Hose guiding and coiling device

By designing a hose guiding and winding device, and adopting a horizontal guiding mechanism and a servo motor driven horizontal winding mechanism, the problems of low hose winding efficiency and high equipment cost in medical hoses are solved, achieving efficient and reliable hose winding effect.

CN224030399UActive Publication Date: 2026-03-24SICHUAN BIAOMEI SILICON FLUORINE NEW MATERIAL CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-07
Publication Date
2026-03-24

AI Technical Summary

Technical Problem

Existing medical tubing winding equipment suffers from low efficiency, high equipment cost, and poor flexibility. In particular, manual winding is prone to problems such as inconsistent tension, creases, and twisting. The winding mechanism is complex and costly.

Method used

A hose guiding and winding device was designed, including a hose guiding mechanism and a horizontal winding mechanism. It adopts a transverse guiding mechanism, an intermediate transition roller assembly and a rear shock-absorbing guiding mechanism, combined with a servo motor drive, to achieve reliable guidance and winding of the hose.

Benefits of technology

It achieves reliable guidance and efficient winding of the hose, with a simple structure, reliable operation, reduced equipment costs, and improved flexibility and winding quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a hose guiding and coiling device. The hose guiding and coiling device comprises a hose guiding mechanism and a horizontal hose coiling mechanism. The horizontal pipe rolling mechanism comprises a third lower supporting seat, an extending lower bottom rod, a second stand column, a sixth rotating bearing seat arranged on the third lower supporting seat, a lower rolling disc assembly with the lower portion arranged in the sixth rotating bearing seat in a sleeved mode, and a hollow cross beam with the rear end fixed to the second stand column through a screw, wherein the third lower supporting seat, the extending lower bottom rod and the second stand column are integrally formed. The servo motor is fixed on the hollow cross beam, the third belt pulley and the fourth belt pulley are arranged in the hollow cross beam, the second belt is arranged on the third belt pulley and the fourth belt pulley, and the seventh rotating bearing seat and the eighth rotating bearing seat are fixed at the front end of the hollow cross beam and are coaxial with the fourth belt pulley. The upper portion of the upper driving disc assembly is arranged on the seventh rotating bearing seat, the fourth belt wheel and the eighth rotating bearing seat in a sleeving mode, and the lower portion of the upper driving disc assembly is inserted into the lower winding disc assembly; and the third belt pulley is connected with a servo motor.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a hose winding technology field especially a hose guide winding device. BACKGROUND

[0002] The hose in the paper is mainly medical hose, which is thin in diameter. At present, the processing procedure of the medical hose in the prior art mainly includes: rubber mixing, extrusion molding, high-temperature vulcanization, cooling and winding, etc. Among them, the molded (high-temperature state) hose enters the winding procedure after the cooling pool. And there is no medical hose winding equipment in the prior art. At present, the winding mode of the traditional medical hose mainly includes: manual winding and winding mechanism. Among them, manual winding is manually winding the hose on the winding shaft or reel by artificial, which is low in winding efficiency and prone to problems such as inconsistent tightness, creases, distortion, etc. In addition, the winding mechanism mainly includes a workbench, a pipe clamping assembly, a reel, a pipe pressing assembly, a pipe placing box and a pushing device, etc., which is high in equipment cost and poor in flexibility.

[0003] Therefore, it is urgent to provide a hose guide winding device which is simple in structure and reliable in action. UTILITY MODEL CONTENTS

[0004] In view of the above problems, the utility model aims to provide a hose guide winding device, and the technical scheme adopted by the utility model is as follows:

[0005] A hose guide winding device guides and winds the hose, which comprises a hose guide mechanism and a horizontal winding mechanism receiving the hose transmitted by the hose guide mechanism and winding the hose;

[0006] The hose guide mechanism comprises a first lower support seat, a first lower sleeve fixed on the first lower support seat, a first lower support screw threadedly connected with the lower end of the first lower sleeve, a first lower mounting plate arranged on the first lower support screw, a first vertical plate arranged on the first lower mounting plate, and a horizontal guide mechanism, an intermediate transition roller assembly and a rear shock-absorbing guide mechanism arranged on the first vertical plate and arranged along the winding direction of the hose;

