A wire bundling instrument for operating room circuit diagnosis

By designing the wiring harness instrument for operating room line diagnosis, including the combination of multi-wire mechanisms, the problem that existing equipment cannot handle multiple lines of different specifications at the same time, achieving high flexibility and applicability of line integration processing.

CN119944535BActive Publication Date: 2025-06-17FUJIAN PROVINCIAL HOSPITAL
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Patent Information

Application Number
CN202510444463.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-04-10
Publication Date
2025-06-17
Estimated Expiration
2045-04-10

AI Technical Summary

Technical Problem

The existing operating room line harness equipment cannot synchronize the beamline processing for multiple lines and different specifications at the same time, resulting in the need of multiple beamline equipment to assist in the operation and the flexibility of use is low.

Method used

A beam wire instrument for operating room line diagnosis is designed, including a first beam wire mechanism, a second beam wire mechanism and a third beam wire mechanism. Through the combination of these mechanisms, multiple lines with different specifications and different uses can be classified and integrated, which is suitable for different operating scenarios.

Benefits of technology

It realizes simultaneous integration of multiple lines, improves the flexibility of equipment usage, can be applied to different operating room scenarios, and reduces the number of equipment and space occupied.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a wire bundling instrument for operating room line diagnosis, which relates to the technical field of wire bundling equipment and includes a supporting bottom plate. It also includes: the connecting mechanism, and the connecting mechanism is located above the supporting bottom plate. The beneficial effects of the present invention are as follows: The present invention is provided with a first wire bundling mechanism, a second wire bundling mechanism and a third wire bundling mechanism. The wire is limited and installed through the installation holes and the wire bundling installation grooves, realizing the secondary wire bundling operation. The end of the wire can also be limited through the two sliding grooves, thereby improving the overall flexibility during actual wire bundling. The present invention is provided with a connecting mechanism and a placement rack. The first storage box, the second storage box and the third storage box cooperate to form a wire bundling space, and multiple wires can be integrated at the same time, performing the three-time wire bundling operation, improving the use flexibility of the overall equipment. Multiple wires with different specifications and uses can be classified and integrated at the same time, which is applicable to different operation scenarios.
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Description

Technical Field

[0001] The present invention relates to the technical field of wire harness equipment, and particularly to a wire harness instrument for operating room line diagnosis. Background Art

[0002] Medical wire harnesses are widely used in medical equipment, mostly for signal and power transmission between medical equipment, providing important support for the use of equipment. Especially in the operating room, there are various instrument devices. However, due to the large number and long length of the wires, the problem of chaotic arrangement and unclear classification occurs. The wire harnesses of such devices are generally expensive, and once damaged, it will cause relatively large losses. Therefore, special attention needs to be paid during use. And in order to improve the convenience of use, the wire harnesses of such devices are designed.

[0003] Chinese Patent Publication No. CN 215378295 U discloses an operating room medical wire harness storage device, including a main body. A fixed hook is arranged at the bottom of the main body, and a fixing member is arranged at the top of the main body. The fixing member includes a fixing rod and an outer sleeve. The bottom of the fixing rod is fixedly connected to the top of the main body. The outer wall of the fixing rod is sleeved with the outer sleeve, and the bottom of the outer sleeve extends to the outer wall of the main body. For this operating room medical wire harness storage device, through the design among the main body, the fixing rod and the fixed hook, this operating room medical wire harness storage device can be fixed at different positions according to needs, and the wire harness can be bundled and fixed at any time, improving the operation convenience of doctors. Through the cooperation among the sleeve, the anti-slip sleeve and the movable hook, this operating room medical wire harness storage device can be provided with multiple movable hooks in addition to the fixed hook according to the use needs, further improving the convenience of use and capable of bundling a large number of wire harnesses at the same time.

[0004] However, the following problems still exist in the above solution: The wire bundling method is single, and it is impossible to bundle multiple wires and wires with different specifications simultaneously and synchronously, resulting in the need for multiple wire bundling devices to assist in the operation, unable to meet the required scenarios of different operating rooms, and the flexibility of the overall device in use is relatively low. Therefore, the present invention needs to design a wire harness instrument for operating room line diagnosis to solve the above problems. Summary of the Invention

[0005] The purpose of the present invention is to provide a wire harness instrument for operating room line diagnosis to solve the problems raised in the above background art.

