Novel inclined suspension wire prefabricating platform

Through the design of a new inclined suspension wire prefabrication platform, the motor drive and screw transmission components are used to accurately control the suspension wire crimping position and length, which solves the problems of inconsistent crimping position and fixed length error during the suspension wire prefabrication process, and improves the prefabrication quality and efficiency.

CN223312919UActive Publication Date: 2025-09-09中铁电气化局集团第一工程有限公司 +1
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Patent Information

Application Number
CN202422276454.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-18
Publication Date
2025-09-09
Estimated Expiration
2034-09-18

AI Technical Summary

Technical Problem

In railway engineering construction, the crimping position and crimping distance are not uniform during the prefabrication of suspension wires, errors are prone to occur when determining the length, and the suspension wires cannot remain straight during crimping.

Method used

A new type of inclined suspension wire prefabrication platform is designed, which includes a platform body, a cutting mechanism, a heart-shaped ring installation mechanism, a crimping mechanism, a tensioning mechanism and a fixed length mechanism. The crimping position and length of the suspension wire are precisely controlled by a motor drive and a screw transmission assembly to ensure that the suspension wire remains straight during the crimping process.

Benefits of technology

The precise control of the crimping position and length during the prefabrication of the suspension wire is achieved, which improves the prefabrication quality and efficiency, reduces the errors and labor intensity caused by manual operation, and improves the prefabrication accuracy.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a novel inclined suspension wire prefabricating platform which comprises a platform main body, a cutting mechanism, a heart-shaped ring mounting mechanism, a crimping mechanism, a tensioning mechanism and a length fixing mechanism, wherein the cutting mechanism, the heart-shaped ring mounting mechanism, the crimping mechanism, the tensioning mechanism and the length fixing mechanism are arranged on the platform main body; wherein the cutting mechanism is used for cutting a suspension wire, and the heart-shaped ring mounting mechanism comprises a first mounting bulge; a first translation mechanism is further arranged on the platform main body, the crimping mechanism is arranged on the first translation mechanism, and the first translation mechanism is used for driving the crimping mechanism to translate; the crimping mechanism is used for pressing the pressing pipe on the suspension wire; the tensioning mechanism is arranged to be capable of translating on the platform main body in the traction direction of the suspension wire, and the tensioning mechanism comprises a fixing part for fixing the end part of the suspension wire; the length fixing mechanism is arranged to be capable of horizontally moving on the platform body and comprises a second installation protrusion. According to the utility model, the technical effects that the crimping position and the length of the suspension wire are accurately controlled in the prefabrication process of the suspension wire, the suspension wire can be kept straight in the crimping process, and the prefabrication quality and the prefabrication efficiency of the suspension wire are improved are achieved.
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Description

Technical Field

[0001] The utility model relates to the technical field of suspension wire prefabrication, in particular to a novel inclined suspension wire prefabrication platform. Background Art

[0002] Against the backdrop of high-quality engineering, intelligent construction, and information technology applications, the quality of contact network component installation during railway construction is directly related to the stable operation of the railway. Adopting new technologies to improve construction quality and efficiency is a key development focus. Among them, for the prefabrication of suspension wires in railway networks, the relevant technologies use manual prefabrication. Specifically, during the prefabrication process, the reference point fixing module is inaccurate, the limit position of the crimping tube is not uniform, and the crimping pliers can be moved at will by humans, resulting in inconsistent crimping positions and distances. When fixing the length, manually pulling one end of the suspension wire is prone to measurement errors due to lack of tension, and there is no independent tail wire tensioning device, resulting in the suspension wire not being kept straight during crimping. Utility Model Content

[0003] The main purpose of the utility model is to provide a new inclined suspension wire prefabrication platform to solve the problems in related technologies such as inconsistent crimping positions and crimping distances during the prefabrication process of the suspension wires, errors in length determination, and the inability to ensure that the suspension wires are in a straight state during crimping.

