The “toro energy max 1028 ohxe” denotes a selected mannequin of snow thrower manufactured by Toro. This machine is engineered for residential snow elimination, characterised by a 28-inch clearing width and geared up with an electrical begin OHXE (Overhead Valve Further Horsepower Engine) engine. The designation additionally signifies the presence of Energy Max Anti-Clogging System (ACS) expertise.
This snow thrower’s utility stems from its capability to effectively clear reasonable to heavy snowfall from driveways and walkways. The incorporation of the ACS helps forestall blockages, rising operational effectivity and decreasing downtime. Its introduction represents a continuation of developments in residential snow elimination tools, offering customers with a device designed for efficiency and reliability in winter situations.
Following is an in depth examination of the machine’s specs, operational options, and upkeep issues to make sure optimum efficiency and longevity.
1. 28-inch Clearing Width
The 28-inch clearing width is a defining attribute of this snow thrower, immediately influencing its operational capability and suitability for numerous snow elimination duties. This dimension dictates the swath of snow that the machine can course of in a single go, impacting effectivity and maneuverability.
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Operational Effectivity
The 28-inch width permits for the swift clearing of wider pathways and driveways, decreasing the variety of passes required to clear a given space. This interprets immediately into time financial savings for the operator, significantly in conditions involving important snowfall. Nevertheless, this elevated width may additionally necessitate higher effort when maneuvering in confined areas.
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Snow Quantity Capability
A wider clearing width permits the machine to consumption a bigger quantity of snow per go. That is particularly useful when coping with deep accumulations or heavy, moist snow. The design and energy of the snow thrower have to be appropriately matched to this width to make sure environment friendly processing and forestall clogs.
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Floor Compatibility
The 28-inch width will be significantly efficient on {smooth}, paved surfaces like asphalt or concrete driveways. Nevertheless, on uneven or gravel-covered surfaces, a wider clearing width could enhance the probability of the machine choosing up and discharging free particles. Cautious peak adjustment is usually essential to mitigate this subject.
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Storage Issues
The bodily dimensions of the unit, dictated partly by the 28-inch clearing width, affect storage necessities. A wider machine necessitates extra cupboard space in a storage or shed. This issue needs to be thought-about alongside efficiency traits when evaluating the general suitability of the snow thrower.
The 28-inch clearing width represents a stability between clearing capability and maneuverability. Whereas it affords benefits by way of effectivity and quantity processing, it additionally presents issues associated to floor compatibility and storage. Understanding these interconnected components is crucial for optimizing the utilization of this machine in various winter situations.
2. Electrical Begin System
The electrical begin system on the “toro energy max 1028 ohxe” is a vital part designed to reinforce person comfort and operability. This technique replaces the normal pull-start mechanism, providing a simplified and extra dependable methodology for initiating the engine. Its significance is underscored by the truth that chilly climate situations typically make pull-starting tough, particularly for customers with restricted bodily power or mobility. The incorporation of an electrical begin removes this barrier, making certain the snow thrower will be simply activated even in sub-zero temperatures.
Functionally, the electrical begin system on the “toro energy max 1028 ohxe” usually consists of a small electrical motor powered by a normal 120V AC outlet. By plugging the snow thrower into {an electrical} supply and urgent the beginning button, the electrical motor engages the engine’s flywheel, initiating the combustion course of. This technique not solely simplifies beginning but additionally reduces put on and tear on the engine in comparison with repeated makes an attempt at pull-starting. In sensible phrases, this implies a person can rapidly and reliably clear snow with out scuffling with a chilly engine, permitting for environment friendly and well timed snow elimination.
In conclusion, the electrical begin system is an integral design function of the “toro energy max 1028 ohxe,” immediately contributing to its ease of use and operational reliability. This technique addresses frequent challenges related to cold-weather engine beginning, offering a handy and environment friendly various to conventional strategies. The inclusion of this function aligns with the snow thrower’s total design philosophy of offering a user-friendly and reliable answer for residential snow elimination.
3. Energy Max Anti-Clogging System (ACS)
The Energy Max Anti-Clogging System (ACS) is an integral part of the “toro energy max 1028 ohxe,” immediately addressing a standard operational problem in snow throwers: chute blockage. The design of the ACS goals to mitigate cases the place snow, significantly moist or heavy varieties, compacts and obstructs the discharge chute, inflicting the machine to stall or grow to be inefficient. The ACS achieves this by constantly routing snow by means of the system, minimizing accumulation factors. With out ACS, the snow thrower’s effectiveness is considerably diminished, particularly in difficult snow situations.
