Glass reinforced plastic pipe connecting piece production equipment

By implementing measures such as push adjustment components, feeding guide components, heating components, and trimming mechanisms, the problem of uneven winding of fiberglass fibers was solved, the production quality of fiberglass pipe connectors was improved, and the stable bonding and uniform heating of fiberglass fibers and sealing gaskets were ensured.

CN120840091AInactive Publication Date: 2025-10-28安徽新富宝建材有限公司
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Patent Information

Application Number
CN202511263600.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-09-05
Publication Date
2025-10-28
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

During the production of FRP pipe connectors, the flexibility of the sealing gaskets leads to uneven winding of FRP fibers, affecting the quality of the connectors.

Method used

By setting up a push adjustment component, a feeding guide component, a heating component, a vibration component, and a trimming mechanism, the stable bonding between the fiberglass and the sealing gasket is ensured, the conveying speed and heating uniformity are adjusted, air bubbles are removed, the outer wall is trimmed to be regular, and the winding quality is improved.

Benefits of technology

This achieves a stable bond between fiberglass and sealing gaskets, improves the finished quality of connectors, ensures uniform heating and tight winding of fiberglass, reduces the generation of air bubbles, and enhances the overall quality of the finished product.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses glass reinforced plastic pipe connecting piece production equipment, and belongs to the technical field of glass reinforced plastic pipe production. The device comprises a supporting frame, a driving motor is fixedly installed on one side of the supporting frame, the output end of the driving motor is fixedly connected with a bearing frame, a feeding mechanism used for feeding glass fiber reinforced plastic fibers is arranged on one side of the bearing frame, the feeding mechanism comprises a feeding frame, and a pushing adjusting assembly is arranged in the middle of the feeding frame. According to the glass fiber reinforced plastic fiber winding device, the pushing adjusting assembly is arranged, the pushing guide rails are used for driving the movable rolling wheels to move, glass fiber reinforced plastic fibers are pulled and adjusted, it is guaranteed that the glass fiber reinforced plastic fibers and the sealing gaskets are stably combined, gaps generated in the glass fiber reinforced plastic fiber winding process are reduced, and the service life of the glass fiber reinforced plastic fibers is prolonged. The quality of finished connecting pieces is improved.
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Description

Technical Field

[0001] This invention relates to the field of fiberglass pipe production technology, and in particular to a fiberglass pipe connector production equipment. Background Technology

[0002] The connector for fiberglass pipes is a workpiece used to seal the joints of fiberglass pipes. Its specific structure includes an inner sealing gasket and an outer jacket formed by hot-melting fiberglass. Therefore, the connector is produced by winding fiberglass around the sealing gasket and then hot-melting it. However, in actual production, the sealing gasket is often a flexible rubber sleeve with multiple layers of annular grooves on its surface. Because the sealing gasket is flexible, it is easily deformed by compression during storage and transportation, causing changes in the width and gaps of the grooves. This results in varying capacities for the fiberglass in different grooves, and some narrower grooves can significantly hinder the winding of the fiberglass, leading to uneven winding of the fiberglass on the sealing gasket and a decrease in the quality of the finished connector. Therefore, improvements are necessary. Summary of the Invention

[0003] This invention provides a fiberglass pipe connector production equipment that can solve the problem of uneven fiberglass fiber winding in the production process of connectors in the prior art.

[0004] This invention provides a fiberglass pipe connector production equipment, including a support frame. A drive motor is fixedly installed on one side of the support frame, and a bearing frame is fixedly connected to the output end of the drive motor. A heating component is arranged above the bearing frame. A feeding mechanism for feeding fiberglass is arranged on one side of the bearing frame. The feeding mechanism includes a feeding rack, and a pushing adjustment component is arranged in the middle of the feeding rack. The pushing adjustment component includes two symmetrically arranged pushing units. Each pushing unit includes a pushing frame. A plurality of end rollers are rotatably connected to one end of the pushing frame. A plurality of pushing guide rails are fixedly installed inside the pushing frame. An adjusting push rod is slidably installed on the inner wall of the pushing guide rail. A movable roller is rotatably installed on the output end of the adjusting push rod. A distance sensor is fixedly installed on the other end of the pushing frame.

