Sampling and cutting device for sole material detection

The sampling and cutting device for sole material testing uses an electric lifting rod and a screw structure driven by a dual-axis motor to achieve a close fit between the sole and the iron plate. The cooperation of the electric telescopic rod and the blade solves the problem of uneven cutting of the sole, achieving uniform cutting and thickness consistency to meet the testing requirements.

CN223437984UActive Publication Date: 2025-10-17FUJIAN HUAJIAN QUALITY INSPECTION TECH SERVICE CO LTD
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Patent Information

Application Number
CN202422910163.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-28
Publication Date
2025-10-17
Estimated Expiration
2034-11-28

AI Technical Summary

Technical Problem

In the prior art, the soles are cut unevenly and the thickness varies, resulting in the discarding of samples, which cannot meet the requirements of subsequent testing and cause waste of resources.

Method used

A sampling and cutting device for sole material testing is used. The shoes are fixed by an electric lifting rod. Combined with a screw rod and a flip frame structure driven by a dual-axis motor, the soles are tightly fitted to the iron plate. Uniform cutting is achieved through the cooperation of the electric telescopic rod and the blade.

Benefits of technology

The uniformity and thickness consistency of the sole cutting are achieved, meeting the subsequent testing requirements and reducing resource waste.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of shoe industry processing equipment, in particular to a sampling and cutting device for sole material detection, which is characterized in that an electric lifting rod is mounted above a base, a shoe support is mounted at the top of the base, a long sliding groove is formed in the base, three sliding blocks are arranged in the long sliding groove, and a fixed plate is mounted on the sliding block far away from the electric lifting rod and is provided with an electric telescopic rod; according to the utility model, a shoe arranged on the shoe support is controlled by the installed electric lifting rod, so that the shoe can be tightly attached and fixed to an iron plate when the shoe is lifted to a sole, and the situation that the shoe moves left and right to cause incomplete sample taking during cutting is avoided; the height of the blade can be adjusted by controlling the electric telescopic rod, so that a user can cut the thickness according to the requirement, then the blade is controlled by the installed double-shaft motor to move, the shoe sole is uniformly cut, the shoe sole is cut and sampled under the cooperation of the structures, and the thickness and the uniform plane required by the user are completed; and subsequent detection requirements can be met.
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Description

TECHNICAL FIELD

[0001] The utility model relates to shoe industry processing equipment technical field especially relates to a sampling cutting device of sole material detection. BACKGROUND

[0002] The sampling cutting of sole is all first fixed in the shoe support and then cut sampling, but the worker usually makes the uneven cutting of sole and the different thickness when completing this task, makes this sample to be discarded and causes the waste of user resource, and cannot satisfy the follow -up detection requirement. UTILITY MODEL CONTENTS

[0003] The utility model discloses a sampling cutting device of sole material detection to solve the shortcomings in the prior art.

[0004] In order to realize the above -mentioned purpose, the utility model adopts the following technical scheme:

[0005] A sampling cutting device of sole material detection, including the base, the base top symmetry installs two long sliding slots, sets up first sliding block second sliding block with third sliding block in the long sliding slot inside, installs the first turnover frame on the first sliding block top center, and inserts the first support block in the first turnover frame middle and sets up second support block on the other end of second support block, and the second turnover frame is installed in the middle of first support block, and installs the push plate in the middle of fourth sliding block on both sides.

[0006] The second sliding block top installs the short sliding slot, and the fourth sliding block is slidably arranged on the second sliding rail in the short sliding slot, the fourth sliding block is inserted with the second support block through the third turnover frame installed on the top, and the second turnover frame is arranged on the other end of the second support block, and the second turnover frame is installed in the middle of first support block, and the push plate is installed in the middle of fourth sliding block on both sides.

[0007] In addition, the preferred structure is that two support columns are vertically inserted on the top of one end of the base symmetrically, and an iron plate is installed on the top of the two support columns.

[0008] In addition, the preferred structure is that an electric lifting rod is vertically inserted in the middle of the two support columns, and a shoe support is installed on the top of the electric lifting rod.

[0009] In addition, the preferred structure is that the first sliding block, the second sliding block and the third sliding block are arranged on the first sliding rail in the long sliding slot, a lead screw is inserted and installed in each sliding block, and the lead screw is driven by a double-shaft motor.

[0010] In addition, the preferred structure is that the lead screw is provided with threads on the surface, and the first sliding block, the second sliding block and the third sliding block are limited by the lead screw and the first sliding rail in the same horizontal plane.

[0011] In addition, the preferred structure is that the main bevel gear of the double-shaft motor is engaged with the driven bevel gear of the lead screw.

[0012] In addition, preferably, a dust cover is arranged at the meshing position of the main bevel gear and the driven bevel gear.

