A double cooling device for reducing the temperature of the drawing lubricant in a wire drawing process

CN224694804UActive Publication Date: 2026-08-28CHONGQING SANLEI FIBERGLASS LNC
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Patent Information

Application Number
CN202521411859.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-07-07
Publication Date
2026-08-28
Estimated Expiration
2035-07-07

AI Technical Summary

Technical Problem

[0003]传统的冷却系统在使用时必须通过通入冷水来维持浸润剂的温度,这种方式需要再水资源十分充足且稳定的情况下才能进行使用,导致对侵浸润剂的生产不够灵活,不够可靠

Benefits of technology

[0010]本实用新型的一种用于拉丝过程降低浸润剂温度的双冷却装置,包括浸润剂循环罐、保温夹套和降温装置,所述保温夹套由隔热材料制成,用于减少所述浸润剂循环罐与外部环境之间的热量交换,从而保持浸润剂的温度稳定,所述保温夹套内部能够通入冷却循环水,利用水的循环流动带走热量,从而实现对浸润剂的降温,并可通过调节冷却水的流量和温度来控制浸润剂的温度,设计简单,操作简便,适用于常规生产条件下的浸润剂温度控制,所述降温装置与所述保温夹套协同工作,进一步对浸润剂进行降温,确保浸润剂在适宜的温度范围内,从而提升产品质量。

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Abstract

The utility model relates to double cooling technical field, concretely relates to a double cooling device for lowering the temperature of infiltrant in the wire drawing process, including infiltrant circulating jar, heat preservation jacket and cooling device, and the left side top of infiltrant circulating jar sets the water outlet, and the right side bottom of infiltrant circulating jar sets the water inlet, and the outside of infiltrant circulating jar is provided with heat preservation jacket, and the cooling device is installed on infiltrant circulating jar, and heat preservation jacket is made of heat insulation material, is used for reducing the heat exchange between infiltrant circulating jar and external environment to keep the temperature stability of infiltrant, and the inside of heat preservation jacket can be passed into cooling circulating water, utilizes the circulating flow of water and takes away heat to realize the cooling of infiltrant, and the design is simple, and the operation is simple, and cooling device and heat preservation jacket work cooperatively, further cool infiltrant, ensure that infiltrant is in the temperature range of suitability to improve product quality.
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Claims

1. A dual cooling device for reducing the temperature of a sizing agent during the wire drawing process, comprising a sizing agent circulation tank, an insulation jacket, and a cooling device, wherein an outlet is provided at the top left side of the sizing agent circulation tank, an inlet is provided at the bottom right side of the sizing agent circulation tank, the insulation jacket is provided on the outside of the sizing agent circulation tank, and the cooling device is installed on the sizing agent circulation tank.

2. The dual cooling device for reducing the temperature of the sizing agent during the wire drawing process as described in claim 1, characterized in that: The sizing agent circulation tank is equipped with a graphite roller corresponding to the wire drawing machine, and an oil hopper is located below the graphite roller. The cooling device is located below the oil hopper.

3. The dual cooling device for reducing the temperature of the sizing agent during the wire drawing process as described in claim 2, characterized in that: The lower surface of the oil hopper is provided with an oil inlet and an oil outlet, both of which are connected to the interior of the oil hopper.

4. The dual cooling device for reducing the temperature of the sizing agent during the wire drawing process as described in claim 2, characterized in that: A finned radiator is installed on the side wall of the oil hopper. The finned radiator is fixedly connected to the oil hopper and located on the side wall of the oil hopper.

5. The dual cooling device for reducing the temperature of the sizing agent during the wire drawing process as described in claim 1, characterized in that: The cooling device is connected to the wetting agent circulation tank and the cooling medium via a T-junction to form a closed loop.