[0007] The horizontal pipe winding mechanism comprises a third lower support seat, an extended lower bottom rod and a second column which are integrally formed, a sixth rotating bearing seat arranged on the third lower support seat, a lower winding disc assembly sleeved in the sixth rotating bearing seat, a hollow cross beam fixed at the rear end of the second column by a screw rod, a servo motor fixed on the hollow cross beam, a third belt pulley and a fourth belt pulley arranged in the hollow cross beam, a second belt arranged on the third belt pulley and the fourth belt pulley, a seventh rotating bearing seat and an eighth rotating bearing seat fixed on the front end of the hollow cross beam and coaxial with the fourth belt pulley, and an upper driving disc assembly which is sleeved on the seventh rotating bearing seat, the fourth belt pulley and the eighth rotating bearing seat and is inserted into the lower winding disc assembly; the third belt pulley is connected with the servo motor.

[0008] Further, a first rotating handle is arranged on the first lower support screw; a first mounting plate is arranged on the first vertical plate; and a material receiving box is placed on the first mounting plate.

[0009] Further, the horizontal guide mechanism comprises a first L-shaped plate fixed on the first vertical plate and forming a U shape with the first vertical plate, two slide rails arranged in the first L-shaped plate, a U-shaped slide seat which is sleeved on the slide rails and has an opening facing the middle transition roller assembly, a left extrusion screw which is threadedly connected with the first L-shaped plate and is extruded on one side of the U-shaped slide seat, and a right extrusion screw which is threadedly connected with the first vertical plate and is extruded on the other side of the U-shaped slide seat.

[0010] Further, the middle transition roller assembly comprises a first rotating bearing seat fixed on the back of the first vertical plate, a first rotating shaft arranged through the first rotating bearing seat and the first vertical plate, and a first U-shaped roller arranged on the first rotating shaft.

[0011] Further, the rear shock absorbing guide mechanism comprises a second L-shaped plate fixed on the first vertical plate in the longitudinal direction, second rotating bearing seats and third rotating bearing seats fixed on the front and rear of the second L-shaped plate respectively, an oscillating bearing rod arranged through the second rotating bearing seats, the second L-shaped plate and the third rotating bearing seats, an oscillating crank arm fixed on the oscillating bearing rod at the lower part, rear and front screws arranged on the second L-shaped plate in the longitudinal direction, a first downward spring arranged between the front screw and the oscillating crank arm, a second U-shaped roller support rod arranged on the front end of the oscillating crank arm, a second U-shaped roller arranged on the second U-shaped roller support rod, a second spring hook arranged on the front end of the back of the oscillating crank arm, a first spring hook arranged on the first vertical plate, and a second downward spring arranged between the second spring hook and the first spring hook; the rear screw is extruded on the rear end of the oscillating crank arm.

[0012] Further, the lengthened lower bottom rod is provided with an inclined reinforcing column; the inclined reinforcing column and the second vertical column are both provided with a plurality of rear locking screws; the rear locking screws are provided with rear locking nuts; the hollow cross beam is sleeved on the rear locking screws and locked by the rear locking nuts.

[0013] Further, the lower winding disc assembly comprises a lower central rod sleeved in the sixth rotating bearing seat, a plurality of winding disc support lower rods arranged in an annular array on the lower central rod, a barrel-shaped winding disc arranged on the winding disc support lower rods, an upper connecting sleeve arranged on the upper portion of the lower central rod, and a plurality of inner side wall support rods arranged between the upper connecting sleeve and the barrel-shaped winding disc.

[0014] Further, the upper driving disc assembly comprises an upper driving rotating shaft sleeved in the seventh rotating bearing seat, the fourth belt pulley and the eighth rotating bearing seat, a lower connecting rod arranged on the lower portion of the upper driving rotating shaft, a plurality of upper limiting rods arranged in an annular array on the lower portion of the upper driving rotating shaft, and a driving rod arranged on the lower portion of the upper limiting rods; the lower connecting rod is inserted into the upper connecting sleeve, the upper limiting rods are attached to the upper portion of the barrel-shaped winding disc, and the driving rod is in contact with the inner side wall support rods; the servo motor drives the upper driving rotating shaft and the driving rod to rotate, drives the inner side wall support rods by the driving rod, and drives the barrel-shaped winding disc to rotate.

[0015] Compared with the prior art, the utility model has the following beneficial effects:

[0016] (1) The utility model discloses a vertical pipe winding mechanism, which comprises a vertical pipe winding mechanism body, a horizontal guide mechanism, an intermediate transition roller assembly and a rear shock-absorbing guide mechanism.

