CN204894440U - A cooling system for infusing production line - Google Patents
A cooling system for infusing production line Download PDFInfo
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- CN204894440U CN204894440U CN201520592472.0U CN201520592472U CN204894440U CN 204894440 U CN204894440 U CN 204894440U CN 201520592472 U CN201520592472 U CN 201520592472U CN 204894440 U CN204894440 U CN 204894440U
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Abstract
本实用新型公开了一种用于输液生产线的冷却系统,包括为注塑机和吹瓶机冷却的冷却循环管道,冷却循环管道上连通有冷却循环泵,还包括至少一级热交换器,热交换器的冷却循环出口与冷却循环管道的进口连通,热交换器的冷却循环进口与冷却循环管道的出口连通,热交换器的换热出口通过管道与储水池连通,热交换器的换热进口通过管道与水井连通,水井与热交换器连通的管道上设有热交换泵。通过热交换器将注塑机和吹瓶机所散发出的热量交换到地下水中,利用地层吸收热量,这样,不仅仅大大地降低了设备的投入成本,而且只需消耗为冷却循环泵和热交换泵供电的电能,从而大大地降低了能量消耗,达到节能环保的目的。适用于药液的生产。
The utility model discloses a cooling system for a transfusion production line, which comprises a cooling circulation pipeline for cooling an injection molding machine and a bottle blowing machine. The cooling circulation pipeline is connected with a cooling circulation pump, and also includes at least one level of heat exchanger. The cooling cycle outlet of the heat exchanger is connected with the inlet of the cooling cycle pipe, the cooling cycle inlet of the heat exchanger is connected with the outlet of the cooling cycle pipe, the heat exchange outlet of the heat exchanger is connected with the water storage tank through the pipe, and the heat exchange inlet of the heat exchanger is connected through the The pipeline communicates with the water well, and a heat exchange pump is arranged on the pipeline communicating between the water well and the heat exchanger. The heat emitted by the injection molding machine and the bottle blowing machine is exchanged to the ground water through the heat exchanger, and the stratum is used to absorb the heat. In this way, the input cost of the equipment is not only greatly reduced, but also only consumed for the cooling circulation pump and heat exchange The electric energy supplied by the pump greatly reduces energy consumption and achieves the purpose of energy saving and environmental protection. It is suitable for the production of liquid medicine.
Description
技术领域technical field
本实用新型涉及药液生产领域,特别涉及一种用于输液生产线的冷却系统。The utility model relates to the field of medicinal liquid production, in particular to a cooling system used in a transfusion production line.
背景技术Background technique
目前,由于输液生产线上的注塑机和吹瓶机会散发大量的热量,所以为保证输液生产线的正常运行,一般会在输液生产线上加设大量冷冻机为注塑机和吹瓶机降温。这种冷却方式虽能保证输液生产线的正常运行,但在实际使用时存在以下问题:At present, because the injection molding machines and bottle blowing machines on the infusion production line emit a lot of heat, in order to ensure the normal operation of the infusion production line, a large number of refrigerators are generally added to the infusion production line to cool down the injection molding machines and bottle blowing machines. Although this cooling method can ensure the normal operation of the infusion production line, there are the following problems in actual use:
由于注塑机和吹瓶机的发热量较大,所以输液生产线上所需的冷冻机的数量较多,这样不仅增大了设备投入成本,而且大量冷冻机每日会消耗大量的电能,从而增加了生产成本,也不利于节能环保。Due to the high calorific value of injection molding machines and bottle blowing machines, the number of refrigerators required on the infusion production line is large, which not only increases the equipment investment cost, but also consumes a large amount of electricity every day for a large number of refrigerators, thus increasing It increases the production cost and is not conducive to energy saving and environmental protection.
发明内容Contents of the invention
本实用新型的目的是为了克服上述背景技术的不足,提供一种既能保证输液生产线的正常运行又能节能环保且成本低的用于输液生产线的冷却系统。The purpose of this utility model is to overcome the deficiency of the above-mentioned background technology, and provide a cooling system for the infusion production line that can not only ensure the normal operation of the infusion production line, but also save energy, protect the environment and have low cost.
