A harness organizing device
Patent Information
- Application Number
- CN202521663572.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-06
- Publication Date
- 2026-09-04
- Estimated Expiration
- 2035-08-06
AI Technical Summary
[0005]因此,本实用新型要解决的技术问题在于克服现有技术中的线路易互相缠绕,每次使用前需额外耗时整理,影响检查效率的技术缺陷,从而提供一种能够将线路整理收纳,方便下次使用时能够拿出即用的线束整理装置
本实用新型的线束整理装置,包括主体箱、卷盘、活动挡块和卷盘摇把;其中,主体箱具有至少一个安装腔,安装腔的两端均设有开口,且两个开口的两侧壁上均相对开设有穿线槽;在安装腔的一侧设有数量与安装腔相对应数量的放置腔,放置腔具有侧开口;卷盘至少为一个,可转动地安装在安装腔内,适于卷绕收纳线路;卷盘的两端分别设有沿径向贯穿两侧且一端开口的卷线槽;在卷盘处于某一转动位置时,卷线槽的两端分别与两个穿线槽的位置正对;活动挡块数量与穿线槽的数量相对应,可转动地安装在穿线槽的外侧壁上;活动挡块能够向内侧转动以允许线路进出穿线槽,也能够向外侧转动挡在穿线槽的开口位置,从而阻止线路进出穿线槽脱出;卷盘摇把安装在卷盘上,位于安装腔外侧,用于驱动卷盘在安装腔内转动,以卷绕收纳或释放线路。
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Figure CN224716175U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of medical auxiliary products technology, specifically to a wire harness management device. Background Technology
[0002] An electrocardiogram (ECG) monitor is a medical device used to monitor a patient's electrical activity in real time. It is widely used in hospitals, emergency centers, and home care settings. ECG monitors collect the patient's ECG signals through electrode pads, amplify and process them, and display them on a screen to help medical staff understand key indicators such as heart rate, heart rhythm, and ST segment changes. ECG monitors typically have an alarm function; when abnormalities are detected (such as arrhythmias or a heart rate exceeding a set range), an alarm is triggered, allowing medical staff to quickly take intervention measures.
[0003] A standard ECG monitor is equipped with five-lead ECG monitoring (including electrode pads), pulse oximetry monitoring (including SpO2 probe), and non-invasive blood pressure monitoring (including cuff). When connecting the ECG monitor to a patient, medical staff should attach the five electrode pads according to the standard lead positions, clip the SpO2 probe to the patient's index finger, middle finger, or earlobe (areas with good peripheral circulation), and smoothly wrap the blood pressure cuff around the patient's upper arm (preferably the side without intravenous fluids), keeping the lower edge of the cuff 2-3 cm from the elbow crease, with a tightness that allows one finger to fit comfortably. The ECG monitor can simultaneously collect the patient's cardiac activity, oxygen saturation, and non-invasive blood pressure data, and display the waveforms and values in real time on the main unit, providing dynamic and continuous vital sign monitoring for clinical use. However, in actual use, when storing the equipment, the ECG lead wires, SpO2 probe connection wires, and non-invasive blood pressure cuff inflation tubing are prone to getting tangled and knotted, which leads to the following problems: medical staff need to spend extra time tidying up the lines before each use, reducing examination efficiency, which is particularly prominent in scenarios with high time requirements such as emergency rooms; secondly, repeated tidying may accelerate mechanical wear of the interfaces and aging of the wires, affecting the stability of signal transmission.
[0004] Therefore, how to design a wire harness organization device that can organize and store wires so that they can be taken out and used immediately next time is a technical problem that has not yet been solved in the existing technology. Utility Model Content
[0005] Therefore, the technical problem to be solved by this utility model is to overcome the technical defects of the prior art, which is that the wires are easy to get tangled together and require extra time to sort them before each use, thus affecting the inspection efficiency. In this way, a wire harness sorting device can be provided that can sort and store the wires and make them easy to take out and use next time.