[0006] To achieve the above purpose, the present invention provides the following technical solution: A wire harness instrument for operating room line diagnosis, including a support bottom plate, and further including:

[0007] The connection mechanism is located above the support base plate. The connection mechanism includes a limit baffle. An electric control box is installed on the top of the support base plate. A storage bin is installed above the electric control box. A placement plate is installed on the top of the storage bin. A limit baffle is installed on one side of the storage bin;

[0008] The first wire bundling mechanism is installed above the placement plate. The first wire bundling mechanism includes a first wire bundling device. A sealing coil is installed inside the first wire bundling device. A top cover for cooperating with the sealing coil is installed on the top of the first wire bundling device. The first wire bundling mechanism is used for wire bundling operation of some lines required in the operating room;

[0009] The second wire bundling mechanism is located on both sides of the storage bin. The second wire bundling mechanism is used for wire bundling operation of lines of different specifications;

[0010] The third wire bundling mechanism is installed below the second wire bundling device. The third wire bundling mechanism includes a first storage box. A storage and sorting table is installed on the top of the support base plate. The storage and sorting table is located on one side of the electric control box. First storage boxes are installed on the top of the storage and sorting table at equidistant distribution. Second storage boxes are installed on one side of each first storage box. Third storage boxes are installed on one side of each second storage box. A wire bundling space is formed by the cooperation of the first storage box, the second storage box and the third storage box. Multiple wires can be integrally processed at the same time, and three wire bundling operations are carried out, improving the use flexibility of the overall equipment. Multiple wires with different specifications and uses can be classified and integrated at the same time, which is applicable to different operation scenarios.

[0011] As a preferred embodiment of the present invention, the second wire bundling mechanism includes a second wire bundling device and a limit mounting frame. Second wire bundling devices are installed on both sides of the storage bin. Limit mounting frames are installed on the top of the two second wire bundling devices. Two wire bundling mounting grooves are opened at the bottom of the two second wire bundling devices. The two wire bundling mounting grooves are symmetrically distributed. Mounting holes for cooperating with the wire bundling mounting grooves are opened on both sides of the second wire bundling device. When carrying out wire bundling operation, select the line suitable for the specification of the mounting hole for installation, and carry out wire limit installation through the mounting hole and the wire bundling mounting groove, realizing the secondary wire bundling operation.

[0012] As a preferred embodiment of the present invention, reinforcing support rods are fixedly connected to both sides of the storage bin. Two mounting insertion plates are fixedly connected to the bottom of the limit mounting frame. One end of the bottom of each of the mounting insertion plates extends into the corresponding second wire bundling device. One end of the top of the two reinforcing support rods is connected to the bottom of the corresponding second wire bundling device. The corresponding second wire bundling device is reinforced and supported by the reinforcing support rods, and the limit mounting frame and the second wire bundling device are firmly connected by the mounting insertion plates, improving the stability of the device during use.

[0013] As a preferred embodiment of the present invention, an electric telescopic rod is fixedly connected to the top of the electric control box. The output end of the electric telescopic rod is connected to the bottom of the storage bin. A limit cushion is installed on the top of the limit baffle and on one side of the first wire bundling device. The first wire bundling device is limited on one side by the limit cushion, providing a certain degree of protection. By operating the electric telescopic rod, it is convenient to adjust the height of the connection mechanism and the second wire bundling mechanism, meeting the requirements for different working scenarios and improving the flexibility of the device during use.

[0014] As a preferred embodiment of the present invention, storage cavities are provided inside the first storage boxes. Limit mounting cavities are provided inside the second storage boxes. The third storage boxes are all located inside the corresponding second storage boxes, that is, the third storage boxes are all located inside the corresponding limit mounting cavities.