[0004] In order to achieve the above-mentioned purpose, the utility model provides a novel inclined hanging wire prefabricated platform, comprising: a platform body, a cutting mechanism, a heart-shaped ring installation mechanism, a crimping mechanism, a tensioning mechanism and a length-fixing mechanism sequentially arranged on the platform body; wherein,

[0005] The cutting mechanism is used to cut the suspension wire, and the heart-shaped ring installation mechanism includes a first installation protrusion for sleeve-fitting the heart-shaped ring;

[0006] The platform body is further provided with a first translation mechanism, the crimping mechanism is provided on the first translation mechanism, and the first translation mechanism is used to drive the crimping mechanism to translate in the pulling direction of the suspension wire;

[0007] The crimping mechanism is used to compress the pressure pipe on the suspension wire;

[0008] The tensioning mechanism is configured to be capable of translationally moving on the platform body along the pulling direction of the suspension line, and the tensioning mechanism includes a fixing portion for fixing the end of the suspension line;

[0009] The length-fixing mechanism is configured to be capable of translationally moving on the platform body along the pulling direction of the suspension line, and the length-fixing mechanism includes a second mounting protrusion for sleeve-engaging the heart-shaped ring.

[0010] Furthermore, the cutting mechanism includes a cutting seat and a hydraulic cutting tool, wherein the cutting seat is arranged on the platform body, and the hydraulic cutting tool is arranged on the cutting seat.

[0011] Furthermore, the first mounting protrusion and the second mounting protrusion have outer contours matching the heart-shaped ring, and the tips of the first mounting protrusion and the second mounting protrusion are arranged opposite to each other.

[0012] Furthermore, a first drive motor is provided on the platform body, and the first drive motor is used to drive the first translation mechanism to move linearly.

[0013] Furthermore, the first drive motor is a stepper motor, the first translation mechanism includes a first screw transmission assembly, the first screw transmission assembly is arranged on the platform body and is connected to the stepper motor, and the crimping mechanism is arranged on the screw slider of the first screw transmission assembly.

[0014] Furthermore, the crimping mechanism includes a crimping seat and a crimping head, wherein the crimping seat is fixed on the lead screw slider, and the crimping head is arranged above the crimping seat, and the crimping head is a pneumatic or hydraulic pressure head.

[0015] Furthermore, the tensioning mechanism includes a second drive motor, a gear, a rack, a pull plate and a slide rail, the slide rail is fixed on the platform body, the rack is slidably arranged on the slide rail, the pull plate is fixed to the end of the rack, the fixing part is arranged on the pull plate, the second drive motor is fixed on the platform body, the second drive motor is connected to the gear, and the gear is engaged with the rack.

[0016] Furthermore, the fixing portion is a clamp provided on the pulling plate, the clamp is used to clamp the tail end of the suspension wire, and the second driving motor is a servo motor.

[0017] Furthermore, the fixed length mechanism further includes a slide, a fixed plate, a second screw transmission assembly, a screw slide and a third drive motor;

[0018] The screw slide is fixed on the platform body, the second screw transmission assembly is arranged on the screw slide and is connected to the third drive motor, the screw slider of the second screw transmission assembly is fixedly connected to the slide, the fixed plate is fixed on the slide, and the second mounting protrusion is fixed on the fixed plate.

[0019] Furthermore, centers of the first mounting protrusion, the second mounting protrusion, and the fixing portion are located on the same horizontal line, and the third driving motor is configured as a servo motor.