The ACS capabilities by using a collection of interconnected parts that work in live performance to handle the movement of snow. Particularly, the system is usually built-in with the auger and impeller mechanisms. In operation, because the auger gathers snow, the ACS facilitates a extra constant and fewer turbulent movement of fabric towards the impeller. The impeller then expels the snow by means of the discharge chute. Actual-world software reveals the ACS’s significance throughout late-season snowfalls, the place partially melted and refrozen snow tends to clump, inflicting important points in non-ACS geared up snow throwers.
In abstract, the inclusion of the Energy Max Anti-Clogging System within the “toro energy max 1028 ohxe” represents a vital design consideration aimed toward enhancing operational reliability and effectivity. By actively managing the movement of snow inside the machine, the ACS minimizes the probability of chute blockages, enabling steady operation even in antagonistic snow situations. This technique serves as a first-rate instance of how focused engineering options can deal with frequent challenges in snow elimination tools.
4. Overhead Valve Engine
The “toro energy max 1028 ohxe” makes use of an overhead valve (OHV) engine as its main energy supply. This engine design immediately impacts the snow thrower’s efficiency, effectivity, and total operational traits. Understanding the attributes of an OHV engine is vital to evaluating the snow thrower’s capabilities.
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Enhanced Combustion Effectivity
OHV engines are designed to optimize the combustion course of inside the cylinder. The position of valves above the piston permits for a extra direct and fewer restricted consumption and exhaust movement. This results in extra full combustion of the fuel-air combination, leading to elevated energy output and diminished emissions in comparison with engines with side-valve configurations. Within the “toro energy max 1028 ohxe”, this interprets to a higher capability to deal with heavy snow masses with out important energy loss.
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Improved Thermal Effectivity
The design of OHV engines facilitates higher warmth dissipation. The positioning of valves and combustion chamber permits for extra environment friendly cooling, which contributes to decrease working temperatures. That is particularly vital in demanding functions like snow elimination, the place the engine could also be subjected to extended durations of high-load operation. The improved thermal effectivity of the engine within the “toro energy max 1028 ohxe” contributes to its reliability and longevity.
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Elevated Energy Output
The extra environment friendly combustion and improved airflow traits of OHV engines usually end in larger energy output for a given engine displacement. It is a important think about snow throwers, the place ample energy is required to drive the auger and impeller mechanisms successfully by means of dense snow. The elevated energy output of the OHV engine within the “toro energy max 1028 ohxe” permits it to deal with a wider vary of snow situations and clearing duties.
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Decreased Upkeep Necessities
Whereas particular upkeep schedules differ, OHV engines are sometimes designed with options that simplify upkeep procedures. The accessibility of valves and different vital parts can scale back the effort and time required for routine servicing. Whereas upkeep necessities differ by mannequin yr and use, the OHV design on the “toro energy max 1028 ohxe” permits for relative ease of entry to key parts.
The choice of an OHV engine for the “toro energy max 1028 ohxe” represents a deliberate engineering determination to optimize efficiency and reliability. The improved combustion effectivity, thermal administration, energy output, and simplified upkeep related to OHV engines contribute to the snow thrower’s total effectiveness and suitability for residential snow elimination functions.
5. Two-Stage Operation
Two-stage operation is a core useful facet of the “toro energy max 1028 ohxe,” immediately influencing its snow elimination capabilities and total efficiency traits. This design distinguishes the machine from single-stage snow throwers, enabling it to deal with a wider vary of snow situations and volumes. Its presence considerably impacts the machine’s skill to clear snow successfully and effectively.
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Auger Performance
Within the first stage, the auger, a rotating corkscrew-like part on the entrance of the machine, gathers snow and directs it towards the middle. This course of breaks up compacted snow and initiates the consumption course of. The auger’s design, together with its diameter and blade configuration, determines the machine’s skill to course of various kinds of snow. As an illustration, a sturdy auger is vital for dealing with heavy, moist snow, whereas a much less aggressive design could also be appropriate for lighter, powdery snow. The “toro energy max 1028 ohxe” encompasses a heavy-duty auger designed for demanding snow elimination duties.
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Impeller Performance
Within the second stage, an impeller, a high-speed fan situated behind the auger, propels the collected snow by means of the discharge chute. The impeller’s design, together with its blade form and rotational pace, determines the space and course that the snow is thrown. This stage is answerable for discharging the snow away from the cleared space. The “toro energy max 1028 ohxe” is engineered with an impeller optimized for environment friendly snow expulsion, permitting for efficient snow dispersal even in windy situations.