[0017] (2) The utility model discloses a horizontal guide mechanism that can be adjusted horizontally, and the horizontal guide mechanism is supported by a slide rail. When the horizontal guide mechanism is adjusted to the desired position, the left extrusion screw rod and the right extrusion screw rod can be used for extrusion positioning. The adjustment is convenient and reliable, and the support connection is reliable.

[0018] (3) The rear shock-absorbing guide mechanism is provided with a front screw rod and a first downward pressing spring, which press down the rear end of the swing lever. The first spring hook, the second spring hook and the second downward pulling spring pull down the front end of the swing lever. The swing lever is supported by the second rotating bearing seat, the third rotating bearing seat and the swing bearing rod. The swing lever has elastic swing support (i.e., the first downward pressing spring presses down the rear end of the swing lever, so that the front end of the swing lever is raised, and the second downward pulling spring pulls down the front end of the swing lever, so that the swing lever is in an elastic dynamic balance state). Finally, the rear screw rod is provided to limit the limit position of the front end of the swing lever.

[0019] (4) The utility model discloses a first lower sleeve, first lower support screw rod and first rotation handle are set up, in order to the height adjustment of first vertical board, horizontal guide mechanism, intermediate transition roller assembly and rear shock guide mechanism is convenient.

[0020] (5) The utility model discloses a third lower support seat, sixth rotation bearing seat, extension lower bottom bar, second stand and inclined reinforcement column provide lower support, and the rear end of hollow crossbeam and second stand and inclined reinforcement column provide lower support adopt screw connection, and its installation is simple and reliable.

[0021] (6) The utility model discloses a third belt pulley, second belt and fourth belt pulley are set up, and are placed in hollow crossbeam, and its protection is reliable, and utilizes servo motor drive.

[0022] (7) The utility model discloses a lower winding disc assembly and upper drive disc assembly of insertion connection, and its winding is reliable after dismantling. The utility model discloses servo motor push upper drive pivot, drive lever rotation, utilize drive lever and push inside wall support rod, and drive barrel -shaped winding disc rotation, and its action is reliable.

[0023] Summarized above, the utility model has simple structure, action reliable and the advantages such as, has very high practical value and popularization value in the hose winding technical field. DRAWINGS

[0024] In order to more clearly illustrate the technical scheme of the embodiment of the utility model, the following will be to the drawing needed in the embodiment used briefly introduces, should understand, the following drawing only shows some embodiments of the utility model, therefore should not be seen as the limitation to the scope of protection, for the person skilled in the art, without paying the creative labor, can also obtain other related drawings according to these drawings.

[0025] Figure 1 It is the structural schematic diagram of the utility model.

[0026] Figure 2 It is the structural schematic diagram of hose guide mechanism in the utility model.

[0027] Figure 3 It is the first partial schematic view of hose guide mechanism in the utility model.

[0028] Figure 4 It is the second partial schematic view of hose guide mechanism in the utility model.

[0029] Figure 5 It is the partial enlarged schematic view of hose guide mechanism in the utility model.

[0030] Figure 6The utility model discloses a structure schematic drawing of horizontal pipe winding mechanism.

[0031] Figure 7 The utility model discloses a structure schematic drawing of horizontal pipe winding mechanism after hollow cross beam is removed.

[0032] Figure 8 The utility model discloses a structure schematic drawing of upper driving disc assembly.

[0033] Figure 9 The utility model discloses a structure schematic drawing of lower winding disc assembly.

[0034] In the above drawing, the component name corresponding to the sign is as follows:

[0035] 1, hose guide mechanism, 3, horizontal pipe winding mechanism, 101, first lower support seat, 102, first lower sleeve, 103, first lower support screw, 104, first rotation operation handle, 105, first lower mounting plate, 106, first vertical plate, 107, first mounting plate, 108, material receiving box, 109, horizontal guide mechanism, 110, intermediate transition roller assembly, 112, rear shock absorbing guide mechanism, 1091, first L-shaped plate, 1092, slide rail, 1093, U-shaped slide, 1094, left extrusion screw, 1095, right extrusion screw, 1101, first rotation bearing seat, 1102, first rotation shaft, 1103, first U-shaped roller, 1121, second L-shaped plate, 1122, second rotation bearing seat, 1123, third rotation bearing seat, 1124, swing crank, 1125, front screw, 1126, first downward spring, 1127, rear screw, 1128, second U-shaped roller support rod, 1129, second U-shaped roller, 1131, first spring hook, 1132, second spring hook, 1133, second downward spring, 301, third lower support seat, 302, sixth rotation bearing seat, 303, extended lower bottom rod, 304, second vertical column, 305, inclined reinforcing column, 306, lower winding disc assembly, 307, upper driving disc assembly, 308, hollow cross beam, 309, servo motor, 310, rear locking screw, 311, rear locking nut, 312, third belt pulley, 313, second belt, 314, seventh rotation bearing seat, 315, fourth belt pulley, 316, eighth rotation bearing seat, 3061, lower center rod, 3062, winding disc support lower rod, 3063, barrel-shaped winding disc, 3064, upper connecting sleeve, 3065, inner side wall support rod, 3071, upper driving rotation shaft, 3072, upper limiting rod, 3073, lower connecting rod, 3074, driving rod. DETAILED DESCRIPTION

[0036] For the purposes of the present application, the technical solutions and advantages thereof are more apparent, the present application will be further described below in conjunction with the drawings and embodiments, the embodiments of the present application include but are not limited to the following examples. Based on the examples in the present application, all other examples obtained by those skilled in the art without creative labor belong to the scope of protection of the present application.

[0037] In the present embodiment, the term "and / or" is merely a description of the associated relationship of the associated object, which means that there can be three kinds of relationships, for example, A and / or B, which can represent the three cases of A alone, A and B together, and B alone.

[0038] The terms "first" and "second" and the like in the description and claims of the present embodiment are used to distinguish different objects, and are not used to describe the specific order of the objects. For example, the first target object and the second target object are used to distinguish different target objects, and are not used to describe the specific order of the target objects.

[0039] In the embodiments of the present application, the words "exemplary" or "for example" are used to mean serving as an example, instance, or illustration. Any embodiment or design presented as "exemplary" or "for example" in the embodiments of the present application should not be construed as being more preferred or advantageous than other embodiments or design solutions. Rather, the use of "exemplary" or "for example" is intended to present concepts in a concrete manner.

[0040] In the description of the embodiments of the present application, unless otherwise specified, the meaning of "a plurality of" is two or more. For example, a plurality of processing units refers to two or more processing units; a plurality of systems refers to two or more systems.

[0041] As Figures 1 to 9 As shown in the figure, the present embodiment provides a hose guiding and winding device for guiding and winding the hose, which comprises a hose guiding mechanism 1, and a horizontal winding mechanism receiving the hose transmitted by the hose guiding mechanism 1 and winding the hose.

[0042] In the present embodiment, the hose guiding mechanism 1 comprises a first lower support seat 101, a first lower sleeve 102 fixed on the first lower support seat 101, a first lower support screw 103 threadedly connected with the lower end of the first lower sleeve 102, a first lower mounting plate 105 arranged on the first lower support screw 103, a first vertical plate 106 arranged on the first lower mounting plate 105, and a transverse guide mechanism 109, an intermediate transition roller assembly 110 and a rear shock-absorbing guide mechanism 112 arranged on the first vertical plate 106 and arranged along the hose winding direction.

[0043] In the embodiment, a first rotating handle 104 is arranged on the first lower supporting screw 103 for adjusting the height of the first vertical plate 106, the lateral guiding mechanism 109, the intermediate transition roller assembly 110 and the rear shock guiding mechanism 112 by rotating the first rotating handle 104. In addition, a first mounting plate 107 is arranged on the first vertical plate 106, and a receiving box 108 is placed on the first mounting plate 107. The receiving box 108 is used to receive the cooling water on the surface of the processed hose after the water bath cooling. The processed hose enters from the upper part of the lateral guiding mechanism 109, passes through the intermediate transition roller assembly 110, and is at the lowest position when passing through the lateral guiding mechanism 109 and the intermediate transition roller assembly 110, so that the cooling water on the surface of the hose can fall into the receiving box 108.

[0044] In the embodiment, the lateral guiding mechanism 109 includes a first L-shaped plate 1091 fixed on the first vertical plate 106 and forming a U shape with the first vertical plate 106, two slide rails 1092 arranged in the first L-shaped plate 1091, a U-shaped slide base 1093 slidably sleeved on the slide rails 1092 and having an opening facing the intermediate transition roller assembly 110, a left extrusion screw 1094 threadedly connected with the first L-shaped plate 1091 and extruded on one side of the U-shaped slide base 1093, and a right extrusion screw 1095 threadedly connected with the first vertical plate 106 and extruded on the other side of the U-shaped slide base 1093. Here, the U-shaped slide base 1093 is adjusted by sliding along the slide rails 1092, and is positioned and supported by the left extrusion screw 1094 and the right extrusion screw 1095. The position of the hose winding feeding is adjusted by adjusting the position of the U-shaped slide base 1093 in the embodiment.

