WO2018000801A1 - 基于滑槽计量的配料秤 - Google Patents
基于滑槽计量的配料秤 Download PDFInfo
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- WO2018000801A1 WO2018000801A1 PCT/CN2017/000397 CN2017000397W WO2018000801A1 WO 2018000801 A1 WO2018000801 A1 WO 2018000801A1 CN 2017000397 W CN2017000397 W CN 2017000397W WO 2018000801 A1 WO2018000801 A1 WO 2018000801A1
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- chute
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- G—PHYSICS
- G01—MEASURING; TESTING
- G01G—WEIGHING
- G01G19/00—Weighing apparatus or methods adapted for special purposes not provided for in the preceding groups
- G01G19/22—Weighing apparatus or methods adapted for special purposes not provided for in the preceding groups for apportioning materials by weighing prior to mixing them
- G01G19/24—Weighing apparatus or methods adapted for special purposes not provided for in the preceding groups for apportioning materials by weighing prior to mixing them using a single weighing apparatus
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- the utility model relates to a batching scale for bulk materials, in particular to a batching scale for continuously and accurately measuring bulk materials by using a chute scale.
- the existing batching scale mainly includes belt batching scale, spiral batching scale and weightless batching scale. These batching devices have problems of low batching accuracy, high investment cost, high energy consumption and harsh installation conditions, especially the poor stability. Frequent calibration is required to maintain its accuracy, resulting in high maintenance costs, which seriously affects the production of ingredients for normal materials.
- the utility model provides a batching scale based on chute metering, which solves the technical problem that the existing batching scale has low batching accuracy and high maintenance and maintenance cost.
- a batching scale based on chute metering comprising a silo and an electric control box, wherein an impeller feeder is arranged on the discharge port of the silo, and the impeller feeder is electrically connected with the electric control box, and the impeller feeder
- a guiding chute is arranged below the outlet, and a weighing chute is connected at the outlet of the guiding chute.
- a thrust chute is arranged in front of the outlet of the weighing chute, and a weighing chute is arranged between the weighing chute and the impulse chute.
- the feeding port is provided with a batch conveying device directly under the feeding port, a weighing sensor is arranged on the weighing chute, and a momentum sensor is arranged on the impulse chute, and the weighing sensor and the impulse sensor are in the electric control box.
- the weighing instruments are electrically connected together.
- the guiding chute, the weighing chute, the impulse chute, the load cell and the impulse sensor are arranged in a closed box.
- a wired network communication interface or a wireless network communication interface is disposed on the weighing instrument in the electric control box.
- An explosion-proof housing is arranged on the load cell, an explosion-proof housing is arranged on the impulse sensor, an explosion-proof housing is arranged on the weighing instrument, and the cable connecting the sensor and the weighing instrument is a flame-retardant cable.
- a batching scale based on chute metering comprising a silo and an electric control box, wherein an electric control valve is arranged on the discharge port of the silo, and the electric control valve is electrically connected with the electric control box, and is arranged under the outlet of the electric control valve
- the guiding chute is connected with a weighing chute at the exit of the guiding chute, and a punch chute is arranged in front of the outlet of the weighing chute.
- a feeding port is arranged between the heavy chute and the impulse chute, and a batch conveying device is arranged directly below the feeding port, a weighing sensor is arranged on the weighing chute, and a momentum sensor is arranged on the impulse chute, The weight sensor and the impulse sensor are electrically connected to the weighing instrument in the electrical control box.
- An explosion-proof housing is arranged on the load cell, an explosion-proof housing is arranged on the impulse sensor, an explosion-proof housing is arranged on the weighing instrument, and the cable connecting the sensor and the weighing instrument is a flame-retardant cable.
- a batching scale based on chute metering comprising a silo and an electric control box, wherein a belt conveyor is arranged on the discharge port of the silo, and the belt conveyor is electrically connected with the electric control box, and is arranged under the outlet of the belt conveyor
- the guiding chute is connected with a weighing chute at the outlet of the guiding chute, and a punch chute is arranged in front of the outlet of the weighing chute, and a feeding port is arranged between the weighing chute and the impulse chute.