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Separation of Duties
The separation of snow gathering and snow discharge into two distinct phases permits for higher management and effectivity. By dividing the workload, every stage will be optimized for its particular activity. This ends in a extra highly effective and succesful snow elimination system in comparison with single-stage machines, the place the auger performs each capabilities. The “toro energy max 1028 ohxe”‘s two-stage design permits it to deal with bigger snow volumes and heavier snow varieties with out important efficiency degradation.
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Floor Clearance and Floor Compatibility
Two-stage snow throwers, together with the “toro energy max 1028 ohxe,” usually have higher floor clearance in comparison with single-stage fashions. This elevated clearance permits the machine to function successfully on uneven surfaces, resembling gravel driveways, with out choosing up particles. The elevated design additionally helps forestall harm to the machine’s parts when encountering obstacles. The upper floor clearance, coupled with the two-stage operation, makes the “toro energy max 1028 ohxe” versatile for a variety of floor varieties and snow situations.
The combination of two-stage operation within the “toro energy max 1028 ohxe” represents a deliberate design alternative to reinforce efficiency and flexibility. By separating the snow gathering and discharge capabilities, the machine is able to dealing with a wider vary of snow situations and floor varieties in comparison with single-stage fashions. This function contributes considerably to its total effectiveness and makes it well-suited for demanding residential snow elimination duties.
6. Self-Propelled Drive
The self-propelled drive system is a vital function of the “toro energy max 1028 ohxe,” designed to reinforce maneuverability and scale back operator fatigue throughout snow elimination. This technique permits the machine to maneuver ahead underneath its personal energy, eliminating the necessity for the operator to bodily push it. The self-propelled drive is especially useful when coping with heavy snow masses or working on inclines.
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Variable Velocity Management
The “toro energy max 1028 ohxe” incorporates variable pace management inside its self-propelled drive system. This permits the operator to regulate the machine’s ahead pace to match the snow situations and terrain. Decrease speeds are appropriate for dealing with deep or moist snow, whereas larger speeds can be utilized on cleared or calmly coated surfaces. The variable pace management enhances the machine’s adaptability and operational effectivity. Examples embrace navigating icy patches (decrease pace) or clearing a flat, paved driveway (larger pace).
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Traction and Maneuverability
The self-propelled drive system immediately impacts the machine’s traction and maneuverability, significantly on slippery or uneven surfaces. The powered wheels present enhanced grip, permitting the machine to keep up ahead momentum even in difficult situations. The “toro energy max 1028 ohxe” is designed with sturdy tires and a balanced weight distribution to optimize traction. Improved traction is especially helpful on sloped driveways or when encountering packed snow.
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Operator Effort Discount
The first good thing about the self-propelled drive is a major discount in operator effort. By eliminating the necessity to push the machine, the system reduces bodily pressure and fatigue, permitting the operator to work for longer durations with out discomfort. That is particularly vital for customers with restricted bodily power or those that have to clear massive areas. As a substitute of pushing, the operator guides the machine, which considerably eases the duty of snow elimination.
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Directional Management and Steering Help
Some self-propelled snow throwers, together with sure configurations of the “toro energy max” line, incorporate options to assist in steering and directional management. These could embrace energy steering or trigger-controlled steering help, permitting the operator to simply flip the machine and navigate round obstacles. Such options additional improve maneuverability and scale back operator effort, significantly in confined areas or areas with a number of obstacles like parked automobiles or landscaping parts.
In abstract, the self-propelled drive system of the “toro energy max 1028 ohxe” is a key factor contributing to its efficiency and user-friendliness. The variable pace management, enhanced traction, diminished operator effort, and out there steering help options work collectively to supply a succesful and cozy snow elimination expertise.
7. Auger System Design
The auger system design is a vital determinant of the “toro energy max 1028 ohxe”‘s snow-clearing effectiveness. This design governs the machine’s skill to consumption, course of, and direct snow towards the impeller for discharge. The auger’s configuration, materials composition, and operational traits immediately influence its efficiency in various snow situations.
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Serrated Auger Configuration
The “toro energy max 1028 ohxe” encompasses a serrated auger design. Serrations, or jagged edges, alongside the auger blades improve its skill to interrupt up compacted snow and ice. This configuration improves the machine’s efficiency in dealing with hard-packed snow piles that will in any other case resist consumption by a smooth-bladed auger. In sensible phrases, this design permits the machine to successfully clear snowbanks left by plows or gathered snow that has undergone freeze-thaw cycles.
