Water sailboard cutting mechanism

By designing a sliding, concealed cutting saw blade and a guide module, the safety hazards of the watercraft cutting mechanism in the non-working state are solved, thereby improving safety and stability and ensuring operational reliability and efficiency.

CN224103073UActive Publication Date: 2026-04-10GUANGZHOU YUJIA NEW MATERIALS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-14
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

The existing water ski cutting mechanism still exposes the cutting structure on the processing table when not in operation, posing a safety hazard and potentially causing damage to workers or goods.

Method used

A watercraft cutting mechanism was designed. The cutting saw blade is hidden under the processing table when not in use by a sliding mechanism, and the stability and accuracy of the cutting process are ensured by a guide module, including the coordinated use of guide tubes, insert rods and locking bolts.

Benefits of technology

It effectively avoids the safety threats to workers and materials posed by the cutting saw blade when it is not in operation, improves the safety and stability of the cutting process, and ensures the reliability and efficiency of operation.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224103073U_ABST
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Abstract

The utility model provides a water sailboard cutting mechanism which comprises a machining table, supporting legs are arranged at the bottom of the machining table, a cutting hole is formed in the machining table, a vertical plate located on one side of the cutting hole is arranged at the bottom of the machining table in a sliding mode in the front-back direction, an installation frame is vertically arranged on the vertical plate in a sliding mode, and a cutting motor is arranged in the installation frame. A cutting saw blade capable of penetrating through the cutting hole is arranged on an output shaft of the cutting motor. According to the water sailboard cutting mechanism, the basic requirement for cutting and processing raw materials of a sailboard can be met, the cutting structure in a non-working state can be prevented from being still directly exposed on the processing table, and therefore potential safety hazards are effectively eliminated.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to processing technical field, and particularly relates to a water sailboard cutting mechanism. BACKGROUND

[0002] As the core equipment of water sports, the water sailboard is cut and processed in the manufacturing process. The existing water sailboard cutting mechanism can meet the basic requirement of cutting and processing the raw material, but the cutting saw blade is always above the processing table whether it is in working state or not. Therefore, even if the cutting saw blade is temporarily stopped, the worker or other objects can be damaged by accidentally touching the saw blade when the worker is cleaning the waste and debris on the processing table, which has a great safety hazard and cannot fully meet the use requirement of the people. SUMMARY

[0003] Therefore, the utility model provides a water sailboard cutting mechanism, which can not only meet the basic requirement of cutting and processing the raw material of the sailboard, but also avoid the cutting structure in non-working state being directly exposed on the processing table, thereby effectively eliminating the safety hazard.

[0004] To solve the above technical problem, the utility model adopts the technical scheme of a water sailboard cutting mechanism, which comprises a processing table, a supporting leg is arranged at the bottom of the processing table, a cutting hole is formed in the processing table, a vertical plate is slidably arranged at one side of the cutting hole along the front-rear direction at the bottom of the processing table, an installation frame is vertically slidably arranged on the vertical plate, a cutting motor is arranged in the installation frame, and a cutting saw blade is arranged on the output shaft of the cutting motor and can pass through the cutting hole.

[0005] As a further improvement of the utility model, the side of the vertical plate close to the cutting hole is provided with connecting sliding grooves located on both sides of the installation frame, the side end of the installation frame is provided with connecting sliding blocks slidably connected with the connecting sliding grooves, the bottom of the processing table is further vertically provided with a first telescopic push rod located on the side of the vertical plate away from the cutting hole, a through hole is formed in the vertical plate, an installation plate is arranged on the installation frame and passes through the through hole, the output shaft of the first telescopic push rod is connected with the installation plate, and a first guide module is arranged between the processing table and the installation plate.

[0006] As a further improvement of the utility model, the first guide module comprises a guide insertion cylinder vertically arranged at the bottom of the processing table and located at the side end of the first telescopic push rod, and a guide insertion rod is arranged on the installation plate and is inserted with the first guide insertion cylinder. Through the insertion and cooperation of the guide insertion cylinder and the guide insertion rod, the installation frame, the cutting motor and the cutting saw blade can be stably vertically moved and adjusted, and the first telescopic push rod can be prevented from being easily deformed and damaged.