- a batch conveying device is arranged directly below the material port, a weighing sensor is arranged on the weighing chute, and a momentum sensor is arranged on the impulse chute, and the weighing sensor and the impulse sensor are electrically connected with the weighing instrument in the electric control box. Connected together.
- An explosion-proof housing is arranged on the load cell, an explosion-proof housing is arranged on the impulse sensor, an explosion-proof housing is arranged on the weighing instrument, and the cable connecting the sensor and the weighing instrument is a flame-retardant cable.
- the utility model has the advantages of simple structure, durability, easy calibration, stable and accurate measurement and maintenance-free, and is particularly suitable for use in the cement production plant.
- 1 is a schematic structural view of the batch material of the present invention when it is a powdery material
- FIG. 2 is a schematic structural view of the discharge port of the silo of the present invention when it is set as an electric control valve;
- Figure 3 is a schematic view showing the structure of the batch material of the present invention when it is a granular material.
- a batching scale based on chute metering comprising a silo 1 and an electric control box 2, wherein an impeller feeder 3 is arranged on the discharge port of the silo 1, and the impeller feeder 3 is electrically connected with the electric control box 2 a guiding chute 4 is disposed below the outlet of the impeller feeder 3, a weighing chute 5 is connected at the outlet of the guiding chute 4, and a punch chute 6 is disposed in front of the outlet of the weighing chute 5, A feeding port 7 is arranged between the weighing chute 5 and the impulse chute 6, and a dosing conveying device 8 is arranged directly below the discharging chute 7, and a weighing sensor 9 is arranged on the weighing chute 5, in the sliding force A force sensor 10 is disposed on the slot 6, and the load cell 9 and the impulse sensor 10 are electrically coupled to the weighing instrument in the electrical control box 2.
- Guide chute 4 weighing chute 5, impulse chute 6, load cell 9 and impulse sensor 10 It is placed in a closed box 12, which is particularly suitable for the dosing of powdered materials.
- a wired network communication interface or a wireless network communication interface is disposed on the weighing instrument in the electric control box 2.
- An explosion-proof housing is disposed on the load cell 9, an explosion-proof housing is disposed on the impulse sensor 10, an explosion-proof housing is disposed on the weighing instrument, and a cable connecting the sensor and the weighing instrument is a flame-retardant cable.
- a batching scale based on chute metering comprising a silo 1 and an electric control box 2, an electric control valve 11 is arranged on the discharge port of the silo 1, and the electric control valve 11 is electrically connected with the electric control box 2, and is electrically controlled
- a guide chute 4 is disposed below the outlet of the valve 11, a weigh chute 5 is connected to the outlet of the guide chute 4, and a punch chute 6 is disposed in front of the outlet of the weigh chute 5, in the weigh chute 5
- a feed port 7 is disposed between the punch chute 6 and a dosing conveyor 8 is disposed directly below the chute 7, and a load cell 9 is disposed on the weigh chute 5, and the punch chute 6 is disposed on the punch chute 6.
- the impulse sensor 10, the load cell 9 and the impulse sensor 10 are electrically connected to a weighing instrument in the electrical control box 2.
- An explosion-proof housing is disposed on the load cell 9, an explosion-proof housing is disposed on the impulse sensor 10, an explosion-proof housing is disposed on the weighing instrument, and a cable connecting the sensor and the weighing instrument is a flame-retardant cable.
- a batching scale based on chute metering comprising a silo 1 and an electric control box 2, wherein a belt conveyor 13 is arranged on the discharge port of the silo 1, and the belt conveyor 13 is electrically connected with the electric control box 2, and is conveyed on the belt
- a guiding chute 4 is disposed below the outlet of the machine 13
- a weighing chute 5 is connected to the outlet of the guiding chute 4
- a punch chute 6 is disposed in front of the outlet of the weighing chute 5, in the weighing chute 5
- a feed port 7 is disposed between the punch chute 6 and a dosing conveyor 8 is disposed directly below the chute 7, and a load cell 9 is disposed on the weigh chute 5, and the punch chute 6 is disposed on the punch chute 6.
