Discharging table of spiral duct forming machine

By designing the unloading platform of the spiral duct forming machine, and utilizing the feeding structure and cylinder-driven rotating plate, the spiral duct is automatically unloaded, solving the problems of high labor intensity and low efficiency caused by manual unloading, and achieving the effect of automated unloading.

CN223751872UActive Publication Date: 2026-01-02KUNSHAN YUANBIANFANG MECHANICAL & ELECTRICAL INSTALLATION ENG CO LTD
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Patent Information

Application Number
CN202520282719.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-21
Publication Date
2026-01-02
Estimated Expiration
2035-02-21

AI Technical Summary

Technical Problem

Existing spiral duct forming machines require manual unloading after cutting, resulting in high labor intensity and low efficiency for workers.

Method used

A spiral duct forming machine unloading platform was designed, which includes components such as a feeding structure, a cylinder, a rotating plate, a moving plate, and a push plate. The rotating plate is driven to rotate by the cylinder, and the spiral duct is automatically unloaded in conjunction with the movement of the moving plate and the push plate.

Benefits of technology

Automated unloading has been achieved, reducing the labor intensity of workers and improving unloading efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of spiral duct machines, in particular to a spiral duct forming machine discharging table which comprises a bottom plate, an adjusting structure is arranged on the bottom plate, and a discharging structure is arranged on the adjusting structure. According to the discharging table of the spiral duct forming machine, the discharging structure and the air cylinder work to drive the rotating plate to rotate on the supporting frame through the rotating base, then spiral ducts on the containing frame can be discharged, when some spiral ducts are not discharged, the movable plate slides in the guide groove to adjust the position, the position is adjusted through the movable block in the movable groove, and therefore the spiral ducts can be discharged. When the moving rod is pushed towards the direction of the placing frame, the abutting plate moves on the fixing frame along with the moving rod, the spring is compressed, the push rod moves along with the moving rod to make contact with the spiral air pipe, and the spiral air pipe is pushed out of the placing frame to be unloaded.
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Description

TECHNICAL FIELD

[0001] The utility model relates to spiral air duct machine technical field especially relates to a spiral air duct forming machine unloading platform. BACKGROUND

[0002] Spiral air duct forming machine is a kind of mechanical equipment for producing spiral air duct, spiral air duct is also called spiral jointing thin-walled pipe, and is rolled into spiral jointing thin-walled pipe by metal strip, is a common ventilation pipe, commonly used in office building, shopping mall, subway and other civil places, purification system return air pipe, central air conditioning ventilation pipe, industrial exhaust ventilation pipe, environmental protection system exhaust ventilation pipe, mine gas extraction pipe, mine rubberized cloth air duct etc., because it is not gas leakage, not water leakage, low noise, solid, and is widely used, widely applicable.

[0003] And the existing spiral air duct forming machine is usually manually unloaded after cutting spiral air duct, and these pipes have certain weight, resulting in high labor intensity of workers, and low efficiency. UTILITY MODEL CONTENT

[0004] The utility model aims at providing a spiral air duct forming machine unloading platform to solve the problem of high labor intensity of workers and low efficiency caused by manually unloading after cutting spiral air duct of the existing spiral air duct forming machine in the above background art.

[0005] To achieve the above object, the utility model provides the following technical scheme, a spiral air duct forming machine unloading platform, including bottom plate, is provided with adjusting structure on the bottom plate, is provided with blanking structure on the adjusting structure;

[0006] The blanking structure comprises a rotating plate, a supporting frame, a rotating base, a rotating frame, a fixing base, a connecting base, a cylinder, a placing frame, a guide groove, a moving plate, a moving groove, a moving block, a fixing frame, a resisting plate, a moving rod, a spring and a pushing plate, the supporting frame is installed on the rotating plate, the rotating base is movably installed on the supporting frame, the rotating plate is installed on the rotating base, the fixing base is installed on the rotating plate, the connecting base is arranged on the rotating plate, the cylinder is movably installed on the connecting base and the driving end of the cylinder is movably connected with the fixing base, the placing frame is installed on the rotating plate, the guide groove is arranged on the placing frame, the moving plate is movably installed on the guide groove, the moving groove is arranged on the moving plate, the moving block is movably installed on the moving groove, the fixing frame is installed on the moving block, the moving rod is movably installed on the moving block and movably connected with the fixing frame, the resisting plate is installed on the moving rod, the spring is installed on the resisting plate and the end of the spring away from the resisting plate is connected with the fixing frame, and the pushing plate is installed on the moving rod.

[0007] Preferably, the bottom plate is provided with a foot pad, and the moving block is matched with the moving groove.