[0005] As a further aspect of the present invention: a feeding guide assembly is fixedly installed at one end of the feeding rack, the feeding guide assembly includes a lower guide frame, the top of the lower guide frame is provided with a plurality of lower guide grooves, and a plurality of lower guide rollers are rotatably installed in the middle of the inner wall of the plurality of lower guide grooves.

[0006] As a further aspect of the present invention, the outer walls of the end roller, the movable roller, and the lower guide roller are all provided with limit grooves.

[0007] As a further embodiment of the present invention: an upper guide frame is fixedly installed above the lower guide frame, and a plurality of pressing push rods are fixedly installed on the top of the inner wall of the upper guide frame. Roller frames are fixedly installed at the output ends of the plurality of pressing push rods. Upper guide rollers are rotatably installed inside the roller frames, and friction pads are fixedly connected to the outer wall of the upper guide rollers.

[0008] As a further aspect of the present invention: the heating assembly includes a heating cover, a heater is fixedly installed at the bottom of the inner wall of the heating cover, an air supply pipe is fixedly connected to the top of the heating cover, one end of the air supply pipe is fixedly connected to the output end of an external air supply pump, and an air guide is fixedly installed in the middle of the inner wall of the heating cover, with several through slots opened in the middle of the air guide.

[0009] As a further embodiment of the present invention: a mounting frame is fixedly connected to the middle of the support frame, a trimming mechanism is fixedly installed at one end of the mounting frame, the trimming mechanism includes a trimming frame, a pushing cylinder is fixedly installed at the bottom of the inner wall of the trimming frame, a pushing frame is fixedly connected to the output end of the pushing cylinder, a trimming roller is rotatably installed on the inner wall of the pushing frame, and a slag discharge guide trough is provided below the support frame.

[0010] As a further aspect of the present invention: an auxiliary heater is fixedly installed in the middle of the trimming frame, and a temperature sensor is fixedly installed on the top of one side of the trimming frame.

[0011] As a further embodiment of the present invention: a vibration assembly is fixedly installed in the middle of the mounting frame, the vibration assembly includes a lifting cylinder, a contact cover plate is fixedly connected to the output end of the lifting cylinder, a contact roller is rotatably installed in the middle of the contact cover plate, a vibration frame is fixedly connected to the inner wall of the contact cover plate, and a vibrator is fixedly installed on one side of the vibration frame.

[0012] As a further aspect of the present invention: the feeding rack includes a horizontal section and an inclined section, the inclined section is inclined upward at one end near the support frame, and a column is fixedly connected to the bottom of the feeding rack.

[0013] As a further aspect of the present invention: the support frame includes a support shaft, one end of which is fixedly connected to a fixing disc, and the other end of which is threadedly connected to a pressure disc.

[0014] Compared with the prior art, the beneficial effects of the present invention are: by setting up a push adjustment component, the present invention uses the push guide rail to drive the movable roller to move, and pulls and adjusts the fiberglass, ensuring the stable bonding between the fiberglass and the sealing gasket, reducing the generation of gaps during the winding of the fiberglass, and improving the quality of the finished connector. This invention utilizes a feeding and guiding assembly. A pressing push rod drives the upper guide rollers downwards, causing the friction pads to contact the fiberglass fibers, thus braking and decelerating the fibers. Adjusting the conveying direction of the upper guide rollers allows for pulling or pushing the fiberglass fibers, effectively controlling their conveying speed. Simultaneously, the lower guide grooves and lower guide rollers divert and isolate individual fiberglass fibers, ensuring stable fiberglass conveying. This invention uses a heater to heat and melt fiberglass fibers, which are then wrapped around a sealing gasket. At the same time, by setting up an air guide and a channel, hot air delivered from the channel can be directly blown onto the fiberglass fibers wrapped in the groove, thereby making the fiberglass fibers melt more evenly and improving the uniformity of heating the fiberglass. This invention uses a vibrator to drive the contact cover plate and contact roller to vibrate. The contact roller and the pressure plate are used to transmit the vibration, which drives the support frame and the fiberglass on it to vibrate. This helps to remove air bubbles and prevents air introduced during the fiberglass winding process from forming bubbles in the heated and softened fiberglass, which would otherwise reduce the quality of the finished connector. This invention ensures the regularity of the outer wall of the connector after molding. By using the pushing action of the pushing cylinder, the trimming roller is pushed out and comes into contact with the fiberglass during the winding process, thereby achieving the trimming of the position and winding tightness of the fiberglass. Attached Figure Description

