Penetrating box material clamping and conveying device

By designing motor-driven slides and synchronous belt drives for the support, left clamping block, and right clamping block, three-dimensional adjustment of the material clamping device was realized, solving the problem of inconvenient adjustment of existing devices and improving the adaptability to materials of different specifications.

CN223591084UActive Publication Date: 2025-11-25ZHEJIANG JIANGPAI MASCH TECH CO LTD
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Patent Information

Application Number
CN202520056734.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-10
Publication Date
2025-11-25
Estimated Expiration
2035-01-10

AI Technical Summary

Technical Problem

Existing material conveying devices are inconvenient to adjust to materials of different specifications and are difficult to adapt to quickly.

Method used

A device comprising a support, a left clamping block, and a right clamping block was designed. The slide block is driven to slide on the guide rail by left and right motors, and combined with synchronous belt drive, three-dimensional adjustment is achieved. The position of the clamping block is adjusted by bolts and adjustment holes in the connecting arm.

Benefits of technology

It enables rapid adaptation to materials of different specifications, and improves the adjustment flexibility and adaptability of the clamping device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a box-penetrating material clamping and conveying device convenient to adjust. The box penetrating material clamping and conveying device comprises a support, a left clamping block and a right clamping block, and is characterized in that a horizontal left guide rail is installed on the support, a left sliding seat is arranged on the left guide rail in a sliding mode, the left sliding seat is in transmission connection with a left motor, a left installation seat is connected to the left sliding seat, and an L-shaped left connecting arm is connected to the left installation seat; an upper arm of the left connecting arm is provided with an upper adjusting long hole extending up and down, a lower arm of the left connecting arm is provided with a lower adjusting long hole extending front and back, the upper arm penetrates through the upper adjusting long hole through an upper bolt to be connected with the left mounting base, the lower arm penetrates through the lower adjusting long hole through a lower bolt to be connected with the left connecting piece, and the left clamping block is connected to the left connecting piece. According to the box-penetrating material clamping and conveying device, adjustment in three dimensions can be achieved, and the clamping and conveying requirements of materials of different specifications can be met.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a kind of packing machines, specifically to a kind of box material clamping device. BACKGROUND

[0002] Some cylindrical materials need to be packed into cartons during packaging. During packaging, the current general packaging equipment is realized by box-penetrating material clamping device, that is, by the left and right two clamping blocks clamping the two sides of the material, as shown in Figure 3 Then the material is sent into the carton. However, the specifications of the material are not used, and the existing material clamping device is inconvenient to adjust, and cannot quickly adapt to different specifications of material. SUMMARY

[0003] In view of the deficiencies of the prior art, the utility model innovatively provides a box-penetrating material clamping device convenient to adjust.

[0004] The box-penetrating material clamping device comprises a support, a left clamping block and a right clamping block, characterized in that: a horizontal left guide rail is installed on the support, a left sliding seat is slidably arranged on the left guide rail, the left sliding seat is drivingly connected with a left motor, a left mounting seat is connected on the left sliding seat, an L-shaped left connecting arm is connected on the left mounting seat, the upper arm of the left connecting arm has an up-down extending upper adjusting long hole, the lower arm of the left connecting arm has a front-rear extending lower adjusting long hole, the upper arm is connected with the left mounting seat by penetrating the upper adjusting long hole with an upper bolt, the lower arm is connected with the left connecting piece by penetrating the lower adjusting long hole with a lower bolt, and the left clamping block is connected on the left connecting piece.

[0005] A left connecting shaft extending in left-right direction is installed on the left clamping block, and the left clamping block is connected on the left connecting shaft through a left positioning block.

[0006] The support is equipped with a left synchronous belt and two left synchronous pulleys, the left synchronous belt is wound around the two left synchronous pulleys, the left slide is connected to the left synchronous belt, and one of the left synchronous pulleys is connected to the left motor for transmission; the support is also equipped with a right synchronous belt and two right synchronous pulleys, the right synchronous belt is wound around the two right synchronous pulleys, the right slide is connected to the right synchronous belt, and one of the right synchronous pulleys is connected to the right motor for transmission.