[0045] The intermediate transition roller assembly 110 in the embodiment includes a first rotating bearing seat 1101 fixed on the back of the first vertical plate 106, a first rotating shaft 1102 penetrating the first rotating bearing seat 1101 and the first vertical plate 106, and a first U-shaped roller 1103 arranged on the first rotating shaft 1102.

[0046] In the embodiment, the horizontal pipe winding mechanism generates vibration when winding the hose, and the vibration is transmitted to the hose guide mechanism 1. At the same time, the horizontal pipe winding mechanism pulls the hose when winding the hose, and the hose guide mechanism 1 is dragged. In order to provide damping support, the rear damping guide mechanism 112 includes a second L-shaped plate 1121 fixed on the first vertical plate 106 in the longitudinal direction, a second rotating bearing seat 1122 and a third rotating bearing seat 1123 fixed on the front and rear of the second L-shaped plate 1121 respectively, an oscillating bearing rod penetrating through the second rotating bearing seat 1122, the second L-shaped plate 1121 and the third rotating bearing seat 1123, an oscillating crank 1124 fixed on the oscillating bearing rod, a rear screw rod 1127 and a front screw rod 1125 arranged in the longitudinal direction on the second L-shaped plate 1121, a first downward spring 1126 arranged between the front screw rod 1125 and the rear end of the oscillating crank 1124, a second U-shaped roller support rod 1128 arranged at the front end of the oscillating crank 1124, a second U-shaped roller 1129 arranged on the second U-shaped roller support rod 1128, a second spring hook 1132 arranged at the back of the front end of the oscillating crank 1124, a first spring hook 1131 arranged on the first vertical plate 106, and a second downward spring 1133 arranged between the second spring hook 1132 and the first spring hook 1131. The rear screw rod 1127 is pressed against the rear end of the oscillating crank 1124. A spring mounting hole is arranged at the rear end of the oscillating crank 1124, the lower part of the first downward spring 1126 is arranged in the spring mounting hole, and the upper end is sleeved on the front screw rod 1125. In the embodiment, the first downward spring 1126 and the second downward spring 1133 are used to provide elastic balance support for the oscillating crank 1124, that is, the downward pressure of the hose on the second U-shaped roller support rod 1128, the downward pressure of the second downward spring 1133 and the compression force of the first downward spring 1126 are balanced, so that the hose is elastically supported on the second U-shaped roller support rod 1128. Finally, the rear screw rod 1127 is used to limit the maximum distance of the downward pressure of the front end of the oscillating crank 1124.

[0047] In the embodiment, the horizontal pipe winding mechanism comprises a third lower support base 301, an extended lower bottom bar 303 and a second vertical column 304, an inclined reinforcing column 305 arranged on the extended lower bottom bar 303, a sixth rotating bearing seat 302 arranged on the third lower support base 301, a lower winding disc assembly 306 sleeved on the sixth rotating bearing seat 302, a hollow cross beam 308 fixed at the rear end of the second vertical column 304 by a screw rod, a servo motor 309 fixed on the hollow cross beam 308, a third belt pulley 312 and a fourth belt pulley 315 arranged in the hollow cross beam 308, a second belt 313 arranged on the third belt pulley 312 and the fourth belt pulley 315, a seventh rotating bearing seat 314 and an eighth rotating bearing seat 316 fixed on the front end of the hollow cross beam 308 and coaxial with the fourth belt pulley 315, and an upper driving disc assembly 307 sleeved on the seventh rotating bearing seat 314, the fourth belt pulley 315 and the eighth rotating bearing seat 316 and inserted into the lower winding disc assembly 306. The third belt pulley 312 is connected with the servo motor 309. A plurality of rear locking screw rods 310 are arranged on the inclined reinforcing column 305 and the second vertical column 304, and rear locking nuts 311 are arranged on the rear locking screw rods 310. The hollow cross beam 308 is sleeved on the rear locking screw rods 310 and locked by the rear locking nuts 311. In addition, the lower winding disc assembly 306 and the upper driving disc assembly 307 are connected by insertion at the front end of the hollow cross beam 308, and the seventh rotating bearing seat 314, the eighth rotating bearing seat 316 and the sixth rotating bearing seat 302 provide rotation for the lower winding disc assembly 306 and the upper driving disc assembly 307. After winding the pipe, the rear locking nuts 311 are removed, the hollow cross beam 308, the servo motor 309, the upper driving disc assembly 307, the third belt pulley 312, the fourth belt pulley 315 and the second belt 313 are lifted upward, and the wound hose roll can be taken out from the lower winding disc assembly 306.