[0007] As a further improvement of the utility model, the machining table is further provided with a fixing plate located at both sides of the cutting hole, a second telescopic push rod is horizontally arranged on the fixing plate, a pushing material guide plate is arranged on the output shaft of the second telescopic push rod, and a second guide module is further arranged between the pushing material guide plate and the fixing plate. Through the fixing plate, the second telescopic push rod and the pushing material guide plate on both sides, the worker can accurately make the material pass through the cutting saw blade along the cutting line and be cut.

[0008] As a further improvement of the utility model, the second guide module comprises a guide socket arranged on the fixing plate, and a guide plug plate is arranged between the pushing material guide plate and the guide socket.

[0009] As a further improvement of the utility model, a locking bolt capable of abutting against the guide plug plate and used for fixing the connecting part of the fixing plate and the guide plug plate is further screw-coupled vertically on the fixing plate. The locking bolt effectively prevents the connecting part of the fixing plate and the guide plug plate from loosening, and further guarantees the safety during operation.

[0010] As a further improvement of the utility model, an extension plate is further arranged at the side end of the supporting leg, and an anchor bolt used for connecting with the ground is further arranged on the extension plate. The extension plate at the side end of the supporting leg and the anchor bolt enhance the stability of the whole device, and ensure that displacement does not occur due to vibration or external force during the cutting process.

[0011] Compared with the prior art, the utility model has the beneficial effects as follows:

[0012] Firstly, when the material needs to be cut and processed, the mounting frame and the cutting saw blade can be slid upward until the mounting frame passes through the cutting hole upward, then the material can be placed on the machining table and pass through the cutting saw blade to be cut; when the cutting and processing is not needed, the cutting saw blade can be driven to slide upward until the cutting saw blade moves to the lower side of the machining table, thereby avoiding the safety threat of the cutting saw blade to the workers and other articles.

[0013] Secondly, through the vertical plug-in cooperation of the guide socket and the guide plug plate, the pushing material guide plate can be more stable during adjustment, and the pushing plate can be prevented from being deformed by deflection and inclination, and the second telescopic push rod can be prevented from being easily deformed and damaged. BRIEF DESCRIPTION OF DRAWINGS

[0014] The utility model will be further described in detail in combination with the drawings and specific embodiments.

[0015] Figure 1 It is a structural schematic view of the utility model;

[0016] Figure 2 It is a structural schematic view of the cutting hole, the vertical plate and the guide socket of the utility model;

[0017] Figure 3 It is the structural schematic view of the second telescopic push rod and the material pushing guide plate of the utility model;

[0018] Figure 4 It is the structural schematic view of the mounting plate, the guide insertion cylinder and the guide insertion rod of the utility model;

[0019] Figure 5 It is the structural schematic view of the vertical plate, the connecting sliding groove and the connecting sliding block of the utility model.

[0020] In the figure: 101, processing table; 102, support leg; 103, cutting hole; 104, vertical plate; 105, mounting frame; 106, cutting motor; 107, cutting saw blade; 108, connecting sliding groove; 109, connecting sliding block; 110, first telescopic push rod; 111, through hole; 112, mounting plate; 113, extension plate; 114, anchor bolt; 201, guide insertion cylinder; 202, guide insertion rod; 301, fixed plate; 302, second telescopic push rod; 303, material pushing guide plate; 401, guide insertion hole; 402, guide insertion plate; 403, locking bolt. DETAILED DESCRIPTION

[0021] In order to better understand the utility model, the content of the utility model is further clarified below in conjunction with examples, but the protection content of the utility model is not limited to the following examples only. In the following description, a large number of specific details are given in order to provide a more thorough understanding of the utility model. However, it is obvious to those skilled in the art that the utility model can be implemented without one or more of these details.

[0022] As Figure 1 , 3 shown, a water sailboard cutting mechanism, including processing table 101, the bottom of processing table 101 is provided with support leg 102, processing table 101 is provided with cutting hole 103, the bottom of processing table 101 is provided with vertical plate 104 on the side of cutting hole 103 along the front and back direction, the vertical plate 104 is provided with mounting frame 105 on the vertical sliding, the mounting frame 105 is provided with cutting motor 106, the output shaft of cutting motor 106 passes through the side end of mounting frame 105 and extends to the below of cutting hole 103, the output shaft of cutting motor 106 is provided with cutting saw blade 107 that can pass through cutting hole 103.

