WO2010130143A1 - 沥青冷再生水泥碎石就地拌和列车 - Google Patents

沥青冷再生水泥碎石就地拌和列车 Download PDF

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Publication number
WO2010130143A1
WO2010130143A1 PCT/CN2010/000238 CN2010000238W WO2010130143A1 WO 2010130143 A1 WO2010130143 A1 WO 2010130143A1 CN 2010000238 W CN2010000238 W CN 2010000238W WO 2010130143 A1 WO2010130143 A1 WO 2010130143A1
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WIPO (PCT)
Prior art keywords
aggregate
cement
feeder
asphalt
hoist
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Application number
PCT/CN2010/000238
Other languages
English (en)
French (fr)
Inventor
王金山
杨文礼
王辉
刘伟
曹晓新
郭敬业
柴建勋
郑如军
马宏兵
李君�
续平
苏峰
冯国强
张俊花
Original Assignee
河南通和高速公路养护工程有限责任公司
郑州市豫中轻金属机械有限公司
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Application filed by 河南通和高速公路养护工程有限责任公司, 郑州市豫中轻金属机械有限公司 filed Critical 河南通和高速公路养护工程有限责任公司
Publication of WO2010130143A1 publication Critical patent/WO2010130143A1/zh

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    • EFIXED CONSTRUCTIONS
    • E01CONSTRUCTION OF ROADS, RAILWAYS, OR BRIDGES
    • E01CCONSTRUCTION OF, OR SURFACES FOR, ROADS, SPORTS GROUNDS, OR THE LIKE; MACHINES OR AUXILIARY TOOLS FOR CONSTRUCTION OR REPAIR
    • E01C23/00Auxiliary devices or arrangements for constructing, repairing, reconditioning, or taking-up road or like surfaces
    • E01C23/06Devices or arrangements for working the finished surface; Devices for repairing or reconditioning the surface of damaged paving; Recycling in place or on the road
    • E01C23/065Recycling in place or on the road, i.e. hot or cold reprocessing of paving in situ or on the traffic surface, with or without adding virgin material or lifting of salvaged material; Repairs or resurfacing involving at least partial reprocessing of the existing paving