[0048] Here, the lower winding disc assembly 306 comprises a lower central rod 3061 sleeved on the sixth rotating bearing seat 302, a plurality of winding disc support lower rods 3062 arranged in an annular array on the lower central rod 3061, barrel-shaped winding discs 3063 arranged on the winding disc support lower rods 3062, an upper connecting sleeve 3064 arranged on the upper part of the lower central rod 3061, and a plurality of inner side wall support rods 3065 arranged between the upper connecting sleeve 3064 and the barrel-shaped winding discs 3063.

[0049] In addition, the upper driving disc assembly 307 comprises an upper driving shaft 3071 sleeved in the seventh rotating bearing seat 314, the fourth belt pulley 315 and the eighth rotating bearing seat 316, a lower connecting rod 3073 arranged at the lower part of the upper driving shaft 3071, a plurality of upper limiting rods 3072 arranged in an annular array at the lower part of the upper driving shaft 3071, and a driving rod 3074 arranged at the lower part of the upper limiting rod 3072. The lower connecting rod 3073 is inserted into the upper connecting sleeve 3064, the upper limiting rod 3072 is attached to the upper part of the barrel-shaped winding disc 3063, and the driving rod 3074 is in contact with the inner side wall supporting rod 3065. Here, the servo motor 309 is used to drive the upper driving shaft 3071 and the driving rod 3074 to rotate, the inner side wall supporting rod 3065 is driven by the driving rod 3074, and the barrel-shaped winding disc 3063 is driven to rotate, so that the pipe winding operation can be performed.

[0050] The above embodiments are only preferred embodiments of the present application, and are not intended to limit the protection scope of the present application. Any changes made by using the design principles of the present application and on the basis of non-creative labor shall be within the protection scope of the present application.

Claims

1. A hose guiding and winding device for guiding and winding a hose, characterized in that, It includes a hose guiding mechanism (1) and a horizontal hose winding mechanism (3) that receives the hose transmitted by the hose guiding mechanism (1) and winds it up; The hose guiding mechanism (1) includes a first lower support base (101), a first lower sleeve (102) fixed on the first lower support base (101), a first lower support screw (103) whose lower end is threadedly connected to the first lower sleeve (102), a first lower mounting plate (105) set on the first lower support screw (103), a first vertical plate (106) set on the first lower mounting plate (105), and a transverse guiding mechanism (109), an intermediate transition roller assembly (110), and a rear shock-absorbing guiding mechanism (112) set on the first vertical plate (106) and arranged along the hose winding direction. The horizontal winding mechanism (3) includes an integrally formed third lower support (301), an extended lower bottom rod (303), and a second column (304), a sixth rotating bearing seat (302) mounted on the third lower support (301), a lower winding reel assembly (306) sleeved in the sixth rotating bearing seat (302), a hollow crossbeam (308) fixed to the second column (304) at the rear end by a screw, a servo motor (309) fixed on the hollow crossbeam (308), and a third pulley (312) and a fourth pulley (304) mounted in the hollow crossbeam (308). 15) A second belt (313) is provided on the third pulley (312) and the fourth pulley (315), a seventh rotating bearing seat (314) and an eighth rotating bearing seat (316) are fixed at the front end of the hollow crossbeam (308) and are coaxial with the fourth pulley (315), and an upper drive disk assembly (307) is sleeved on the seventh rotating bearing seat (314), the fourth pulley (315) and the eighth rotating bearing seat (316) and inserted into the lower take-up reel assembly (306); the third pulley (312) is connected to the servo motor (309).

2. The hose guiding reel device according to claim 1, characterized in that, A first rotating operating handle (104) is provided on the first lower support screw (103); a first mounting plate (107) is provided on the first upright plate (106); and a receiving box (108) is placed on the first mounting plate (107).

