Cable connector shell processing device

The cable connector housing processing device, which combines a multi-layer vibrating screen mechanism with hot air, solves the problems of uneven drying of plastic granules and impurity adhesion, achieving efficient and uniform drying of plastic granules and cleaning of impurities, thus ensuring the quality of housing processing.

CN224028086UActive Publication Date: 2026-03-24洛阳九朝机械设备有限公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-27
Publication Date
2026-03-24

AI Technical Summary

Technical Problem

The existing cable connector housing processing equipment has low drying efficiency, and the accumulation of plastic particles leads to uneven drying. In addition, the surface of the plastic particles is prone to sticking and adhering to impurities, which affects the processing quality.

Method used

The system employs a multi-layer vibrating screen mechanism in conjunction with hot air. The upper and lower screens are driven by a vibrating motor to disperse and perform secondary vibrating screening of plastic granules. Combined with a collection tank, impurities are collected, the falling time is extended, and efficient drying is achieved.

Benefits of technology

This process achieves uniform dispersion and efficient drying of plastic granules, improving drying quality and efficiency, cleaning impurities from the surface of the plastic granules, and ensuring the quality of subsequent processing.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of cable connectors, and discloses a cable connector shell processing device which is characterized in that a feeding hole is formed in the middle of the upper surface of a box body, and a plurality of vibrating screen mechanisms for vibrating, scattering and blanking plastic particles are arranged in an inner cavity of the box body at intervals from top to bottom; each vibrating screen mechanism comprises a mounting rod, an upper screen mesh and a lower screen mesh, the screen hole diameter of the upper screen mesh and the lower screen mesh is smaller than the standard diameter of plastic particles, an air inlet located in the bottom of the lowermost vibrating screen mechanism is formed in one side of the lower portion of the box body, the outer end of the air inlet is connected with an air heater used for blowing drying hot air into the box body, and a discharging opening is formed in the bottom of the box body; according to the plastic particle drying device, plastic particles can be effectively vibrated and dispersed, moisture and impurities on the surfaces of the plastic particles can be vibrated and shaken off, and the plastic particles can be comprehensively and efficiently dried.
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Description

TECHNICAL FIELD

[0001] The utility model relates to cable connector technical field especially relates to a cable connector casing processingequipment. BACKGROUND

[0002] The cable connector is an electronic element for connecting the cable and the equipment or the cable and the cable, and its main function is to realize the reliable transmission of electrical signal, power or data, and provide mechanical fixation, protection and environmental sealing and other characteristics, and the cable connector is mainly composed of a casing, a conductive part, an insulator and a sealing element, wherein the casing is used for installing, protecting and supporting the conductive part, the insulator and the sealing element, so the processing and production quality of the casing is particularly important.

[0003] The cable connector casing is formed by plastic casing injection molding, and in the processing and manufacturing process of the casing, in order to avoid defects in the injection molding of the casing, the plastic particles must be dried, and the existing drying method is mostly through a dehumidifying and drying equipment, however, this drying method still has the following disadvantages:

[0004] 1. The existing dehumidifying and drying equipment needs more than three hours to dry the plastic particles, and if the plastic particles are large in size, large in quantity and high in humidity, it needs longer time, the drying efficiency is low, and the energy consumption is high;

[0005] 2. In the existing dehumidifying and drying equipment, in order to improve the drying effect of the plastic particles, a stirring mechanism is usually added inside to stir the plastic particles, however, due to the large quantity of plastic particles, even through the stirring method, the plastic particles are still accumulated together, and the uniform and efficient drying of the plastic particles cannot be realized;

[0006] 3. A large number of plastic particles are prone to adhesion, and the surface of the plastic particles is easy to adhere to moisture, dust and other impurities, and when the drying treatment is carried out, the adhesion of the plastic particles and the impurities on the surface of the plastic particles will seriously affect the drying effect;

[0007] Therefore, there is an urgent need for a cable connector casing processing device which can overcome the above-mentioned deficiencies. INVENTION CONTENTS

[0008] In order to overcome the deficiencies in the background art, the utility model discloses a cable connector casing processing device, the utility model not only can effectively vibrate and scatter the plastic particles, and vibrate and shake off the moisture and impurities on the surface of the plastic particles, but also can comprehensively and efficiently dry the plastic particles.

