glass fibre amount that enters in agitator and ensure that the glass fibre of input is more open, be conducive to glass fibre and silico-calcium slurry agitation even, thus ensure that the quality of compound calcium silicate board with microporous.
Accompanying drawing explanation
Below in conjunction with accompanying drawing, the present invention is further illustrated:
Fig. 1 is the structural representation of a kind of most preferred embodiment of the present invention;
Fig. 2 is the structural representation of Fig. 1 backsight.
Detailed description of the invention
The short silk dispersion machine of glass fibre as depicted in figs. 1 and 2, it comprises frame 1, frame 1 is connected with and is driven and spaced multiple conveying roller 11 by power set, power set are the electric reducer 20 be arranged in frame 1, a conveying roller of its postmedian passes through belt, belt pulley is connected with the power output shaft power of motor reducer, multiple conveying roller 11 is coated with conveyer belt 12, frame 1 is connected with cover and is buckled in fiber dispersion casing 3 above conveyer belt 12, the front upper of fiber dispersion casing 3 is equipped with loading hopper 2, loading hopper 2 is in greatly suitable for reading, lower young taper, the sub-material spiral 16 driven by described power set fiber dispersion casing 3 is also equipped with, sub-material spiral 16 is positioned at immediately below loading hopper 2 lower part outlet, sub-material spiral 16 is by the rotating shaft be rotatably connected on fiber dispersion casing 3 and be connected in rotating shaft, the hand of spiral contrary and symmetrically arranged two ends spiral composition, the short silk of the glass fibre further broken group in the feeding process of two ends spiral entered from loading hopper 2 makes it loose, and can make it evenly to drop down onto on conveyer belt 12.
As depicted in figs. 1 and 2, corresponding up and down setting and two the quantitative runners 4 driven by power set is rotatably connected in fiber dispersion casing 3, the quantitative runner 4 of upper and lower correspondence is set with elevator belt 5, the quantitative runner 4 of bottom is arranged near conveyer belt 12, elevator belt 5 is densely covered with and the glass fibre on conveyer belt 12 can be promoted and the lifting thereupon run nail 6 from its rear portion conveyer belt, promote nail 6 to be obliquely installed, its incline direction as shown in fig. 1, namely the lifting nail 6 being positioned at raising section, elevator belt 5 rear portion is outwards inclined upwardly from link, after the quantitative runner 4 on top walked around by lifting nail, promote nail 6 outwards downward-sloping from link, promoting nail 6 can be straight nail, also can be the rivet nut with crotch, its objective is that better catching on the short silk of glass fibre is promoted.Fiber dispersion casing 3 is also equipped with and is driven and the combing feed back roller 7 at superposed quantitative runner 4 rear by power set, the surface of combing feed back roller 7 is equipped with and promotes the feed back that nail 6 coordinates and follow closely 8, feed back nail 8 staggers with lifting nail 6 and arranges, namely feed back nail 8 is between two adjacent lifting nails 6, thus in the lifting process of combing feed back roller 7 rotation process and elevator belt 5, agglomerating glass fibre is broken up and too much glass fibre combing is fallen after rise, thus accurately control the glass fibre amount promoting nail 6 transport, also be equipped with in fiber dispersion casing 3 and driven by power set, the dematerial roller 9 in superposed quantitative runner 4 front, dematerial roller 9 is equipped with and follows closely the de-material palladium coordinated and follow closely 10 with promoting, arrow line as shown in Figure 1, turning to of combing feed back roller 7 is consistent with turning to of quantitative runner 4, turning to of dematerial roller 9 is contrary with turning to of quantitative runner 4.As shown in Figure 2, the both ends of above-mentioned combing feed back roller 7 are connected on fiber dispersion casing 3 respectively by bearing block, bearing block can be moved forward and backward along fiber dispersion casing 3 and is located by bolt, thus the distance that can adjust between combing feed back roller 7 and elevator belt 5, thus ensure to promote the glass fibre amount on nail 6.Discharging opening 13 is provided with between the lower front of fiber dispersion casing 3 and conveyer belt 12.
As depicted in figs. 1 and 2, the clearing apparatus of cleaning conveyer belt 12 is equipped with in the bottom of frame 1, this clearing apparatus comprises the support 14 being connected to frame 1 bottom, support 14 is elasticly connected with cleaning board 15, the hairbrush on the feed surface being fitted in conveyer belt 12 bottom cleaning board 15 is equipped with, namely the lower end of cleaning board 15 is on the support 14 hinged, the support spring 17 supported in the middle part of cleaning board 15 support is also equipped with, thus ensure that the hairbrush that cleaning board 15 is stretched is fitted on the feed surface of conveyer belt 12 bottom, hairbrush can clear up the glass fibre that conveyer belt 12 adheres to, thus accurately control at every turn from the glass fibre amount that discharging opening 13 flows out, frame can be equipped with the magazine accepting the glass fibre that this cleaning is got off.
As shown in Figure 2, the present invention adopts a motor reducer 20, by multistage belt belt pulley by conveying roller 11, combing feed back roller 7, dematerial roller 9, runner 4 and sub-material spiral 16 series operation.
The above is specific constructive form of the present invention, and the present invention is not restricted to the described embodiments, and the art personnel, replaces all in protection scope of the present invention based on the equivalent variations of concrete structure in the present invention and parts.