[0008] Preferably, the spring is provided with a pair of reinforcing ribs on the rotating frame.

[0009] Preferably, the adjusting structure comprises a hydraulic cylinder, a fixing plate, an annular sliding rail, a sliding block, a rotating shaft, a working box, a connecting frame, a worm wheel, a worm and a motor, the hydraulic cylinder is installed on the bottom plate, the fixing plate is installed on the hydraulic cylinder, the annular sliding rail is installed on the fixing plate, the sliding block is movably installed on the annular sliding rail, the working box is installed on the fixing plate, the connecting frame is installed in the working box, the worm wheel is movably installed on the connecting frame, the worm is movably installed on the worm wheel, the motor is installed on the working box and the driving end of the motor is connected with the worm, and the rotating shaft is installed on the worm wheel and one end of the rotating shaft penetrates through the side wall surface of the fixing plate and is connected with the rotating plate.

[0010] Preferably, the hydraulic cylinder is provided with a plurality of working boxes which are fixed on the fixing plate by bolts.

[0011] Preferably, one end of the moving rod is provided with a pushing handle, and the pushing plate is provided with a protective pad.

[0012] Preferably, the sliding block is provided with a pair of motors which are fixed on the working box by bolts.

[0013] Compared with the prior art, the helical air duct forming machine unloading table has the advantages that: the unloading structure, the rotating plate driven by the cylinder rotates on the support frame through the rotating seat, and then the helical air duct on the placing rack can be unloaded; when some helical air ducts are not unloaded, the moving plate slides in the guide groove to adjust the position, the moving block adjusts the position in the moving groove, the push plate corresponds to the helical air duct that is not unloaded, the moving rod is pushed to the placing rack direction, the resisting plate moves on the fixed frame along with the moving rod, the spring is compressed, the push rod moves along with the moving rod and contacts the helical air duct, and the helical air duct is pushed out of the placing rack for unloading. BRIEF DESCRIPTION OF DRAWINGS

[0014] Figure 1 It is a structural schematic view of the utility model;

[0015] Figure 2 It is another perspective structural schematic view of the utility model;

[0016] Figure 3 It is an internal structural schematic view of the utility model work tank;

[0017] Figure 4 It is a schematic view of the utility model placing rack and moving plate cooperation;

[0018] In the drawing: 1, bottom plate; 2, unloading structure; 201, rotating plate; 202, support frame; 203, rotating seat; 204, rotating frame; 205, fixed seat; 206, connecting seat; 207, cylinder; 208, placing rack; 209, guide groove; 210, moving plate; 211, moving groove; 212, moving block; 213, fixed frame; 214, resisting plate; 215, moving rod; 216, spring; 217, push plate; 3, adjusting structure, 301, hydraulic cylinder; 302, fixed plate; 303, annular slide rail; 304, sliding block; 305, rotating shaft; 306, work tank; 307, connecting frame; 308, worm wheel; 309, worm; 310, motor. DETAILED DESCRIPTION

[0019] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model, and obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments, and all other embodiments obtained by those skilled in the art without creative labor based on the embodiments in the utility model belong to the protection scope of the utility model.

[0020] Please refer to Figures 1-4 The utility model provides a technical scheme: a helical air duct forming machine unloading table, including bottom plate 1, the bottom plate 1 is provided with adjusting structure 3, the adjusting structure 3 is provided with unloading structure 2;

[0021] The blanking structure 2 comprises a rotating plate 201, a supporting frame 202, a rotating seat 203, a rotating frame 204, a fixing seat 205, a connecting seat 206, a cylinder 207, a placing frame 208, a guide groove 209, a moving plate 210, a moving groove 211, a moving block 212, a fixing frame 213, a resisting plate 214, a moving rod 215, a spring 216 and a pushing plate 217, the supporting frame 202 is installed on the rotating plate 201, the rotating seat 203 is movably installed on the supporting frame 202, the rotating plate is installed on the rotating seat 203, the fixing seat 205 is installed on the rotating plate, the connecting seat 206 is arranged on the rotating plate 201, the cylinder 207 is movably installed on the connecting seat 206 and the driving end of the cylinder 207 is movably connected with the fixing seat 205, the placing frame 208 is installed on the rotating plate, the guide groove 209 is arranged on the placing frame 208, the moving plate 210 is movably installed on the guide groove 209, the moving groove 211 is arranged on the moving plate 210, the moving block 212 is movably installed on the moving groove 211, the fixing frame 213 is installed on the moving block 212, the moving rod 215 is movably installed on the moving block 212 and the moving rod 215 is movably connected with the fixing frame 213, the resisting plate 214 is installed on the moving rod 215, the spring 216 is installed on the resisting plate 214 and one end of the spring 216, away from the resisting plate 214, is connected with the fixing frame 213, and the pushing plate 217 is installed on the moving rod 215. One pair of springs 216 can make the resisting plate 214 abut against the side wall surface of the fixing frame 213, away from the moving block 212. After the spiral air duct is machined by the spiral air duct forming machine, the spiral air duct is stacked on the placing frame 208. When discharging is needed, the cylinder 207 is driven to rotate the rotating plate on the supporting frame 202 through the rotating seat 203, so that the spiral air duct on the placing frame 208 can be discharged. When some spiral air ducts are not discharged, the moving plate 210 is adjusted in position by sliding in the guide groove 209, the pushing plate 217 is adjusted in position by the moving block 212 in the moving groove 211, the pushing plate 217 corresponds to the spiral air ducts not discharged, the moving rod 215 is pushed to the direction of the placing frame 208, the resisting plate 214 moves on the fixing frame 213 along with the moving rod 215 at this time, the spring 216 is compressed, and the pushing rod moves along with the moving rod 215 to contact the spiral air duct, so that the spiral air duct is pushed out of the placing frame 208.