[0009] In order to achieve the above-mentioned purposes, the utility model adopts the following technical scheme:

[0010] The utility model provides a cable connector shell processing device, including the box, the middle part of box upper surface is equipped with the feeding port, the cavity of box is equipped with a plurality of vibration screen mechanism for vibrating and scattering the plastic particle and discharging from top to bottom, the vibration screen mechanism includes the mounting rod, and the upper screen and lower screen with the screen hole aperture less than the standard diameter of plastic particle, the mounting rod is installed horizontally in the box, the upper screen is elastically installed on the upper part of mounting rod and is in the taper structure and the outer diameter is adapted to the inner diameter of box, the outer edge of upper screen upper surface is equipped with a plurality of lateral discharge ports for discharging plastic particle downward and is arranged in the order along the circumference of upper screen, the lower screen is elastically installed on the lower part of mounting rod and is used for collecting the plastic particle that falls down the lateral discharge port and is in the inverted taper structure, the middle part of lower screen upper surface is equipped with the middle discharge port for discharging plastic particle to the next vibration screen mechanism, the vibration motor for driving the upper screen and lower screen to vibrate is arranged on the mounting rod, the air inlet is arranged at the bottom of the lowermost vibration screen mechanism on one side of the lower part of box, the air heater for blowing the drying hot air into the box is connected to the outer end of air inlet, and the discharge port is arranged at the bottom of box.

[0011] Further, the vibration screen mechanism further comprises a collection groove, which is elastically installed between the mounting rod and the lower screen for collecting impurities shaken out by the upper screen.

[0012] Further, the inner bottom surface of the collection groove is inclined, and the low end of the inner bottom surface of the collection groove is provided with a slag discharge port penetrating to the outside of the box.

[0013] Further, a plurality of upper mounting plates are arranged in the order along the circumferential direction of the inner side wall of the box, and a plurality of lower mounting plates corresponding to the upper mounting plates are arranged on the inner side wall of the box.

[0014] Further, the inner bottom surface of the box is in an inverted taper structure, and the discharge port is arranged at the middle of the inner bottom surface of the box.

[0015] Further, the feeding port and the discharge port of the box are in a closable structure.

[0016] Further, an exhaust port is arranged on one side of the upper part of the box.

[0017] Compared with the prior art, the utility model has the beneficial effects that: by arranging the upper screen, the plastic particles can be vibrated and diffused, thereby dispersing the adhered plastic particles and shaking off the impurities adhered to the surface of the plastic particles;

[0018] By setting the lower screen, not only the surface of the plastic particles impurities can be secondary vibration screen, but also can be concentrated discharge of plastic particles, for the next vibration screen mechanism of plastic particles vibration screen processing to provide strong support;

[0019] By setting the collection tank, can collect the vibration screen shake off water droplets, dust impurities, to avoid its again with plastic particles adhesion, thereby greatly improving the quality of plastic particles drying;

[0020] By setting a plurality of vibration screen mechanism, not only can greatly extend the falling time of plastic particles, but also can maintain vibration in the plastic particles falling process, thereby cooperating with the drying hot air to plastic particles for efficient drying treatment;

[0021] The utility model discloses a vibration diffusion of plastic particles, not only can effectively the vibration of plastic particles, and the vibration of the moisture and impurities on the surface of plastic particles, but also greatly prolongs the falling time of plastic particles, so that the drying hot air can carry out comprehensive efficient drying treatment to plastic particles, the utility model discloses not only greatly improves the drying quality and drying efficiency of plastic particles, but also can effectively collect and clean the impurities on the surface of plastic particles, provides strong support for the high-quality processing and production of subsequent cable connector shell. BRIEF DESCRIPTION OF DRAWINGS

[0022] Figure 1 It is the structural schematic diagram of the utility model;

[0023] Figure 2 It is the structural schematic diagram of the utility model's vibration screen mechanism;

[0024] Figure 3 It is the structural schematic diagram of the utility model's upper screen structure;

[0025] Figure 4 It is the structural schematic diagram of the utility model's lower screen structure;

[0026] Figure 5 It is the structural schematic diagram of the utility model's vibration screen mechanism installation structure.

[0027] In the drawing: 1, feed inlet; 2, box; 3, vibration screen mechanism; 4, hot air machine; 5, air inlet; 6, discharge port; 7, upper screen; 8, vibration motor; 9, outer side discharge port; 10, mounting rod; 11, slag discharge port; 12, collection tank; 13, lower screen; 14, middle discharge port; 15, upper mounting plate; 16, spring; 17, connecting rod; 18, lower mounting plate. DETAILED DESCRIPTION

[0028] The technical scheme of the utility model will be described below with reference to the accompanying drawings of the embodiments of the utility model, and it should be understood that, in the description, if the directions or position relations indicated by terms "upper", "lower", "front", "rear", "left" and "right" are only corresponding to the drawings of the utility model, and are not intended to indicate or imply that the devices or elements must have a specific direction.