[0006] Therefore, this utility model provides a wire harness organizing device, comprising: The main body box has at least one mounting cavity, both ends of which are provided with openings, and the two side walls of the two openings are provided with wire-passing grooves; a number of placement cavities corresponding to the number of mounting cavities are provided on one side of the mounting cavity, and the placement cavities have side openings; At least one reel is rotatably mounted in the mounting cavity and is suitable for winding and storing the cable; each end of the reel is provided with a winding groove that runs radially through both sides and is open at one end; when the reel is in a certain rotation position, the two ends of the winding groove are respectively aligned with the positions of the two threading grooves. The number of movable stops corresponds to the number of the wire-passing slots, and they are rotatably mounted on the outer wall of the wire-passing slots. The movable stops can rotate inward to allow the wire to enter and exit the wire-passing slot, and can also rotate outward to block the opening of the wire-passing slot, thereby preventing the wire from entering or exiting the wire-passing slot and coming out. A reel crank, mounted on the reel and located outside the mounting cavity, is used to drive the reel to rotate within the mounting cavity to wind up, store, or release the cable.
[0007] As a preferred embodiment, the reel includes: The first reel has a first mounting shaft fixedly disposed at the middle of one end away from the opening of the mounting cavity, and the first mounting shaft has at least two threaded blind holes. A rotating bearing, with its inner ring fixedly sleeved and mounted on the first mounting shaft; The second reel has a second mounting shaft fixedly installed at the middle of one end facing the first reel, and the second mounting shaft is fixedly inserted into the inside of the rotating bearing. A connecting through hole is formed on the second reel and extends through the second mounting shaft; A connecting bolt passes through the connecting through hole and is screwed into the threaded blind hole, thereby fixing the first reel and the second reel together.
[0008] As a preferred embodiment, a bearing mounting seat is fixedly disposed inside the mounting cavity, and the rotating bearing is installed inside the bearing mounting seat, thereby rotatably mounting the reel inside the mounting cavity.
[0009] As a preferred embodiment, the first reel or the second reel comprises: The outer circumference of the winding drum is suitable for winding and storing the circuit. Two limiting retaining rings are formed at both ends of the winding cylinder, with an outer diameter larger than that of the winding cylinder, forming a receiving groove with the winding cylinder to accommodate the circuit. The winding drum and the limiting retaining ring at the end away from the rotating bearing are penetrated by the winding groove.
[0010] As a preferred embodiment, the reel handle is fixedly mounted on the first reel via a mounting structure and is located outside the mounting cavity; The mounting structure includes: The mounting shaft is fixedly mounted on the first reel, and a square plug-in block is fixedly mounted on the free end. The outward end of the square plug-in block has an internally threaded blind hole. A square insertion slot is provided on the reel handle, which can be matched and inserted with the square insertion block; An installation through hole is formed on the reel handle and extends through the square insertion slot; After the square insertion slot is matched and inserted with the square insertion block, the mounting bolt is passed through the mounting through hole and screwed into the internal thread blind hole, thereby fixing the reel handle on the first reel.
[0011] As a preferred embodiment, the reel handle is equipped with a grip, and the outer wall of the grip is provided with anti-slip texture.
[0012] As a preferred embodiment, several hooks are fixedly installed near the top of the placement cavity, and a placement surface is provided at the bottom.
[0013] As a preferred embodiment, one of the pair of threading grooves is disposed through the bottom wall of the placement cavity and forms a side wall opening on the side wall of the placement cavity, and the movable stop is installed in the threading groove near the side wall opening; When the movable stop rotates inward, the wire groove and the side wall opening are unobstructed, allowing the wire to enter and exit the wire groove. When the movable stop rotates outward, it blocks the inside of the side wall with the side wall opening. The connection between the wire groove and the side wall opening is blocked by the movable stop, and the wire cannot enter or exit the wire groove.
[0014] As a preferred embodiment, a protective door is also included, which is rotatably mounted on the side of the main body box where the placement cavity is located via a rotating mounting structure, and covers the placement cavity and the side wall opening. A door handle is fixedly provided on the outer side wall of the protective door. The rotating mounting structure includes: Rotary mounting convex strips are fixedly installed on the top of the main body box on one side of the placement cavity, and threaded holes are provided at both ends; Two rotating mounting pieces are formed at the top ends of the protective door, and rotating mounting holes are provided opposite each other. Rotate the mounting bolts, pass them through the rotating mounting hole and screw them into the threaded hole, thereby mounting the protective door rotatably on the main body box; Also includes: There are two limiting posts, which are fixedly installed on the outer wall of the placement cavity respectively; There are two limiting openings, which are respectively opened on the two side walls of the protective door; when the protective door is rotated downward to cover the placement cavity and the side wall openings, the limiting openings are matched and inserted with the limiting posts, thereby limiting the protective door.