[0020] In the embodiment of the present invention, a platform body is provided, and a cutting mechanism, a heart-shaped ring mounting mechanism, a crimping mechanism, a tensioning mechanism and a fixed length mechanism are sequentially provided on the platform body; wherein the cutting mechanism is used to cut the suspension line, and the heart-shaped ring mounting mechanism includes a first mounting protrusion for sleeved with the heart-shaped ring; a first translation mechanism is also provided on the platform body, and the crimping mechanism is provided on the first translation mechanism, and the first translation mechanism is used to drive the crimping mechanism to translate in the traction direction of the suspension line; the crimping mechanism is used to compress the pressure tube on the suspension line; the tensioning mechanism is provided to be able to translate along the traction direction of the suspension line on the platform body, and the tensioning mechanism includes a fixing part for fixing the end of the suspension line; the fixed length mechanism is provided to be able to translate along the traction direction of the suspension line on the platform body, and the fixed length mechanism includes a second mounting protrusion for sleeved with the heart-shaped ring The invention achieves the purpose of using the heart-shaped ring installation mechanism fixed on the platform body as a fixed reference point during the prefabrication process, using the first translation mechanism to accurately control the position of the crimping mechanism during crimping, and also being able to use the fixed length mechanism to connect the suspension line and translate on the platform body to accurately determine the length of the suspension line. At the same time, the purpose of straightening the suspension line by connecting the tail end of the suspension line during crimping is achieved by using the tensioning mechanism, thereby achieving the technical effect of accurately controlling the crimping position and length of the suspension line during the prefabrication process of the suspension line, and being able to keep the suspension line straight during the crimping process, thereby improving the prefabrication quality and efficiency of the suspension line, thereby solving the problems in the related art of inconsistent crimping position and crimping distance of the suspension line during the prefabrication process, prone to errors in length setting, and inability to ensure that the suspension line is in a straight state during crimping. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] The accompanying drawings, which constitute part of the present invention, are intended to provide a further understanding of the present invention and to make the other features, purposes, and advantages of the present invention more apparent. The accompanying drawings and descriptions of the exemplary embodiments of the present invention are intended to explain the present invention and do not constitute an undue limitation of the present invention. In the accompanying drawings:

[0022] Figure 1 It is a structural diagram of a prefabricated platform according to an embodiment of the present utility model;

[0023] Figure 2 This is a schematic diagram of the prefabricated hanging wire;

[0024] Among them, 1 platform body, 2 cutting mechanism, 3 heart-shaped ring mounting mechanism, 30 first mounting protrusion, 4 crimping mechanism, 5 tensioning mechanism, 50 fixing part, 501 chuck, 51 rack, 52 gear, 53 pulling plate, 6 first translation mechanism, 60 first driving motor, 7 fixed length mechanism, 70 screw slide, 71 slide seat, 72 fixed plate, 73 second mounting protrusion. DETAILED DESCRIPTION

[0025] In order to help those skilled in the art better understand the present invention, the following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts should fall within the scope of protection of the present invention.

[0026] It should be noted that the terms "first," "second," and the like in the specification and claims of the present invention and the accompanying drawings are used to distinguish similar objects and are not necessarily used to describe a specific order or precedence. It should be understood that the terms used in this manner are interchangeable where appropriate for the purposes of describing the embodiments of the present invention.

[0027] In this utility model, the terms "upper," "lower," "inner," and the like indicate positions or locations based on those shown in the accompanying drawings. These terms are intended to better describe the utility model and its embodiments and are not intended to limit the devices, elements, or components indicated to specific positions, or to their construction or operation in a specific position.

[0028] Furthermore, some of the above terms may be used to express other meanings besides indicating a position or location. For example, the term "on" may also be used to indicate a dependency or connection in certain circumstances. Those skilled in the art will understand the specific meanings of these terms in this utility model based on the specific circumstances.

[0029] Furthermore, the terms "disposed," "provided with," "connected," and "fixed" should be interpreted broadly. For example, "connected" can mean a fixed connection, a removable connection, or an integral structure; it can be a mechanical connection or an electrical connection; it can be a direct connection, an indirect connection through an intermediary, or an internal communication between two devices, elements, or components. Those skilled in the art will understand the specific meanings of these terms in this utility model based on the specific circumstances.

[0030] Additionally, the term "plurality" shall mean two or more.

[0031] It should be noted that, in the absence of conflict, the embodiments and features of the embodiments of the present invention can be combined with each other. The present invention will be described in detail below with reference to the accompanying drawings and in combination with the embodiments.