Claims (5)
1. the short silk dispersion machine of glass fibre, comprise frame (1), frame (1) is connected with and is driven and spaced multiple conveying roller (11) by power set, multiple conveying roller (11) is coated with conveyer belt (12), it is characterized in that: frame (1) is connected with the fiber dispersion casing (3) that cover is buckled in conveyer belt (12) top, the rear upper of fiber dispersion casing (3) is equipped with loading hopper (2), corresponding up and down setting and two the quantitative runners (4) driven by power set is rotatably connected in fiber dispersion casing (3), the quantitative runner (4) of upper and lower correspondence is set with elevator belt (5), the quantitative runner (4) of bottom is arranged near conveyer belt (12), elevator belt (5) is densely covered with and the glass fibre on conveyer belt (12) can be promoted from its conveyer belt rear portion and the lifting thereupon run nail (6), fiber dispersion casing (3) is also equipped with and is driven and the combing feed back roller (7) at superposed quantitative runner (4) rear by power set, the surface of combing feed back roller (7) is equipped with and follows closely the feed back that (6) coordinate and follow closely (8) with promoting, also be equipped with in fiber dispersion casing (3) and driven by power set, the dematerial roller (9) in superposed quantitative runner (4) front, dematerial roller (9) is equipped with and follows closely the de-material palladium coordinated and follow closely (10) with promoting, discharging opening (13) is provided with between the lower front of fiber dispersion casing (3) and conveyer belt (12).
2. the short silk dispersion machine of glass fibre according to claim 1, is characterized in that: turning to of combing feed back roller (7) is consistent with turning to of quantitative runner (4), and turning to of dematerial roller (9) is contrary with turning to of quantitative runner (4).
3. the short silk dispersion machine of glass fibre according to claim 1 and 2, is characterized in that: described frame (1) is equipped with the clearing apparatus of cleaning conveyer belt (12).
4. the short silk dispersion machine of glass fibre according to claim 3, it is characterized in that: described clearing apparatus comprises the support (14) being connected to frame (1) bottom, support (14) is elasticly connected with cleaning board (15), cleaning board (15) is equipped with the hairbrush on the feed surface being fitted in conveyer belt (12) bottom.
5. the short silk dispersion machine of glass fibre according to claim 1 and 2, it is characterized in that: described loading hopper (2) is in large, lower young taper suitable for reading, fiber dispersion casing (3) is also equipped with the sub-material spiral driven by described power set, sub-material spiral is by the rotating shaft be rotatably connected on fiber dispersion casing (3) and be connected in rotating shaft, the contrary and symmetrically arranged two ends spiral of the hand of spiral forms.
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CN201310585863.5A CN103657509B (en) | 2013-11-21 | 2013-11-21 | The short silk dispersion machine of glass fibre |
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CN201310585863.5A CN103657509B (en) | 2013-11-21 | 2013-11-21 | The short silk dispersion machine of glass fibre |
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CN103657509A CN103657509A (en) | 2014-03-26 |
CN103657509B true CN103657509B (en) | 2015-08-26 |
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Families Citing this family (6)
Publication number | Priority date | Publication date | Assignee | Title |
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CN104355537A (en) * | 2014-10-16 | 2015-02-18 | 宿迁市天彩玻璃纤维有限公司 | Glass fiber cutting and dispersing machine |
CN104444264A (en) * | 2014-10-16 | 2015-03-25 | 宿迁市天彩玻璃纤维有限公司 | Quantified cutting and adding machine for glass fibers |
CN105083854A (en) * | 2015-06-19 | 2015-11-25 | 镇江中化聚氨酯工业设备有限公司 | Conveyer for polyurethane |
CN112325619A (en) * | 2020-10-13 | 2021-02-05 | 西安交通大学城市学院 | Heat pump microwave drying device |
CN114687091B (en) * | 2022-03-15 | 2023-11-10 | 祐樘(南京)软件科技有限公司 | Cotton fiber raw material processing equipment for heating carpet preparation |
CN115742361A (en) * | 2022-11-10 | 2023-03-07 | 宏晓复合材料有限公司 | Glass fiber reinforced plastic |
Citations (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN1256975A (en) * | 1998-12-14 | 2000-06-21 | G·辛佩尔坎普两合公司 | Roller type sifting and disperser |
CN203635146U (en) * | 2013-11-21 | 2014-06-11 | 山东赛特建材有限公司 | Staple glass fiber dispersion machine |
Family Cites Families (1)
Publication number | Priority date | Publication date | Assignee | Title |
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PL1464241T3 (en) * | 2003-04-03 | 2007-02-28 | Hauni Maschinenbau Ag | Method for producing a fabric for the production of filters of the tobacco industry and apparatus for the production of a filter rod |
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Patent Citations (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN1256975A (en) * | 1998-12-14 | 2000-06-21 | G·辛佩尔坎普两合公司 | Roller type sifting and disperser |
CN203635146U (en) * | 2013-11-21 | 2014-06-11 | 山东赛特建材有限公司 | Staple glass fiber dispersion machine |
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Address after: 262411, Shandong, Weifang province Changle red town resident Patentee after: SHANDONG SAITE BUILDING MATERIALS LIMITED BY SHARE Ltd. Address before: 262400 Shandong Saite building materials Co., Ltd., Honghe Town, Changle County, Weifang City, Shandong Province Patentee before: SHANDONG SAITE BUILDING MATERIAL Co.,Ltd. |