Definitions

  • the invention relates to an asphalt cold reclaimed cement gravel in-situ mixing train.
  • the present invention provides a bitum cold-recycled cement gravel in-situ mixing train.
  • the asphalt cold reclaimed cement gravel in-situ mixing train comprises a scraper feeder, a vehicle body, and a generator set, a power control cabinet, a water tank, a metering water pump and an emulsified asphalt disposed on the vehicle body.
  • a tank an emulsified asphalt pump, a sieving machine, a mixer, a side feeding belt conveyor and a total conveying belt
  • the discharge port of the total conveying belt is engaged with the mixer feeding port
  • the scraping plate is inclined upward in the longitudinal direction
  • a discharge port of the feeder is engaged with the side feeding belt conveyor
  • a discharge port of the side feeding belt conveyor is engaged with the feeding port of the sifting machine, and the discharging port of the sifting machine passes through the bone
  • the material hoist is connected with the aggregate recovery bin
  • the cement body is further provided with a cement tank, a mineral powder tank, an aggregate recovery bin, a new aggregate bin, and is respectively provided for weight under the discharge ports of the above containers.
  • the power control cabinet and the scraping Walking on the plate feeder
  • the electric motor is electrically connected to maintain the scraper feeder and the vehicle body synchronously;
  • the power control cabinet is further connected with the metering water pump, the emulsified asphalt pump, the recovered aggregate electronic feeder, and the new aggregate electronic feeding material Electrical connection between the machine, the cement metering screw conveyor and the mineral powder metering screw conveyor for parameter setting and modification of the asphalt pavement mixture;
  • the power control cabinet is connected with the traction variable frequency motor on the traction trolley for The power of the car body during construction.
  • the invention has a closed automatic control adding system, it can achieve reasonable proportioning, prevent dust flying, and is conducive to civilized construction;
  • the plate feeder and the car body adopt independent and synchronous walking variable frequency motors, which not only ensure that they are not biased during operation, but also adopt quick connection device and are easy to disassemble. .
  • the sifting machine is composed of a first round sieve and a second round sieve;
  • the aggregate recovery bin is composed of a fine aggregate recovery bin and a coarse aggregate recovery bin;
  • the aggregate hoist The utility model comprises a fine aggregate hoist and a coarse aggregate hoist;
  • the recycled aggregate electronic feeder is composed of a fine aggregate electronic feeder and a coarse aggregate electronic feeder;
  • the aggregate outlet is connected with the fine aggregate hoist, and the discharge port of the fine aggregate hoist is connected with the inlet of the fine aggregate recovery bin, and the fine aggregate recovery bin discharge port and the thin bone Feeding the electronic feeder;
  • the screening outlet of the first round sieve is connected with the coarse aggregate hoist, and the discharge opening of the coarse aggregate hoist is connected with the coarse aggregate recovery tank,
  • the discharge port of the coarse aggregate recovery bin is connected to the coarse aggregate electronic feeder.
  • the mixer is composed of a first-stage stirring pot and a second-stage stirring pot, and the discharge port of the total conveying belt and the water outlet of the metering water pump are connected with the feeding port of the first-stage stirring pot, The discharge port of the first-stage stirring pot and the discharge port of the emulsified asphalt pump are connected with the feeding port of the second-stage stirring pot, and the finished product outlet of the cold-recycled asphalt pavement mixture is disposed under the second-stage stirring pot.
  • the vehicle body is composed of a flatbed truck loaded with asphalt cold reclaimed cement gravel on-site mixing train equipment, and a traction trolley equipped with the generator set and the traction variable frequency motor, and the flatbed truck is connected with the traction trolley.
  • the vehicle body is composed of a flatbed truck loaded with cold recycled asphalt pavement mixing equipment and a traction trolley equipped with the generator set and the traction variable frequency motor, and the flatbed truck is connected with the traction carriage traction support.
  • FIG. 1 is a front view showing the structure of an asphalt cold reclaimed cement gravel in-situ mixing train of the present invention.
  • FIG. 2 is a top plan view showing the in-situ mixing train of the asphalt cold reclaimed cement gravel of the present invention.
  • the asphalt cold reclaimed cement gravel in-situ mixing train comprises a scraper feeder 3 equipped with a loading motor 2 and a walking variable frequency motor 4, and is equipped with a generator set. 1 and a traction trolley for pulling a variable frequency motor and a flatbed truck, the flatbed truck being connected to the traction carriage traction support 2.
  • a power control cabinet 5 a water tank 24, a metering water pump 26, and an emulsified asphalt are disposed on the flatbed truck.
  • the mouth is connected with the inlet of the first-stage stirring pot 14 , and the discharge port of the scraper feeder 3 inclined upward in the longitudinal direction is engaged with the side feeding belt conveyor 6 , and the side feeding belt conveyor
  • the discharge port of 6 is engaged with the feed port of the first round sieve 7, and the finished fine aggregate outlet of the first round sieve 7 is connected with the fine aggregate hoist 16, and the discharge of the fine aggregate hoist 16 is discharged.
  • the mouth is connected with the feed port of the fine aggregate recovery bin 18, and the discharge port of the fine aggregate recovery bin 18 is connected with the fine aggregate electronic feeder 9 for screening the discharge port and the coarse bone of the secondary circular sieve 8.
  • the material hoist 17 is engaged, the discharge port of the coarse aggregate hoist 17 is engaged with the coarse aggregate recovery bin 19, and the discharge port of the coarse aggregate recovery bin 19 and the coarse aggregate electronic feeder 10 Access.
  • a cement tank 22, a mineral powder tank 23, a new aggregate silo 11 are further disposed on the flatbed, and a weight grading is arranged below the discharge outlets of the respective containers, and the discharge port is connected with the total conveying belt 13 respectively.
  • the power control cabinet 5 is electrically connected to the traveling variable frequency motor 4 on the scraper feeder 3, and is used for Keeping the scraper feeder 3 and the vehicle body synchronized; with the metering water pump 26, the emulsified asphalt pump 27, the coarse aggregate electronic feeder 10, the fine aggregate electronic feeder 9, the new aggregate electronic feeding
  • the machine 12, the cement metering screw conveyor 20, and the mineral powder metering screw conveyor 21 are electrically connected, and are used for parameter setting and modification of the asphalt pavement mixture.
  • the discharge port of the total conveyor belt 13 and the metering water pump '26 water outlet are connected with the inlet port of the first-stage stirring pot 14, the discharge port of the first-stage stirring pot 14 and the discharge port of the emulsified asphalt pump 27
  • the feeding port of the secondary stirring pot 15 is connected, and the finished product of the cold recycled asphalt pavement mixture is arranged below the second stirring pot 15.
  • the asphalt cold reclaimed cement gravel in-situ mixing train of the invention integrates a scraper feeder, a generator set, a feeding mechanism, a two-stage screening device, a silo (tank), a weight grading mechanism, a belt conveyor, and a water
  • the emulsified asphalt metering equipment and the continuous two-stage stirring pot can collect, sift, classify and stir the asphalt milling waste on site, and realize continuous mixing while continuously mixing.