[0032] To solve related technical problems, such as Figure 1As shown, the embodiment of the present invention provides a new type of inclined hanging wire prefabricated platform, comprising: a platform body 1, a cutting mechanism 2, a heart-shaped ring installation mechanism 3, a crimping mechanism 4, a tensioning mechanism 5 and a length fixing mechanism 7 sequentially arranged on the platform body 1; wherein,

[0033] The cutting mechanism 2 is used to cut the suspension wire, and the heart-shaped ring installation mechanism 3 includes a first installation protrusion 30 for sleeve-fitting the heart-shaped ring;

[0034] The platform body 1 is further provided with a first translation mechanism 6, on which the crimping mechanism 4 is provided. The first translation mechanism 6 is used to drive the crimping mechanism 4 to translate in the pulling direction of the suspension wire.

[0035] The crimping mechanism 4 is used to press the pressure pipe on the suspension wire;

[0036] The tensioning mechanism 5 is configured to be able to translate on the platform body 1 along the pulling direction of the suspension line. The tensioning mechanism 5 includes a fixing portion 50 for fixing the end of the suspension line.

[0037] The length-fixing mechanism 7 is configured to be capable of translationally moving on the platform body 1 along the pulling direction of the suspension line. The length-fixing mechanism 7 includes a second mounting protrusion 73 for sleeve-engaging the heart-shaped ring.

[0038] In this embodiment, the new inclined suspension wire prefabrication platform mainly includes a platform body 1 and various prefabrication equipment installed on the platform body 1. Generally speaking, the prefabrication process of the suspension wire mainly includes pulling the suspension wire out from the winding drum, passing the head end of the suspension wire through one of the channels of the pressure tube, and then winding the suspension wire around the outside of the heart-shaped ring and passing it through the other channel of the pressure tube, and then applying pressure to the pressure tube through the crimping equipment to deform the crimping tube and hold the suspension wire tightly. In this process, the length of the suspension wire extended after passing through the other channel of the pressure tube needs to be controlled, and a connecting ring needs to be crimped at its end, so that the prefabrication of one end of the suspension wire can be completed. Then the suspension wire is pulled again so that the overall length of the suspension wire meets the requirements and then the suspension wire is cut off, and the end of the suspension wire is passed through one of the channels of the pressure tube, and then passed through the outside of another heart-shaped ring and passed through the other channel of the pressure tube. The subsequent steps are consistent with the prefabrication process of the head end of the suspension wire, and will not be repeated in this embodiment. The prefabricated suspension wire is as follows Figure 2 shown.

[0039] Based on the above-mentioned prefabrication process, in this embodiment, a cutting mechanism 2, a heart-shaped ring mounting mechanism 3, a crimping mechanism 4, a tensioning mechanism 5 and a length-fixing mechanism 7 are arranged on the platform body 1. The cutting mechanism 2 is mainly used to cut the suspension wire, and can adopt cutting pliers in related technologies, etc. Of course, other cutting equipment can also be used, and this embodiment does not limit it. The heart-shaped ring mounting mechanism 3 is fixed on the platform body 1 as a fixed reference point. In order to facilitate the installation of the heart-shaped ring, the heart-shaped ring mounting mechanism 3 in this embodiment includes a first mounting protrusion 30. The first mounting protrusion 30 has an outer contour that matches the inner contour of the heart-shaped ring. During prefabrication, the heart-shaped ring can be sleeved on the first mounting protrusion 30, and then the suspension wire can be wrapped around the outside of the heart-shaped ring.

[0040] The crimping mechanism 4 is arranged on the right side of the heart-shaped ring mounting mechanism 3. The crimping mechanism 4 is arranged on the first translation mechanism 6. The first translation mechanism 6 can be driven to move linearly on the platform body 1 to adjust the position of the crimping mechanism 4. In this embodiment, the first translation mechanism 6 is an electrically driven translation mechanism, which can control the amount of movement through electrical signals, thereby accurately controlling the position of the crimping mechanism 4. After the suspension wire passes around the heart-shaped ring and through the channel of the crimping tube, the crimping tube can be placed in the crimping position of the crimping mechanism 4, and the crimping of the crimping tube is completed by the crimping structure. The crimping mechanism 4 can be a hydraulic, pneumatic or electric mechanism, and is not limited to it in this embodiment.

