CN219632476U - Arrangement mechanism of double-coil spring machine head - Google Patents

Arrangement mechanism of double-coil spring machine head Download PDF

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Publication number
CN219632476U
CN219632476U CN202320213714.5U CN202320213714U CN219632476U CN 219632476 U CN219632476 U CN 219632476U CN 202320213714 U CN202320213714 U CN 202320213714U CN 219632476 U CN219632476 U CN 219632476U
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spring
coiling machine
springs
annular
utility
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CN202320213714.5U
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叶如剑
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Zhejiang Huajian Intelligent Equipment Co ltd
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Zhejiang Huajian Intelligent Equipment Co ltd
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Abstract

The utility model belongs to the technical field of spring coiling machines, and particularly relates to an arrangement mechanism of a double-spring coiling machine head. The utility model adopts two spring coiling machines to simultaneously coil and share the same spring conveying device, thereby saving the cost, saving the equipment space, greatly improving the efficiency of equipment, and simultaneously, the two spring coiling machines independently work, can simultaneously coil springs with different wire diameters, enhancing the diversity of the spring manufacture of the equipment and improving the competitiveness.

Description

Arrangement mechanism of double-coil spring machine head
Technical Field
The utility model belongs to the technical field of spring coiling machines, and particularly relates to an arrangement mechanism of a double-spring coiling machine head.
Background
Spring coiling machine commonly known as spring coiling machine refers to mechanical equipment for producing springs, and the existing equipment is provided with a single spring coiling machine only at one side of a spring conveying device, so that the efficiency is low, and springs of two steel wires with different diameters cannot be coiled simultaneously.
In view of this, the present utility model has been proposed.
Disclosure of Invention
The utility model hopes to provide an arrangement mechanism of a double coil spring machine head, which comprises the following specific schemes:
the arrangement mechanism of the double-spring coiling machine head comprises a spring conveying device, wherein a first spring coiling machine and a second spring coiling machine are arranged on the same side or different sides of the spring conveying device, and the first spring coiling machine and the second spring coiling machine are used for coiling the same or different springs.
The spring conveying device comprises an annular spring conveying belt, a spring adsorption device is arranged on the annular spring conveying belt and used for adsorbing springs to move along with the annular spring conveying belt, and the coiled springs are conveyed to the lower side of the annular spring conveying belt from the upper side of the annular spring conveying belt.
The front ends of the first spring coiling machine or/and the second spring coiling machine are provided with spring pushing devices which are used for pushing springs to fixed positions, and the springs are required to be pushed to correct positions because the falling positions of the springs are biased to the coiling machine, and if the springs are too long, the springs cannot fall in the middle of the spring adsorbing devices.
The bottom of the annular spring conveyer belt is provided with a V-shaped conveyer belt, and the V-shaped conveyer belt is used for compressing and conveying springs.
The spring adsorption device comprises a shell and a magnetic material, wherein the magnetic material is used for adsorbing the spring on the shell.
The beneficial effects of the utility model are as follows:
the utility model adopts two spring coiling machines to simultaneously coil and share the same spring conveying device, thereby saving the cost, saving the equipment space, greatly improving the efficiency of equipment, and simultaneously, the two spring coiling machines independently work, can simultaneously coil springs with different wire diameters, enhancing the diversity of the spring manufacture of the equipment and improving the competitiveness.
Drawings
FIG. 1 is a schematic view of a dual coil spring nose arrangement in accordance with the present utility model;
FIG. 2 is a second schematic structural view of an arrangement mechanism for a dual coil spring nose in accordance with the present utility model;
FIG. 3 is a schematic diagram of a dual coil spring nose arrangement mechanism of the present utility model;
FIG. 4 is a schematic structural view of an arrangement mechanism for a dual coil spring nose in accordance with the present utility model;
FIG. 5 is a schematic view of a portion of the structure of an arrangement mechanism of a dual coil spring nose in accordance with the present utility model;
wherein the reference numerals: the device comprises an annular spring conveying belt 1, a spring adsorption device 2, a first spring coiling machine 3, a second spring coiling machine 4, springs 5, a V-shaped conveying belt 6 and a spring pushing device 7.
Detailed Description
The utility model will be further described with reference to the following specific embodiments.
In the following description, all concepts related to the directions (or azimuths) of up, down, left, right, front and rear are directed to the position states where the drawings are being described, so as to facilitate public understanding, and thus should not be construed as being particularly limiting to the technical solutions provided by the present utility model.
As shown in fig. 1-5, an arrangement mechanism of a dual-spring coiling machine head comprises a spring conveying device, wherein a first spring coiling machine 3 and a second spring coiling machine 4 are arranged on the same side or different sides of the spring conveying device, and the first spring coiling machine 3 and the second spring coiling machine 4 are used for coiling the same or different springs 5. The spring conveying device comprises an annular spring conveying belt 1, a spring adsorption device 2 is arranged on the annular spring conveying belt 1, and the spring adsorption device 2 is used for adsorbing springs 5 to move along with the annular spring conveying belt 1 and conveying the wound springs 5 from the upper side of the annular spring conveying belt 1 to the lower side of the annular spring conveying belt 1.
The bottom of the endless spring conveyor 1 (spring conveyor) is provided with a V-belt 6, the V-belt 6 being used for compressing and conveying the springs 5. The front ends of the first spring coiling machine 3 and/or the second spring coiling machine 4 are/is provided with a spring pushing device 7, the spring pushing device 7 is used for pushing the spring 5 to a fixed position (namely, the middle position of the spring absorbing device 2), and the falling position of the spring 5 is biased to the coiling machine, so that if the spring is too long, the spring cannot fall in the middle of the spring absorbing device 2, and the spring is required to be pushed to a correct position. The spring adsorption device 2 comprises a shell and a magnetic material, wherein the magnetic material can be a magnet, and the magnetic material is arranged inside the shell of the spring adsorption device 2 and is used for adsorbing the spring 5 on the shell 21.
The working principle is as follows:
two spring coiling machines (shown in figures 1-3) are arranged on the same side of the annular spring conveying belt 1, or one spring coiling machine (shown in figure 4) is arranged on the opposite side of the annular spring conveying belt 1, the two spring coiling machines can coil steel wires to form springs 5, the springs are absorbed and driven to be conveyed by a spring absorbing device 2 on the annular spring conveying belt 1, the springs are conveyed to the lower side of the annular spring conveying belt 1 from the upper side of the annular spring conveying belt 1, and finally the springs are conveyed to the next process after being compressed by a V-shaped conveying belt 6.
In the process that the springs 5 are conveyed from the upper part of the annular spring conveyer belt 1 to the lower part of the annular spring conveyer belt 1, the springs are pushed to the correct positions through the spring pushing device 7, so that the springs 5 fall in the middle of the spring adsorption device 2 as much as possible, and the compression of the V-shaped conveyer belt 6 is facilitated.
The utility model adopts two spring coiling machines to simultaneously coil and share the same spring conveying device, thereby saving the cost, saving the equipment space, greatly improving the efficiency of equipment, and the two spring coiling machines independently work, can simultaneously coil the springs 5 of steel wires with different diameters, enhancing the manufacturing diversity of the springs 5 of the equipment and improving the competitiveness.
The above embodiments are only for illustrating the inventive concept of the present utility model and not for limiting the protection of the claims of the present utility model, and all the insubstantial modifications of the present utility model using the concept fall within the protection scope of the present utility model.