[0015] Figure 1 The three-dimensional representation of the present invention Figure 1 ; Figure 2 The three-dimensional representation of the present invention Figure 2 ; Figure 3 This is a cross-sectional view of the feeding guide component of the present invention; Figure 4 A cross-sectional view of the push adjustment component of this invention; Figure 5 This is a cross-sectional view of the heating assembly of the present invention; Figure 6 This is a cross-sectional view of the vibration component of the present invention; Figure 7 This is a cross-sectional view of the vibration component of the present invention; Figure 8 This is a perspective view of the connector and sealing gasket of the present invention.

[0016] Explanation of reference numerals in the attached figures: 1. Support Components; 101. Support Frame; 102. Bearing Frame; 103. Pressing Plate; 104. Drive Motor; 105. Slag Discharge Guide Channel; 106. Mounting Frame; 2. Feeding Mechanism; 201. Feeding Frame; 202. Feeding Guide Components; 2021. Lower Guide Frame; 2022. Lower Guide Channel; 2023. Lower Guide Roller; 2024. Upper Guide Frame; 2025. Upper Guide Roller; 2026. Pressing Push Rod; 2027. Roller Frame; 203. Push Adjustment Components; 2031. Push Frame; 2032. Push Guide Rail; 2033. Movable Roller; 2034. End roller; 2035. Distance sensor; 2036. Adjusting push rod; 204. Column; 3. Heating assembly; 301. Heating cover; 302. Air guide cover; 303. Air supply pipe; 304. Electric heater; 305. Through slot; 4. Trimming mechanism; 401. Trimming frame; 402. Temperature sensor; 403. Auxiliary heater; 405. Trimming roller; 406. Push cylinder; 5. Vibration assembly; 501. Contact cover plate; 502. Vibration frame; 503. Contact roller; 504. Vibrator; 505. Lifting cylinder; 6. Sealing gasket. Detailed Implementation

[0017] The specific embodiments of the present invention will be described in detail below, but it should be understood that the scope of protection of the present invention is not limited to the specific embodiments.

[0018] The connector to be produced by this invention has the following structure: Figure 8 As shown, Figure 8 (a) is a schematic diagram of the sealing gasket 6, which is a rubber sleeve with several annular grooves. Figure 8 (b) is a finished product drawing of the connector, which is obtained by wrapping fiberglass around the sealing gasket 6 and then melting and molding it. like Figures 1 to 7 As shown in the figure, this embodiment of the present invention provides a fiberglass pipe connector production equipment. Please refer to [link / reference]. Figure 1 The system includes a support component 1, which includes a support frame 101. A motor frame is fixedly installed on one side of the support frame 101, and a drive motor 104 is fixedly installed on the top of the motor frame. A bearing frame 102 is provided at the output end of the drive motor 104. The bearing frame 102 includes a bearing shaft. A fixed plate is fixedly connected to one end of the bearing shaft. The middle part of the fixed plate is fixedly connected to the output end of the drive motor 104. The drive motor 104 drives the fixed plate and the bearing shaft to rotate, thereby realizing the feeding and winding of fiberglass. A pressure plate 103 is threadedly connected to the other end of the bearing shaft. The distance between the pressure plate 103 and the fixed plate is consistent with the width of the connector to be produced. The pressure plate 103 can be installed or removed by rotation, thereby facilitating the feeding of the sealing gasket 6 and the unloading of the finished connector.

