In double-toggle jaw crushers, the pitman is mounted on fixed non-eccentric shaft that situated at the top of the crusher. There are two toggle plates, one on the left and one on the right, are linked to the pitman that is hinged to the driven camshaft. The toggle plate on the left is linked to the jaw-supporting block, while the one on the right is linked to the main body.
Eccentric Shaft Specs For Jaw Crusher. Jaw crushers
3. Check the strength of the shaft. When check the strength of the shaft, you can only check the strength of the biggest moment, and that is the movable jaw plate’s bearing. If it is smaller than the stress of the eccentric shaft, then the strength of the jaw crusher’s eccentric shaft can meet the requirement, and Not vice versa.
The jaw crusher, as recited in claim 2, wherein said front eccentric driving shaft has a same structure as said rear eccentric driving shaft, said front eccentric driving shaft and said rear eccentric driving shaft are self-balance eccentric shafts, connection guards are provided in middles of said eccentric driving shafts; eccentric bearing guards, concentric bearing guards, locking guards
The eccentric throw is one of the most important parameters in defining the job that your cone crusher does. The mantle in a cone crusher spins in conical pendulum motion. That means it doesn’t stay in the center of the chamber – it sweeps around moving closer and further away from the concave. This is what creates the crushing action. At a given point on the concave, material is crushed
why C Series jaw crushers have a large eccentric throw coupled with a steep toggle plate angle that magnifies the effective stroke at the crusher discharge. The large stroke, combined with the right speed, fly-wheel inertia and high vailable crusher power result in truly high crusher perform-ance. Operation at small settings as well as
The present overhead eccentric jaw crusher (Fig, 1) contains a frame 1 to which a stationary jaw 2 is fixed, and a swing jaw 3. The latter is mounted on bearings 4 of its hinge 5 on a multi-eccentric shaft 6 that is installed in bearing supports 7 (Fig. 4) of the frame 1 and provided with a mechanical drive 8.
The main shaft is eccentric and on this eccentric shaft is mounted the movable jaw, imparting a rotary movement to the jaw. This rotary movement followed by the movable jaw actually pushes the feed down into the crusher, as well as crushing. From this action is derived the name “Forced Feed.” As a result of this action a higher ratio of reduction and larger capacity can be obtained than
Jaw Crusher Structure. The main structure of jaw crusher is composed of main frame, movable jaw plate, fixed jaw plate, cheek plate, guard plate, eccentric shaft bearing, eccentric shaft, toggle plate, adjustment setting and so on. Among them there are some wear parts that need replacement. Generally speaking, jaw crusher spare parts are jaw
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The single-toggle crusher is also known as an overhead eccentric for its eccentric shaft is up above compared to the Dodge which has its shaft below/under. Here, the eccentric is integrated into the “swing” jaw plate that’s moving up/down as the flywheel rotated by the motor. A single-toggle pivots at the base of the swing plate which is causing the jaw’s arc-like motion. The rock
ture shaft rotation must be equal to the free fall of the jaw crushers is its capacity. The capacity depends on the number of revolu-tions of the eccentric shaft with a simple motion of the moving jaw. The crusher achieves the maximum capacity at the opti-mum speed of the eccentric shaft. The opti-
The eccentric shaft is used to connect belt pulley and flywheel. And the wear of eccentric shaft and bearing is common in the jaw crusher with sliding bearings. Here we Yuhong Heavy Machinery Co., Ltd., Zhengzhou City, China would like to introduce the repair of eccentric shafts. The main wear form of eccentric shaft includes axial neck and
eccentric bushing in the eccentric bearing (G) via the countershaft assembly (H). This rotating eccentric bushing imparts an eccentric motion to the main shaft (B), a characteristic of the gyratory crusher. In this way the crushing gap located between the fixed concaves in the crusher shell and the eccentrically gyrating mantle continu -
ture shaft rotation must be equal to the free fall of the jaw crushers is its capacity. The capacity depends on the number of revolu-tions of the eccentric shaft with a simple motion of the moving jaw. The crusher achieves the maximum capacity at the opti-mum speed of the eccentric shaft. The opti-
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The electric motor drives the Belt and Pulley to make the Movable Jaw plate move back and forth, up and down, through the Eccentric Shaft, against the Fixed Jaw Plate. The raw material enters the Crushing Chamber through the Crusher Inlet and soon as it drops between the two jaw plates, it squashed or split when movable jaw Plate move toward fixed plate and the gap is become narrow.
The Jaw Crusher was first introduced by Eli Whitney Blake in 1858 as a double-toggle Jaw Crusher. Introduced in 1906, McLanahan’s Universal Jaw Crusher was one of the first modern era overhead eccentric Jaw Crushers. On the overhead eccentric style Jaw Crusher, the moving swing jaw is suspended on the eccentric shaft with heavy-duty double roll spherical roller bearings.
