A cable clamp drilling apparatus

By using a combination of cylinder support, push beam plate and drilling machine in the cable clamp drilling equipment, precise drilling of cable clamp mating ears was achieved, solving the problem of low efficiency of manual drilling and improving production efficiency and accuracy.

CN224587034UActive Publication Date: 2026-08-04CHONGQING ZHULIU ELECTRIC POWER COMPLETE EQUIP CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
CHONGQING ZHULIU ELECTRIC POWER COMPLETE EQUIP CO LTD
Filing Date
2025-07-07
Publication Date
2026-08-04

AI Technical Summary

Technical Problem

In the production process of cable clamps, manual drilling is inefficient and makes it difficult to achieve large-scale mass production.

Method used

A cable clamp drilling device is designed. By setting a cylinder support and cylinder on the conveying component, the device uses a push beam plate and a drilling machine to precisely drill holes in the mating ears of the cable clamp. Combined with the precise stepping push and buffer device of the conveying component, the drilling accuracy and efficiency are ensured.

Benefits of technology

It improves the drilling efficiency and accuracy of cable clamps, and realizes efficient automation for mass production.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a cable hoop drilling equipment relates to hoop drilling equipment technical field, the utility model discloses a conveying component and drilling part, and drilling part includes cylinder, push beam board and two drilling machines, and the outside fixed sleeve of cylinder is connected with cylinder support, and cylinder support fixedly arranged in the top of conveying component, and the telescopic end of cylinder is connected with the middle section upper end surface transmission of push beam board, and two drilling machines are fixedly arranged respectively in the both ends of push beam board and the drill bit is downward. The utility model discloses a conveying component with cable hoop step forward push, and cylinder pushes down push beam board, and makes two drilling machines respectively to the butt joint ear of cable hoop both ends and carries out the drilling, improves production efficiency, and through the accurate step push of conveying component, accurately conveys the cable hoop on conveying component to push beam board below to make two drilling machines to the butt joint ear of cable hoop both ends and carry out accurate drilling, and ensure the drilling accuracy.
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Description

Technical Field

[0001] This utility model belongs to the technical field of cable clamp drilling equipment, and in particular relates to a cable clamp drilling equipment. Background Technology

[0002] Cable clamps are installation devices used to secure cables to walls or cable poles. They typically consist of two semicircular clamps with mating lugs at both ends. Drill holes are drilled into these lugs. During installation, the two semicircular clamps are placed over the cable, aligning the lugs at both ends. Bolts are then inserted through the drilled holes in the lugs, tightening the clamps around the cable. However, during production, manual operation requires drilling holes in both lugs, resulting in low drilling efficiency. Furthermore, manual alignment further reduces drilling efficiency, and large-scale production delays.

[0003] To address these issues, we provide a cable clamp drilling device. Utility Model Content

[0004] The purpose of this invention is to provide a cable clamp drilling device. A cylinder support is installed on the conveying component, and a cylinder is mounted on the cylinder support. A push beam is connected to the telescopic end of the lower end of the cylinder. A drilling machine with a downward-pointing drill bit is installed at each end of the push beam. The conveying component pushes the cable clamp forward in steps, and the cylinder pushes the push beam downward, allowing the two drilling machines to drill holes in the mating ears at both ends of the cable clamp, thus improving production efficiency. Through the precise stepping of the conveying component, the cable clamp is accurately conveyed to the area below the push beam, enabling the two drilling machines to precisely drill holes in the mating ears at both ends of the cable clamp, ensuring drilling accuracy.

[0005] To solve the above-mentioned technical problems, this utility model is achieved through the following technical solution: This utility model is a cable clamp drilling device, including a conveying component and a drilling component. The drilling component includes a cylinder, a push beam plate and two drilling rigs. A cylinder bracket is fixedly sleeved on the outside of the cylinder. The cylinder bracket is fixedly set above the conveying component. The telescopic end of the cylinder is connected to the upper end face of the middle section of the push beam plate. The two drilling rigs are respectively fixed at both ends of the push beam plate with the drill bits pointing downwards.