[0015] As a preferred embodiment of the present invention, connection sliders are installed above the third storage boxes inside the second storage boxes. Limit insertion rods extending into the first storage boxes are installed inside the connection sliders. The limit insertion rods are of a hollow structure, facilitating the passage of wires from the inside. Connection side plates are installed on one side of the connection sliders. Limit insertion pins extending into the third storage boxes are threadedly connected inside the connection side plates. The second storage boxes and the third storage boxes are limited and installed by the cooperation of the connection side plates and the limit insertion pins. Two symmetrically distributed chutes are provided inside the third storage boxes. Wires can be placed inside the chutes according to requirements. When bundling wires, the wires can be passed under the bottom of the placement rack and placed on the surface of the third storage box, then enter the first storage box through the connection sliders and the inside of the limit insertion rods for subsequent circuit connection processing. The ends of the wires can also be limited through the two chutes, thus improving the overall flexibility during actual wire bundling.

[0016] As a preferred embodiment of the present invention, limiting covers are installed on both sides of the sealed coil inside the first wire bundling device. An installation sleeve is installed between the three sealed coils. A bottom installation rod is installed at the bottom of the installation sleeve, and a top installation rod is installed at one end of the top of the installation sleeve. The top end of the top installation rod extends into the top cover. A wire bundling roller is installed on one side of the installation sleeve, and a wire is installed on the outer side of the wire bundling roller. A spring is sleeved on the outer side of the bottom installation rod. A disassembly cover is installed on the outer side of the first wire bundling device. The bottom installation rod and the top installation rod are both of hollow structures. Installation clamping plates are installed on all four sides of the installation sleeve, which facilitates the internal installation of the wire. Remove the disassembly cover, wind one end of the wire to be connected around the outer side of the wire bundling roller, and sequentially install the other wire that matches inside the bottom installation rod and the top installation rod. The installation clamping plates are used for limiting and strengthening the connection of the two wires, realizing a primary wire bundling operation.

[0017] As a preferred embodiment of the present invention, symmetrically distributed anti-slip seats are fixedly connected to the bottom of the support base plate. The overall stability of the device during placement is improved through the setting of the anti-slip seats.

[0018] As a preferred embodiment of the present invention, limiting pads are installed on both sides of the control box on the top of the support base plate. A placement rack is installed inside the storage and sorting table above the third storage box. Two positioning insertion plates are fixedly connected to the bottom of the placement rack. The bottom ends of the two positioning insertion plates penetrate through the storage and sorting table and extend into the support base plate. A placement cavity is opened inside the placement rack, so as to cooperate with the wire to pass through the placement cavity and then enter different third storage boxes, second storage boxes, and first storage boxes for subsequent wire bundling. The storage and sorting table is installed to strengthen the installation of the placement rack and the support base plate.

[0019] As a preferred embodiment of the present invention, a control panel is installed inside the control box. The electric telescopic rod and the control box are both electrically connected to the control panel. The control panel is used to control the operation of the electric telescopic rod and the control box, realizing the unified management of electrical equipment. The overall equipment occupies less power resources, reducing the installation and use cost of the equipment. At the same time, the cooperation of each equipment is simple, which is convenient for the staff to quickly start operating.

[0020] Compared with the prior art, the beneficial effects of the present invention are:

[0021] 1. The present invention is provided with a first wire bundling mechanism, a second wire bundling mechanism and a third wire bundling mechanism. A disassembly cover is installed on the outside of the first wire bundling device. Both the bottom mounting rod and the top mounting rod are hollow structures. Mounting clamping plates are installed around the mounting sleeve, which facilitates the internal installation of the circuit. Remove the disassembly cover, wind one end of the wire to be connected around the outside of the wire bundling roller, and sequentially install the other wire that fits inside the bottom mounting rod and the top mounting rod. The mounting clamping plates are used for limiting and strengthening the connection of the two wires, realizing a primary wire bundling operation. When performing the wire bundling operation, select a wire suitable for the specification of the mounting hole for installation, and perform wire limiting installation through the mounting hole and the wire bundling installation groove, realizing a secondary wire bundling operation. The wire can be passed through the bottom of the placement rack and placed on the surface of the third storage box and then enter the first storage box through the connecting slider and the limiting insertion rod for subsequent circuit connection processing. Or the end of the wire can be limited through the two chutes, thus improving the overall flexibility during actual wire bundling;