- the impulse sensor 10, the load cell 9 and the impulse sensor 10 are electrically connected to a weighing instrument in the electrical control box 2. This construction is particularly suitable for the dosing of granular materials.
- An explosion-proof housing is disposed on the load cell 9, an explosion-proof housing is disposed on the impulse sensor 10, an explosion-proof housing is disposed on the weighing instrument, and a cable connecting the sensor and the weighing instrument is a flame-retardant cable.
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- General Physics & Mathematics (AREA)
- Filling Or Emptying Of Bunkers, Hoppers, And Tanks (AREA)
Abstract
一种基于滑槽计量的配料秤,包括料仓(1),在料仓(1)的出料口上设置有叶轮给料机(3),叶轮给料机(3)与电控箱(2)电连接,在叶轮给料机(3)的出口下方设置有引导滑槽(4),在引导滑槽(4)的出口处连接有称重滑槽(5),在称重滑槽(5)的出口前方设置有冲力滑槽(6),在称重滑槽(5)与冲力滑槽(6)之间设置有下料口(7),在下料口(7)的正下方设置有配料输送装置(8),在称重滑槽(5)上设置有称重传感器(9),在冲力滑槽(6)上设置有冲力传感器(10),称重传感器(9)和冲力传感器(10)与电控箱(2)中的称重仪表电连接。该配料秤解决了现有配料秤存在的配料准确度低和使用维护成本高的问题,适合水泥生产厂配料使用。
Description
本实用新型涉及一种散状物料的配料秤,特别涉及一种应用滑槽秤对散状物料进行连续准确计量的配料秤。
在煤炭、钢铁、化工、建材、粮食、饲料等领域需要对不同的散状物料进行准确配比,以满足工艺要求。现有的配料秤主要有皮带配料秤、螺旋配料秤、失重配料秤几种,这些配料装置存在配料准确度低,投资成本大,耗能高和安装条件苛刻等问题,特别是稳定性差特别突出,需要频繁进行标定,以维持其准确度,造成维护成本高,严重影响到了正常物料的配料生产。
发明内容
本实用新型提供了一种基于滑槽计量的配料秤,解决了现有配料秤存在的配料准确度低和使用维护成本高的技术问题。
一种基于滑槽计量的配料秤,包括料仓和电控箱,在料仓的出料口上设置有叶轮给料机,叶轮给料机与电控箱电连接在一起,在叶轮给料机的出口下方设置有引导滑槽,在引导滑槽的出口处连接有称重滑槽,在称重滑槽的出口前方设置有冲力滑槽,在称重滑槽与冲力滑槽之间设置有下料口,在下料口的正下方设置有配料输送装置,在称重滑槽上设置有称重传感器,在冲力滑槽上设置有冲力传感器,称重传感器和冲力传感器是与电控箱中的称重仪表电连接在一起的。
引导滑槽、称重滑槽、冲力滑槽、称重传感器和冲力传感器是设置在一个封闭式箱体中的。
在电控箱中的称重仪表上设置有有线网络通讯接口或无线网络通讯接口。
在称重传感器上设置有防爆壳体,在冲力传感器上设置有防爆壳体,在称重仪表上设置有防爆壳体,连接传感器与称重仪表的电缆为阻燃电缆。
一种基于滑槽计量的配料秤,包括料仓和电控箱,在料仓的出料口上设置有电控阀,电控阀与电控箱电连接,在电控阀的出口下方设置有引导滑槽,在引导滑槽的出口处连接有称重滑槽,在称重滑槽的出口前方设置有冲力滑槽,在称
重滑槽与冲力滑槽之间设置有下料口,在下料口的正下方设置有配料输送装置,在称重滑槽上设置有称重传感器,在冲力滑槽上设置有冲力传感器,称重传感器和冲力传感器是与电控箱中的称重仪表电连接在一起的。