[0015] As a preferred embodiment, it also includes two protective side panels, which are respectively installed on both sides of the main body box located at the opening of the mounting cavity; The protective side panel includes a top section plate installed at the top of one side of the main body box, a middle section plate installed in the middle of one side of the main body box, and a bottom section plate installed at the bottom of one side of the main body box. There is space between the top section plate and the middle section plate, and between the middle section plate and the bottom section plate, which allows the wire to pass through and is opposite to the cable tray.
[0016] The technical solution provided by this utility model has the following advantages: This utility model discloses a wire harness organizing device, comprising a main body box, a reel, movable blocks, and a reel crank. The main body box has at least one mounting cavity, with openings at both ends and wire-passing grooves on the side walls of both openings. A number of placement cavities, corresponding to the number of mounting cavities, are provided on one side of the mounting cavity, each placement cavity having a side opening. At least one reel is rotatably mounted within the mounting cavity, suitable for winding and storing wires. Both ends of the reel have radially penetrating wire-passing grooves with one open end. When the reel is in a certain rotational position, the two ends of the wire-passing grooves are directly opposite the positions of the two wire-passing grooves. The number of movable blocks corresponds to the number of wire-passing grooves, and they are rotatably mounted on the outer side walls of the wire-passing grooves. The movable blocks can rotate inwards to allow wires to enter and exit the wire-passing grooves, and can also rotate outwards to block the opening of the wire-passing grooves, thereby preventing wires from entering or exiting the grooves. The reel crank is mounted on the reel, located outside the mounting cavity, and is used to drive the reel to rotate within the mounting cavity to wind, store, or release wires.
[0017] During the process of tidying up the wiring after the ECG monitor is used, first straighten all the wiring along its direction and divide it into two bundles: the ECG lead wires are in one bundle, and the SpO2 probe connection wire and the non-invasive blood pressure cuff inflation tubing are combined into another bundle. Then, place the ECG lead wire at one end of the reel, and the SpO2 probe connection wire and the non-invasive blood pressure cuff inflation tubing at the other end of the reel, aligning the middle section of the wire with the winding groove. As the wire enters the winding groove, the movable stops on both sides will rotate inward, allowing the wire to enter the groove. After the wire is fully inserted, the movable stops will automatically return to the outside of the wire under gravity, limiting the wire and preventing it from coming out. After the wire is placed, use the reel handle to drive the reel to rotate, so that each wire is evenly wound on the reel along the rotation path. After winding, place the electrode pads, SpO2 probe, and non-invasive blood pressure cuff in the placement cavity. When using it again, rotate the reel handle in the opposite direction to release the wire. Due to the wire bundle memory effect formed by proper storage, the released wire will still remain straight and orderly. Then, rotate the movable stops inward to release the limitation and remove the wire. The removed wire can be used directly without combing.
[0018] The wire harness organizing device of this utility model can neatly store the wires, avoid frequent combing of the wires which will damage their accuracy, and can be used directly without combing the wires next time. Attached Figure Description
[0019] To more clearly illustrate the technical solutions in the prior art or specific embodiments of this utility model, the accompanying drawings used in the description of the prior art or specific embodiments are briefly introduced below.
[0020] Figure 1 This is a schematic diagram of the overall structure of the wire harness organizing device of this utility model.
[0021] Figure 2 yes Figure 1 A schematic diagram of the explosion structure.
[0022] Figure 3 yes Figure 2 Enlarged structural diagram of part A.
[0023] Figure 4 yes Figure 2 A schematic diagram of the exploded structure in section B.
[0024] Figure 5 yes Figure 4 Another stereoscopic view.
[0025] Figure 6 yes Figure 5 A magnified schematic diagram of the structure of section C.
[0026] Figure 7 yes Figure 1 A schematic diagram of the explosion structure.