[0006] A further feature of this invention is that a sleeve is vertically fixed to the upper end face of the middle section of the push beam plate, a piston head is fixedly installed at the telescopic end of the cylinder, the piston head is vertically slidably sleeved in the sleeve, a buffer spring is sleeved in the sleeve, and the two ends of the buffer spring are respectively fixedly connected to the upper end face of the push beam plate and the lower end face of the piston head.

[0007] A further feature of this invention is that an annular pipe is fixedly sleeved on the lower outer side of the drilling rig, and a set of water-permeable holes are circumferentially arrayed on the lower end face of the annular pipe. The annular pipe is connected to the outlet of the water pump through a pipe.

[0008] A further feature of this invention is that the conveying component includes a conveyor table, a stepper motor, and two conveyor belts. Both conveyor belts are rotatably sleeved inside the conveyor table. The rotating shaft of the conveyor belt is connected to the output end of the stepper motor via a belt. A cylinder bracket is fixedly installed at the upper end of the conveyor table.

[0009] A further feature of this invention is that a gap is left between the two conveyor belts, and a set of limiting plates are fixedly installed on the belt surface of the two conveyor belts along the belt surface direction. The two ends of the limiting plates are respectively fixedly connected to the belt surface of the two conveyor belts, and a gap is left between each limiting plate.

[0010] A further feature of this invention is that a set of side roller seats are fixedly installed on both sides of the conveyor table. The side roller seats have a U-shaped structure, with the opening of the side roller seats facing inward towards the conveyor table. The side roller seats are fixedly installed above the conveyor belt. A set of side rollers are rotatably installed in the side roller seats along the length of the side roller seats, and the roller axis of the side rollers is perpendicular to the horizontal plane.

[0011] A further feature of this invention is that a clamping plate frame is fixedly installed on the upper end of the conveyor platform, and the clamping plate frame is located below the cylinder. A set of springs is fixedly connected to the lower end of the clamping plate frame, and a clamping arc plate is fixedly connected to the lower end of the set of springs. The lower end of the clamping arc plate is a concave arc surface, and the axis of the arc surface at the lower end of the clamping arc plate is parallel to the length direction of the conveyor belt. A set of ball bearing platforms is fixedly installed on the inner arc surface of the clamping arc plate. A set of hemispherical ball bearing grooves are opened on the lower end surface of the ball bearing platforms. Ball bearings are rolled and installed in the ball bearing grooves at the lower end of the ball bearing platforms. A ball bearing sleeve is fixedly sleeved on the lower end of the ball bearing platforms, and the lower end surface of the ball bearings penetrates the ball bearing sleeve.

[0012] This utility model has the following beneficial effects: 1. This utility model improves production efficiency by setting a cylinder bracket on the conveying component, setting a cylinder on the cylinder bracket, and driving a push beam plate at the telescopic end of the lower end of the cylinder. A drilling machine with a downward drill bit is set at each end of the push beam plate. The conveying component pushes the cable clamp forward step by step, and the cylinder pushes the push beam plate downward, so that the two drilling machines drill holes in the mating ears at both ends of the cable clamp.

[0013] 2. This utility model accurately delivers the cable clamps on the conveying component to the bottom of the push beam plate through precise stepping push of the conveying component, thereby enabling the two drilling machines to accurately drill the mating ears at both ends of the cable clamps and ensure drilling accuracy.

[0014] Of course, any product implementing this utility model does not necessarily need to achieve all of the advantages described above at the same time. Attached Figure Description

[0015] To more clearly illustrate the technical solutions of the embodiments of this utility model, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0016] Figure 1 This is a structural schematic diagram of a cable clamp drilling device.

[0017] Figure 2 This is an exploded view of the cylinder and the push beam.

[0018] Figure 3 This is a schematic diagram of the conveyor platform and conveyor belt.

[0019] Figure 4 This is an exploded view of the side roller seat and the conveyor table.

[0020] Figure 5 This is a front view of the conveyor table and the clamping plate frame.