3. The hose guiding reel device according to claim 1, characterized in that, The transverse guide mechanism (109) includes a first L-shaped plate (1091) fixed on the first upright plate (106) and forming a U-shape together with the first upright plate (106), two slide rails (1092) disposed in the first L-shaped plate (1091), a U-shaped slide (1093) slidably sleeved on the slide rails (1092) and with its opening facing the intermediate transition roller assembly (110), a left extrusion screw (1094) threadedly connected to the first L-shaped plate (1091) and pressed against one side of the U-shaped slide (1093), and a right extrusion screw (1095) threadedly connected to the first upright plate (106) and pressed against the other side of the U-shaped slide (1093).

4. A hose guiding reel device according to claim 1 or 3, characterized in that, The intermediate transition roller assembly (110) includes a first rotating bearing seat (1101) fixed to the back of the first vertical plate (106), a first rotating shaft (1102) passing through the first rotating bearing seat (1101) and the first vertical plate (106), and a first U-shaped roller (1103) disposed on the first rotating shaft (1102).

5. A hose guiding reel device according to claim 1 or 3, characterized in that, The rear shock absorption guide mechanism (112) includes a second L-shaped plate (1121) fixed longitudinally on a first upright plate (106), a second rotating bearing seat (1122) and a third rotating bearing seat (1123) fixed at the front and rear of the second L-shaped plate (1121) respectively, a swing bearing rod passing through the second rotating bearing seat (1122), the second L-shaped plate (1121) and the third rotating bearing seat (1123), a swing crank arm (1124) fixed at the lower part on the swing bearing rod, a rear screw (1127) and a front screw (1125) arranged longitudinally on the second L-shaped plate (1121), and a rear screw (1127) and a front screw (1125) arranged on the front screw (1125) and the front screw (1125) and the front screw (1127) and the front screw (1125) are respectively fixed to the second L-shaped plate (106 ...7) and the front screw (1127) and the front screw (1127) and the front screw (1127) and the front screw (11 The first compression spring (1126) between the swing crank arms (1124), the second U-shaped roller support rod (1128) at the front end of the swing crank arms (1124), the second U-shaped roller (1129) on the second U-shaped roller support rod (1128), the second spring hook (1132) on the back of the front end of the swing crank arms (1124), the first spring hook (1131) on the first upright plate (106), and the second pull-down spring (1133) between the second spring hook (1132) and the first spring hook (1131); the rear screw (1127) is pressed against the rear end of the swing crank arms (1124).

6. A hose guiding reel device according to claim 1, characterized in that, The extended lower base rod (303) is provided with a diagonal reinforcing column (305); the diagonal reinforcing column (305) and the second column (304) are each provided with a number of rear locking screws (310); the rear locking screws (310) are provided with rear locking nuts (311); the hollow crossbeam (308) is sleeved on the rear locking screws (310) and locked by the rear locking nuts (311).

7. A hose guiding reel device according to claim 1, characterized in that, The lower take-up reel assembly (306) includes a lower center rod (3061) fitted inside the sixth rotating bearing seat (302), several reel support rods (3062) arranged in a ring on the lower center rod (3061), a barrel-shaped take-up reel (3063) arranged on the reel support rods (3062), an upper connecting sleeve (3064) arranged on the upper part of the lower center rod (3061), and several inner sidewall support rods (3065) arranged between the upper connecting sleeve (3064) and the barrel-shaped take-up reel (3063).

8. A hose guiding reel device according to claim 7, characterized in that, The upper drive disk assembly (307) includes an upper drive shaft (3071) fitted inside a seventh rotating bearing seat (314), a fourth pulley (315), and an eighth rotating bearing seat (316); a lower connecting rod (3073) disposed at the lower part of the upper drive shaft (3071); several upper limit rods (3072) arranged in a ring array at the lower part of the upper drive shaft (3071); and a drive rod (3074) disposed at the lower part of the upper limit rods (3072). The lower connecting rod (3073) is inserted into the upper connecting sleeve (3064), the upper limit rod (3072) is attached to the upper part of the barrel-shaped take-up reel (3063), and the drive rod (3074) is in contact with the inner side wall support rod (3065); the servo motor (309) drives the upper drive shaft (3071) and the drive rod (3074) to rotate, and uses the drive rod (3074) to push the inner side wall support rod (3065) and drive the barrel-shaped take-up reel (3063) to rotate.