[0022] 2. The present invention is provided with a connection mechanism and a placement rack. The corresponding second wire bundling device is strengthened and supported through the strengthening support rod, and the limiting mounting frame and the second wire bundling device are firmly connected through the mounting insertion plate, improving the stability of the device during use. The first wire bundling device is limited on one side through the limiting cushion, playing a certain degree of protective effect. The overall stability of the device during placement is improved through the setting of the anti-slip seat. The overall device consumes less power resources, reducing the installation and use cost of the device. At the same time, the cooperation of each device is simple, which is convenient for the staff to quickly get started. The first storage box, the second storage box and the third storage box cooperate to form a wire bundling space, which can simultaneously integrate multiple wires, perform a third wire bundling operation, improve the overall flexibility of the device, and can simultaneously classify and integrate multiple wires with different specifications and uses, and is suitable for different operation scenarios. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] Figure 1 Schematic diagram of the overall structure of a wire bundling instrument for operating room circuit diagnosis according to the present invention Figure 1 ;

[0024] Figure 2 Schematic diagram of the overall structure of a wire bundling instrument for operating room circuit diagnosis according to the present invention Figure 2 ;

[0025] Figure 3 Enlarged schematic diagram of the first wire bundling mechanism of a wire bundling instrument for operating room circuit diagnosis according to the present invention;

[0026] Figure 4 Internal schematic diagram of the first wire bundling mechanism of a wire bundling instrument for operating room circuit diagnosis according to the present invention;

[0027] Figure 5Schematic enlarged view of the connection mechanism of a wire bundling instrument for operating room wire diagnosis according to the present invention;

[0028] Figure 6 Schematic enlarged view of the second wire bundling mechanism of a wire bundling instrument for operating room wire diagnosis according to the present invention;

[0029] Figure 7 Schematic enlarged view of the third wire bundling mechanism of a wire bundling instrument for operating room wire diagnosis according to the present invention;

[0030] Figure 8 Attachment of a wire bundling instrument for operating room wire diagnosis according to the present invention Figure 5 Schematic enlarged view of the structure at position A in the figure;

[0031] Figure 9 Attachment of a wire bundling instrument for operating room wire diagnosis according to the present invention Figure 7 Schematic enlarged view of the structure at position B in the figure.

[0032] In the figure:

[0033] 1. Limit baffle; 11. Limit cushion; 12. Storage bin; 13. Electric telescopic rod; 14. Electric control box; 15. Placing plate; 16. Reinforcing support rod;

[0034] 2. Support bottom plate; 21. Limit cushion;

[0035] 3. First wire bundling device; 31. Top cover; 32. Sealing coil; 33. Spring; 34. Limit cover; 35. Wire bundling roller; 36. Installation sleeve; 37. Bottom installation rod; 38. Installation clamping plate; 39. Top installation rod;

[0036] 4. Second wire bundling device; 41. Limit installation frame; 42. Installation plug; 43. Installation hole; 44. Wire bundling installation groove;

[0037] 5. Placing rack; 51. Storage and sorting table; 52. First storage box; 53. Second storage box; 54. Third storage box; 55. Storage cavity; 56. Connection slider; 57. Limit insertion rod; 58. Connection side plate; 59. Limit insertion pin. Detailed implementation manners

[0038] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0039] Please refer to Figures 1-9, the present invention provides a technical solution: a wire bundling instrument for operating room line diagnosis, including a support bottom plate 2, and further including: a connection mechanism located above the support bottom plate 2. The connection mechanism includes a limit baffle 1. An electric control box 14 is installed on the top of the support bottom plate 2, a storage bin 12 is installed above the electric control box 14, a placement plate 15 is installed on the top of the storage bin 12, and a limit baffle 1 is installed on one side of the storage bin 12;