为了实现以上目的,本实用新型提供的一种用于输液生产线的冷却系统,包括为注塑机和吹瓶机冷却的冷却循环管道,所述冷却循环管道上连通有冷却循环泵,还包括至少一级热交换器,所述热交换器的冷却循环出口与所述冷却循环管道的进口连通,所述热交换器的冷却循环进口与所述冷却循环管道的出口连通,所述热交换器的换热出口通过管道与储水池连通,所述热交换器的换热进口通过管道与水井连通,所述水井与所述热交换器连通的管道上设有热交换泵。通过热交换器将注塑机和吹瓶机所散发出的热量交换到地下水中,利用地层吸收热量,这样,不仅仅大大地降低了设备的投入成本,而且只需消耗为冷却循环泵和热交换泵供电的电能,从而大大地降低了能量消耗,达到节能环保的目的。In order to achieve the above purpose, the utility model provides a cooling system for the infusion production line, which includes a cooling circulation pipeline for cooling the injection molding machine and the bottle blowing machine. The cooling circulation pipeline is connected with a cooling circulation pump, and also includes at least one stage heat exchanger, the cooling cycle outlet of the heat exchanger communicates with the inlet of the cooling cycle pipe, the cooling cycle inlet of the heat exchanger communicates with the outlet of the cooling cycle pipe, and the heat exchanger The heat outlet communicates with the water storage tank through a pipeline, the heat exchange inlet of the heat exchanger communicates with a water well through a pipeline, and a heat exchange pump is arranged on the pipeline communicating between the water well and the heat exchanger. The heat emitted by the injection molding machine and the bottle blowing machine is exchanged to the ground water through the heat exchanger, and the stratum is used to absorb the heat. In this way, the input cost of the equipment is not only greatly reduced, but also only consumed for the cooling circulation pump and heat exchange The electric energy supplied by the pump greatly reduces energy consumption and achieves the purpose of energy saving and environmental protection.
在上述方案中,所述冷却循环管道的进口处和出口处分别设有一个冷却循环隔膜阀。In the above solution, a cooling cycle diaphragm valve is respectively provided at the inlet and the outlet of the cooling cycle pipeline.
在上述方案中,所述热交换器分别与所述储水池和所述水井连通的管道上各设有一个热交换隔膜阀。In the above scheme, the pipes communicating with the water storage pool and the water well respectively in the heat exchanger are respectively provided with a heat exchange diaphragm valve.
本实用新型提供的技术方案带来的有益效果是:The beneficial effects brought by the technical solution provided by the utility model are:
通过热交换器将注塑机和吹瓶机所散发出的热量交换到地下水中,利用地层吸收热量,这样,不仅仅大大地降低了设备的投入成本,而且只需消耗为冷却循环泵和热交换泵供电的电能,从而大大地降低了能量消耗,达到节能环保的目的。The heat emitted by the injection molding machine and the bottle blowing machine is exchanged to the ground water through the heat exchanger, and the stratum is used to absorb the heat. In this way, the input cost of the equipment is not only greatly reduced, but also only consumed for the cooling circulation pump and heat exchange The electric energy supplied by the pump greatly reduces energy consumption and achieves the purpose of energy saving and environmental protection.
附图说明Description of drawings
图1是本实用新型的结构示意图。Fig. 1 is a structural representation of the utility model.
图中,冷却循环管道1,冷却循环泵2,热交换器3,冷却循环出口3a,冷却循环进口3b,换热出口3c,换热进口3d,储水池4,水井5,热交换泵6,冷却循环隔膜阀7,热交换隔膜阀8,注塑机9,吹瓶机10。In the figure, cooling circulation pipeline 1, cooling circulation pump 2, heat exchanger 3, cooling circulation outlet 3a, cooling circulation inlet 3b, heat exchange outlet 3c, heat exchange inlet 3d, water storage tank 4, water well 5, heat exchange pump 6, Cooling cycle diaphragm valve 7, heat exchange diaphragm valve 8, injection molding machine 9, bottle blowing machine 10.
具体实施方式Detailed ways
为使本实用新型的目的、技术方案和优点更加清楚,下面将结合附图对本实用新型实施方式作进一步地详细描述。In order to make the purpose, technical solutions and advantages of the present utility model clearer, the implementation of the present utility model will be further described in detail below in conjunction with the accompanying drawings.
如图1所示,本实用新型提供的一种用于输液生产线的冷却系统,包括为注塑机9和吹瓶机10冷却的冷却循环管道1,所述冷却循环管道1上连通有冷却循环泵2,还包括至少一级热交换器3,所述热交换器3的冷却循环出口3a与所述冷却循环管道1的进口连通,所述热交换器3的冷却循环进口3b与所述冷却循环管道1的出口连通,所述热交换器3的换热出口3c通过管道与储水池4连通,所述热交换器3的换热进口3d通过管道与水井5连通,所述水井5与所述热交换器3连通的管道上设有热交换泵6。通过热交换器3将注塑机9和吹瓶机10所散发出的热量交换到地下水中,利用地层吸收热量,这样,不仅仅大大地降低了设备的投入成本,而且只需消耗为冷却循环泵2和热交换泵6供电的电能,从而大大地降低了能量消耗,达到节能环保的目的。As shown in Figure 1, a cooling system for infusion production line provided by the utility model includes a cooling circulation pipeline 1 for cooling an injection molding machine 9 and a bottle blowing machine 10, and a cooling circulation pump is communicated with the cooling circulation pipeline 1 2. It also includes at least one primary heat exchanger 3, the cooling cycle outlet 3a of the heat exchanger 3 communicates with the inlet of the cooling cycle pipeline 1, and the cooling cycle inlet 3b of the heat exchanger 3 communicates with the cooling cycle The outlet of the pipeline 1 communicates, the heat exchange outlet 3c of the heat exchanger 3 communicates with the water storage tank 4 through the pipeline, and the heat exchange inlet 3d of the heat exchanger 3 communicates with the water well 5 through the pipeline, and the water well 5 communicates with the water well 5 through the pipeline. A heat exchange pump 6 is arranged on the pipeline communicated with the heat exchanger 3 . The heat emitted by the injection molding machine 9 and the bottle blowing machine 10 is exchanged to the ground water through the heat exchanger 3, and the formation is used to absorb the heat. In this way, not only the input cost of the equipment is greatly reduced, but also only the cooling cycle pump is consumed. 2 and the electric energy supplied by the heat exchange pump 6, thereby greatly reducing energy consumption and achieving the purpose of energy saving and environmental protection.
