Divide material system and feeding system

文档序号:1173569 发布日期:2020-09-18 浏览:18次 中文

阅读说明:本技术 分料系统及上料系统 (Divide material system and feeding system ) 是由 周醒 马朋巍 黄亮 于 2018-03-15 设计创作,主要内容包括:一种分料系统(1000),包括分料装置(1100)和出料装置(1200),所述分料装置(1100)包括:设置在入料口处的检测装置(1120);底座(1130);设置在底座(1130)上的分料块(1140),分料块(1140)上设置有至少两分料槽(1150);设置在底座上的移动装置(1160),所述移动装置(1160)与分料块(1140)及检测装置(1120)连接,移动装置(1160)带动分料块(1140)移动使所述至少两分料槽(1150)依次与分料装置(1100)的入料口(1110)相对应。通过上述分料系统,可提高阻尼减震器得自动化装配效率。一种上料系统(100),包括上述分料系统和取料装置(2000)。(A feed divider system (1000) comprising a feed divider (1100) and a discharge (1200), the feed divider (1100) comprising: a detection device (1120) arranged at the feed inlet; a base (1130); a distributing block (1140) arranged on the base (1130), wherein at least two distributing grooves (1150) are arranged on the distributing block (1140); the moving device (1160) is arranged on the base, the moving device (1160) is connected with the distributing block (1140) and the detecting device (1120), and the moving device (1160) drives the distributing block (1140) to move so that the at least two distributing grooves (1150) sequentially correspond to the feeding ports (1110) of the distributing device (1100). Through above-mentioned branch material system, can improve damping bumper shock absorber and automize assembly efficiency. A feeding system (100) comprises the material distribution system and the material taking device (2000).)

The utility model provides a material distribution system, includes feed divider and discharging device, discharging device's discharge gate with feed divider's pan feeding mouth is corresponding, wherein, feed divider includes:

the detection device is arranged at the feed inlet and used for outputting a detection signal when the material is detected;

a base;

the distributing block is arranged on the base and provided with at least two distributing grooves;

the moving device is arranged on the base, connected with the distributing block and the detecting device and used for receiving the detection signal from the detecting device and moving according to the detection signal to drive the distributing block to move, so that the at least two distributing grooves sequentially correspond to the feeding port.

The dispensing system of claim 1, wherein the moving device is fixedly attached to the dispensing block.

The material distribution system of claim 1, wherein the material distribution device further comprises a first stop and a second stop disposed on either side of the distribution block, the distribution block contacting one of the first stop and the second stop to align the distribution chute with the feed opening.

The material distribution system of claim 3, wherein the distribution block moves horizontally from side to side, the first stop and the second stop being disposed on the left and right sides of the distribution block, respectively.

The material distribution system of claim 1, wherein the material distribution device further comprises first and second retaining tabs disposed on both sides of the inlet opening and located on a side of the distribution block away from the moving device, the inlet opening being formed by the first and second retaining tabs and the material being located in the distribution chute of the distribution block.

The material distribution system of claim 5, wherein the first and second blocking pieces are L-shaped with one side fixed to the base and the other side shielding the distribution block.

The dispensing system of claim 1, wherein the moving device includes a control unit coupled to the sensing device for receiving a sensing signal from the sensing device and outputting a control signal to control movement of the moving device based on the sensing signal.

The material distribution system of claim 1, wherein the at least two distribution slots include a first distribution slot and a second distribution slot, and the first distribution slot and the second distribution slot are spaced apart on the distribution block.

The material distributing system according to claim 1, wherein a detecting hole is formed on the base at a position corresponding to the material inlet to accommodate the detecting device, and a through hole corresponding to the detecting hole is formed at the bottom of the at least two material distributing grooves.

The material distribution system of claim 1, wherein the moving device is a linear motion device.

The material distribution system of claim 10, wherein the linear motion device is one of a pneumatic slide, a ball wire, a lead screw slide, and an electric cylinder structure.

The dispensing system of claim 1, wherein the sensing device is one of a photo sensor device and a micro switch device.

The material distributing system according to claim 1, wherein the height of the material distributing groove is the same as that of the discharge port of the discharging device, so that the discharge port of the discharging device corresponds to the material inlet of the material distributing device.

The dispensing system of claim 1, wherein the base is fixed to the ground or other platform.

The material distribution system of claim 1, wherein the discharge device is a single lane discharge device.

The material distribution system of claim 1, wherein the material is a damper and the discharge device is a single-channel vibratory pan.

A feeding system, wherein, the feeding system includes extracting device and branch material system, divide the material system to include:

feed divider and discharging device, discharging device's discharge gate with feed divider's pan feeding mouth is corresponding, feed divider includes:

the detection device is arranged at the feed inlet and used for outputting a detection signal when the material is detected;

a base;

the distributing block is arranged on the base and provided with at least two distributing grooves;

the moving device is arranged on the base, connected with the distributing block and the detecting device and used for receiving the detection signal from the detecting device and moving according to the detection signal to drive the distributing block to move, so that the at least two distributing grooves sequentially correspond to the feeding port to receive the materials, and then the materials are taken away through the taking device.

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