[0040] In this solution, the first wire bundling mechanism is installed above the placement plate 15. The first wire bundling mechanism includes a first wire bundling device 3. A sealing coil 32 is installed inside the first wire bundling device 3, and a top cover 31 used in cooperation with the sealing coil 32 is installed on the top of the first wire bundling device 3. The first wire bundling mechanism is used for bundling some of the lines required in the operating room;

[0041] In this solution, the second wire bundling mechanism is located on both sides of the storage bin 12. The second wire bundling mechanism is used for bundling lines of different specifications;

[0042] In this solution, the third wire bundling mechanism is installed below the second wire bundling device 4. The third wire bundling mechanism includes a first storage box 52. A storage and sorting table 51 is installed on the top of the support bottom plate 2. The storage and sorting table 51 is located on one side of the electric control box 14. First storage boxes 52 are installed on the top of the storage and sorting table 51 at equal intervals. Second storage boxes 53 are installed on one side of each first storage box 52, and third storage boxes 54 are installed on one side of each second storage box 53. A wire bundling space is formed by the cooperation of the first storage box 52, the second storage box 53 and the third storage box 54, and multiple wires can be integrally processed at the same time, and three wire bundling operations are performed, improving the flexibility of use of the overall device. Multiple wires with different specifications and uses can be classified and integrated at the same time, which is suitable for different operation scenarios.

[0043] Please refer to Figure 8 , in this solution, the second wire bundling mechanism includes a second wire bundling device 4 and a limit mounting frame 41. Second wire bundling devices 4 are installed on both sides of the storage bin 12. Limit mounting frames 41 are installed on the tops of the two second wire bundling devices 4. Two wire bundling installation slots 44 are opened at the bottoms of the two second wire bundling devices 4, and the two wire bundling installation slots 44 are symmetrically distributed. Installation holes 43 used in cooperation with the wire bundling installation slots 44 are opened on both sides of the second wire bundling device 4. When performing wire bundling operations, select a wire suitable for the specification of the installation hole 43 for installation, and perform wire limit installation through the installation hole 43 and the wire bundling installation slot 44, realizing the secondary wire bundling operation.

[0044] On both sides of the storage bin 12 in this solution, there are fixedly connected reinforcement support rods 16. At the bottom of the limit mounting frame 41, there are fixedly connected two mounting insertion plates 42. One end of the bottom of one of the mounting insertion plates 42 extends to the inside of the corresponding second wire bundling device 4. One end of the top of the two reinforcement support rods 16 is connected to the bottom of the corresponding second wire bundling device 4. The corresponding second wire bundling device 4 is reinforced and supported by the reinforcement support rods 16, and the limit mounting frame 41 and the second wire bundling device 4 are firmly connected by the mounting insertion plates 42, improving the stability of the equipment during use.

[0045] Please refer to Figures 1-5 , on the top of the electric control box 14 in this solution, there is fixedly connected an electric telescopic rod 13. The output end of the electric telescopic rod 13 is connected to the bottom of the storage bin 12. On the top of the limit baffle 1 and on one side of the first wire bundling device 3, there is installed a limit cushion 11.

[0046] In this solution, the first wire bundling device 3 is limited on one side by the limit cushion 11, achieving a certain degree of protection effect. By operating the electric telescopic rod 13, it is convenient to adjust the height of the connection mechanism and the second wire bundling mechanism, meeting the requirements for different working scenarios and improving the flexibility of the equipment during use.

[0047] Please refer to Figures 7-9 , in this solution, storage cavities 55 are respectively opened inside the first storage boxes 52. Limit mounting cavities are respectively opened inside the second storage boxes 53. The third storage boxes 54 are all located inside the corresponding second storage boxes 53, that is, the third storage boxes 54 are all located inside the corresponding limit mounting cavities.