[0041] In addition, it should be noted that before crimping, the head end of the suspension wire can continue to be pulled forward for a certain length after passing through the second channel of the pressure tube, that is, the head end of the suspension wire extends out of the pressure tube for a certain length. In order to keep this section straight, the head end of the suspension wire can be connected to the tensioning mechanism 5 after extending out of the pressure tube. The tensioning mechanism 5 is configured to be able to translate along the pulling direction of the suspension wire on the platform body 1. The tensioning mechanism 5 includes a fixing portion 50 for fixing the end of the suspension wire. In this embodiment, the tensioning mechanism 5 can be electrically driven. First, the tensioning mechanism 5 can pull the end of the suspension wire to move and control the length of the suspension wire extending out of the pressure tube. Secondly, after the tensioning mechanism 5 tightens the suspension wire, the suspension wire can be in a straight state, which is convenient for subsequent crimping. The fixing portion 50 in the tensioning mechanism 5 can be a clamping structure that can clamp the suspension wire, or a clamping structure that can clamp the suspension wire, etc. This embodiment does not impose any restrictions.

[0042] After completing the crimping of one end of the suspension wire, the heart-shaped ring can be removed from the first mounting protrusion 30, and then the suspension wire can be pulled forward to the fixed length mechanism 7, and the heart-shaped ring can be sleeved on the second mounting protrusion 73 on the fixed length mechanism 7. The fixed length mechanism 7 is configured to be able to translate along the pulling direction of the suspension wire on the platform body 1. In this embodiment, the fixed length mechanism 7 is still electrically driven, so that the movement amount of the fixed length mechanism 7 can be accurately controlled, and the overall length of the suspension wire can be controlled. After the length of the suspension wire meets the requirements, the suspension wire is cut off by the cutting mechanism 2, and then the pressure tube is inserted into the end of the suspension wire, and the prefabrication process of the head end of the suspension wire is repeated to complete the prefabrication of the end of the suspension wire.

[0043] The utility model achieves the purpose of using the heart-shaped ring mounting mechanism 3 fixed on the platform body 1 as a fixed reference point during the prefabrication process, using the first translation mechanism 6 to accurately control the position of the crimping mechanism 4 during crimping, and can also use the fixed length mechanism 7 to connect the suspension line to the platform body 1 for translation to accurately determine the length of the suspension line, and at the same time use the tensioning mechanism 5 to connect the tail end of the suspension line to straighten the suspension line during crimping, thereby achieving the technical effect of accurately controlling the crimping position and length of the suspension line during the prefabrication process of the suspension line, and being able to keep the suspension line straight during the crimping process, thereby improving the prefabrication quality and prefabrication efficiency of the suspension line, thereby solving the problems in the related art of inconsistent crimping position and crimping distance of the suspension line during the prefabrication process, prone to errors in length setting, and the inability to ensure that the suspension line is in a straight state during crimping.

[0044] In one embodiment of the cutting mechanism 2, the cutting mechanism 2 includes a cutting seat and a hydraulic cutting tool. The cutting seat is installed on the platform body 1, and the hydraulic cutting tool is installed on the cutting seat. During the pulling process, the suspension line passes through the cutting area of ​​the cutting seat, thereby facilitating direct cutting of the suspension line after the length is fixed.

[0045] like Figure 1 As shown, in one embodiment of the mounting protrusion, the first mounting protrusion 30 and the second mounting protrusion 73 have an outer contour that matches the heart-shaped ring. To facilitate length determination and prefabrication of the end of the suspension wire, the tips of the first mounting protrusion 30 and the second mounting protrusion 73 are arranged relative to each other.