[0029] Please refer to the drawings of the specification Figures 1-5 The utility model provides a technical scheme:

[0030] Embodiment one, a kind of cable connector shell processing device, box 2 upper surface middle part is equipped with the feed inlet 1 that can open and close, box 2 upper part one side is equipped with exhaust port, the inner chamber of box 2 is equipped with multiple vibration screen mechanism 3 for vibrating and scattering the plastic particles and discharging from top to bottom interval, specifically, vibration screen mechanism 3 includes mounting rod 10, and upper screen 7 and lower screen 13 with the screen hole aperture less than the standard diameter of plastic particles, mounting rod 10 is horizontally installed in box 2, mounting rod 10 upper part is elastically installed with the upper screen 7 of the conical structure, and the outer diameter is compatible with the inner diameter of box 2, the outer edge of upper screen 7 upper surface is equipped with several lateral discharge ports 9 for sequentially setting along the circumferential direction of upper screen 7 and for discharging plastic particles downward, mounting rod 10 lower part is elastically installed with the lower screen 13 of the inverted conical structure, and for the plastic particles that the lateral discharge port 9 falls down is collected, the middle part of lower screen 13 upper surface is equipped with the middle discharge port 14 for discharging plastic particles to the next vibration screen mechanism 3, mounting rod 10 is equipped with the vibration motor 8 for driving upper screen 7 and lower screen 13 to vibrate, the lower part of box 2 one side is equipped with the air inlet 5 located at the bottom of the lowermost layer vibration screen mechanism 3, the outer end of air inlet 5 is connected with the hot air blower 4 for blowing into the drying hot air of box 2, the inner bottom surface of box 2 is inverted conical structure, and the inner bottom surface of box 2 is equipped with discharge port 6 in middle part;

[0031] When the drying treatment of plastic particles is carried out, the plastic particles are poured into the box 2 through the feed inlet 1, and the plastic particles first fall into the middle part of the upper screen 7 in the uppermost layer vibration screen mechanism 3, because the upper screen 7 is conical structure, and then the vibration motor 8 drives it to vibrate, so that the plastic particles vibrate and diffuse to the outer edge of the upper screen 7, and in the vibration process, the plastic particles can not only be separated, but also the moisture and impurities on the surface of the plastic particles can be vibrated and separated.

[0032] The plastic particles diffused to the outer edge of the upper screen 7 fall into the lower screen 13 through the lateral discharge port 9, because the lower screen 13 is inverted conical structure, and then the vibration motor 8 drives it to vibrate, so that the plastic particles can vibrate and concentrate in the middle part of the lower screen 13, and in the process of vibration and concentration of the plastic particles, the plastic particles can be vibrated and separated again, and the impurities on the surface of the plastic particles can be vibrated and separated again.

[0033] The plastic particles concentrated in the middle of the lower screen 13 fall into the next vibrating screen mechanism 3 through the middle discharge port 14, and are subjected to secondary screening. The plurality of vibrating mechanisms 3 not only greatly prolong the discharging time of the plastic particles, but also keep the plastic particles in a state of activity, thereby providing strong support for the efficient and comprehensive drying treatment of the plastic particles by the drying hot air.

[0034] In the second embodiment, during the screening of the plastic particles by the upper screen 7 in the vibrating screen mechanism 3, the moisture and impurities on the plastic particles fall downward through the upper screen 7. In order to avoid secondary pollution of the plastic particles by the moisture and impurities, the collecting groove 12 for collecting the impurities screened by the upper screen 7 is elastically mounted between the mounting rod 10 and the lower screen 13. The inner bottom surface of the collecting groove 12 is inclined, and the low end of the inner bottom surface of the collecting groove 12 is provided with a slag discharge port 11 penetrating to the outside of the box body 2.