上述冷却循环管道1的进口处和出口处分别设有一个冷却循环隔膜阀7。所述热交换器3分别与所述储水池4和所述水井5连通的管道上各设有一个热交换隔膜阀8。A cooling cycle diaphragm valve 7 is provided at the inlet and outlet of the cooling cycle pipeline 1 . A heat exchange diaphragm valve 8 is respectively provided on the pipes in communication between the heat exchanger 3 and the water storage tank 4 and the water well 5 .
本系统的工作过程如下:The working process of this system is as follows:
首先,打开所有冷却循环隔膜阀7和热交换隔膜阀8;然后,热交换泵6将水井5中温度较低的井水泵到热交换器3中;同时,冷却循环泵2将冷却完注塑机9和吹瓶机10的温度较高的循环水也泵到热交换器3中;此时,井水与循环水通过热交换器3进行热交换,温度较低的井水温度升高后进入储水池4,温度较高的循环水温度降低后再次为注塑机9和吹瓶机10降温,如此循环。First, open all the cooling cycle diaphragm valves 7 and heat exchange diaphragm valves 8; then, the heat exchange pump 6 pumps the lower temperature well water in the water well 5 to the heat exchanger 3; at the same time, the cooling cycle pump 2 will cool down the injection molding machine 9 and the circulating water with a higher temperature of the bottle blowing machine 10 are also pumped into the heat exchanger 3; at this time, the well water and the circulating water are heat-exchanged through the heat exchanger 3, and the temperature of the lower well water rises and enters the heat exchanger 3. In the water storage tank 4, after the temperature of the circulating water with a higher temperature is lowered, the temperature of the injection molding machine 9 and the bottle blowing machine 10 is cooled again, and the circulation is like this.
在上述过程中,由于进入储水池4内的井水温度较高,所以该井水可以用着生活用水,用完后又会进入地层,从而达到循环利用,节能环保的目的。In the above process, because the temperature of the well water entering the storage tank 4 is relatively high, the well water can be used as domestic water, and will enter the stratum after use up, so as to achieve the purpose of recycling, energy saving and environmental protection.
本实用新型通过热交换器3将注塑机9和吹瓶机10所散发出的热量交换到地下水中,利用地层吸收热量,这样,不仅仅大大地降低了设备的投入成本,而且只需消耗为冷却循环泵2和热交换泵6供电的电能,从而大大地降低了能量消耗,达到节能环保的目的。The utility model exchanges the heat emitted by the injection molding machine 9 and the bottle blowing machine 10 into the ground water through the heat exchanger 3, and utilizes the stratum to absorb the heat. In this way, not only the input cost of the equipment is greatly reduced, but also only need to consume as The electric energy supplied by the cooling circulation pump 2 and the heat exchange pump 6 greatly reduces energy consumption and achieves the purpose of energy saving and environmental protection.
以上所述仅为本实用新型的较佳实施例,并不用以限制本实用新型,凡在本实用新型的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本实用新型的保护范围之内。The above descriptions are only preferred embodiments of the present utility model, and are not intended to limit the present utility model. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present utility model shall be included in this utility model. within the scope of protection of utility models.
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| Application Number | Priority Date | Filing Date | Title |
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| CN201520592472.0U CN204894440U (en) | 2015-08-03 | 2015-08-03 | A cooling system for infusing production line |
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| CN201520592472.0U CN204894440U (en) | 2015-08-03 | 2015-08-03 | A cooling system for infusing production line |
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Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN109604554A (en) * | 2019-01-15 | 2019-04-12 | 东莞博克家具制品有限公司 | A kind of novel die casting machine cooling recirculation system |
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2015
- 2015-08-03 CN CN201520592472.0U patent/CN204894440U/en not_active Expired - Lifetime
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN109604554A (en) * | 2019-01-15 | 2019-04-12 | 东莞博克家具制品有限公司 | A kind of novel die casting machine cooling recirculation system |
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