[0007] The material feeding device for boxes provided by this utility model can achieve adjustment in three dimensions and can meet the feeding requirements of materials of different specifications. Attached Figure Description

[0008] Figure 1 This is a schematic diagram of the structure of this utility model;

[0009] Figure 2 This is a partially enlarged view of the present invention;

[0010] Figure 3 This is a schematic diagram of the clamping principle. Detailed Implementation

[0011] like Figure 1 As shown, this material feeding device includes a support 1, a left clamping block 2, and a right clamping block 3. Figure 3 As shown, during operation, the left clamping block 2 and the right clamping block 3 clamp the two sides of the material B and then feed it into the cardboard box A (where the right clamping block 3 passes through the cardboard box A). This can prevent the stacked cylindrical materials from tipping over when they are loaded into the cardboard box A.

[0012] like Figure 1 As shown, a horizontal left guide rail 10 is installed on the support 1, and a left slide block 42 is slidably mounted on the left guide rail 10. The left slide block 42 is connected to the left motor 4, and the left motor 4 drives the left slide block 42 to slide on the left guide rail 10. A left mounting base 6 is connected to the left slide block 42, and an L-shaped left connecting arm 7 is connected to the left mounting base 6. Figure 2As shown, the upper arm 70 of the left connecting arm 7 has an upper adjusting elongated hole 72 extending vertically, and the lower arm 71 of the left connecting arm 7 has a lower adjusting elongated hole 73 extending front-to-back. The upper arm 70 is connected to the left mounting base 6 by an upper bolt passing through the upper adjusting elongated hole 72 (the upper bolt is not shown), and the lower arm 71 is connected to the left connecting piece 8 by a lower bolt passing through the lower adjusting elongated hole 73 (the lower bolt is not shown). The left clamping block 2 is connected to the left connecting piece 8; the installation method of the right clamping block 3 is the same as that of the left clamping block 2, on the support 1. A horizontal right guide rail is installed, and a right slide block is slidably mounted on the right guide rail. The right slide block is connected to the right motor 5 for transmission. A right mounting base is connected to the right slide block, and an L-shaped right connecting arm is connected to the right mounting base. The upper arm of the right connecting arm has an upper adjustment hole that extends vertically, and the lower arm of the right connecting arm has a lower adjustment hole that extends horizontally. The upper arm is connected to the right mounting base by an upper bolt passing through the upper adjustment hole, and the lower arm is connected to the right connecting piece by a lower bolt passing through the lower adjustment hole. The right clamping block 3 is connected to the right connecting piece.

[0013] During operation, the left motor 4 and right motor 5 drive the left clamping block 2 and right clamping block 3 to move relative to each other, clamping both sides of material B. Then, the left motor 4 and right motor 5 drive the left clamping block 2 and right clamping block 3 to move in one direction, thus transferring material B into the cardboard box A. To adjust the vertical position of the left clamping block 2, simply move the upper arm 70 of the left connecting arm 7 relative to the left mounting base 6 and tighten the upper bolt. To adjust the front-back position of the left clamping block 2, simply move the left connecting piece 8 relative to the lower arm 71 of the left connecting arm 7 and tighten the lower bolt. Adjustment is very convenient. The same principle applies to adjusting the vertical and front-back positions of the right clamping block 3.

[0014] In order to adjust the left and right positions of the left clamping block 2, such as Figure 2 As shown, a left connecting shaft 9 extending in the left-right direction is installed on the left clamping block 2. The left clamping block 2 is connected to the left connecting shaft 9 through a left positioning block 20 (the left positioning block 20 is a fixing ring). When it is necessary to adjust the left-right position of the left clamping block 2, simply move the positioning block 20 to the left-right position on the left connecting shaft 9, and then tighten the bolt on the left positioning block 20 to lock the left positioning block 20 on the left connecting shaft 9. The adjustment is very convenient. A right connecting shaft extending in the left-right direction is installed on the right clamping block 3. The right clamping block 3 is connected to the left connecting shaft through a right positioning block. The adjustment of the left-right position of the right clamping block 3 is the same.