[0013] In addition, preferably, a fixed plate is arranged above the third sliding block on both sides, and a fixed seat is arranged in the middle of the fixed plate, and an electric telescopic rod arranged above the fixed seat is connected with the push plate.

[0014] In addition, preferably, a blade holder is arranged above the first supporting block on both sides, and a strip-shaped blade is arranged between the blade holders.

[0015] The shoe sole material detection sampling and cutting device has the advantages that the shoes placed on the shoe support are lifted to closely contact and fix the iron plate, so that the shoes do not move leftward and rightward to cause incomplete sampling during cutting, and the electric telescopic rod can be controlled to adjust the height of the blade, so that the user can cut the shoes to a required thickness, then the double-shaft motor is controlled to move the blade, so that the shoes are evenly cut, and the thickness and the uniform plane required by the user are achieved, and the subsequent detection requirements can be met. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 Fig. 4 is a shaft side structure schematic view of the shoe sole material detection sampling and cutting device;

[0017] Figure 2 Fig. 5 is a shaft side half-section structure schematic view of the shoe sole material detection sampling and cutting device;

[0018] Figure 3 Fig. 6 is a long sliding groove section structure schematic view of the shoe sole material detection sampling and cutting device.

[0019] Figure 4 Fig. 7 is a long sliding groove shaft side structure schematic view of the shoe sole material detection sampling and cutting device.

[0020] In the figure, 1 is a base, 2 is a supporting column, 3 is a fixed seat, 4 is a dust cover, 5 is a double-shaft motor, 6 is an iron plate, 7 is a shoe support, 8 is an electric lifting rod, 9 is a strip-shaped blade, 10 is a push plate, 11 is an electric telescopic rod, 12 is a fixed plate, 13 is a first sliding rail, 14 is a long sliding groove, 15 is a screw rod, 16 is a first sliding block, 17 is a second sliding block, 18 is a third sliding block, 19 is a driven bevel gear, 20 is a main bevel gear, 21 is a first turnover frame, 22 is a first supporting block, 23 is a blade holder, 24 is a second turnover frame, 25 is a second supporting block, 26 is a third turnover frame, 27 is a short sliding groove, 28 is a fourth sliding block, and 29 is a second sliding rail. DETAILED DESCRIPTION

[0021] With reference to the drawings of the embodiments of the present application, the technical solutions in the embodiments of the present application will be clearly and completely described, obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments.

[0022] With reference to the drawings of the embodiments of the present application, the technical solutions in the embodiments of the present application will be clearly and completely described, obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Figures 1-4 A sampling and cutting device for sole material detection, comprising a base 1, two support columns 2 are symmetrically and vertically inserted on the top of one end of the base 1, and an iron plate 6 is installed above the two support columns 2, an electric lifting rod 8 is vertically inserted in the middle of the two support columns 2, and a shoe support 7 is installed on the top of the electric lifting rod 8, the electric lifting rod 8 can be controlled to lift the shoes placed on the shoe support 7, so that the sole can be tightly fixed with the iron plate 6.

[0023] Further, two long grooves 14 are symmetrically installed above the base 1, and a first sliding block 16, a second sliding block 17 and a third sliding block 18 are slidably arranged on a first sliding rail 13 in the long groove 14, a lead screw 15 is inserted and installed in each sliding block, a thread is arranged on the surface of the lead screw 15, the first sliding block 16, the second sliding block 17 and the third sliding block 18 are limited by the lead screw 15 and the first sliding rail 13 in the same horizontal plane, the lead screw 15 is driven by a double-shaft motor 5, a main bevel gear 20 of the double-shaft motor 5 is engaged with a driven bevel gear 19 of the lead screw 15. The lead screw 15 is driven to rotate by the double-shaft motor 5, so that the three sliding blocks move forward and backward.

[0024] Then, a first turnover frame 21 is installed above the center of the first sliding block 16, and a first support block 22 is inserted and installed in the middle of the first turnover frame 21. Knife fixers 23 are installed above the symmetric first support blocks 22 on both sides, and strip-shaped knives 9 are inserted between the two sides of the knife fixers 23.

[0025] Further, a short groove 27 is installed above the second sliding block 17, a fourth sliding block 28 is slidably arranged on a second sliding rail 29 in the short groove 27, the fourth sliding block 28 is inserted with a second support block 25 by a third turnover frame 26 installed above, and a second turnover frame 24 is arranged at the other end of the second support block 25, and the second turnover frame 24 is installed in the middle of the first support block 22; and a push plate 10 is installed in the middle of the fourth sliding block 28 on both sides, so that the first support block 22 can be raised and lowered by the second support block 25 connected by the fourth sliding block 28.