在称重传感器上设置有防爆壳体,在冲力传感器上设置有防爆壳体,在称重仪表上设置有防爆壳体,连接传感器与称重仪表的电缆为阻燃电缆。
一种基于滑槽计量的配料秤,包括料仓和电控箱,在料仓的出料口上设置有皮带输送机,皮带输送机与电控箱电连接,在皮带输送机的出口下方设置有引导滑槽,在引导滑槽的出口处连接有称重滑槽,在称重滑槽的出口前方设置有冲力滑槽,在称重滑槽与冲力滑槽之间设置有下料口,在下料口的正下方设置有配料输送装置,在称重滑槽上设置有称重传感器,在冲力滑槽上设置有冲力传感器,称重传感器和冲力传感器是与电控箱中的称重仪表电连接在一起的。
在称重传感器上设置有防爆壳体,在冲力传感器上设置有防爆壳体,在称重仪表上设置有防爆壳体,连接传感器与称重仪表的电缆为阻燃电缆。
本实用新型具有结构简单,经久耐用,标定容易,计量稳定准确和免维护的优点,特别适合水泥生产厂配料使用。
图1是本实用新型的配料物料为粉末状物料时的结构示意图;
图2是本实用新型的料仓出料口设置为电控阀时的结构示意图;
图3是本实用新型的配料物料为颗粒状物料时的结构示意图。
下面结合附图对本实用新型进行详细说明:
一种基于滑槽计量的配料秤,包括料仓1和电控箱2,在料仓1的出料口上设置有叶轮给料机3,叶轮给料机3与电控箱2电连接在一起,在叶轮给料机3的出口下方设置有引导滑槽4,在引导滑槽4的出口处连接有称重滑槽5,在称重滑槽5的出口前方设置有冲力滑槽6,在称重滑槽5与冲力滑槽6之间设置有下料口7,在下料口7的正下方设置有配料输送装置8,在称重滑槽5上设置有称重传感器9,在冲力滑槽6上设置有冲力传感器10,称重传感器9和冲力传感器10是与电控箱2中的称重仪表电连接在一起的。
引导滑槽4、称重滑槽5、冲力滑槽6、称重传感器9和冲力传感器10
是设置在一个封闭式箱体12中的,这种结构特别适合对粉末状物料进行配料使用。
在电控箱2中的称重仪表上设置有有线网络通讯接口或无线网络通讯接口。
在称重传感器9上设置有防爆壳体,在冲力传感器10上设置有防爆壳体,在称重仪表上设置有防爆壳体,连接传感器与称重仪表的电缆为阻燃电缆。
一种基于滑槽计量的配料秤,包括料仓1和电控箱2,在料仓1的出料口上设置有电控阀11,电控阀11与电控箱2电连接,在电控阀11的出口下方设置有引导滑槽4,在引导滑槽4的出口处连接有称重滑槽5,在称重滑槽5的出口前方设置有冲力滑槽6,在称重滑槽5与冲力滑槽6之间设置有下料口7,在下料口7的正下方设置有配料输送装置8,在称重滑槽5上设置有称重传感器9,在冲力滑槽6上设置有冲力传感器10,称重传感器9和冲力传感器10是与电控箱2中的称重仪表电连接在一起的。
在称重传感器9上设置有防爆壳体,在冲力传感器10上设置有防爆壳体,在称重仪表上设置有防爆壳体,连接传感器与称重仪表的电缆为阻燃电缆。
一种基于滑槽计量的配料秤,包括料仓1和电控箱2,在料仓1的出料口上设置有皮带输送机13,皮带输送机13与电控箱2电连接,在皮带输送机13的出口下方设置有引导滑槽4,在引导滑槽4的出口处连接有称重滑槽5,在称重滑槽5的出口前方设置有冲力滑槽6,在称重滑槽5与冲力滑槽6之间设置有下料口7,在下料口7的正下方设置有配料输送装置8,在称重滑槽5上设置有称重传感器9,在冲力滑槽6上设置有冲力传感器10,称重传感器9和冲力传感器10是与电控箱2中的称重仪表电连接在一起的。这种结构特别适合对颗粒状物料进行配料使用。
在称重传感器9上设置有防爆壳体,在冲力传感器10上设置有防爆壳体,在称重仪表上设置有防爆壳体,连接传感器与称重仪表的电缆为阻燃电缆。
Claims (8)
- 一种基于滑槽计量的配料秤,包括料仓(1)和电控箱(2),在料仓(1)的出料口上设置有叶轮给料机(3),叶轮给料机(3)与电控箱(2)电连接在一起,其特征在于,在叶轮给料机(3)的出口下方设置有引导滑槽(4),在引导滑槽(4)的出口处连接有称重滑槽(5),在称重滑槽(5)的出口前方设置有冲力滑槽(6),在称重滑槽(5)与冲力滑槽(6)之间设置有下料口(7),在下料口(7)的正下方设置有配料输送装置(8),在称重滑槽(5)上设置有称重传感器(9),在冲力滑槽(6)上设置有冲力传感器(10),称重传感器(9)和冲力传感器(10)是与电控箱(2)中的称重仪表电连接在一起的。