[0019] A heating assembly 3 is provided above the support frame 102 to melt the fiberglass wound onto the sealing gasket 6. Please refer to [link to relevant documentation]. Figure 5 The heating assembly 3 includes a heating cover 301, the bottom of which is open and its bottom surface is an arc surface that matches the curvature of the outer wall edge of the support frame 102. A heater is fixedly installed on the bottom of the inner wall of the heating cover 301. Heating is started by the heater to melt the fiberglass and wrap it around the sealing gasket 6.

[0020] To improve the heating uniformity of fiberglass, an air supply pipe 303 is fixedly connected to the top of the heating cover 301. One end of the air supply pipe 303 is fixedly connected to the output end of an external air pump. An air guide hood 302 is fixedly installed in the middle of the inner wall of the heating cover 301. Several through slots 305 are opened in the middle of the air guide hood 302. The spacing between the several through slots 305 is consistent with the spacing of the grooves on the sealing gasket 6, so that the hot air delivered by the through slots 305 can be directly blown onto the fiberglass wrapped in the grooves, thereby making the fiberglass melt more uniformly when heated.

[0021] Please see Figure 1 and Figure 2 A feeding mechanism 2 for feeding fiberglass is provided on one side of the support frame 102. The feeding mechanism 2 includes a feeding frame 201, which includes a horizontal section and an inclined section. The inclined section is inclined upward at the end near the support frame 102, and the height of the higher end of the inclined section is the same as the height of the top of the support frame 102. This achieves stable feeding and conveying of fiberglass and reduces the problem of increased feeding traction resistance caused by the weight of the fiberglass. Several columns 204 are fixedly connected to the bottom of the feeding frame 201 for supporting the feeding frame 201. During the feeding process, the number of fiberglass limiters is the same as the number of grooves on the sealing gasket 6 of the connector. To adjust the tension of the fiberglass during conveying, a push adjustment component 203 is provided in the middle of the feeding rack 201 of this application. Specifically, the push adjustment component 203 is located on the inclined section. Please refer to [link to relevant documentation]. Figure 4The push adjustment component 203 includes two symmetrically arranged push units. Each push unit includes a push frame 2031. One end of the push frame 2031 is rotatably connected to several end rollers 2034. The number of end rollers 2034 is consistent with the number of fiberglass fibers, thereby achieving one-to-one delivery of the fiberglass fibers. Several push guide rails 2032 are fixedly installed inside the push frame 2031. Adjustment push rods 2036 are slidably installed on the inner wall of the push guide rails 2032. Movable rollers 2033 are rotatably installed at the output end of the adjustment push rods 2036. A distance sensor 2035 is fixedly installed at the other end of the push frame 2031. The distance sensor 2035 detects the tension of the fiberglass fibers to determine whether to activate the push guide rails 2032 to move the movable rollers 2033 and adjust the fiberglass fibers. Specifically, when the spacing of a certain groove of the sealing gasket 6... If the fiberglass is too small, preventing it from naturally winding into the groove by the rotation of the support frame 102, it will be raised due to the obstruction of the sealing gasket 6 compared to other fiberglass fibers that can fall naturally into the groove. This causes a change in the distance between the fiberglass and the distance sensors 2035 on both sides, i.e., the distance between it and the upper distance sensor 2035 decreases. At this time, the two adjusting push rods 2036 on the upper and lower sides of the fiberglass are activated, driving the two movable rollers 2033 to contact and clamp the fiberglass. Then, the push guide rails 2032 on both sides simultaneously drive the movable rollers 2033 to move away from the support frame 102, thereby pulling the fiberglass and increasing the downward pressure of the fiberglass on the groove, causing the fiberglass to fall into the groove. When the distance sensor 2035 detects that the fiberglass is in a normal position, the push guide rails 2032 stop pushing.