[0027] Reference numerals: 1. Main body box; 11. Mounting cavity; 12. Wire groove; 13. Placement cavity; 14. Bearing mounting seat; 15. Hook; 16. Placement plane; 18. Bottom wall; 19. Side wall opening; 2. Reel; 21. Wire groove; 22. First reel; 23. First mounting shaft; 24. Threaded blind hole; 25. Rotary bearing; 26. Second reel; 27. Second mounting shaft; 28. Connecting through hole; 29. Connecting bolt; 3. Movable stop; 4. Reel crank; 41. Installation 42. Shaft; 43. Square plug-in block; 44. Internal thread blind hole; 45. Square plug-in slot; 46. Mounting through hole; 47. Mounting bolt; 5. Grip part; 6. Winding drum; 51. Limiting retaining ring; 6. Protective door; 61. Door handle; 62. Rotary mounting convex strip; 63. Threaded hole; 64. Rotary mounting plate; 65. Rotary mounting hole; 66. Rotary mounting bolt; 67. Limiting post; 68. Limiting opening; 7. Protective side plate; 71. Top section plate; 72. Middle section plate; 73. Bottom section plate. Detailed Implementation
[0028] To enable those skilled in the art to better understand this solution, the technical solutions in the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments in this application, all other embodiments obtained by those skilled in the art without creative effort should fall within the scope of protection of this application.
[0029] It should be noted that the terms "first," "second," etc., in the claims and specification of this application are used to distinguish similar objects and are not used to describe a specific order or sequence. Furthermore, the terms "comprising" and "having," and any variations thereof, are intended to cover a non-exclusive inclusion, such as a process, method, system, product, or device that includes a series of steps or units, not limited to those steps or units explicitly listed, but may also include other steps or units not explicitly listed or inherent to these processes, methods, products, or devices.
[0030] In this application, the terms "upper," "lower," "left," "right," "front," "rear," "top," "bottom," "inner," "outer," "middle," "vertical," "horizontal," "lateral," and "longitudinal" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. These terms are primarily for better description of this application and its embodiments, and are not intended to limit the indicated device, element, or component to having a specific orientation, or to be constructed and operated in a specific orientation. Furthermore, some of the above terms may be used to indicate other meanings besides orientation or positional relationship; for example, the term "upper" may also be used in some cases to indicate a certain dependency or connection relationship. Those skilled in the art can understand the specific meaning of these terms in this application according to the specific circumstances. In addition, the term "multiple" should mean two or more. It should be noted that, unless otherwise specified, the embodiments and features in the embodiments of this application can be combined with each other.
[0031] The present application will now be described in detail with reference to the accompanying drawings and embodiments. Example
[0032] This embodiment provides a wire harness organizing device, such as... Figure 1-3 As shown, it includes: a main body box 1, a reel 2, a movable baffle 3, and a reel crank 4; wherein, the main body box 1 has at least one mounting cavity 11, both ends of which are provided with openings, and the side walls of the two openings are provided with wire-passing grooves 12 facing each other; on one side of the mounting cavity 11, there are a number of placement cavities 13 corresponding to the mounting cavity 11, and the placement cavities 13 have side openings; there is at least one reel 2, which is rotatably installed in the mounting cavity 11 and is suitable for winding and storing wire; both ends of the reel 2 are respectively provided with winding grooves 21 that extend radially through both sides and are open at one end; when the reel 2 is in a certain position... In the first rotation position, the two ends of the winding groove 21 are respectively aligned with the positions of the two threading grooves 12; the number of movable blocks 3 corresponds to the number of threading grooves 12, and they are rotatably installed on the outer side wall of the threading groove 12; the movable blocks 3 can rotate inward to allow the wire to enter and exit the threading groove 12, and can also rotate outward to block the opening position of the threading groove 12, thereby preventing the wire from entering or exiting the threading groove 12 and coming out; the reel handle 4 is installed on the reel 2, located outside the mounting cavity 11, and is used to drive the reel 2 to rotate in the mounting cavity 11 to wind, store or release the wire.