[0048] In this solution, connection sliders 56 are respectively installed above the third storage boxes 54 inside the second storage boxes 53. Inside the connection sliders 56, there are installed limit insertion rods 57 extending to the inside of the first storage boxes 52. The limit insertion rods 57 are of hollow structure, facilitating the routing of wires from the inside. On one side of the connection sliders 56, there are installed connection side plates 58. Inside the connection side plates 58, there are threadedly connected limit pins 59 extending to the inside of the third storage boxes 54. The second storage boxes 53 and the third storage boxes 54 are limited and installed through the cooperation of the connection side plates 58 and the limit pins 59. Two symmetrically distributed chutes are respectively opened inside the third storage boxes 54. Wires can be placed inside the chutes as required. When performing wire bundling operations, the wires can pass through the bottom of the placement rack 5 and be placed on the surface of the third storage boxes 54 and then enter the inside of the first storage boxes 52 through the connection sliders 56 and the inside of the limit insertion rods 57 for subsequent circuit connection processing. Or one end of the wires can be limited through the two chutes, thereby improving the overall flexibility during actual wire bundling.

[0049] On top of the support base plate 2 and on both sides of the electric control box 14, limit pads 21 are installed. Inside the storage and arrangement table 51 and above the third storage box 54, a placement rack 5 is installed. At the bottom of the placement rack 5, two positioning plug boards are fixedly connected. At one end of the bottom of the two positioning plug boards, they both penetrate through the storage and arrangement table 51 and extend into the support base plate 2. Inside the placement rack 5, a placement cavity is formed, so as to cooperate with the circuit to pass through the placement cavity and then enter different third storage boxes 54, second storage boxes 53, and first storage boxes 52 for subsequent wire bundling. By installing the storage and arrangement table 51, the placement rack 5 and the support base plate 2 are strengthened and installed.

[0050] Please refer to Figures 3-4 In this solution, limit covers 34 are installed on both sides of the sealing coil 32 inside the first wire bundling device 3. An installation sleeve 36 is installed between the three sealing coils 32. At the bottom of the installation sleeve 36, a bottom installation rod 37 is installed. At one end of the top of the installation sleeve 36, a top installation rod 39 is installed. One end of the top of the top installation rod 39 extends into the top cover 31. On one side of the installation sleeve 36, a wire bundling roller 35 is installed. A circuit is installed on the outer side of the wire bundling roller 35. A spring 33 is sleeved on the outer side of the bottom installation rod 37. A disassembly cover is installed on the outer side of the first wire bundling device 3. Both the bottom installation rod 37 and the top installation rod 39 are hollow structures. Installation clamping plates 38 are installed around the installation sleeve 36, which is convenient for internal installation of the circuit. Remove the disassembly cover, wind one end of the circuit to be connected around the outer side of the wire bundling roller 35, and install the other circuit that matches in the bottom installation rod 37 and the top installation rod 39 in sequence. When connecting the two circuits, limit and reinforce them through the installation clamping plates 38, realizing one wire bundling operation.

[0051] At the bottom of the support base plate 2 in this solution, symmetrically distributed anti-slip seats are fixedly connected. Through the setting of the anti-slip seats, the overall stability of the equipment during placement is improved.

[0052] Please refer to Figures 1-9 In this solution, a control panel is installed inside the electric control box 14. The electric telescopic rod 13 and the electric control box 14 are both electrically connected to the control panel.

[0053] In this solution, the control panel is used to control the operation of the electric telescopic rod 13 and the electric control box 14, realizing the unified management of electrical equipment. The overall equipment occupies less power resources, reducing the installation and use cost of the equipment. At the same time, the cooperation of each equipment is simple, which is convenient for the staff to quickly get started and operate.

[0054] Please refer to Figures 1-9 The working principle of the present invention:

[0055] The present invention is provided with a first wire bundling mechanism, a second wire bundling mechanism and a third wire bundling mechanism. A disassembly cover is installed on the outside of the first wire bundling device 3. Both the bottom mounting rod 37 and the top mounting rod 39 are of hollow structure. Mounting clamping plates 38 are installed around the mounting sleeve 36, which facilitates the internal installation of the circuit.

[0056] Remove the disassembly cover, wind one end of the circuit to be connected around the outside of the wire bundling roller 35, and sequentially install the other cooperating circuit inside the bottom mounting rod 37 and the top mounting rod 39. When connecting the two circuits, limit and reinforce them through the mounting clamping plates 38, realizing a primary wire bundling operation.