[0021] The attached diagram lists the components represented by each number as follows: 1-Conveying component, 101-Conveying table, 101a-Side roller seat, 101a-1-Side roller, 101b-Pressure clamp plate frame, 101b-1-Spring, 101b-2-Pressure clamp arc plate, 101b-3-Ball bearing table, 101b-4-Ball bearing, 101b-5-Ball bearing sleeve, 102-Stepper motor, 103-Conveyor belt, 103a-Limiting plate, 2-Drilling component, 201-Cylinder, 201a-Cylinder bracket, 201b-Piston head, 202-Push beam plate, 202a-Sleeve, 202a-1-Buffer spring, 203-Drilling rig, 203a-Annular pipe. Detailed Implementation

[0022] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of the present utility model.

[0023] Example 1 Please see Figure 1 and Figure 2This utility model relates to a cable clamp drilling device, comprising a conveying component 1 and a drilling component 2. The drilling component 2 includes a cylinder 201, a push beam plate 202, and two drilling rigs 203. A cylinder support 201a is installed on the conveying component 1, and a cylinder 201 is mounted on the cylinder support 201a. The push beam plate 202 is connected to the telescopic end of the lower end of the cylinder 201. A drilling rig 203 with its drill bit pointing downwards is installed at each end of the push beam plate 202. The conveying component 1 pushes the cable clamp forward in a step-by-step manner, while the cylinder 201 pushes the push beam plate 202 downwards, allowing the two drilling rigs 203 to drill holes in the mating ears at both ends of the cable clamp, thus improving production efficiency. Through the precise step-by-step pushing of the conveying component 1, the cable clamp on the conveying component 1 is accurately conveyed to the area below the push beam plate 202, enabling the two drilling rigs 203 to precisely drill holes in the mating ears at both ends of the cable clamp, ensuring drilling accuracy.

[0024] Specifically, a cylinder bracket 201a is fixedly sleeved on the outside of the cylinder 201. The cylinder bracket 201a is fixedly installed above the conveying component 1. The telescopic end of the cylinder 201 is connected to the upper end face of the middle section of the push beam plate 202. Two drilling machines 203 are respectively fixedly installed at both ends of the push beam plate 202 with the drill bit facing downward.

[0025] Furthermore, a sleeve 202a is vertically fixed to the upper end face of the middle section of the pushing beam plate 202, and a piston head 201b is fixedly installed at the telescopic end of the cylinder 201. The piston head 201b is vertically slidably sleeved inside the sleeve 202a. A buffer spring 202a-1 is sleeved in the sleeve 202a. The two ends of the buffer spring 202a-1 are respectively fixedly connected to the upper end face of the pushing beam plate 202 and the lower end face of the piston head 201b. The cylinder 201 pushes the piston head downward. 201b causes the buffer spring 202a-1 to push the push beam plate 202, causing the drills 203 at both ends to drill holes in the connecting ears at both ends of the cable clamp on the transmission component 1. When the drill bit of the drill 203 contacts the connecting ear, the cylinder 201 continues to push the piston head 201b, causing the piston head 201b to squeeze the buffer spring 202a-1, increasing the preload of the buffer spring 202a-1, which can absorb the instantaneous impact between the drill bit and the workpiece and prevent the equipment from overloading.

[0026] Furthermore, an annular pipe 203a is fixedly sleeved on the lower outer side of the drilling rig 203. A set of water-permeable holes are circumferentially arrayed on the lower end face of the annular pipe 203a. The annular pipe 203a is connected to the outlet of the water pump through a pipe. When the drilling rig 203 drills the lugs, water is sprayed downward through the water-permeable holes at the lower end of the annular pipe 203a to cool down the lugs and the drill bit of the drilling rig 203.

[0027] The operation process in this embodiment is as follows: The conveying component 1 pushes the cable clamp forward to below the pushing beam plate 202. The cylinder 201 pushes the piston head 201b downward, causing the buffer spring 202a-1 to push the pushing beam plate 202, so that the drills 203 at both ends drill holes in the mating ears of the cable clamp on the conveying component 1. When the drill bit of the drill 203 contacts the mating ear, the cylinder 201 continues to push the piston head 201b, causing the piston head 201b to squeeze the buffer spring 202a-1, increasing the preload of the buffer spring 202a-1, which can absorb the instantaneous impact between the drill bit and the workpiece and prevent equipment overload. When the drill 203 drills the mating ear, the water-permeable hole at the lower end of the annular pipe 203a sprays water downward to cool the mating ear and the drill bit of the drill 203.