In double-toggle jaw crushers, the pitman is mounted on fixed non-eccentric shaft that situated at the top of the crusher. There are two toggle plates, one on the left and one on the right, are linked to the pitman that is hinged to the driven camshaft. The toggle plate on the left is linked to the jaw-supporting block, while the one on the right is linked to the main body.
eccentric bushing in the eccentric bearing (G) via the countershaft assembly (H). This rotating eccentric bushing imparts an eccentric motion to the main shaft (B), a characteristic of the gyratory crusher. In this way the crushing gap located between the fixed concaves in the crusher shell and the eccentrically gyrating mantle continu -
why C Series jaw crushers have a large eccentric throw coupled with a steep toggle plate angle that magnifies the effective stroke at the crusher discharge. The large stroke, combined with the right speed, fly-wheel inertia and high vailable crusher power result in truly high crusher perform-ance. Operation at small settings as well as
The present crusher consists of a frame 1 on which two synchronized eccentric shafts 2 and 3 with mechanical drives 4 and 5 are mounted in bearing supports 6 (the lower bearing support is not shown). A stationary jaw 7 is mounted with its hinge 8 on bearing 9 of the shaft 2 directly (Fig. 2). The movable jaw 10 is mounted with its hinges 11 and 12 on bearings 13 and 14 of the eccentrics 15 and
eccentric bushing in the eccentric bearing (G) via the countershaft assembly (H). This rotating eccentric bushing imparts an eccentric motion to the main shaft (B), a characteristic of the gyratory crusher. In this way the crushing gap located between the fixed concaves in the crusher shell and the eccentrically gyrating mantle continu -
Eccentric shaft with bearing Back wall Jaw adjustment Toggle plate Pitman Clamping bar Shim plate Cheek plate Front wall Side wall Fixed jaw Moving jaw Swing jaw Shim From top: Crushing plant with a single-toggle jaw crusher in operation in Austria Schematic diagram of the working principle of a single-toggle jaw crusher with a single-toggle
The present overhead eccentric jaw crusher (Fig, 1) contains a frame 1 to which a stationary jaw 2 is fixed, and a swing jaw 3. The latter is mounted on bearings 4 of its hinge 5 on a multi-eccentric shaft 6 that is installed in bearing supports 7 (Fig. 4) of the frame 1 and provided with a mechanical drive 8.
Eccentric shaft with bearing Back wall Jaw adjustment Toggle plate Pitman Clamping bar Shim plate Cheek plate Front wall Side wall Fixed jaw Moving jaw Swing jaw Shim From top: Crushing plant with a single-toggle jaw crusher in operation in Austria Schematic diagram of the working principle of a single-toggle jaw crusher with a single-toggle
Eccentric shaft, the main drive part plays an important role in the operation process. However, during daily production process, due to the overload operation of jaw crusher, the hardness of crushed material and the quality of toggle plate is not up to the standard, the eccentric shaft of jaw crusher is easy to be broken. In this text, the
Jaw Stone Crusher | Single Toggle vs Double Toggle
Jaw Crusher Eccentric Shaft is installed on the top of the jaw crusher. It runs through the movable jaw, pulley and flywheel. All of them are connect with each other by the eccentric shaft. The rotation of eccentric shaft causes a compressive action of the moving jaw.
Eccentric Shaft Specs For Jaw Crusher. Jaw crushers
The jaw crusher is one of the most admired and most sought after equipment from the house of Propel Industries. For the benefit of newcomers in the industry, here is an explainer of the various components of the Jaw crusher. A jaw crusher consists of Crusher Body Pitman Jaw plate Rear end frame Eccentric shaft … Continue reading In- depth – Components of a Jaw Crusher
The eccentric shaft is used to connect belt pulley and flywheel. And the wear of eccentric shaft and bearing is common in the jaw crusher with sliding bearings. Here we Yuhong Heavy Machinery Co., Ltd., Zhengzhou City, China would like to introduce the repair of eccentric shafts. The main wear form of eccentric shaft includes axial neck and
ECCENTRIC SHAFTS. Jaw Crusher Eccentric Shaft is installed on the top of the jaw crusher. It runs through the movable jaw, pulley and flywheel. All of them are connect with each other by the eccentric shaft. The rotation of eccentric shaft causes a compressive action of the moving jaw. Jaw crusher eccentric shaft is constructed with large
The eccentric shaft is used to connect belt pulley and flywheel. And the wear of eccentric shaft and bearing is common in the jaw crusher with sliding bearings. Here we Yuhong Heavy Machinery Co., Ltd., Zhengzhou City, China would like to introduce the repair of eccentric shafts. The main wear form of eccentric shaft includes axial neck and