Reelpipe guiding device
By designing a hose reel guide device and adopting a lateral guide mechanism and a rear shock-absorbing guide mechanism, the problems of poor flexibility and complex operation of medical hose reel equipment have been solved, achieving efficient and reliable hose reel reel effect.
Patent Information
- Application Number
- CN202520643165.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-08
- Publication Date
- 2026-02-13
- Estimated Expiration
- 2035-04-08
AI Technical Summary
Existing medical tubing winding equipment suffers from high equipment costs, poor flexibility, and is prone to problems such as inconsistent tension, creases, and twisting during the winding process, which affect the subsequent winding effect.
A hose guiding device is designed, including a transverse guiding mechanism, an intermediate transition roller assembly, and a rear shock-absorbing guiding mechanism. The hose position is adjusted by a slide rail and a screw, and vibration is reduced by an elastic support structure. Combined with a height adjustment mechanism and a winding support mechanism, reliable guidance and winding of the hose are achieved.
It achieves reliable guidance and winding of hoses, has a simple structure, is easy to operate, can adapt to winding requirements of different diameters, reduces equipment costs and operational complexity, and improves winding efficiency and quality.
Smart Images

Figure CN223906283U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a hose winding technology field especially a winding pipe guiding 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 comprises: rubber mixing, extrusion molding, high-temperature vulcanization, cooling and winding, etc. Among them, the molded (high-temperature state) hose enters the winding procedure after passing through the cooling pool. However, there is no medical hose winding equipment in the prior art. At present, the winding mode of the traditional medical hose mainly comprises: manual winding and winding pipe mechanism. Among them, the manual winding is manually wound on the winding shaft or reel by artificial, which is low in winding efficiency and prone to problems such as inconsistent tightness, creases and distortion. In addition, the winding pipe mechanism mainly comprises 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. In addition, after the hose is prepared and molded, it is cooled in water bath and wound. During winding, the hose has problems such as dragging and swinging, which is not conducive to the later winding.
[0003] Therefore, it is urgent to provide a winding pipe guiding device which is simple in structure and reliable in action. CONTENT OF THE UTILITY MODEL
[0004] In view of the above problems, the utility model aims to provide a winding pipe guiding device, and the technical scheme adopted by the utility model is as follows:
[0005] A winding pipe guiding device guides the hose, which comprises a first lower support base, a height adjusting mechanism arranged on the first lower support base, a first lower mounting plate arranged on the height adjusting mechanism, a first vertical plate arranged on the first lower mounting plate, and a transverse guiding mechanism, an intermediate transition roller assembly and a rear shock-absorbing guiding mechanism arranged on the first vertical plate and arranged along the hose winding direction.
[0006] The transverse guiding mechanism comprises a first L-shaped plate fixed on the first vertical plate and jointly forming a U shape with the first vertical plate, two slide rails arranged in the first L-shaped plate, a U-shaped slide base slidably sleeved on the slide rails and having an opening facing the intermediate transition roller assembly, a left extrusion screw rod in threaded connection with the first L-shaped plate and extruded on one side of the U-shaped slide base, and a right extrusion screw rod in threaded connection with the first vertical plate and extruded on the other side of the U-shaped slide base; the U-shaped slide base is adjusted by sliding along the slide rails, and is positioned and supported by the left extrusion screw rod and the right extrusion screw rod.
[0007] The rear shock-absorbing guide mechanism comprises a second L-shaped plate fixed on the first vertical plate in the longitudinal direction, a second rotating bearing seat and a third rotating bearing seat fixed on the front and rear of the second L-shaped plate respectively, a swing bearing rod penetrating through the second rotating bearing seat, the second L-shaped plate and the third rotating bearing seat, a swing lever fixed on the lower part of the swing bearing rod, a rear screw rod and a front screw rod arranged on the second L-shaped plate in the longitudinal direction, a first downward spring arranged between the front screw rod and the rear end of the swing lever, a second U-shaped roller supporting rod arranged on the front end of the swing lever, a second U-shaped roller arranged on the second U-shaped roller supporting rod, a second spring hook arranged on the back of the front end of the swing lever, 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 rod is pressed on the rear end of the swing lever; the rear end of the swing lever is provided with a spring mounting hole; the lower part of the first downward spring is arranged in the spring mounting hole, and the upper end is sleeved on the front screw rod.