[0015] like Figure 1As shown, the left synchronous belt 40 is installed on the support 1 and wound around two left synchronous wheels 41, and the left slide block 42 is connected to the left synchronous belt 40. One of the left synchronous wheels is in driving connection with the left motor 4. Through the driving of the left motor 4, the left synchronous belt 40 rotates, thereby driving the left slide block 42 to move on the left guide rail 10. The right synchronous belt is installed on the support 1 and wound around two right synchronous wheels, and the right slide block is connected to the right synchronous belt. One of the right synchronous wheels is in driving connection with the right motor 5. Through the driving of the right motor 5, the right synchronous belt rotates, thereby driving the right slide block to move on the right guide rail.

[0016] Finally, it is worth mentioning that the length of the right clamp block 3 is greater than the length of the left clamp block 2. This is more conducive to the right clamp block 3 passing through different specifications of the carton A and cooperating with the left clamp block 2 to complete the clamping and conveying.

Claims

1. A material pinching device for a box-penetrating machine, comprising a support (1), a left pinching block (2) and a right pinching block (3), characterized in that: The support (1) is provided with a horizontal left guide rail (10), a left sliding seat (42) is slidably arranged on the left guide rail (10), the left sliding seat (42) is drivingly connected with a left motor (4), a left mounting seat (6) is connected on the left sliding seat (42), an L-shaped left connecting arm (7) is connected on the left mounting seat (6), an upper arm (70) of the left connecting arm (7) is provided with an up-down extending upper adjusting long hole (72), a lower arm (71) of the left connecting arm (7) is provided with a front-rear extending lower adjusting long hole (73), the upper arm (70) is connected with the left mounting seat (6) by an upper bolt penetrating through the upper adjusting long hole (72), the lower arm (71) is connected with a left connecting piece (8) by a lower bolt penetrating through the lower adjusting long hole (73), and the left clamping block (2) is connected on the left connecting piece (8); the support (1) is provided with a horizontal right guide rail, a right sliding seat is slidably arranged on the right guide rail, the right sliding seat is drivingly connected with a right motor (5), a right mounting seat is connected on the right sliding seat, an L-shaped right connecting arm is connected on the right mounting seat, an upper arm of the right connecting arm is provided with an up-down extending upper adjusting long hole, a lower arm of the right connecting arm is provided with a front-rear extending lower adjusting long hole, the upper arm is connected with the right mounting seat by an upper bolt penetrating through the upper adjusting long hole, and the lower arm is connected with a right connecting piece by a lower bolt penetrating through the lower adjusting long hole, and a right clamping block (3) is connected on the right connecting piece.

2. A material pinching device for a box insertion apparatus according to claim 1, characterized in that: A left connecting shaft (9) extending in left-right direction is mounted on the left clamping block (2), and the left clamping block (2) is connected on the left connecting shaft (9) through a left positioning block (20); a right connecting shaft extending in left-right direction is mounted on the right clamping block (3), and the right clamping block (3) is connected on the left connecting shaft through a right positioning block.

3. A material pinching device for a box insertion apparatus according to claim 1, characterized in that: The support (1) is provided with a left synchronous belt (40) and two left synchronous wheels (41), the left synchronous belt (40) is wound on the two left synchronous wheels (41), the left sliding seat (42) is connected on the left synchronous belt (40), and one of the left synchronous wheels is drivingly connected with the left motor (4); the support (1) is provided with a right synchronous belt and two right synchronous wheels, the right synchronous belt is wound on the two right synchronous wheels, a right sliding seat is connected on the right synchronous belt, and one of the right synchronous wheels is drivingly connected with the right motor (5).

4. A material pinching device for a cartridge according to claim 1, characterized in that: The length of the right clamping block (3) is greater than the length of the left clamping block (2).