[0022] Please see Figure 1 Since fiberglass is used in rolls, it will bend to some extent after being unrolled. To prevent the fiberglass from bending and overlapping during transportation and interfering with each other, and to ensure the accurate positioning of each fiberglass during the feeding stage, a feeding guide assembly 202 is fixedly installed at one end of the feeding rack 201. Please refer to [link / reference]. Figure 3 The feeding guide assembly 202 includes a lower guide frame 2021. The top of the lower guide frame 2021 is provided with several lower guide grooves 2022. Several lower guide rollers 2023 are rotatably installed in the middle of the inner wall of each of the several lower guide grooves 2022. The lower guide grooves 2022 and each lower guide roller 2023 are used to divert and isolate each fiberglass fiber. Furthermore, in order to achieve stable isolation, the outer walls of the end rollers 2034, the movable rollers 2033 and the lower guide rollers 2023 are provided with limit grooves to accommodate and limit the fiberglass fibers.

[0023] To adjust the conveying speed of the fiberglass as needed, an upper guide frame 2024 is fixedly installed above the lower guide frame 2021. Several pressing push rods 2026 are fixedly installed on the top inner wall of the upper guide frame 2024. Roller frames 2027 are fixedly installed at the output ends of each pressing push rod 2026. Upper guide rollers 2025 are rotatably mounted inside the roller frames 2027. Friction pads are fixedly connected to the outer wall of the upper guide rollers 2025, and the width of the friction pads is slightly smaller than that of the lower guide frame 2021. The guide roller 2023 has a limiting groove width, which allows the friction pad to be pressed down into the limiting groove and maintain stable contact with the fiberglass. During the fiberglass conveying process, the upper guide roller 2025 is pressed down by the pressing push rod 2026, so that the friction pad contacts the fiberglass, thereby braking and decelerating the fiberglass. The fiberglass can also be pulled or pushed by adjusting the conveying direction of the upper guide roller 2025, thereby adjusting the conveying speed of the fiberglass.

[0024] Please see Figure 2 To ensure the regularity of the outer wall of the connector after molding, a mounting bracket 106 is fixedly connected to the middle of the support frame 101, and a trimming mechanism 4 is fixedly installed at one end of the mounting bracket 106. Please refer to [link / reference]. Figure 6 The trimming mechanism 4 includes a trimming frame 401. A pusher cylinder 406 is fixedly installed on the bottom of the inner wall of the trimming frame 401. A pusher frame 2031 is fixedly connected to the output end of the pusher cylinder 406. A trimming roller 405 is rotatably installed on the inner wall of the pusher frame 2031. Due to the heating effect of the heating component 3 and other structures after winding, the fiberglass fiber softens and melts. At this time, the pusher cylinder 406 pushes the trimming roller 405 out and pushes it into contact with the fiberglass fiber during the winding process. This can achieve the trimming of the position and winding tightness of the fiberglass fiber. Furthermore, a slag discharge guide trough 105 is provided below the support frame 102 to collect and discharge leaked fiberglass fiber droplets or debris residue.

[0025] To ensure uniform temperature throughout the fiberglass, an auxiliary heater 403 is fixedly installed in the middle of the trimming frame 401, and a temperature sensor 402 is fixedly installed on the top of one side of the trimming frame 401. In this embodiment, several auxiliary heaters 403 are provided to work independently, thereby adjusting the temperature of the fiberglass in different areas with different heating powers.

[0026] To prevent air trapped during the fiberglass winding process from forming bubbles in the heated and softened fiberglass, which could lead to cavitation in the finished connector, this application includes a vibration assembly 5 fixedly mounted in the middle of the mounting bracket 106. (See also...) Figure 7The vibration assembly 5 includes a lifting cylinder 505. A contact cover plate 501 is fixedly connected to the output end of the lifting cylinder 505. A contact roller 503 is rotatably mounted in the middle of the contact cover plate 501. The contact roller 503 is horizontally set and is pushed by the lifting cylinder 505 to contact the pressure plate 103. A vibration frame 502 is fixedly connected to the inner wall of the contact cover plate 501. A vibrator 504 is fixedly mounted on one side of the vibration frame 502. The vibrator 504 drives the contact cover plate 501 and the contact roller 503 to vibrate. The vibration is transmitted by the contact between the contact roller 503 and the pressure plate 103, which drives the support frame 102 and the fiberglass on it to vibrate, thereby expelling air bubbles.