[0008] Further, the intermediate transition roller assembly comprises a first rotating bearing seat fixed on the back of the first vertical plate, a first rotating shaft penetrating through the first rotating bearing seat and the first vertical plate, and a first U-shaped roller arranged on the first rotating shaft.
[0009] Further, the height adjusting mechanism comprises a first lower sleeve fixed on the first lower supporting seat, a first lower supporting screw rod threadedly connected with the first lower sleeve, and a first rotating operation handle arranged on the first lower supporting screw rod; the first lower mounting plate is arranged on the first lower supporting screw rod.
[0010] Further, a first mounting plate is arranged on the first vertical plate; and a material receiving box is arranged on the first mounting plate.
[0011] Further, the first lower supporting seat is in the shape of cross.
[0012] Compared with the prior art, the utility model has the following beneficial effects:
[0013] (1) The utility model discloses a horizontal guide mechanism, an intermediate transition roller assembly and a rear shock-absorbing guide mechanism are arranged, so that the obtained hose can be conveniently led from the upper part of the horizontal guide mechanism, wound on the intermediate transition roller assembly, and finally led into the vertical pipe winding mechanism through the rear shock-absorbing guide mechanism, so that reliable hose leading and winding can be realized, and the structure is simple.
[0014] (2) The horizontal guide mechanism can be adjusted horizontally, and is supported by the slide rail, so that the left extrusion screw rod and the right extrusion screw rod can be used for extrusion positioning when being adjusted to the required position, the adjustment is convenient and reliable, and the support connection is reliable.
[0015] (3) The utility model discloses a rear shock absorbing guide mechanism is set up, utilize the rear end of first lower pressure spring swing crooked arm of front screw rod, and first spring hook, second spring hook and second lower pull spring pull swing crooked arm's front end downward, make swing crooked arm with second rotary bearing seat, third rotary bearing seat and swing bearing rod as the rotary support under, have elastic swing support (i. e. first lower pressure spring swing crooked arm's rear end makes its front end to rise, and second lower pull spring pull swing crooked arm's front end downward, make swing crooked arm be in an elastic dynamic balance state). Finally, the utility model discloses a rear screw rod is set up to limit the limit position of swing crooked arm's front end lower pressure.
[0016] (4) The utility model discloses a first lower sleeve, first lower support screw rod and first rotary operating handle are set up to facilitate the height adjustment of first vertical board, horizontal guide mechanism, intermediate transition roller assembly and rear shock absorbing guide mechanism.
[0017] (5) The utility model discloses a strip slot and first winding support mechanism are set up to facilitate the diameter adjustment of hose winding, can also facilitate the removal after winding, to take down the hose after winding, and its operation is simple and reliable.
[0018] Summarized above, the utility model has simple structure, action reliable and so on Advantages, in the technical field of hose winding has very high practical value and popularization value. DRAWINGS
[0019] 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 simple introduction, should understand, the following drawing only shows some embodiment of the utility model, therefore should not be regarded as the limitation to the scope of protection, for the person skilled in the art, under the premise of not paying the creative labor, can also obtain other related drawings according to these drawings.
[0020] Figure 1 It is the structural schematic diagram of the utility model.
[0021] Figure 2 It is the structural schematic diagram of hose guide mechanism in the utility model.
[0022] Figure 3 It is the first partial schematic view of hose guide mechanism in the utility model.
[0023] Figure 4 It is the second partial schematic view of hose guide mechanism in the utility model.
[0024] Figure 5 It is the partial enlarged schematic view of hose guide mechanism in the utility model.
[0025] Figure 6It is the first angle structure schematic view of the vertical pipe winding mechanism in the utility model.
[0026] Figure 7 It is the second angle structure schematic view of the vertical pipe winding mechanism in the utility model.
[0027] Figure 8 It is the local enlarged schematic view of the vertical pipe winding mechanism in the utility model.