[0033] During the process of tidying up the wiring after the ECG monitor is used, first straighten all the wiring along its direction and divide it into two bundles: the ECG lead wires are in one bundle, and the SpO2 probe connection wire and the non-invasive blood pressure cuff inflation tubing are combined into another bundle. Then, place the ECG lead wire at one end of reel 2, and the SpO2 probe connection wire and the non-invasive blood pressure cuff inflation tubing at the other end of reel 2, aligning the middle section of the wire with the winding groove 21. When the wire enters the winding groove 21, the movable stops 3 on both sides will rotate inward, allowing the wire to enter the threading groove 12. After the wire is fully inserted, the movable stops 3 will automatically return to the outside of the wire under gravity, limiting the wire and preventing it from coming out. After the wire is placed, use the reel handle 4 to drive the reel 2 to rotate, so that each wire is evenly wound on the reel 2 along the rotation trajectory. After winding, place the electrode pads, SpO2 probe, and non-invasive blood pressure cuff in the placement cavity 13. When using it again, rotate the reel handle 4 in the opposite direction to release the wire. Due to the wire bundle memory effect formed by proper storage, the released wire can still maintain a straight and orderly state. Then rotate the movable stops 3 inward to release the limitation and take out the wire. The removed wire can be used directly without combing.
[0034] The wire harness organizing device of this embodiment can neatly store the wires, avoiding the damage to their accuracy caused by frequent combing, and can be used directly without combing the wires the next time.
[0035] In this embodiment, the wire harness organizing device has a main body 1 with two mounting cavities 11. Both ends of each mounting cavity 11 have openings, and the side walls of each opening are provided with opposite threading grooves 12. Two reels 2 are rotatably mounted within the two mounting cavities 11, suitable for winding and storing the wires. Each end of the two reels 2 has a winding groove 21 that extends radially through both sides and is open at one end. When the reels 2 are in a certain rotating position, the ends of the winding groove 21 are directly opposite the positions of the two threading grooves 12. When winding and storing the wires, the ECG lead wire can be wound and stored on one reel 2, while the SpO2 probe connection wire and the non-invasive blood pressure cuff inflation tubing can be wound and stored on the other reel 2.
[0036] like Figure 4-5As shown, the reel 2 includes a first reel 22, a rotating bearing 25, a second reel 26, a connecting through hole 28, and a connecting bolt 29. A first mounting shaft 23 is fixedly disposed at the middle of the end of the first reel 22 away from the opening of the mounting cavity 11, and at least two threaded blind holes 24 are provided on the first mounting shaft 23. The inner ring of the rotating bearing 25 is fixedly sleeved on the first mounting shaft 23. A second mounting shaft 27 is fixedly disposed at the middle of the end of the second reel 26 facing the first reel 22, and the second mounting shaft 27 is fixedly inserted into the rotating bearing 25. The connecting through hole 28 is provided on the second reel 26 and passes through the second mounting shaft 27. The connecting bolt 29 passes through the connecting through hole 28 and is screwed into the threaded blind hole 24, thereby fixing the first reel 22 and the second reel 26 together. This allows the reel handle 4 to simultaneously drive the first reel 22 and the second reel 26 to rotate together, thus enabling the simultaneous winding and storage of the cable placed at both ends of the reel 2.
[0037] A bearing mounting seat 14 is fixedly disposed inside the mounting cavity 11, and the rotating bearing 25 is installed inside the bearing mounting seat 14, thereby rotatably mounting the reel 2 inside the mounting cavity 11.
[0038] The first reel 22 or the second reel 26 includes a winding cylinder 5 and a limiting retaining ring 51; wherein, the outer circumferential surface of the winding cylinder 5 is suitable for winding and storing the wire; there are two limiting retaining rings 51, which are respectively formed at both ends of the winding cylinder 5, and their outer diameters are larger than the outer diameters of the winding cylinder 5, forming a receiving groove with the winding cylinder 5 for accommodating the wire; the winding cylinder 5 and the limiting retaining ring 51 at the end away from the rotating bearing 25 are penetrated by the winding groove 21.
[0039] like Figure 4-6 As shown, the reel handle 4 is fixedly mounted on the first reel 22 via a mounting structure and is located outside the mounting cavity 11. The mounting structure includes a mounting shaft 41, a square insertion slot 44, and a mounting through hole 45. The mounting shaft 41 is fixedly mounted on the first reel 22, and a square insertion block 42 is fixedly mounted on its free end. The outward-facing end of the square insertion block 42 has an internally threaded blind hole 43. The square insertion slot 44 is located on the reel handle 4 and can be matched and inserted with the square insertion block 42. The mounting through hole 45 is located on the reel handle 4 and extends through the square insertion slot 44. After the square insertion slot 44 is matched and inserted with the square insertion block 42, a mounting bolt 46 is used to pass through the mounting through hole 45 and screw into the internally threaded blind hole 43, thereby fixing the reel handle 4 on the first reel 22.