[0057] When performing the wire bundling operation, select a circuit suitable for the specification of the mounting hole 43 for installation, and limit and install the circuit through the mounting hole 43 and the wire bundling installation groove 44, realizing a secondary wire bundling operation.

[0058] The third storage boxes 54 are all located inside the corresponding limit mounting cavities. The limit insertion rods 57 are of hollow structure, which facilitates the circuit to pass through from the inside. The second storage box 53 and the third storage boxes 54 are limited and installed through the cooperation of the connecting side plates 58 and the limit pins 59. Two symmetrically distributed sliding grooves are opened inside the third storage boxes 54, and the circuits can be placed according to requirements inside the sliding grooves. When performing the wire bundling operation, the circuit can be placed on the surface of the third storage box 54 through the bottom of the placement rack 5, and enter the first storage box 52 through the connecting slider 56 and the inside of the limit insertion rod 57 for subsequent circuit connection processing. One end of the circuit can also be limited through the two sliding grooves, thereby improving the overall flexibility during actual wire bundling.

[0059] The present invention is provided with a connecting mechanism and a placement rack 5. The corresponding second wire bundling device 4 is reinforced and supported through the reinforcing support rod 16, and the limit mounting frame 41 and the second wire bundling device 4 are reinforced and connected through the mounting insertion plate 42, improving the stability of the device during use.

[0060] One side of the first wire bundling device 3 is limited through the limit cushion 11, playing a certain degree of protective effect. By operating the electric telescopic rod 13, it is convenient to adjust the height of the connecting mechanism and the second wire bundling mechanism, meeting the requirements for different working scenarios and improving the flexibility of the device during use.

[0061] A placement cavity is opened inside the placement rack 5, so as to cooperate with the circuit to pass through the placement cavity and enter the different third storage boxes 54, second storage boxes 53 and first storage boxes 52 for subsequent wire bundling. By installing the storage and sorting table 51, the placement rack 5 and the support bottom plate 2 are reinforced and installed, and the overall stability of the device during placement is improved through the setting of the anti-slip seat.

[0062] The control panel is used to control the operation of the electric telescopic rod 13 and the electric control box 14, realizing the unified management of power equipment. The overall equipment occupies less power resources and reduces the installation and use costs of the equipment.

[0063] At the same time, the cooperation of each device is simple, which is convenient for the staff to quickly get started. Through the cooperation of the first storage box 52, the second storage box 53 and the third storage box 54, a wire bundling space is formed, and multiple wires can be integrated and processed at the same time, and three wire bundling operations are carried out, improving the flexibility of use of the overall equipment. Multiple wires with different specifications and uses can be classified and integrated at the same time, which is suitable for different working scenarios.

[0064] Although the embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A wire harnessing instrument for line diagnosis in an operating room, comprising a supporting base plate (2), a connecting mechanism, a first wire harnessing mechanism, a second wire harnessing mechanism and a third wire harnessing mechanism, characterized in that: Also includes: The connecting mechanism is located above the supporting base plate (2), the connecting mechanism comprises a limit baffle (1), an electric control box (14) is installed on the top of the supporting base plate (2), a storage bin (12) is installed above the electric control box (14), a placement plate (15) is installed on the top of the storage bin (12), and a limit baffle (1) is installed on one side of the storage bin (12); The first wire harness mechanism is installed above the placement plate (15), the first wire harness mechanism comprises a first wire harness device (3), a sealing coil (32) is installed inside the first wire harness device (3), a top cover (31) used in conjunction with the sealing coil (32) is installed on the top of the first wire harness device (3), and the first wire harness mechanism is used to perform wire harness operations on part of the lines required in the operating room; The second wire bundling mechanism is located on both sides of the storage bin (12), and is used to perform wire bundling operations on wires of different specifications; The third wiring harness mechanism is installed below the second wiring harness device (4), and comprises a first storage box (52). A storage and tidying table (51) is installed on the top of the support base plate (2), and the storage and tidying table (51) is located on one side of the electric control box (14). The top of the storage and tidying table (51) is installed with first storage boxes (52) distributed at equal intervals, and a second storage box (53) is installed on one side of the first storage box (52), and a third storage box (54) is installed on one side of the second storage box (53).