[0028] In the above-mentioned drawing, the component name corresponding to the reference sign is as follows:
[0029] 1, hose guide mechanism, 2, vertical pipe winding mechanism, 101, first lower support seat, 102, first lower sleeve, 103, first lower support screw, 104, first rotating operation handle, 105, first lower mounting plate, 106, first vertical plate, 107, first mounting plate, 108, material receiving box, 109, transverse 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 rotating bearing seat, 1102, first rotating shaft, 1103, first U-shaped roller, 1121, second L-shaped plate, 1122, second rotating bearing seat, 1123, third rotating 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, 201, second lower support seat, 202, second rectangular column, 203, speed reducer motor assembly, 204, first belt pulley, 205, first belt, 206, second belt pulley, 207, second rotating shaft, 208, fourth rotating bearing seat, 209, fifth rotating bearing seat, 210, first winding rotary disc, 211, strip-shaped groove, 212, first winding support mechanism, 2121, first support rod, 2122, limiting column, 2123, first screw segment, 2124, second screw segment, 2125, first gasket, 2126, first connecting nut, 2127, pipe winding limiting disc, 2128, second gasket, 2129, second connecting nut. DETAILED DESCRIPTION
[0030] In order to make the purpose, technical scheme and advantages of the present application more clear, the utility model will be further described below in combination with the drawings and examples, and the implementation mode of the utility model includes but is not limited to the following examples. Based on the examples in the present application, all other examples obtained by the ordinary skilled person in the art without making creative efforts belong to the protection scope of the present application.
[0031] In the embodiments, the term "and / or" is merely used to describe associated objects, and can represent three cases, for example, A and / or B can mean that A exists alone, A and B exist together, and B exists alone.
[0032] The terms "first" and "second" and the like in the description and claims of the embodiments are used to distinguish different objects, and are not used to describe a 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 a specific order of the target objects.
[0033] In the embodiments, the words "exemplary" or "for example" are used to mean serving as an example, instance, or illustration. Any embodiment or design described as "exemplary" or "for example" in the embodiments should not be construed as being preferred or advantageous over other embodiments or designs. Rather, the embodied words are used to present concepts in a particular, concrete manner.
[0034] In the description of the embodiments, unless otherwise specified, the meaning of "a plurality of" is two or more. For example, a plurality of processing units means two or more processing units; a plurality of systems means two or more systems.
[0035] As shown in Figures 1 to 8 The embodiments provide a hose winding device, which guides and winds the hose. The winding guide device includes a hose guide mechanism 1, and a vertical winding mechanism 2, which receives the hose transmitted by the hose guide mechanism 1 and winds the hose.
[0036] In the embodiments, the hose guide 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 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 horizontal 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 winding direction of the hose.
[0037] 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.
[0038] 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 U-shaped slide base 1093 is adjusted to adjust the position of the hose winding feeding.
[0039] The intermediate transition roller assembly 110 of 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.
[0040] In the embodiment, the vertical pipe winding mechanism 2 generates vibration when winding the hose, and the vibration is transmitted to the hose guide mechanism 1. At the same time, the vertical pipe winding mechanism 2 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 lower part of 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 on 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.
[0041] In the embodiment, in order to roll the hose reel with different diameters, the vertical hose rolling mechanism 2 comprises a second lower support base 201, a second rectangular column 202 fixed on the second lower support base 201 and a speed reducer motor assembly 203, a fourth rotating bearing seat 208 and a fifth rotating bearing seat 209 arranged on the second rectangular column 202, a first belt pulley 204 arranged on the speed reducer motor assembly 203, a second rotating shaft 207 arranged through the fourth rotating bearing seat 208, the second rectangular column 202 and the fifth rotating bearing seat 209, a second belt pulley 206 arranged at the rear end of the second rotating shaft 207, a first belt 205 sleeved between the first belt pulley 204 and the second belt pulley 206, a first rolling turntable 210 arranged at the front end of the second rotating shaft 207, a plurality of strip-shaped grooves 211 arranged on the first rolling turntable 210, and a first rolling support mechanism 212 arranged in the strip-shaped grooves 211 one by one. Here, the position of the first rolling support mechanism 212 in the strip-shaped grooves 211 is adjusted to roll the hose reel with different diameters, that is, if the hose reel with a larger diameter is needed, the first rolling support mechanism 212 is adjusted to be close to the edge of the first rolling turntable 210, and if the hose reel with a smaller diameter is needed, the first rolling support mechanism 212 is adjusted to be close to the center of the first rolling turntable 210. In the embodiment, the speed reducer motor assembly 203 is used to drive the first rolling turntable 210 to rotate, and the first rolling support mechanism 212 is used to support the hose rolling.