[0040] The reel handle 4 is equipped with a grip part 47, and the outer wall of the grip part 47 is provided with anti-slip texture. The grip part 47 makes it easy for medical staff to apply force to rotate the reel handle 4, and the anti-slip texture can increase friction and ensure grip stability during operation.
[0041] Several hooks 15 are fixedly installed near the top of the placement cavity 13, and a placement plane 16 is provided at the bottom. After the circuit is wound and stored, the electrode pads and SpO2 probe can be hung on the hooks 15, and the non-invasive blood pressure cuff can be placed on the placement plane 16.
[0042] A pair of wire-passing grooves 12 are provided through the bottom wall 18 of the placement cavity 13, and a side wall opening 19 is formed on the side wall of the placement cavity 13. The movable stop block 3 is installed in the wire-passing groove 12 near the side wall opening 19. When the movable stop block 3 rotates inward, the wire-passing groove 12 and the side wall opening 19 are unobstructed, allowing the wire to enter and exit the wire-passing groove 12. When the movable stop block 3 rotates outward, it blocks the inner side of the side wall with the side wall opening 19, and the connection between the wire-passing groove 12 and the side wall opening 19 is blocked by the movable stop block 3, preventing the wire from entering or exiting the wire-passing groove 12.
[0043] like Figure 7 As shown, it also includes a protective door 6, which is rotatably mounted on the side of the main body box 1 containing the placement cavity 13 via a rotating mounting structure, covering the placement cavity 13 and the side wall opening 19. The protective door 6 can completely cover the placement cavity 13, protecting the electrode pads, SpO2 probe, non-invasive blood pressure cuff, and other vulnerable components placed inside the cavity from damage due to external impact or contamination. In addition, the protective door 6 also prevents the wiring from coming loose by covering the side wall opening 19. A door handle 61 is fixedly installed on the outer side wall of the protective door 6. The rotating mounting structure includes a rotating mounting protrusion 62, a rotating mounting plate 64, and a rotating mounting bolt 66. The rotating mounting protrusion 62 is fixedly installed on the main body box 1 located in the placement cavity 13. The top of one side has threaded holes 63 at both ends; there are two rotating mounting pieces 64, which are respectively formed at the top ends of the protective door 6, and have rotating mounting holes 65 opposite each other; the rotating mounting bolts 66 pass through the rotating mounting holes 65 and are screwed into the threaded holes 63, so that the protective door 6 can be rotatably mounted on the main body box 1; it also includes limiting posts 67 and limiting openings 68; there are two limiting posts 67, which are respectively fixedly set on the outer side wall of the placement cavity 13; there are two limiting openings 68, which are respectively opened on the two side walls of the protective door 6; when the protective door 6 rotates downward to cover the placement cavity 13 and the side wall openings 19, the limiting openings 68 and the limiting posts 67 are matched and inserted, so as to limit the protective door 6.
[0044] It also includes protective side plates 7, of which there are two, respectively installed on both sides of the main body housing 1 at the opening of the mounting cavity 11. Each protective side plate 7 includes a top section plate 71 installed at the top of one side of the main body housing 1, a middle section plate 72 installed in the middle of one side of the main body housing 1, and a bottom section plate 73 installed at the bottom of one side of the main body housing 1. There is space between the top section plate 71 and the middle section plate 72, and between the middle section plate 72 and the bottom section plate 73, allowing the cable to pass through and opposite the cable reel 21. The protective side plates 7 are used to protect the reel 2 from damage caused by external impacts, preventing the equipment from malfunctioning.