[0026] Further, a fixed plate 12 is installed above the symmetrically installed third sliding block 18, and a fixed seat 3 is installed in the middle of the fixed plate 12, and an electric telescopic rod 11 installed above the fixed seat 3 is connected with the push plate 10, and the whole is controlled to be raised and lowered by the electric telescopic rod 11 through the fourth sliding block 28.

[0027] In the example: the shoe support 7 is directly controlled by the electric lifting rod 8 to lift. In addition, the rotation of the screw rod 15 is controlled by the double-shaft motor 5 to move the first sliding block 16, the second sliding block 17 and the third sliding block 18 forward and backward, so that the components fixed above the first sliding block 16, the second sliding block 17 and the third sliding block 18, including the strip-shaped cutter 9, can also move together. The fourth sliding block 28 is moved forward and backward by the electric telescopic rod 11 through the push plate 10, and the first support block 24 is connected with the second support block 25 inserted above the fourth sliding block 28, so that the first support block 24 can be moved in an arc shape around the first turnover frame 21, and the strip-shaped cutter 9 installed in the blade holder 23 on the top of the first support block 24 can be moved up and down.

[0028] In the utility model: the shoes arranged on the shoe support 7 are controlled by the installed electric lifting rod 8 to lift, so that the shoes can be closely fixed with the iron plate 6, the shoes will not move left and right to cause the sample to be incomplete during cutting, and the electric telescopic rod 11 can be controlled to adjust the height of the strip-shaped cutter 9, so that the user can cut the thickness according to the requirement, then the movement of the strip-shaped cutter 9 is controlled by the installed double-shaft motor 5, so that the shoe sole is evenly completed during cutting, and the shoe sole is cut and sampled under the cooperation of the structures, the thickness and the uniform plane required by the user are completed, and the subsequent detection requirement can be met.

[0029] The above describes only the preferred specific implementation of the utility model, but the protection scope of the utility model is not limited to this, any skilled person in the art can make equivalent replacement or change according to the technical scheme and the utility model concept of the utility model within the technical range disclosed by the utility model, and all should be covered in the protection scope of the utility model.

Claims

1. A sampling and cutting device for sole material testing, comprising a base (1), characterized in that: Two long slide grooves (14) are symmetrically installed above the base (1), and a first slider (16), a second slider (17) and a third slider (18) are slidably installed inside the long slide grooves (14). A first flip frame (21) is installed at the center above the first slider (16), and a first support block (22) is inserted and installed in the middle of the first flip frame (21); A short slide groove (27) is installed above the second slider (17), and the fourth slider (28) is slidably arranged on the second slide rail (29) in the short slide groove (27). The fourth slider (28) is inserted with a second support block (25) through a third flip frame (26) installed above, and a second flip frame (24) is provided at the other end of the second support block (25). The second flip frame (24) is installed in the middle of the first support block (22); and a push plate (10) is installed in the middle of the fourth slider (28) on both sides.

2. A sampling and cutting device for sole material detection according to claim 1, characterized in that: Two support columns (2) are symmetrically and vertically inserted above one end of the base (1), and an iron plate (6) is installed above the two support columns (2).

3. A sampling and cutting device for sole material detection according to claim 2, characterized in that: An electric lifting rod (8) is vertically inserted between the two support columns (2), and a shoe holder (7) is installed on the top of the electric lifting rod (8).

4. The sampling and cutting device for sole material detection according to claim 1, characterized in that: The first slider (16), the second slider (17) and the third slider (18) are slidably arranged on the first slide rail (13) in the long slide groove (14), and a screw rod (15) is inserted and installed in each slider, and the screw rod (15) is driven by a dual-axis motor (5).

5. The sampling and cutting device for sole material detection according to claim 4, characterized in that: The surface of the screw rod (15) is provided with a thread, and the screw rod (15) and the first slide rail (13) are used to limit the first slide block (16), the second slide block (17) and the third slide block (18) at the same horizontal plane.

6. The sampling and cutting device for sole material detection according to claim 4, characterized in that: The main bevel gear (20) of the dual-shaft motor (5) is meshed with the driven bevel gear (19) of the screw rod (15).

7. The sampling and cutting device for sole material detection according to claim 6, characterized in that: A dust cover (4) is provided at the meshing position between the main bevel gear (20) and the driven bevel gear (19).

8. The sampling and cutting device for sole material testing according to claim 1, characterized in that: A fixing plate (12) is installed above the third sliders (18) on both sides, and a fixing seat (3) is installed in the middle of the fixing plate (12), which is connected to the push plate (10) through an electric telescopic rod (11) installed above the fixing seat (3).

9. The sampling and cutting device for sole material testing according to claim 1, characterized in that: A blade holder (23) is installed above the first support blocks (22) on both sides, and a strip blade (9) is inserted between the two sides of the blade holder (23).