[0023] As Figure 1 , 3As shown in Figures 4 and 5, the vertical plate 104 is provided with connecting grooves 108 on both sides of the mounting frame 105 on the side near the cutting hole 103. The side end of the mounting frame 105 is provided with a connecting slider 109 that slides with the connecting grooves 108. The bottom of the processing table 101 is also provided with a first telescopic push rod 110 on the side of the vertical plate 104 away from the cutting hole 103. The vertical plate 104 is provided with a through hole 111. The mounting frame 105 is provided with a mounting plate 112 that passes through the through hole 111. The output shaft of the first telescopic push rod 110 is connected to the mounting plate 112. A first guide module is provided between the processing table 101 and the mounting plate 112.

[0024] When cutting is required, the output axis of the first telescopic push rod 110 is first shortened by a certain length. Under the sliding cooperation of the connecting slide groove 108 and the connecting slider 109, and the guiding action of the first guide module, the mounting frame 105 and its cutting motor 106 and cutting saw blade 107 are driven to move upward, so that the upper end of the cutting saw blade 107 passes through the cutting hole 103 and moves above the processing table 101, ready to cut the canvas material. Then, the canvas material to be processed is placed on the processing table 101, ensuring that the part to be cut corresponds to the cutting saw blade 107.

[0025] The canvas material can then be driven to pass through the cutting saw blade 107 in a manner corresponding to the cutting area, thereby being cut.

[0026] When it is necessary to pause the cutting of materials, the cutting motor 106 can be stopped first, and the output axis of the first telescopic push rod 110 can be extended downward by a certain length. This drives the mounting frame 105 and the cutting motor 106 and cutting saw blade 107 on it to move downward, so that the upper end of the cutting saw blade 107 passes through the cutting hole 103 and moves to the bottom of the processing table 101. After that, it is convenient to clean the processing table 101 and avoid being accidentally injured by the cutting saw blade 107.

[0027] like Figure 1 , 4 As shown, the first guide module includes a guide cylinder 201 vertically positioned at the bottom of the processing table 101 and located at the side end of the first telescopic push rod 110. A guide rod 202, which plugs into the first guide cylinder 201, is provided on the mounting plate 112. The insertion and cooperation of the guide cylinder 201 and the guide rod 202 further ensures the stable vertical movement of the mounting frame 105, the cutting motor 106, and the cutting saw blade 107, preventing the first telescopic push rod 110 from easily deforming or being damaged.

[0028] According to another embodiment of the present invention, such as Figure 1 , 2As shown in FIGS. 3, the machining table 101 is further provided with fixed plates 301 located on both sides of the cutting hole 103, the fixed plates 301 are horizontally provided with second telescopic push rods 302, the output shafts of the second telescopic push rods 302 are provided with push material guide plates 303, and the second guiding modules are further arranged between the push material guide plates 303 and the fixed plates 301.

[0029] During the cutting machining of the sailboard material, the output shafts of the second telescopic push rods 302 on both sides are respectively elongated or shortened by a certain length, so that the interval between the two push material guide plates 303 is matched with the sailboard material, and the part to be cut of the sailboard material corresponds to the cutting saw blade 107, and then the sailboard material can be conveniently and stably moved in the direction corresponding to the cutting saw blade 107 according to the cutting part, thereby improving the cutting efficiency and effect of the material.

[0030] According to another embodiment of the present application, Figure 1 , 2 As shown in FIGS. 3, the machining table 101 is further provided with fixed plates 301 located on both sides of the cutting hole 103, the fixed plates 301 are horizontally provided with second telescopic push rods 302, the output shafts of the second telescopic push rods 302 are provided with push material guide plates 303, and the second guiding modules are further arranged between the push material guide plates 303 and the fixed plates 301.

[0031] The push material guide plate 303 is further provided with a first fastening cylinder for clamping the output shaft of the second telescopic push rod 302, the first fastening cylinder is provided with a first fastening bolt for screwing the output shaft of the second telescopic push rod 302, and the output shaft of the second telescopic push rod 302 is provided with a first threaded fastening hole for screwing the first fastening bolt; the push material guide plate 303 is further provided with a second fastening cylinder for clamping the guide plate insert plate, the second fastening cylinder is provided with a second fastening bolt for screwing the guide insert plate 402, and the guide clamping plate is provided with a second threaded fastening hole for screwing the second fastening bolt; therefore, the push material guide plate 303, the output shaft of the second telescopic push rod 302 and the guide insert plate 402 can be flexibly fixed, so that the user can conveniently replace the worn push material guide plate 303.