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  • Engineering & Computer Science (AREA)
  • Mining & Mineral Resources (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Road Paving Structures (AREA)
  • Road Paving Machines (AREA)

Description

说 明 书
沥青冷再生水泥碎石就地拌和列车
技术领域
本发明涉及一种沥青冷再生水泥碎石就地拌和列车。
背景技术
沥青路面长时间使用后, 会出现龟裂和坑槽, 这就需要进行路面修复。 人 们一般使用铣刨机将 I日路面铣刨, 之后再铺设新的沥青路面。 然而铣刨旧的沥 青路面会产生大量的废料, 处理这些废料, 要么将其运走废弃, 要么将其破碎、 加热、 搅拌再利用, 这样不仅要耗费很大的成本, 而且污染环境, 影响路面修 复效率。
发明内容
为解决上述技术问题, 本发明在于提供了一种沥青冷再生水泥碎石就地拌 和列车。
本发明所述的沥青冷再生水泥碎石就地拌和列车, 包括刮板给料机, 车体, 以及设置于所述车体上的发电机组、动力控制柜、水罐、计量水泵、乳化沥青罐、 乳化沥青泵、 筛粉机、 搅拌机、 侧上料皮带输送机和总输送皮带, 所述总输送 皮带的出料口与所述搅拌机进料口衔接,沿纵向倾斜向上的所述刮板给料机出料 口与所述侧上料皮带输送机衔接,所述侧上料皮带输送机的出料口与所述筛粉机 进料口衔接, 所述筛粉机出料口通过骨料提升机与骨料回收仓衔接, 在所述车 体上还设有水泥罐、 矿粉罐、 骨料回收仓、 新骨料仓, 并在上述各容器出料口 下方分别设有用于重量级配且出料口与总输送皮带衔接的水泥计量螺旋输送 器、 矿粉计量螺旋输送器、 回收骨料电子给料机、 新骨料电子给料机; 所述动 力控制柜与所述刮板给料机上的行走变频电机电连接,用于保持所述刮板给料机 和车体同步; 所述动力控制柜还与所述计量水泵、 乳化沥青泵、 回收骨料电子 给料机、 新骨料电子给料机、 水泥计量螺旋输送器、 矿粉计量螺旋输送器电连 接,用于进行沥青路面混合料的参数设定和修改;所述动力控制柜与所述牵引小 车上的牵引变频电机连接,用于车体施工行驶时的动力。
采用上述技术方案, 由于无需对废料实施运输、破碎、加热, 因此缩短了工 期, 节省了材料和运输成本, 与其它传统的施工方法相比, 总投资可节省 40〜 50%; 不损坏路基, 提高旧路等级, 且能够精确控制铺层厚度; 可以充分利用旧 路的沥青、 石料等材料, 减少了新材料的开采, 具有重大的环保效益; 由于本 发明具有封闭式自动控制添加系统, 可以实现合理配比、 防止粉尘飞扬, 有利 于文明施工; 还由于刮板给料机和车体采用了各自独立且同步行走的变频电机, 不仅保证了运行时不会走偏, 而且采用快速连接装置, 还方便拆卸。.
作为本发明的进一步改进, 所述筛粉机由一级圆筛和二级圆筛构成; 所述 骨料回收仓由细骨料回收仓和粗骨料回收仓构成; 所述骨料提升机由细骨料提 升机和粗骨料提升机构成; 所述回收骨料电子给料机由细骨料电子给料机和粗 骨料电子给料机构成; 所述一级圆筛的成品细骨料出口与所述细骨料提升机衔 接, 该细骨料提升机的出料口与所述细骨料回收仓进料口衔接, 该细骨料回收 仓出料口与所述细骨料电子给料机衔接; 所述一级圆筛的筛分出料口与所述粗 骨料提升机衔接, 该粗骨料提升机的出料口与所述粗骨料回收仓衔接, 该粗骨 料回收仓的出料口与所述粗骨料电子给料机衔接。