[0027] In use, the clamping plate 103 is manually rotated and removed, then fitted onto the bearing shaft, and then the clamping plate 103 is reinstalled. The end of the rolled fiberglass is pulled to the top of the feeding frame 201, and then passes through the feeding guide assembly 202 and the push adjustment assembly 203 in sequence before being wrapped around the groove of the sealing gasket 6 of the bearing frame 102. The drive motor 104 is started to drive the bearing frame 102 to rotate, and the fiberglass is wound and wrapped around the sealing gasket 6. During the winding process, the electric heater 304 is activated to heat and melt the fiberglass, causing it to coat and adhere to the sealing gasket 6. Simultaneously, an external air pump is activated, supplying airflow through the air supply pipe 303 and distributing it through several through slots 305 to achieve uniform heating of the fiberglass. As the support frame 102 rotates, when the fiberglass moves to the location of the temperature sensor 402, the temperature sensor 402 detects the temperature of the fiberglass and controls the auxiliary heater 403 to provide auxiliary heating of the fiberglass, ensuring that the temperature of the fiberglass is uniform throughout. At the same time, the lifting cylinder 505 drives the contact cover plate 501 to be pushed out, and the vibrator 504 is activated. The contact roller 503 and the pressure plate 103 transmit the vibration, causing the support frame 102 and the fiberglass on it to vibrate, thereby expelling air bubbles. When the fiberglass moves to the position of the rotating roller, the pushing action of the pushing cylinder 406 causes the trimming roller 405 to come into contact with the fiberglass, pressing and trimming the fiberglass to make it flatter and tightly bonded to the sealing gasket 6, thus improving the quality of the connector. As the winding continues, the stroke of the pushing cylinder 406 is gradually retracted by controlling it, thereby keeping the trimming roller 405 in the proper position and avoiding excessive extrusion of the fiberglass. During the winding process, if the spacing of a certain groove in the sealing gasket 6 is too small, or other obstacles prevent the fiberglass at the corresponding position from winding into the groove, the distance between the fiberglass and the upper distance sensor 2035 decreases. At this time, the two adjusting push rods 2036 on the upper and lower sides of the fiberglass are activated, driving the two movable rollers 2033 to contact and clamp the fiberglass. Then, the push guide rails on both sides synchronously drive the movable rollers 2033 to move away from the support frame 102, thereby pulling the fiberglass and increasing the fiberglass's tension on the lower part of the groove. Pressure causes the fiberglass to fall into the groove. When the distance sensor 2035 detects that the fiberglass is in a normal position, the pusher 2032 stops pushing. Conversely, when the fiberglass is over-poured and becomes overly loose, the distance between the fiberglass and the distance sensor 2035 below decreases. At this time, the pressing push rod 2026 drives the upper guide roller 2025 to press down, so that the friction pad contacts the fiberglass, braking and decelerating the fiberglass. The upper guide roller 2025 rotates to pull the fiberglass, ensuring a stable conveying speed of the fiberglass.

[0028] After the winding is completed, the fiberglass is cut off, and the electric heater 304 and auxiliary heater 403 are stopped. An external air pump and air supply pipe 303 continuously blow air to accelerate the cooling and shaping of the fiberglass. Then the drive motor 104 stops working, and the clamping plate 103 is manually rotated to remove it, and the cooled connector is removed.

[0029] The above-disclosed embodiments are merely a few specific examples of the present invention. However, the embodiments of the present invention are not limited thereto, and any variations that can be conceived by those skilled in the art should fall within the protection scope of the present invention.