[0032] According to another embodiment of the present application, Figure 1 , 2As shown, the fixing plate 301 is further vertically screwed with a locking bolt 403 capable of abutting against the guide plug plate 402 and used for fixing the joint of the fixing plate 301 and the guide plug plate 402. After the sliding adjustment of the guide plug plate 402 relative to the guide insertion hole 401 and the translation adjustment of the pushing material guide plate 303 are completed, the locking bolt 403 can be tightened to process the joint of the fixing plate 301 and the guide plug plate 402, avoid the guide plug plate 402 from deviating relative to the guide insertion hole 401, and thus more stably avoid the pushing material guide plate 303 from being skewed and deformed. The locking bolt 403 is a hand screw bolt. Workers can conveniently turn the locking bolt 403 by hand.

[0033] According to another embodiment of the present application, as shown in Figure 2 As shown, the side end of the supporting leg 102 is further provided with an extension plate 113, and the extension plate 113 is further provided with an anchor bolt 114 used for connecting with the ground. Only by making the anchor bolt 114 pass through the extension plate 113 and connect with the ground, the device can be avoided from easily deviating and overturning during the working process.

[0034] The above is the preferred embodiment of the present application, and it should be pointed out that, for ordinary skilled in the art, without departing from the principles of the present application, a number of improvements and refinements can be made, and these improvements and refinements should be considered as the protection scope of the present application.

Claims

1. A water sailboard cutting mechanism, comprising a processing table (101), the bottom of the processing table (101) is provided with a supporting leg (102), characterized in that: The cutting hole (103) is arranged on the processing table (101), the vertical plate (104) is arranged on the bottom of the processing table (101) and located on one side of the cutting hole (103) and slides in the front-rear direction, the mounting frame (105) is arranged on the vertical plate (104) and slides in the vertical direction, the cutting motor (106) is arranged in the mounting frame (105), and the cutting saw blade (107) capable of penetrating through the cutting hole (103) is arranged on the output shaft of the cutting motor (106).

2. The water board cutting mechanism of claim 1, wherein: The connecting sliding grooves (108) are arranged on the side of the vertical plate (104) close to the cutting hole (103) and located on both sides of the mounting frame (105), the connecting sliding blocks (109) are arranged at the side ends of the mounting frame (105) and slide with the connecting sliding grooves (108), the first telescopic push rod (110) is arranged on the bottom of the processing table (101) and located on the side of the vertical plate (104) away from the cutting hole (103) and slides in the vertical direction, the through hole (111) is arranged on the vertical plate (104), the mounting plate (112) is arranged on the mounting frame (105) and penetrates through the through hole (111), the output shaft of the first telescopic push rod (110) is connected with the mounting plate (112), and the first guide module is arranged between the processing table (101) and the mounting plate (112).

3. The water board cutting mechanism of claim 2, wherein: The first guide module comprises the guide insertion cylinder (201) arranged on the bottom of the processing table (101) and located at the side end of the first telescopic push rod (110) and slides in the vertical direction, and the guide insertion rod (202) is arranged on the mounting plate (112) and inserted with the first guide insertion cylinder (201).

4. The water board cutting mechanism of claim 3, wherein: The fixing plates (301) are arranged on the processing table (101) and located on both sides of the cutting hole (103), the second telescopic push rod (302) is arranged on the fixing plate (301) and slides in the horizontal direction, the output shaft of the second telescopic push rod (302) is provided with the material pushing guide plate (303), and the second guide module is further arranged between the material pushing guide plate (303) and the fixing plate (301).

5. The water sailboard cutting mechanism of claim 4, wherein: The second guide module comprises the guide insertion hole (401) arranged on the fixing plate (301), and the guide insertion plate (402) is arranged between the material pushing guide plate (303) and the guide insertion hole (401).

6. The water board cutting mechanism of claim 5, wherein: The locking bolt (403) is further screwed on the fixing plate (301) in the vertical direction, can abut against the guide insertion plate (402) and is used for fixing the connection position of the fixing plate (301) and the guide insertion plate (402).

7. The water sailboard cutting mechanism of claim 6, wherein: The extension plate (113) is further arranged at the side end of the supporting leg (102), and the foundation bolt (114) is further arranged on the extension plate (113) and is used for connecting with the ground.