作为本发明的再进一步改进, 所述搅拌机由一级搅拌锅和二级搅拌锅构成, 所述总输送皮带的出料口和计量水泵出水口与所述一级搅拌锅进料口衔接, 该 一级搅拌锅的出料口和乳化沥青泵出料口与所述二级搅拌锅的进料口衔接, 所 述二级搅拌锅下方设有冷再生沥青路面混合料成品出口。
所述车体由装载沥青冷再生水泥碎石就地拌和列车设备的平板车及装有所 述发电机组和牵引变频电机的牵引小车构成, 所述平板车与牵引小车挂扣连接。 . 上述各技术方案中, 车体由装载冷再生沥青路面混合料设备的平板车及装有 所述发电机组和牵引变频电机的牵引小车构成, 平板车与牵引小车牵引支座连 接。
附图说明
下面结合附图对本发明做进一步详细说明。
图 1是本发明沥青冷再生水泥碎石就地拌和列车的主视结构示意图。
图 2是本发明沥青冷再生水泥碎石就地拌和列车的俯视结构示意图。
具体实施方式
图 1、 图 2示出了本发明优选的技术方案, 该沥青冷再生水泥碎石就地拌和 列车包括装有上料电机 2和行走变频电机 4的刮板给料机 3, 装有发电机组 1和 牵引变频电机的牵引小车以及平板车构成, 所述平板车与牵引小车牵引支座 2 连接。 在所述平板车上设置有动力控制柜 5、 水罐 24、 计量水泵 26、 乳化沥青 罐 25、 乳化沥青泵 27、 一级圆筛 7、 二级圆筛 8、 细骨料提升机 16、 粗骨料提 升机 17、 细骨料电子给料机 9、 粗骨料电子给料机 10、 细骨料回收仓 18、 粗骨 料回收仓 19,一级搅拌锅 14、 二级搅拌锅 15、 侧上料皮带输送机 6、 总输送皮 带 13, 所述总输送皮带 13的出料口与所述一级搅拌锅 14进料口衔接, 沿纵向 倾斜向上的所述刮板给料机 3出料口与所述侧上料皮带输送机 6衔接,所述侧上 料皮带输送机 6的出料口与所述一级圆筛 7进料口衔接, 所述一级圆筛 7的成 品细骨料出口与细骨料提升机 16衔接, 该细骨料提升机 16的出料口与细骨料 回收仓 18进料口衔接, 该细骨料回收仓 18出料口与细骨料电子给料机 9衔接, 所述二级圆筛 8的筛分出料口与粗骨料提升机 17衔接, 该粗骨料提升机 17的 出料口与粗骨料回收仓 19衔接,,该粗骨料回收仓 19的出料口与粗骨料电子给 料机 10衔接。 在所述平板车上还设有水泥罐 22、 矿粉罐 23、 新骨料仓 11, 并 在上述各容器出料口下方分别设有用于重量级配且出料口与总输送皮带 13衔接 的水泥计量螺旋输送器 20、矿粉计量螺旋输送器 21、新骨料电子给料机 12; 所 述动力控制柜 5与所述刮板给料机 3上的行走变频电机 4电连接,用于保持所述 刮板给料机 3和车体同步; 与所述计量水泵 26、 乳化沥青泵 27、 粗细骨料电子 给料机 10、 细骨料电子给料机 9、 新骨料电子给料机 12、 水泥计量螺旋输送器 20、 矿粉计量螺旋输送器 21电连接, 用于进行沥青路面混合料的参数设定和修 改。所述总输送皮带 13的出料口和计量水泵 ' 26出水口与所述一级搅拌锅 14进 料口衔接, 该一级搅拌锅 14的出料口和乳化沥青泵 27出料口与所述二级搅拌 锅 15的进料口衔接,所述二级搅拌锅 15下方设有冷再生沥青路面混合料成品出 □。
本发明沥青冷再生水泥碎石就地拌和列车, 集成了刮板给料机、 发电机组、 上料机构、 双级筛分设备、 料仓(罐)、 重量级配机构、 皮带输送机、 水、 乳化 沥青计量设备、 连续式双级搅拌锅, 能够在现场对沥青铣刨废料进行收集、 筛' 分、 级配、 搅拌, 实现了连续拌和的同时进行连续摊铺。

