一种PVC纤维增强软管收卷装置

By designing a PVC fiber-reinforced hose winding device with drainage, water absorption, swinging, and drive mechanisms, the problems of hose accumulation and cooling water residue are solved, achieving uniform hose winding and cleaning effects.

CN224512888UActive Publication Date: 2026-07-17WEIFANG HUAWEI PLASTIC CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
WEIFANG HUAWEI PLASTIC CO LTD
Filing Date
2025-06-25
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing hose reeling devices cannot adjust the reeling position, which makes the hoses easy to accumulate, and cooling water remains on the hose surface, which needs to be cleaned before reeling.

Method used

A PVC fiber reinforced hose winding device was designed, comprising a drainage mechanism, a water suction mechanism, a swaying mechanism, a support mechanism, and a drive mechanism. The drainage mechanism cleans the cooling water, the water suction mechanism absorbs residual moisture, the swaying mechanism moves the hose left and right, the support mechanism limits the movement, and the drive mechanism drives the winding, ensuring that the hose is wound evenly.

Benefits of technology

It achieves cooling water cleaning and uniform winding of the hose surface, avoids hose accumulation, and improves winding efficiency and convenience.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224512888U_ABST
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Abstract

本实用新型涉及软管收卷的技术领域,特别是涉及一种PVC纤维增强软管收卷装置,其不仅可以将软管表面残留的冷却水清理掉,方便后续对软管进行包装,而且可以带动软管左右移动,避免软管收卷堆积在一起;包括排水机构;还包括吸水机构、摇摆机构、支撑机构、驱动机构和收卷机构,吸水机构安装在排水机构上并对冷却水进行清理,摇摆机构安装在排水机构上并带动软管左右移动,支撑机构安装在排水机构上并对收卷机构进行限位,驱动机构安装在支撑机构上并带动收卷机构旋转,收卷机构安装在支撑机构上并对软管进行收卷。
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Claims

1. A PVC fiber reinforced hose winding device comprising a drainage mechanism (01); characterized in that, It also includes a water suction mechanism (02), a swing mechanism (03), a support mechanism (04), a drive mechanism (05), and a winding mechanism (06). The water suction mechanism (02) is installed on the drainage mechanism (01) and cleans the cooling water. The swing mechanism (03) is installed on the drainage mechanism (01) and drives the hose to move left and right. The support mechanism (04) is installed on the drainage mechanism (01) and limits the winding mechanism (06). The drive mechanism (05) is installed on the support mechanism (04) and drives the winding mechanism (06) to rotate. The winding mechanism (06) is installed on the support mechanism (04) and winds up the hose.

2. A PVC fiber reinforced hose winding apparatus as claimed in claim 1, wherein, The drainage mechanism (01) includes a workbench (11), a drainage hopper (12), a drainage pipe (13), a valve (14), and two sets of air supply fans (15). The bottom end of the workbench (11) is connected to the working surface. The drainage hopper (12) is installed on the workbench (11). The drainage pipe (13) is connected to the inside of the drainage hopper (12). The valve (14) is installed on the drainage pipe (13). Both sets of air supply fans (15) are installed on the workbench (11).

3. A PVC fiber reinforced hose winding apparatus as claimed in claim 2, wherein, The water absorption mechanism (02) includes two sets of springs (21), two sets of positioning blocks (22), two sets of connecting shafts (23), and two sets of absorbent cotton (24). Two sets of positioning grooves are opened on the worktable (11). The two sets of springs (21) are respectively installed in the two sets of positioning grooves. The two sets of positioning blocks (22) are respectively slidably installed in the two sets of positioning grooves, and the top of the two sets of positioning blocks (22) is respectively connected to the bottom of the two sets of springs (21). The two sets of connecting shafts (23) are respectively rotatably installed on the worktable (11) and between the two sets of positioning blocks (22). The two sets of absorbent cotton (24) are respectively installed on the two sets of connecting shafts (23).

4. A PVC fiber reinforced hose winding apparatus as claimed in claim 2, wherein, The swing mechanism (03) includes a motor (31), a dual-output shaft reducer (32), a lead screw box (33), a reciprocating lead screw (34), a slider (35), and a positioning ring (36). The motor (31) is mounted on the worktable (11), and the power output end of the motor (31) is connected to the power input end of the dual-output shaft reducer (32). The lead screw box (33) is mounted on the worktable (11), and a groove is provided inside the lead screw box (33). The reciprocating lead screw (34) is rotatably mounted in the groove, and the power output end of the dual-output shaft reducer (32) is connected to the power input end of the reciprocating lead screw (34). The slider (35) is slidably mounted in the groove and is driven by the reciprocating lead screw (34) through a thread. The positioning ring (36) is mounted on the slider (35).

5. A PVC fiber reinforced hose winding apparatus as claimed in claim 2, wherein, The support mechanism (04) includes two sets of positioning frames (41), two sets of magnetic pads (42), two sets of hydraulic cylinders (43) and two sets of push blocks (44). The top of the two sets of positioning frames (41) is connected to the bottom of the worktable (11). Both sets of positioning frames (41) have U-shaped grooves. The two sets of magnetic pads (42) are installed in the U-shaped grooves of the two sets of positioning frames (41). The bottom of the two sets of hydraulic cylinders (43) is connected to the top of the worktable (11). The bottom of the two sets of push blocks (44) is connected to the top of the two sets of hydraulic cylinders (43). Both sets of push blocks (44) have U-shaped grooves.

6. A PVC fiber reinforced hose winding apparatus as claimed in claim 4, wherein, The drive mechanism (05) includes a first drive shaft (51), a right-angle steering gear (52), a second drive shaft (53), and a drive gear (54). The power input end of the first drive shaft (51) is connected to the power output end of the dual output shaft reducer (32). The power input end of the right-angle steering gear (52) is connected to the power output end of the first drive shaft (51). The power input end of the second drive shaft (53) is connected to the power output end of the right-angle steering gear (52). The drive gear (54) is mounted on the second drive shaft (53).

7. A PVC fiber reinforced hose winding apparatus as claimed in claim 5, wherein, The winding mechanism (06) includes a winding roller (61), four sets of positioning partitions (62), a driven gear (63), and two sets of handles (64). The winding roller (61) is placed in a U-shaped groove. The four sets of positioning partitions (62) are all installed on the winding roller (61). The driven gear (63) is installed on the positioning partitions (62). The two sets of handles (64) are respectively installed at both ends of the winding roller (61).