[0046] like Figure 1 As shown, the platform body 1 is provided with a first drive motor 60 for driving the first translation mechanism 6 to move linearly. Furthermore, the first drive motor 60 is a stepper motor, and the first translation mechanism 6 includes a first screw transmission assembly, which is provided on the platform body 1 and in transmission connection with the stepper motor, and the crimping mechanism 4 is provided on the screw slider of the first screw transmission assembly.

[0047] Furthermore, the crimping mechanism 4 includes a crimping seat and a crimping head. The crimping seat is fixed on the lead screw slider, and the crimping head is arranged above the crimping seat. The crimping head is a pneumatic or hydraulic pressure head.

[0048] like Figure 1 As shown, in one embodiment of the tensioning mechanism 5, the tensioning mechanism 5 includes a second drive motor, a gear 52, a rack 51, a pull plate 53, and a slide rail. The slide rail is fixed to the platform body 1, the rack 51 is slidably mounted on the slide rail, the pull plate 53 is fixed to the end of the rack 51, the fixing portion 50 is mounted on the pull plate 53, the second drive motor is fixed to the platform body 1, the second drive motor is connected to the gear 52, and the gear 52 is meshed with the rack 51. Furthermore, the fixing portion 50 is a chuck 501 mounted on the pull plate 53, the chuck 501 is used to clamp the tail end of the suspension wire, and the second drive motor is a servo motor.

[0049] Before crimping the suspension wire, the end of the suspension wire can be clamped and fixed on the clamping head 501. Then, the second drive motor is controlled to rotate the gear 52, thereby driving the rack 51 to slide on the slide rail. As the rack 51 slides, the pull plate 53 pulls the end of the suspension wire to keep the suspension wire straight.

[0050] like Figure 1 As shown, in one embodiment of the length fixing mechanism 7, the length fixing mechanism 7 further includes a slide 71, a fixing plate 72, a second screw transmission assembly, a screw slide 70 and a third drive motor;

[0051] The screw slide 70 is fixed on the platform body 1, the second screw transmission assembly is arranged on the screw slide 70 and is connected to the third drive motor, the screw slider of the second screw transmission assembly is fixedly connected to the slide 71, the fixed plate 72 is fixed on the slide 71, and the second mounting protrusion 73 is fixed on the fixed plate 72.

[0052] Specifically, in this embodiment, a third drive motor controls the linear movement of the slide 71 and the fixing plate 72 on the platform body 1, thereby pulling the prefabricated heart-shaped loop on the suspension wire and extending the suspension wire to a predetermined length. Furthermore, the centers of the first mounting protrusion 30, the second mounting protrusion 73, and the fixing portion 50 are co-located, and the third drive motor is configured as a servo motor.

[0053] To achieve automated prefabrication, the first drive motor 60, the second drive motor, and the third drive motor can be connected to a PLC control system. By uniformly issuing control commands, the corresponding drive motors can be controlled, thereby semi-automatically completing the prefabrication of the suspension wires and ensuring high prefabrication quality. The PLC control system significantly improves production efficiency. The device uses data import, adjustable parameters, and changeable set values. This can shorten the prefabrication time for each inclined suspension wire and improve the prefabrication accuracy of the inclined suspension wires. Traditional prefabrication methods rely solely on manual control of prefabrication quality. With the use of a CNC device, prefabrication accuracy can be controlled to the millimeter level. Furthermore, it can reduce the labor intensity of operators. In traditional prefabrication methods, the accessories of the inclined suspension wires are manually held in place by the operator and then tightened. The tightening of each component requires manual effort, improving the operator's working environment. Simultaneously, prefabrication data can be directly copied to the new inclined suspension wire prefabrication platform, reducing problems such as omissions, errors, and biases that occur during the transfer of inherited data, while also avoiding errors caused by manual readings.

[0054] The above description is merely a preferred embodiment of the present invention and is not intended to limit the present invention. Those skilled in the art will readily appreciate that the present invention is susceptible to various modifications and variations. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of the present invention shall be included within the scope of protection of the present invention.