Claims

权 利 要 .求 书
1、 一种沥青冷再生水泥碎石就地拌和列车, 包括刮板给料机(3), 车体, 以及设置于所述车体上的发电机组(1)、 动力控制柜(5)、 水罐(24)、 计量水 泵(26)、 乳化沥青罐 (25)、 乳化沥青泵 (27)、 筛粉机、 搅拌机、 侧上料皮带 输送机(6) 和总输送皮带 (13); 所述总输送皮带 (13) 的出料口与所述搅拌 机进料口衔接, 沿纵向倾斜向上的所述刮板给料机 (3) 出料口与所述侧上料皮 带输送机 (6) 衔接, 所述侧上料皮带输送机 (6) 的出料口与所述筛粉机进料 口衔接, 所述筛粉机出料口通过骨料提升机与骨料回收仓衔接, 其特征在于: 在所述车体上还设有水泥罐( 22 )、矿粉罐( 23 )、骨料回收仓、新骨料仓( 11 ), 并在上述各容器出料口下方分别设有用于重量级配且出料口与总输送皮带(13) 衔接的水泥计量螺旋输送器 (20)、 矿粉计量螺旋输送器 (21 )、 回收骨料电子 给料机、 新骨料电子给料机 (12);
所述动力控制柜 (5) 与所述刮板给料机(3)上的行走变频电机(4) 电连 接, 用于保持所述刮板给料机(3)和车体同步; 并与所述计量水泵(26)、 乳化 沥青泵 (27)、 回收骨料电子给料机、 新骨料电子给料机 (12)、 水泥计量螺旋 输送器(20)、 矿粉计量螺旋输送器(21 ) 电连接。
2、 根据权利要求 1所述的沥青冷再生水泥碎石就地拌和列车, 其特征在于: 所述筛粉机由一级圆筛 (7)和二级圆筛 (8) 构成; 所述骨料回收仓由细骨料 回收仓(18)和粗骨料回收仓(19)构成;所述骨料提升机由细骨料提升机(16) 和粗骨料提升机(17)构成;所述回收骨料电子给料机由细骨料电子给料机(9) 和粗骨料电子给料机(10)构成; 所述一级圆筛(7) 的成品细骨料出口与所述 细骨料提升机 (16) 衔接, 该细骨料提升机 (16) 的出料口与所述细骨料回收 仓(18)进料口衔接, 该细骨料回收仓 ( 18) 出料口与所述细骨料电子给料机
(9)衔接; 所述一级圆筛(7) 的筛分出料口与所述粗骨料提升机(17)衔接, 该粗骨料提升机 (17) 的出料口与所述粗骨料回收仓 (19)衔接, 该粗骨料回 收仓(19) 的出料口与所述粗骨料电子给料机(10)衔接。
3、 根据权利要求 1或 2所述的沥青冷再生水泥碎石就地拌和列车, 其特征 在于: 所述搅拌机由一级搅拌锅 (14) 和二级搅拌锅 (15) 构成; 所逑总输送 皮带 (13) 的出料口和计量水泵(26) 出水口与所述一级搅拌锅 (14)进料口 衔接, 该一级搅拌锅 ( 14) 的出料口和乳化沥青泵 (27) 出料口与所述二级搅 拌锅(15)的进料口衔接; 所述二级搅拌锅(15)下方设有冷再生沥青路面混合 料成品出口。
4、 根据权利要求 1或 2所述的沥青冷再生水泥碎石就地拌和列车, 其特征 在于: 所述车体由装载沥青冷再生水泥碎石就地拌和列车设备的平板车及装有所 述发电机组 (1 )和牵引变频电机的牵引小车构成, 所述平板车与牵引小车挂扣 连接。
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CN112853866A (zh) * 2021-01-13 2021-05-28 陕西中霖集团工程设计研究有限公司 一种沥青路面热再生方法
CN114289161A (zh) * 2021-12-31 2022-04-08 河南黎明重工科技股份有限公司 一种用于制备cfb电厂脱硫石灰石粉的系统
CN114289161B (zh) * 2021-12-31 2023-10-24 河南黎明重工科技股份有限公司 一种用于制备cfb电厂脱硫石灰石粉的系统

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