[0042] In the embodiment, the first rolling support mechanism 212 comprises a second screw segment 2124, a first support rod 2121 and a first screw segment 2123, a limiting column 2122 arranged at the rear end of the first support rod 2121, a first gasket 2125 and a first connecting nut 2126 sleeved on the first screw segment 2123, and a hose rolling limiting disc 2127, a second gasket 2128 and a second connecting nut 2129 sleeved on the second screw segment 2124. The second screw segment 2124 is sleeved on the strip-shaped groove 211, and the limiting column 2122 is pressed on the first rolling turntable 210. Here, the first support rod 2121 is fixed in the strip-shaped groove 211 by using the limiting column 2122, the first screw segment 2123, the first gasket 2125 and the first connecting nut 2126. In the embodiment, the second gasket 2128 is used to support the outer side of the hose reel to prevent the hose from sliding off the first support rod 2121.
[0043] The above embodiment is only a preferred embodiment of the utility model, and does not limit the protection scope of the utility model. Any change made by using the design principle of the utility model and based on the change made by non-creative labor should be within the protection scope of the utility model.
Claims
1. A hose guiding device for guiding a hose, characterized by The first lower support base (101), the height adjustment mechanism arranged on the first lower support base (101), the first lower mounting plate (105) arranged on the height adjustment mechanism, the first vertical plate (106) arranged on the first lower mounting plate (105), and the transverse guide mechanism (109), the intermediate transition roller assembly (110) and the rear shock guide mechanism (112) arranged on the first vertical plate (106) and arranged along the hose winding direction; The transverse guide mechanism (109) comprises 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 seat (1093) slidably sleeved on the slide rails (1092) and having an opening facing the intermediate transition roller assembly (110), a left extrusion screw rod (1094) threadedly connected with the first L-shaped plate (1091) and extruded on one side of the U-shaped slide seat (1093), and a right extrusion screw rod (1095) threadedly connected with the first vertical plate (106) and extruded on the other side of the U-shaped slide seat (1093); the U-shaped slide seat (1093) is adjusted by sliding along the slide rails (1092) and is positioned and supported by the left extrusion screw rod (1094) and the right extrusion screw rod (1095); The rear shock guide mechanism (112) comprises a second L-shaped plate (1121) fixed on the first vertical plate (106) along 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, a swing bearing rod penetrating through the second rotating bearing seat (1122), the second L-shaped plate (1121) and the third rotating bearing seat (1123), a swing crank (1124) fixed on the lower part of the swing bearing rod, a rear screw rod (1127) and a front screw rod (1125) arranged on the second L-shaped plate (1121) along the longitudinal direction, a first pressing spring (1126) arranged between the front screw rod (1125) and the rear end of the swing crank (1124), a second U-shaped roller support rod (1128) arranged at the front end of the swing 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 swing 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 extruded on the rear end of the swing crank (1124); the rear end of the swing crank (1124) is provided with a spring mounting hole; the lower part of the first pressing spring (1126) is arranged in the spring mounting hole, and the upper end is sleeved on the front screw rod (1125).
2. A reeling guide according to claim 1, characterized in that The intermediate transition roller assembly (110) comprises a first rotating bearing seat (1101) fixed on the back of the first vertical plate (106), a first rotating shaft (1102) penetrating through 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).
3. A reeling guide according to claim 1, wherein The height adjusting mechanism comprises a first lower sleeve (102) fixed on the first lower support base (101), a first lower support screw (103) in threaded connection with the first lower sleeve (102), and a first rotating operation handle (104) arranged on the first lower support screw (103); and the first lower mounting plate (105) is arranged on the first lower support screw (103).
4. A reeling guide according to claim 1 or 2 or 3, characterized in that A first mounting plate (107) is arranged on the first vertical plate (106); and a material receiving box (108) is placed on the first mounting plate (107).
5. A hose guide according to claim 1 or 2 or 3, wherein, The first lower support base (101) is in a cross shape.