[0045] The wiring harness organizing device in this embodiment is used as follows: During the wiring storage process after the ECG monitor has been used, first turn the protective door 6 upward to the top of the main body box 1 to expose the placement cavity 13, then straighten each wire along its direction and divide it into two bundles: the ECG lead wires are a separate bundle, and the SpO2 probe connection wire and the non-invasive blood pressure cuff inflation tubing are combined into another bundle. Then, place the ECG lead wire at one end of the first reel 22, and place the SpO2 probe connection wire and the non-invasive blood pressure cuff inflation tubing at one end of the second reel 26, aligning the middle section of the wire with the winding groove 21. When the wire enters the winding groove 21, its two sides will push the movable stop 3 to rotate inward, allowing the wire to enter the threading groove 12. After the wire is fully inserted, the movable stop 3 automatically returns to the outside of the wire, limiting the wire and preventing it from coming out. After the wire is placed, the medical staff holds the grip part 47 and rotates the reel handle 4 to drive the reel 2 to rotate, so that each wire is evenly wound onto the winding drum 5 along the rotation trajectory. After winding... After completion, hang the electrode pads and SpO2 probe on the hook 15, place the non-invasive blood pressure cuff on the placement plane 16, and then rotate the protective door 6 downwards to reset it, protecting the components inside the placement cavity 13 and preventing the wire from coming out. When using it again, first rotate the protective door 6 upwards to the top of the main body box 1 to expose the placement cavity 13, and then hold the grip part 47 and rotate the reel handle 4 in the opposite direction to release the wire. Due to the wire bundle memory effect formed by proper storage, the released wire can still maintain a straight and orderly state. Then rotate the movable stop 3 inwards to release the limit and take out the wire. The removed wire can be put into use directly without combing.
[0046] When the ECG monitor needs to be moved to a designated location, the wire harness management device of this embodiment is placed in the white storage frame installed on the support rod of the ECG monitor and moved with the ECG monitor; when connecting the ECG monitor to the patient, the wire harness management device is taken out from the white storage frame, placed on the side of the ECG monitor, and the wires are taken out for the patient to connect and wear.
[0047] Obviously, the above embodiments are merely illustrative examples for clear explanation and are not intended to limit the implementation. Those skilled in the art can make other variations or modifications based on the above description. It is neither necessary nor possible to exhaustively list all possible implementations here. However, obvious variations or modifications derived therefrom are still within the protection scope of this innovative technical solution.
Claims
1. A wire harness organizing device, characterized in that, include: The main body box (1) has at least one mounting cavity (11), both ends of the mounting cavity (11) are provided with openings, and the two side walls of the two openings are provided with wire grooves (12); a number of placement cavities (13) corresponding to the number of mounting cavities (11) are provided on one side of the mounting cavity (11), and the placement cavity (13) has a side opening; At least one reel (2) is rotatably installed in the mounting cavity (11) and is suitable for winding and storing the wire; the two ends of the reel (2) are respectively provided with winding grooves (21) that run radially through both sides and are open at one end; when the reel (2) is in a certain rotation position, the two ends of the winding grooves (21) are respectively aligned with the positions of the two threading grooves (12); The number of movable blocks (3) corresponds to the number of the wire grooves (12), and they are rotatably installed on the outer side wall of the wire grooves (12). The movable blocks (3) can rotate inward to allow the wire to enter and exit the wire grooves (12), and can also rotate outward to block the opening of the wire grooves (12), thereby preventing the wire from entering and exiting the wire grooves (12). A reel crank (4) is mounted on the reel (2) and located outside the mounting cavity (11) to drive the reel (2) to rotate within the mounting cavity (11) to wind up or release the line.
2. The wire harness organizing device according to claim 1, characterized in that, The reel (2) includes: The first reel (22) has a first mounting shaft (23) fixedly installed at the middle of one end away from the opening of the mounting cavity (11), and the first mounting shaft (23) has at least two threaded blind holes (24). Rotary bearing (25), with its inner ring fixedly sleeved on the first mounting shaft (23); The second reel (26) has a second mounting shaft (27) fixedly installed at the middle of one end facing the first reel (22), and the second mounting shaft (27) is fixedly inserted into the inside of the rotating bearing (25); A connecting through hole (28) is provided on the second reel (26) and extends through the second mounting shaft (27). A connecting bolt (29) is threaded through the connecting through hole (28) and into the threaded blind hole (24) to fix the first reel (22) and the second reel (26) together.
3. The wire harness organizing device according to claim 2, characterized in that: A bearing mounting seat (14) is fixedly provided inside the mounting cavity (11), and the rotating bearing (25) is installed inside the bearing mounting seat (14), thereby rotatably installing the reel (2) inside the mounting cavity (11).