- 根据权利要求1所述的一种基于滑槽计量的配料秤,其特征在于,引导滑槽(4)、称重滑槽(5)、冲力滑槽(6)、称重传感器(9)和冲力传感器(10)是设置在一个封闭式箱体(12)中的。
- 根据权利要求1所述的一种基于滑槽计量的配料秤,其特征在于,在电控箱(2)中的称重仪表上设置有有线网络通讯接口或无线网络通讯接口。
- 根据权利要求1所述的一种基于滑槽计量的配料秤,其特征在于,在称重传感器(9)上设置有防爆壳体,在冲力传感器(10)上设置有防爆壳体,在称重仪表上设置有防爆壳体,连接传感器与称重仪表的电缆为阻燃电缆。
- 一种基于滑槽计量的配料秤,包括料仓(1)和电控箱(2),在料仓(1)的出料口上设置有电控阀(11),电控阀(11)与电控箱(2)电连接,其特征在于,在电控阀(11)的出口下方设置有引导滑槽(4),在引导滑槽(4)的出口处连接有称重滑槽(5),在称重滑槽(5)的出口前方设置有冲力滑槽(6),在称重滑槽(5)与冲力滑槽(6)之间设置有下料口(7),在下料口(7)的正下方设置有配料输送装置(8),在称重滑槽(5)上设置有称重传感器(9),在冲力滑槽(6)上设置有冲力传感器(10),称重传感器(9)和冲力传感器(10)是与电控箱(2)中的称重仪表电连接在一起的。
- 根据权利要求5所述的一种基于滑槽计量的配料秤,其特征在于,在称重传感器(9)上设置有防爆壳体,在冲力传感器(10)上设置有防爆壳体,在称重仪表上设置有防爆壳体,连接传感器与称重仪表的电缆为阻燃电缆。
- 一种基于滑槽计量的配料秤,包括料仓(1)和电控箱(2),在料仓(1)的出料口上设置有皮带输送机(13),皮带输送机(13)与电控箱(2)电连接,其特征在于,在皮带输送机(13)的出口下方设置有引导滑槽(4),在引导滑槽(4)的出口处连接有称重滑槽(5),在称重滑槽(5)的出口前方设置有冲力滑槽(6),在称重滑槽(5)与冲力滑槽(6)之间设置有下料口(7),在下料口(7)的正下方设置有配料输送装置(8),在称重滑槽(5)上设置有称重传感器(9),在冲力滑槽(6)上设置有冲力传感器(10),称重传感器(9)和冲力传感器(10)是与电控箱(2)中的称重仪表电连接在一起的。
- 根据权利要求7所述的一种基于滑槽计量的配料秤,其特征在于,在称重传感器(9)上设置有防爆壳体,在冲力传感器(10)上设置有防爆壳体,在称重仪表上设置有防爆壳体,连接传感器与称重仪表的电缆为阻燃电缆。
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN201620646500.7 | 2016-06-27 | ||
| CN201620646500.7U CN205940735U (zh) | 2016-06-27 | 2016-06-27 | 基于滑槽计量的配料秤 |
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| WO2018000801A1 true WO2018000801A1 (zh) | 2018-01-04 |
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| CN110806250A (zh) * | 2019-11-12 | 2020-02-18 | 山西新元自动化仪表有限公司 | 一种圆弧滑槽秤及其称量方法 |
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| Publication number | Priority date | Publication date | Assignee | Title |
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| CN205940735U (zh) * | 2016-06-27 | 2017-02-08 | 山西新元自动化仪表有限公司 | 基于滑槽计量的配料秤 |
| CN110806249B (zh) * | 2019-11-12 | 2025-01-24 | 山西新元自动化仪表有限公司 | 一种滑弧滑槽秤及其称量方法 |