Claims

1. A new type of inclined hanging wire prefabricated platform, characterized by: include: The platform body includes a cutting mechanism, a heart-shaped ring installation mechanism, a crimping mechanism, a tensioning mechanism, and a length-fixing mechanism, which are sequentially arranged on the platform body; wherein, The cutting mechanism is used to cut the suspension wire, and the heart-shaped ring installation mechanism includes a first installation protrusion for sleeve-fitting the heart-shaped ring; The platform body is further provided with a first translation mechanism, the crimping mechanism is provided on the first translation mechanism, and the first translation mechanism is used to drive the crimping mechanism to translate in the pulling direction of the suspension wire; The crimping mechanism is used to compress the pressure pipe on the suspension wire; The tensioning mechanism is configured to be capable of translationally moving on the platform body along the pulling direction of the suspension line, and the tensioning mechanism includes a fixing portion for fixing the end of the suspension line; The length-fixing mechanism is configured to be capable of translationally moving on the platform body along the pulling direction of the suspension line, and the length-fixing mechanism includes a second mounting protrusion for sleeve-engaging the heart-shaped ring.

2. The novel inclined hanging wire prefabricated platform according to claim 1 is characterized in that: The cutting mechanism includes a cutting seat and a hydraulic cutting tool. The cutting seat is arranged on the platform body, and the hydraulic cutting tool is arranged on the cutting seat.

3. The novel inclined hanging wire prefabricated platform according to claim 2 is characterized in that: The first mounting protrusion and the second mounting protrusion have outer contours matching the heart-shaped ring, and the tips of the first mounting protrusion and the second mounting protrusion are arranged opposite to each other.

4. The novel inclined hanging wire prefabricated platform according to claim 1 is characterized in that: The platform body is provided with a first drive motor, and the first drive motor is used to drive the first translation mechanism to move linearly.

5. The novel inclined hanging wire prefabricated platform according to claim 4 is characterized in that: The first driving motor is a stepping motor, the first translation mechanism includes a first screw transmission assembly, the first screw transmission assembly is arranged on the platform body and is connected to the stepping motor, and the crimping mechanism is arranged on the screw slider of the first screw transmission assembly.

6. The novel inclined hanging wire prefabricated platform according to claim 5 is characterized in that: The crimping mechanism includes a crimping seat and a crimping head. The crimping seat is fixed on the lead screw slider, and the crimping head is arranged above the crimping seat. The crimping head is a pneumatic or hydraulic pressure head.

7. The novel inclined hanging wire prefabricated platform according to claim 2 is characterized in that: The tensioning mechanism includes a second drive motor, a gear, a rack, a pull plate and a slide rail. The slide rail is fixed on the platform body, the rack is slidably arranged on the slide rail, the pull plate is fixed to the end of the rack, the fixing part is arranged on the pull plate, the second drive motor is fixed on the platform body, the second drive motor is connected to the gear, and the gear is engaged with the rack.

8. The novel inclined hanging wire prefabricated platform according to claim 7 is characterized in that: The fixing portion is a clamping head provided on the pulling plate, the clamping head is used to clamp the tail end of the suspension wire, and the second driving motor is a servo motor.

9. The novel inclined hanging wire prefabricated platform according to claim 2 is characterized in that: The fixed length mechanism also includes a slide, a fixed plate, a second screw transmission assembly, a screw slide and a third drive motor; The screw slide is fixed on the platform body, the second screw transmission assembly is arranged on the screw slide and is connected to the third drive motor, the screw slider of the second screw transmission assembly is fixedly connected to the slide, the fixed plate is fixed on the slide, and the second mounting protrusion is fixed on the fixed plate.

10. The novel inclined hanging wire prefabricated platform according to claim 9 is characterized in that: Centers of the first mounting protrusion, the second mounting protrusion, and the fixing portion are located on the same horizontal line, and the third driving motor is configured as a servo motor.