Claims

1. A production equipment for fiberglass pipe connectors, characterized in that, The system includes a support frame (101), a drive motor (104) fixedly mounted on one side of the support frame (101), a bearing frame (102) fixedly connected to the output end of the drive motor (104), a heating component (3) above the bearing frame (102), and a feeding mechanism (2) for feeding fiberglass on one side of the bearing frame (102). The feeding mechanism (2) includes a feeding rack (201), and a pushing adjustment component (203) is provided in the middle of the feeding rack (201). The pushing adjustment component (203) includes... Two symmetrically arranged pushing units are provided. Each pushing unit includes a pushing frame (2031). One end of the pushing frame (2031) is rotatably connected to several end rollers (2034). Several pushing guide rails (2032) are fixedly installed inside the pushing frame (2031). Adjusting push rods (2036) are slidably installed on the inner wall of the pushing guide rails (2032). Movable rollers (2033) are rotatably installed on the output end of the adjusting push rods (2036). A distance sensor (2035) is fixedly installed on the other end of the pushing frame (2031).

2. The fiberglass pipe connector production equipment as described in claim 1, characterized in that, One end of the feeding rack (201) is fixedly installed with a feeding guide assembly (202). The feeding guide assembly (202) includes a lower guide frame (2021). The top of the lower guide frame (2021) is provided with a plurality of lower guide grooves (2022). A plurality of lower guide rollers (2023) are rotatably installed in the middle of the inner wall of each of the plurality of lower guide grooves (2022).

3. A fiberglass pipe connector production equipment as described in claim 1 or 2, characterized in that, Limiting grooves are provided on the outer walls of the end roller (2034), the movable roller (2033), and the lower guide roller (2023).

4. The fiberglass pipe connector production equipment as described in claim 2, characterized in that, An upper guide frame (2024) is fixedly installed above the lower guide frame (2021). Several pressing push rods (2026) are fixedly installed on the top of the inner wall of the upper guide frame (2024). Roller frames (2027) are fixedly installed at the output ends of the pressing push rods (2026). Upper guide rollers (2025) are rotatably installed inside the roller frames (2027). Friction pads are fixedly connected to the outer wall of the upper guide rollers (2025).

5. The fiberglass pipe connector production equipment as described in claim 1, characterized in that, The heating assembly (3) includes a heating cover (301), a heater is fixedly installed on the bottom of the inner wall of the heating cover (301), an air supply pipe (303) is fixedly connected to the top of the heating cover (301), an air guide cover (302) is fixedly installed in the middle of the inner wall of the heating cover (301), and several through slots (305) are opened in the middle of the air guide cover (302).

6. The fiberglass pipe connector production equipment as described in claim 1, characterized in that, A mounting frame (106) is fixedly connected to the middle of the support frame (101). A trimming mechanism (4) is fixedly installed at one end of the mounting frame (106). The trimming mechanism (4) includes a trimming frame (401). A push cylinder (406) is fixedly installed at the bottom of the inner wall of the trimming frame (401). A push frame (2031) is fixedly connected to the output end of the push cylinder (406). A trimming roller (405) is rotatably installed on the inner wall of the push frame (2031). A slag discharge guide trough (105) is provided below the support frame (102).

7. The fiberglass pipe connector production equipment as described in claim 6, characterized in that, An auxiliary heater (403) is fixedly installed in the middle of the trimming frame (401), and a temperature sensor (402) is fixedly installed on the top of one side of the trimming frame (401).

8. The fiberglass pipe connector production equipment as described in claim 6, characterized in that, A vibration assembly (5) is fixedly installed in the middle of the mounting frame (106). The vibration assembly (5) includes a lifting cylinder (505). A contact cover plate (501) is fixedly connected to the output end of the lifting cylinder (505). A contact roller (503) is rotatably installed in the middle of the contact cover plate (501). A vibration frame (502) is fixedly connected to the inner wall of the contact cover plate (501). A vibrator (504) is fixedly installed on one side of the vibration frame (502).

9. The fiberglass pipe connector production equipment as described in claim 1, characterized in that, The feeding rack (201) includes a horizontal section and an inclined section. The inclined section is inclined upward at one end near the support frame (102). The bottom of the feeding rack (201) is fixedly connected to a column (204).

10. The fiberglass pipe connector production equipment as described in claim 1, characterized in that, The support frame (102) includes a support shaft, one end of which is fixedly connected to a fixed plate, and the other end of which is threadedly connected to a pressure plate (103).