Analyze every packing action of automatic baler

1. The packing object is basically in the middle of the baler. First, the right top body rises and the front end of the belt is pressed. The belt is tightened on the object.

2, then the left acrosomatic body rises, compresses the appropriate position of the lower layer of the strap, the heating piece extends into the middle of the two bands, the middle knife rises, cuts the band,

3, Finally, the next strap is sent to the place to complete a work cycle.

Fully automatic baler action analysis:

The band is delivered to the place → The banding signal is received → The brake is released. The main motor starts the first step: 1. The right top knife rises, and the right top band is placed at the slide 2. The “T” guide plate retreats 3, the proximity switch senses the retracted band. Probe 4, the main motor stops, the brake pulls 5, the baler with the motor rotation, withdraw from the belt 0.35 seconds 6, the strap tightened on the object second link: 7, the main motor secondary start, brake pull 8 A large swing rod secondary pull strap tightens the strap 9, the left acroathlon rises, and the lower strap 10 is pressed tightly, the heating tab extends into the middle 11 of the two straps, the middle top knife rises, the strap 12 is cut, the middle top knife descends 13, and the middle top The knife rises again, so that the two tapes are firmly bonded 14, the middle knife is lowered, the left and right knifes are simultaneously lowered by 15, the heating plate is reset by 16, the slide plate is moved back by the third step: 17, the “T” type guide plate is reset 18, and the proximity switch is sent to the sensor. With the probe 19, the belt feeding motor is started, the belt feeding belt 20 is driven, the large swing lever is reset 21, the belt is in position, the head is on the "T" type guide plate 22 and the proximity switch senses to the double probe 23, the main motor stops, and the brake pulls in .

Welding Bar

Tungsten carbide welding bars are commonly used in the oil and gas industry for various applications. These bars are made from a combination of tungsten and carbon, which results in a very hard and wear-resistant material. Here are some specific uses of tungsten carbide welding bars in the oil and gas industry:

1. Hardfacing: Tungsten carbide welding bars are used for hardfacing applications, where a wear-resistant layer is applied to drilling tools, valves, pumps, and other equipment exposed to abrasive environments. This helps to extend the lifespan of the components and reduce maintenance costs.

2. Drill bits: Tungsten carbide welding bars are used to manufacture drill bits for oil and gas exploration. The hard and durable nature of tungsten carbide makes it ideal for drilling through tough rock formations.

3. Wear plates and liners: Tungsten carbide welding bars are used to create wear plates and liners for equipment used in oil and gas production. These plates and liners protect the underlying metal surfaces from abrasion and corrosion, ensuring the longevity of the equipment.

4. Valve seats and seals: Tungsten carbide welding bars are used to manufacture valve seats and seals for oil and gas valves. The high hardness and wear resistance of tungsten carbide ensure reliable sealing and prevent leakage in critical applications.

5. Downhole tools: Tungsten carbide welding bars are used in the manufacturing of downhole tools such as stabilizers, reamers, and drill collars. These tools are subjected to high pressures, temperatures, and abrasive conditions, and tungsten carbide helps to enhance their durability and performance.

Overall, tungsten carbide welding bars play a crucial role in the oil and gas industry by providing wear resistance, hardness, and durability to various components and equipment.

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Luoyang Golden Egret Geotools Co., Ltd , https://www.lyshieldcutters.com

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