Citations (7)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US4063456A (en) * | 1973-09-03 | 1977-12-20 | Cornelius Otto Jonkers | Method and a device for continuously measuring a flow of material |
| CN101476930A (zh) * | 2009-01-16 | 2009-07-08 | 上海第二工业大学 | 铁合金电炉专用配料电子秤 |
| CN202614290U (zh) * | 2012-06-04 | 2012-12-19 | 丹东华信测控技术有限公司 | 一种板式固体电子流量计 |
| CN103453970A (zh) * | 2013-07-15 | 2013-12-18 | 山西新元自动化仪表有限公司 | 滑槽秤 |
| CN205940723U (zh) * | 2016-06-27 | 2017-02-08 | 山西新元自动化仪表有限公司 | 封闭式滑槽秤 |
| CN205940735U (zh) * | 2016-06-27 | 2017-02-08 | 山西新元自动化仪表有限公司 | 基于滑槽计量的配料秤 |
| CN205998703U (zh) * | 2016-06-27 | 2017-03-08 | 山西新元自动化仪表有限公司 | 基于滑槽计量的定量装车秤 |
-
2016
- 2016-06-27 CN CN201620646500.7U patent/CN205940735U/zh active Active
-
2017
- 2017-06-22 WO PCT/CN2017/000397 patent/WO2018000801A1/zh not_active Ceased
Patent Citations (7)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US4063456A (en) * | 1973-09-03 | 1977-12-20 | Cornelius Otto Jonkers | Method and a device for continuously measuring a flow of material |
| CN101476930A (zh) * | 2009-01-16 | 2009-07-08 | 上海第二工业大学 | 铁合金电炉专用配料电子秤 |
| CN202614290U (zh) * | 2012-06-04 | 2012-12-19 | 丹东华信测控技术有限公司 | 一种板式固体电子流量计 |
| CN103453970A (zh) * | 2013-07-15 | 2013-12-18 | 山西新元自动化仪表有限公司 | 滑槽秤 |
| CN205940723U (zh) * | 2016-06-27 | 2017-02-08 | 山西新元自动化仪表有限公司 | 封闭式滑槽秤 |
| CN205940735U (zh) * | 2016-06-27 | 2017-02-08 | 山西新元自动化仪表有限公司 | 基于滑槽计量的配料秤 |
| CN205998703U (zh) * | 2016-06-27 | 2017-03-08 | 山西新元自动化仪表有限公司 | 基于滑槽计量的定量装车秤 |
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN110806250A (zh) * | 2019-11-12 | 2020-02-18 | 山西新元自动化仪表有限公司 | 一种圆弧滑槽秤及其称量方法 |
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| CN205940735U (zh) | 2017-02-08 |
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