[0028] Example 2 Please see Figures 1 to 5 Based on Embodiment 1, the conveying component 1 includes a conveying platform 101, a stepper motor 102, and two conveyor belts 103. The stepper motor 102 drives the conveyor belts 103 on the conveying platform 101, so that the conveyor belts 103 push the cable clamps above forward according to a preset travel distance, accurately delivering the cable clamps to the underside of the push beam plate 202, thereby enabling the drilling rig 203 to accurately drill holes in the mating ears at both ends of the cable clamps.

[0029] Specifically, both conveyor belts 103 are rotatably sleeved inside the conveyor table 101. The rotating shaft of the conveyor belt 103 is connected to the output end of the stepper motor 102 via a belt. The cylinder bracket 201a is fixedly installed at the upper end of the conveyor table 101.

[0030] Furthermore, a gap is left between the two conveyor belts 103, and a set of limiting plates 103a are fixedly installed on the belt surface of the two conveyor belts 103 along the belt surface direction. The two ends of the limiting plates 103a are respectively fixedly connected to the belt surface of the two conveyor belts 103, and a gap is left between each limiting plate 103a. The cable clamp that needs to be drilled is placed between each limiting plate 103a, so that when the conveyor belts 103 at both ends are conveying, the limiting plates 103a push the cable clamp forward.

[0031] Furthermore, a set of side roller seats 101a are fixedly installed on both sides of the conveyor table 101. The side roller seats 101a have a U-shaped structure, and the opening of the side roller seats 101a faces the inside of the conveyor table 101. The side roller seats 101a are fixedly installed above the conveyor belt 103. A set of side rollers 101a-1 are rotatably installed in the side roller seats 101a along the length of the side roller seats 101a. The roller axis of the side rollers 101a-1 is perpendicular to the horizontal plane. The side rollers 101a-1 are attached to the end face of the cable clamp, so that the cable clamp is prevented from slipping during the conveying process, and the friction of the end face is reduced during the movement.

[0032] Furthermore, a clamping plate frame 101b is fixedly installed on the upper end of the conveyor table 101. The clamping plate frame 101b is located below the cylinder 201. A set of springs 101b-1 is fixedly connected to the lower end of the clamping plate frame 101b. A clamping arc plate 101b-2 is fixedly connected to the lower end of the springs 101b-1. The lower end of the clamping arc plate 101b-2 is a concave arc surface. The axis of the arc surface at the lower end of the clamping arc plate 101b-2 is parallel to the length direction of the conveyor belt 103. A set of ball bearing platforms 10 is fixedly installed on the inner arc surface of the clamping arc plate 101b-2. 1b-3, The lower end face of the ball bearing platform 101b-3 is provided with a set of hemispherical ball bearing grooves. Ball bearings 101b-4 are rolled in the ball bearing grooves at the lower end of the ball bearing platform 101b-3. A ball bearing sleeve 101b-5 is fixedly sleeved at the lower end of the ball bearing platform 101b-3. The lower end face of the ball bearing 101b-4 passes through the ball bearing sleeve 101b-5. When the cable clamp is drilled below the push beam plate 202, the ball bearing 101b-4 at the lower end of the clamping arc plate 101b-2 presses against the upper end of the cable clamp to prevent the cable clamp from vibrating during the drilling process and causing the drilling position to shift.

[0033] The operation process in this embodiment is as follows: The cable clamps that need to be drilled are placed between the limit plates 103a. The stepper motor 102 drives the conveyor belt 103 on the conveyor table 101, so that the conveyor belt 103 pushes the cable clamps forward according to the preset travel distance, accurately delivering the cable clamps to the underside of the push beam plate 202, so that the drill rig 203 can accurately drill the mating ears at both ends of the cable clamps. When the cable clamps are being drilled under the push beam plate 202, the ball bearings 101b-4 at the lower end of the clamping arc plate 101b-2 press against the upper end of the cable clamps to prevent the cable clamps from vibrating during the drilling process and causing the drilling position to shift. After the drilling is completed, the conveyor belt 103 pushes the cable clamps forward, and the rolling friction between the ball bearings 101b-4 and the upper end surface of the cable clamps reduces the friction.