[0022] Further, the bottom plate 1 is provided with feet, the moving block 212 is matched with the moving groove 211, the feet are provided with four, are symmetrically and uniformly arranged on the bottom plate 1, and the four feet can make the device stable, and the matched moving groove 211 can make the moving block 212 move stably.

[0023] Further, the spring 216 is provided with a pair, the rotating frame 204 is provided with a reinforcing rib, a pair of springs 216 makes the moving of the abutting plate 214 more stable, and the reinforcing rib increases the stability of the rotating frame 204.

[0024] Further, the adjusting structure 3 comprises a hydraulic cylinder 301, a fixed plate 302, an annular slide rail 303, a sliding block 304, a rotating shaft 305, a working box 306, a connecting frame 307, a worm wheel 308, a worm 309 and a motor 310, the hydraulic cylinder 301 is installed on the bottom plate 1, the fixed plate 302 is installed on the hydraulic cylinder 301, the annular slide rail 303 is installed on the fixed plate 302, the sliding block 304 is movably installed on the annular slide rail 303, the working box 306 is installed on the fixed plate 302, the connecting frame 307 is installed in the working box 306, the worm wheel 308 is movably installed on the connecting frame 307, the worm 309 is movably installed on the worm wheel 308, the motor 310 is installed on the working box 306, and the driving end of the motor 310 is connected with the worm 309, the rotating shaft 305 is installed on the worm wheel 308, and one end of the rotating shaft 305 penetrates through the side wall surface of the fixed plate 302 and is connected with the rotating plate 201, the driving hydraulic cylinder 301 can drive the placing frame 208 to move, and then the height of the spiral duct forming machine can be adjusted according to different heights, the motor 310 is driven, the motor 310 drives the worm 309 to rotate on the connecting frame 307, the worm wheel 308 drives the rotating shaft 305 to rotate under the action of the worm 309, and the rotating plate 201 slides on the annular slide rail 303 through the sliding block 304 under the action of the rotating shaft 305, so that the position of the placing frame 208 can be adjusted, and the discharging direction is convenient to adjust.

[0025] Further, the hydraulic cylinder 301 is provided with a plurality of hydraulic cylinders, the working box 306 is fixed on the fixed plate 302 through bolts, and the plurality of hydraulic cylinders 301 can make the fixed plate 302 move stably, and the working box 306 fixed through the bolts is convenient to install and disassemble on the fixed plate 302.

[0026] Further, one end of the moving rod 215 is provided with a pushing handle, and the pushing plate 217 is provided with a protective pad, the rotating handle is convenient to drive the moving rod 215 to move on the fixed frame 213, the protective pad is arranged on the side wall surface of the pushing plate 217 away from the moving rod 215, the protective pad increases the safety when the pushing plate 217 contacts with the spiral duct, and prevents the pushing plate 217 from damaging the spiral duct.

[0027] Further, the sliding block 304 is provided with a pair of sliding blocks, the motor 310 is fixed on the working box 306 through bolts, and the pair of sliding blocks 304 can make the rotating plate 201 rotate stably, and the motor 310 fixed through the bolts is convenient to install and disassemble on the working box 306.

