A B

Drive

Auger

Figure 3-11

Loosen the Nylock nut on the drive control cable and unthread the cable one full turn. See Figure 3-13.

Recheck adjustment.

Retighten the Nylock nut to secure the cable when correct adjustment is reached.

NOTE: For more details, refer to Drive Control Adjust- ment in the Adjustment Section of this manual.

Auger Control

Check the adjustment of the auger control as follows:

When the auger control is released and in the disengaged “up” position (see Figure 3-11B), the cable should have very little slack, but should NOT be tight. See Figure 3-12.

WARNING:Do not over-tighten the cable. Over-tightening may prevent the auger from disengaging and compro- mise the safety of the snow thrower.

In a well-ventilated area, start the snow thrower engine as instructed on page 12.

While standing in the operator’s position (behind the snow thrower) engage the auger.

Allow the auger to remain engaged for approximately ten seconds before releasing the auger control. Repeat this several times.

With the auger control lever in the disengaged “up” position, walk to the front of the machine.

Confirm that the auger has completely stopped rotating and shows no signs of motion.

IMPORTANT: If the auger shows any signs of rotating, immediately return to the operator’s position and shut off the engine. Wait for all moving parts to stop before readjusting the auger control cable.

To readjust the control cable, unhook the spring (found on the end of the auger cable) from the auger actuator bracket. See Figure 3-12.

Push the cable coupler through the end of the spring to expose the lock nut. See Figure 3-13.

Thread the Nylock nut outward (down the coupler) three full turns to provide more slack in the cable and reattach the spring to the bracket.

A

B

A - For models with steel panels.

B - For models with plastic panels.

Figure 3-12

Figure 3-13

Repeat auger control test to verify for proper adjustment. Repeat previous steps to adjust more, if necessary.

Skid Shoes

Position the skid shoes based on surface conditions. Adjust upward for hard-packed snow. Adjust downward when operating on gravel or crushed rock surfaces. See “Making Adjustment” Section.

Tire Pressure (Pneumatic Tires)

The tires are over-inflated for shipping purposes. Check the tire pressure before operating the snow thrower. Refer to the tire side wall for tire manufacturer’s recommended psi and deflate (or inflate) the tires as necessary.

3

Setting Up

Your Snow

Thrower

WARNING

Never use your hands to clean snow and ice from the chute assembly or auger housing.

IMPORTANT

If the tire pressure is not equal in both tires, the unit may not travel in a straight path and the shave plate may wear unevenly.

9

Page 9
Image 9
MTD 45 Skid Shoes, Tire Pressure Pneumatic Tires, Auger Control, Check the adjustment of the auger control as follows

45, 33, 28 specifications

MTD (Machine Tool Division) has become synonymous with advanced machining solutions, particularly with its 28, 33, and 45 series, each designed for specific industrial applications yet sharing common core features that enhance performance and productivity.

The MTD 28 series is primarily focused on precision machining for small to medium components. One of its standout features is the high-speed spindle technology, which supports a range of drilling and milling operations with minimal downtime. The machine is equipped with a robust structure designed to absorb vibrations, ensuring high precision and surface finish quality. Additionally, the MTD 28 integrates an intuitive user interface, allowing operators to navigate complex machining processes with ease. The series supports multiple tool configurations, enabling rapid changeovers and versatility in production.

Moving to the MTD 33 series, this model is engineered for medium to large production runs. A key characteristic of the MTD 33 is its advanced automation capabilities, including automatic tool changers and integrated robotic systems. These technologies streamline operations, reducing cycle times significantly. The series also boasts enhanced thermal stability, which is crucial for maintaining accuracy in high-speed machining environments. Furthermore, the MTD 33 utilizes an adaptive control system that adjusts machine parameters in real-time, optimizing performance based on workload and material type.

The MTD 45 series is the flagship among them, designed for high-performance machining tasks in heavy industry. It features an expansive workspace and a powerful drive system that allows for the machining of large components with exceptional torque. This series utilizes advanced CNC controls, ensuring precision that meets industry standards. The MTD 45 is also equipped with advanced coolant and lubrication systems, enhancing tool life and ensuring optimal cutting conditions. Moreover, this model supports a variety of machining processes, including turning, milling, and grinding, further solidifying its versatility in diverse manufacturing settings.

In summary, the MTD 28, 33, and 45 series exemplify innovative engineering and user-centric design. With features like high-speed spindles, automation capabilities, and robust construction, these machines cater to varying production needs while ensuring precision and efficiency. Whether for small component fabrication or large scale industrial applications, MTD’s commitment to technological advancement enables businesses to achieve greater productivity and quality in their machining processes.