4. The wire harness organizing device according to claim 2, characterized in that, The first reel (22) or the second reel (26) includes: The outer circumference of the winding cylinder (5) is suitable for winding and storing the circuit. There are two limiting retaining rings (51), which are respectively formed at both ends of the winding cylinder (5). Their outer diameter is larger than that of the winding cylinder (5), and they form a receiving groove with the winding cylinder (5) to accommodate the circuit. The winding cylinder (5) and the limiting retaining ring (51) at one end away from the rotating bearing (25) are penetrated by the winding groove (21).
5. The wire harness organizing device according to claim 2, characterized in that: The reel handle (4) is fixedly installed on the first reel (22) by the mounting structure and is located outside the mounting cavity (11); The mounting structure includes: The mounting shaft (41) is fixedly mounted on the first reel (22), and a square plug-in block (42) is fixedly mounted on the free end. The square plug-in block (42) has an internal thread blind hole (43) on its outward end. A square insertion slot (44) is provided on the reel handle (4) and can be matched and inserted with the square insertion block (42); An installation through hole (45) is provided on the reel handle (4) and extends through the square insertion slot (44). After the square plug slot (44) is matched and plugged into the square plug block (42), the mounting bolt (46) is screwed through the mounting through hole (45) and into the internal thread blind hole (43) to fix the reel handle (4) on the first reel (22).
6. The wire harness organizing device according to claim 5, characterized in that: The reel handle (4) is equipped with a grip (47), and the outer wall of the grip (47) is provided with anti-slip texture.
7. The wire harness organizing device according to claim 1, characterized in that: Several hooks (15) are fixedly installed near the top of the placement cavity (13), and a placement plane (16) is provided at the bottom.
8. The wire harness organizing device according to claim 1, characterized in that: A pair of threading grooves (12) are provided through the bottom wall (18) of the placement cavity (13) and a side wall opening (19) is formed on the side wall of the placement cavity (13). The movable stop (3) is installed in the threading groove (12) near the side wall opening (19). When the movable stop (3) rotates inward, the wire groove (12) and the side wall opening (19) are unobstructed, allowing the wire to enter and exit the wire groove (12). When the movable stop (3) rotates outward, it blocks the inner side of the side wall with the side wall opening (19). The connection between the wire groove (12) and the side wall opening (19) is blocked by the movable stop (3), and the wire cannot enter or exit the wire groove (12).
9. The wire harness organizing device according to claim 8, characterized in that: It also includes a protective door (6), which can be rotated up and down by a rotating mounting structure and is installed on the side of the main body box (1) where the placement cavity (13) is located, and covers the placement cavity (13) and the side wall opening (19). A door handle (61) is fixedly installed on the outer side wall of the protective door (6). The rotating mounting structure includes: Rotary mounting convex strip (62) is fixedly installed on the top of the main body box (1) on one side of the placement cavity (13), and threaded holes (63) are provided at both ends. There are two rotating mounting pieces (64), which are respectively formed at the top ends of the protective door (6) and have rotating mounting holes (65) opposite each other. Rotate the mounting bolt (66) through the rotating mounting hole (65) and screw it into the threaded hole (63) to install the protective door (6) on the main body box (1) in a way that allows it to rotate up and down. Also includes: There are two limiting posts (67), which are fixedly installed on the outer side wall of the placement cavity (13); There are two limiting openings (68), which are respectively opened on the two side walls of the protective door (6); when the protective door (6) rotates downward to cover the placement cavity (13) and the side wall opening (19), the limiting opening (68) matches and is inserted with the limiting post (67) to limit the protective door (6).
10. The wire harness organizing device according to claim 1, characterized in that: It also includes two protective side panels (7), which are respectively installed on both sides of the main body box (1) at the opening of the mounting cavity (11); The protective side panel (7) includes a top section plate (71) installed on the top of one side of the main body box (1), a middle section plate (72) installed in the middle of one side of the main body box (1), and a bottom section plate (73) installed at the bottom of one side of the main body box (1). There is space between the top section plate (71) and the middle section plate (72), and between the middle section plate (72) and the bottom section plate (73) to allow the line to pass through and opposite to the cable tray (21).