[0034] In the description of this specification, references to terms such as "an embodiment," "example," "specific example," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the present invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.

Claims

1. A cable clamp drilling apparatus comprising a conveying member (1) and a drilling member (2), characterized in that: The drilling component (2) includes a cylinder (201), a push beam plate (202), and two drilling rigs (203). A cylinder bracket (201a) is fixedly sleeved on the outside of the cylinder (201). The cylinder bracket (201a) is fixedly installed above the conveying component (1). The telescopic end of the cylinder (201) is connected to the upper end face of the middle section of the push beam plate (202). The two drilling rigs (203) are respectively fixedly installed at both ends of the push beam plate (202) with the drill bit facing downward.

2. A cable clamp drilling apparatus according to claim 1, wherein: A sleeve (202a) is vertically fixed to the upper end face of the middle section of the push beam plate (202). A piston head (201b) is fixedly installed at the telescopic end of the cylinder (201). The piston head (201b) is vertically slidably sleeved in the sleeve (202a). A buffer spring (202a-1) is sleeved in the sleeve (202a). The two ends of the buffer spring (202a-1) are respectively fixedly connected to the upper end face of the push beam plate (202) and the lower end face of the piston head (201b).

3. A cable clamp hole boring apparatus as defined in claim 2 wherein: The lower end of the drilling rig (203) is fixedly sleeved with an annular pipe (203a). A set of water-permeable holes are circumferentially arranged on the lower end face of the annular pipe (203a). The annular pipe (203a) is connected to the outlet of the water pump through a pipe.

4. A cable clamp hole boring apparatus as defined in claim 1 wherein: The conveying component (1) includes a conveyor platform (101), a stepper motor (102), and two conveyor belts (103). Both conveyor belts (103) are rotatably sleeved inside the conveyor platform (101). The rotation shaft of the conveyor belt (103) is connected to the output end of the stepper motor (102) via a belt. The cylinder bracket (201a) is fixedly installed on the upper end of the conveyor platform (101).

5. A cable clamp drilling apparatus according to claim 4, wherein: A gap is left between the two conveyor belts (103). A set of limiting plates (103a) are fixedly installed on the belt surface of the two conveyor belts (103) along the belt surface direction. The two ends of the limiting plates (103a) are respectively fixedly connected to the belt surface of the two conveyor belts (103), and a gap is left between each limiting plate (103a).

6. A cable clamp hole boring apparatus as defined in claim 5 wherein: A set of side roller seats (101a) are fixedly installed on both sides of the conveyor table (101). The side roller seats (101a) have a U-shaped structure and the opening of the side roller seats (101a) faces the inside of the conveyor table (101). The side roller seats (101a) are fixedly installed above the conveyor belt (103). A set of side rollers (101a-1) are rotatably installed in the side roller seats (101a) along the length direction of the side roller seats (101a). The roller axis of the side rollers (101a-1) is perpendicular to the horizontal plane.

7. A cable clamp hole boring apparatus as defined in claim 6 wherein: A clamping plate frame (101b) is fixedly installed on the upper end of the conveyor table (101). The clamping plate frame (101b) is located below the cylinder (201). A set of springs (101b-1) is fixedly connected to the lower end of the clamping plate frame (101b). A clamping arc plate (101b-2) is fixedly connected to the lower end of the set of springs (101b-1). The lower end of the clamping arc plate (101b-2) is a concave arc surface. The arc surface axis of the lower end of the clamping arc plate (101b-2) is parallel to the conveyor. Along the length of the band (103), a set of ball bearing platforms (101b-3) is fixedly provided on the inner arc surface of the clamping arc plate (101b-2). A set of hemispherical ball bearing grooves are provided on the lower end face of the ball bearing platform (101b-3). A ball bearing (101b-4) is rotatably installed in the ball bearing groove at the lower end of the ball bearing platform (101b-3). A ball bearing sleeve (101b-5) is fixedly sleeved on the lower end of the ball bearing platform (101b-3). The lower end face of the ball bearing (101b-4) passes through the ball bearing sleeve (101b-5).