Claims (4)

1. An arrangement mechanism of a double coil spring machine head is characterized in that: the spring conveying device is provided with a first spring coiling machine and a second spring coiling machine on the same side or different sides, and the first spring coiling machine and the second spring coiling machine are used for coiling the same or different springs; the spring conveying device comprises an annular spring conveying belt, a spring adsorption device is arranged on the annular spring conveying belt, and the spring adsorption device is used for adsorbing the spring to move along with the annular spring conveying belt.
2. The dual coil spring nose placement mechanism of claim 1, wherein: the front ends of the first spring coiling machine or/and the second spring coiling machine are provided with spring pushing devices, and the spring pushing devices are used for pushing springs to fixed positions.
3. The dual coil spring nose placement mechanism of claim 1, wherein: the bottom of the annular spring conveyer belt is provided with a V-shaped conveyer belt, and the V-shaped conveyer belt is used for compressing and conveying springs.
4. The dual coil spring nose placement mechanism of claim 1, wherein: the spring adsorption device comprises a shell and a magnetic material, wherein the magnetic material is used for adsorbing the spring on the shell.
CN202320213714.5U 2023-02-14 2023-02-14 Arrangement mechanism of double-coil spring machine head Active CN219632476U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320213714.5U CN219632476U (en) 2023-02-14 2023-02-14 Arrangement mechanism of double-coil spring machine head

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320213714.5U CN219632476U (en) 2023-02-14 2023-02-14 Arrangement mechanism of double-coil spring machine head

Publications (1)

Publication Number Publication Date
CN219632476U true CN219632476U (en) 2023-09-05

Family

ID=87807513

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202320213714.5U Active CN219632476U (en) 2023-02-14 2023-02-14 Arrangement mechanism of double-coil spring machine head

Country Status (1)

Country Link
CN (1) CN219632476U (en)

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