[0028] Working principle: the device is placed at the discharge of the spiral duct forming machine, the driving hydraulic cylinder 301 can drive the placing rack 208 to move, and then the height of the spiral duct forming machine can be adjusted, the driving motor 310 drives the worm 309 to rotate on the connecting frame 307, the worm gear 308 drives the rotating shaft 305 to rotate under the action of the worm 309, the rotating plate 201 slides on the annular slide rail 303 through the slide block 304 under the action of the rotating shaft 305, and then the position of the placing rack 208 can be adjusted, so as to adjust the discharging direction, the spiral duct is stacked on the placing rack 208 after being processed by the spiral duct forming machine, when discharging is needed, the driving air cylinder 207 drives the rotating plate to rotate on the supporting frame 202 through the rotating seat 203, and then the spiral duct on the placing rack 208 can be discharged, when some spiral ducts are not discharged, the moving plate 210 slides in the guide groove 209 to adjust the position, the moving block 212 adjusts the position in the moving groove 211, the push plate 217 corresponds to the spiral duct that is not discharged, the moving rod 215 is pushed to the placing rack 208 direction, the resisting plate 214 moves on the fixed frame 213 with the moving rod 215 at this time, the spring 216 is compressed, the push rod moves with the moving rod 215 and contacts the spiral duct, and the spiral duct is pushed out of the placing rack 208 for discharging.

[0029] Although the embodiments of the utility model have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and spirits of the utility model, the scope of the utility model is defined by the appended claims and their equivalents.

Claims

1. A spiral duct forming machine discharge station comprising a base plate (1), characterised in that: The bottom plate (1) is provided with an adjusting structure (3), and the adjusting structure (3) is provided with a discharging structure (2); The discharging structure (2) comprises a rotating plate (201), a supporting frame (202), a rotating base (203), a rotating plate, a rotating frame (204), a fixing base (205), a connecting base (206), a cylinder (207), a placing frame (208), a guide groove (209), a moving plate (210), a moving groove (211), a moving block (212), a fixing frame (213), a resisting plate (214), a moving rod (215), a spring (216) and a pushing plate (217), the supporting frame (202) is installed on the rotating plate (201), the rotating base (203) is movably installed on the supporting frame (202), the rotating plate is installed on the rotating base (203), the fixing base (205) is installed on the rotating plate, the connecting base (206) is arranged on the rotating plate (201), the cylinder (207) is movably installed on the connecting base (206), and the driving end of the cylinder (207) is movably connected with the fixing base (205), the placing frame (208) is installed on the rotating plate, the guide groove (209) is arranged on the placing frame (208), the moving plate (210) is movably installed on the guide groove (209), the moving groove (211) is arranged on the moving plate (210), the moving block (212) is movably installed on the moving groove (211), the fixing frame (213) is installed on the moving block (212), the moving rod (215) is movably installed on the moving block (212) and movably connected with the fixing frame (213), the resisting plate (214) is installed on the moving rod (215), the spring (216) is installed on the resisting plate (214), and one end of the spring (216), away from the resisting plate (214), is connected with the fixing frame (213), and the pushing plate (217) is installed on the moving rod (215).

2. A discharge station for a spiral duct forming machine according to claim 1, characterized in that: The bottom plate (1) is provided with a foot pad, and the moving block (212) is matched with the moving groove (211).

3. A discharge station for a spiral duct forming machine as defined in claim 1, wherein: The spring (216) is provided in pairs, and the rotating frame (204) is provided with reinforcing ribs.

4. A discharge station for a spiral duct forming machine as defined in claim 1, wherein: Said adjusting structure (3) includes hydraulic cylinder (301), fixed plate (302), annular slide rail (303), sliding block (304), rotating shaft (305), working box (306), connecting frame (307), worm wheel (308), worm (309) and motor (310), hydraulic cylinder (301) is installed on the bottom plate (1), the fixed plate (302) is installed on the hydraulic cylinder (301), the annular slide rail (303) is installed on the fixed plate (302), the sliding block (304) is movably installed on the annular slide rail (303), the working box (306) is installed on the fixed plate (302), the connecting frame (307) is installed in the working box (306), the worm wheel (308) is movably installed on the connecting frame (307), the worm (309) is movably installed on the worm wheel (308), the motor (310) is installed on the working box (306), and the motor (310) drive end is connected with the worm (309), the rotating shaft (305) is installed on the worm wheel (308), and one end of the rotating shaft (305) penetrates through the side wall surface of the fixed plate (302) and is connected with the rotating plate (201).

5. A discharge station for a spiral duct forming machine according to claim 4, characterized in that: The hydraulic cylinder (301) is provided with several, the working box (306) is fixed on the fixed plate (302) by bolts.

6. A discharge station for a spiral duct forming machine as defined in claim 1, wherein: The end of the moving rod (215) is provided with a push handle, and the push plate (217) is provided with a protective pad.

7. A discharge station for a spiral duct forming machine as defined in claim 4, wherein: The sliding block (304) is provided with a pair, and the motor (310) is fixed on the working box (306) by bolts.