[0035] In the third embodiment, in order to ensure that the vibrating motor 8 can effectively drive the upper screen 7, the lower screen 13 and the collecting groove 12 to vibrate, and provide strong support for the subsequent screening and discharging of the plastic particles and the impurities,

[0036] A plurality of upper mounting plates 15 and a plurality of lower mounting plates 18 corresponding to the upper mounting plates 15 are arranged on the inner side wall of the box body 2 in a circumferential interval. The connecting rods 17 penetrating the upper screen 7, the mounting rod 10, the collecting groove 12 and the lower screen 13 are arranged between the corresponding upper mounting plates 15 and lower mounting plates 18. The spring 16 is sleeved on the connecting rod 17 between the upper mounting plate 15 and the upper screen 7, the upper screen 7 and the mounting rod 10, the mounting rod 10 and the collecting groove 12, the collecting groove 12 and the lower screen 13, and the lower screen 13 and the lower mounting plate 18.

[0037] The parts not described in the utility model are prior art. For those skilled in the art, it is obvious that the utility model is not limited to the details of the above exemplary embodiments, and the utility model can be realized in other specific forms without departing from the spirit or basic characteristics of the utility model. Therefore, from any point of view, the above embodiments should be regarded as exemplary and non-limiting, the scope of the utility model is defined by the appended claims rather than the above description, and therefore all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the utility model, and any reference signs in the claims should not be regarded as limiting the content of the involved claims.

Claims

1. A cable connector housing processing device, comprising a housing (2), characterized in that: The upper surface of the box (2) is provided with a feed inlet (1) in the middle. The inner cavity of the box (2) is provided with multiple vibrating screen mechanisms (3) for vibrating and dispersing plastic particles from top to bottom. The vibrating screen mechanism (3) includes a mounting rod (10), an upper screen (7) and a lower screen (13) with a screen hole diameter smaller than the standard diameter of the plastic particles. The mounting rod (10) is horizontally installed in the box (2). The upper part of the mounting rod (10) is elastically installed with an upper screen (7) with a conical structure and an outer diameter that matches the inner diameter of the box (2). The outer edge of the upper surface of the upper screen (7) is provided with several outer feed inlets (9) arranged in an orderly manner along the circumference of the upper screen (7) for discharging plastic particles downward. The lower part of the mounting rod (10) is elastically fitted with a lower screen (13) with an inverted cone structure, which is used to collect plastic particles falling from the outer feed port (9). The middle part of the upper surface of the lower screen (13) is provided with a middle feed port (14) for discharging plastic particles to the next vibrating screen mechanism (3). The mounting rod (10) is provided with a vibrating motor (8) for driving the upper screen (7) and the lower screen (13) to vibrate. The lower side of the box (2) is provided with an air inlet (5) located at the bottom of the lowest vibrating screen mechanism (3). The outer end of the air inlet (5) is connected to a hot air blower (4) for blowing drying hot air into the box (2). The bottom of the box (2) is provided with a discharge port (6).

2. The cable connector housing processing device according to claim 1, characterized in that: The vibrating screen mechanism (3) also includes a collection trough (12), which is elastically installed between the mounting rod (10) and the lower screen (13) to collect the impurities screened out by the upper screen (7).

3. The cable connector housing processing device according to claim 2, characterized in that: The bottom surface of the collection tank (12) is inclined, and the bottom surface of the collection tank (12) is provided with a slag discharge port (11) that extends through to the outside of the box (2).

4. The cable connector housing processing device according to claim 3, characterized in that: The inner wall of the box (2) is provided with several upper mounting plates (15) arranged in an orderly manner along the circumference of the inner wall of the box (2), and several lower mounting plates (18) that correspond one-to-one with the upper mounting plates (15). The corresponding upper mounting plates (15) and lower mounting plates (18) are provided with connecting rods (17) that pass through the upper screen (7), mounting rod (10), collection trough (12) and lower screen (13). The connecting rods (17) located between the upper mounting plate (15) and the upper screen (7), the upper screen (7) and the mounting rod (10), the mounting rod (10) and the collection trough (12), the collection trough (12) and the lower screen (13), and the lower screen (13) and the lower mounting plate (18) are all fitted with springs (16).

5. The cable connector housing processing device according to claim 1, characterized in that: The bottom surface of the box (2) is an inverted cone structure, and the discharge port (6) is located in the middle of the bottom surface of the box (2).

6. The cable connector housing processing apparatus according to claim 5, characterized in that: The feed inlet (1) and discharge outlet (6) of the box body (2) are both openable and closable structures.

7. The cable connector housing processing apparatus according to claim 6, characterized in that: An exhaust port is provided on one side of the upper part of the box (2).