2. The wiring harness instrument for operating room wiring diagnosis according to claim 1, characterized in that: The second wiring harness mechanism comprises a second wiring harness device (4) and a limit mounting frame (41), the second wiring harness devices (4) are mounted on both sides of the storage bin (12), the limit mounting frames (41) are mounted on the tops of the two second wiring harness devices (4), the bottoms of the two second wiring harness devices (4) are provided with two wiring harness mounting grooves (44), and the two sides of the second wiring harness devices (4) are provided with mounting holes (43) used in conjunction with the wiring harness mounting grooves (44).

3. The wiring harness instrument for operating room wiring diagnosis according to claim 2, characterized in that: Both sides of the storage bin (12) are fixedly connected with reinforcement support rods (16), and the bottom of the limit mounting frame (41) is fixedly connected with two mounting plug plates (42), wherein the bottom end of one of the mounting plug plates (42) extends into the interior of the corresponding second wiring harness device (4), and the top ends of the two reinforcement support rods (16) are connected to the bottom of the corresponding second wiring harness device (4).

4. The wiring harness instrument for operating room wiring diagnosis according to claim 2, characterized in that: The top of the electric control box (14) is fixedly connected to an electric telescopic rod (13), the output end of the electric telescopic rod (13) is connected to the bottom of the storage bin (12), and a limit stop pad (11) is installed on the top of the limit baffle (1) and on one side of the first wiring harness device (3).

5. The wiring harness instrument for operating room wiring diagnosis according to claim 4, characterized in that: The first storage boxes (52) are each provided with a storage inner cavity (55), the second storage boxes (53) are each provided with a limited position installation cavity, and the third storage boxes (54) are each located inside a corresponding second storage box (53).

6. The wiring harness instrument for operating room wiring diagnosis according to claim 5, characterized in that: A connecting slider (56) is installed inside the second storage box (53) and above the third storage box (54); a limiting plug rod (57) extending to the inside of the first storage box (52) is installed inside the connecting slider (56); a connecting side plate (58) is installed on one side of the connecting slider (56); and a limiting pin (59) extending to the inside of the third storage box (54) is threadedly connected inside the connecting side plate (58).

7. The wiring harness instrument for operating room wiring diagnosis according to claim 1, characterized in that: A limiting cover (34) is installed inside the first wire bundling device (3) and on both sides of the sealing coil (32); a mounting sleeve (36) is installed between the three sealing coils (32); a bottom mounting rod (37) is installed at the bottom of the mounting sleeve (36); a top mounting rod (39) is installed at the top end of the mounting sleeve (36); the top end of the top mounting rod (39) extends to the inside of the top cover (31); a wire bundling roller (35) is installed on one side of the mounting sleeve (36); a line is installed on the outside of the wire bundling roller (35); a spring (33) is sleeved on the outside of the bottom mounting rod (37); and mounting clamps (38) are installed around the mounting sleeve (36).

8. The wiring harness instrument for operating room wiring diagnosis according to claim 6, characterized in that: The bottom of the supporting base plate (2) is fixedly connected with symmetrically distributed anti-slip seats.

9. The wiring harness instrument for operating room wiring diagnosis according to claim 8, characterized in that: Limiting pads (21) are installed on the top of the supporting base plate (2) and on both sides of the electric control box (14); a placement rack (5) is installed inside the storage and tidying table (51) and above the third storage box (54); two positioning plug plates are fixedly connected to the bottom of the placement rack (5); one end of the bottom of the two positioning plug plates penetrates the storage and tidying table (51) and extends to the inside of the supporting base plate (2); and a placement cavity is opened inside the placement rack (5).

10. The wiring harness instrument for operating room wiring diagnosis according to claim 6, characterized in that: A control panel is installed inside the electric control box (14), and the electric telescopic rod (13) and the electric control box (14) are both electrically connected to the control panel.

Citation Information

Patent Citations

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