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Auger Materials Composition
The fabric utilized in setting up the auger influences its sturdiness and resistance to put on. The “toro energy max 1028 ohxe” makes use of a heavy-duty metal auger, offering elevated power and longevity in comparison with plastic or composite options. This sturdy building permits the auger to face up to impacts from ice chunks and particles with out important harm. The utilization of metal within the auger building helps scale back the necessity for frequent upkeep or substitute of this important part.
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Auger Diameter and Pitch
The diameter of the auger and the pitch of its blades dictate the amount of snow it will probably consumption per rotation. A bigger diameter and steeper pitch permit the auger to course of extra snow, rising the machine’s clearing capability. The “toro energy max 1028 ohxe” is engineered with an auger designed to optimize snow consumption with out overloading the engine. The particular diameter and pitch are balanced to make sure environment friendly snow elimination whereas sustaining the machine’s total efficiency traits.
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Anti-Clogging System Integration
The auger system design is immediately built-in with the Energy Max Anti-Clogging System (ACS) on the “toro energy max 1028 ohxe.” The ACS is engineered to stop snow from accumulating and clogging the auger housing. The auger’s form and the spacing between its blades are designed to work in live performance with the ACS, making certain a {smooth} and steady movement of snow towards the impeller. This integration minimizes the danger of interruptions throughout operation, significantly when coping with moist or heavy snow.
The serrated auger configuration, sturdy materials composition, optimized diameter and pitch, and integration with the anti-clogging system collectively outline the auger system design of the “toro energy max 1028 ohxe.” This design is instrumental in enabling the machine to successfully deal with a variety of snow situations and preserve constant efficiency all through its operational lifespan.
8. Chute Management Mechanism
The chute management mechanism on the “toro energy max 1028 ohxe” governs the course wherein snow is discharged, considerably influencing the machine’s usability and effectiveness. This mechanism permits the operator to regulate the chute’s rotation and deflector angle, thereby controlling the trajectory and dispersal of the snow. Understanding the parts and performance of the chute management is crucial for optimizing snow elimination operations.
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Chute Rotation Management
The chute rotation management permits the operator to pivot the discharge chute horizontally, directing the snow stream to the left, proper, or straight forward. On the “toro energy max 1028 ohxe,” this rotation is often managed through a crank deal with or distant lever positioned close to the operator’s station. The flexibility to rotate the chute is essential for stopping snow from being thrown into undesirable areas, resembling driveways, walkways, or neighboring properties. For instance, an operator would possibly rotate the chute to direct snow away from a home basis or keep away from blocking a sidewalk.
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Chute Deflector Management
The chute deflector management adjusts the vertical angle of the discharge stream, figuring out the space the snow is thrown. By elevating or decreasing the deflector, the operator can management how far the snow is projected from the machine. That is significantly vital for managing snow dispersal in various wind situations or when clearing massive areas. A decrease deflector angle ends in a shorter, extra concentrated snow stream, whereas the next angle permits for an extended, wider dispersal sample. This function is efficacious for adapting to various snow elimination situations, resembling clearing a slender path versus a wide-open area.
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Materials and Sturdiness
The chute management mechanism itself is constructed from sturdy supplies designed to face up to repeated use in harsh winter situations. The linkage connecting the management lever or crank to the chute is often constructed from metal or strengthened polymers to make sure reliability and longevity. The integrity of those parts is vital for sustaining constant and exact chute management. Common upkeep, resembling lubrication and inspection for put on, is crucial to protect the performance of the mechanism.
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Ergonomics and Accessibility
The design of the chute management mechanism emphasizes ergonomics and accessibility, making certain that the operator can simply regulate the chute course and angle with out interrupting the snow elimination course of. The position of the management lever or crank is strategically positioned inside simple attain, permitting for fast and intuitive changes. Ergonomic issues are paramount in decreasing operator fatigue and enhancing total usability, significantly throughout prolonged snow elimination classes. The benefit of adjusting the chute contributes to a extra environment friendly and cozy snow elimination expertise.
These aspects of the chute management mechanism are integral to the general performance and user-friendliness of the “toro energy max 1028 ohxe.” The flexibility to exactly management the course and distance of snow discharge enhances the machine’s versatility and adaptableness to various snow elimination situations, making it a priceless device for residential snow administration. Common upkeep and correct utilization of the chute management contribute to the longevity and efficiency of the snow thrower.
Steadily Requested Questions Concerning the Toro Energy Max 1028 OHXE
This part addresses frequent inquiries in regards to the operation, upkeep, and capabilities of the desired snow thrower mannequin. The data supplied goals to make clear technical points and guarantee optimum utilization of the tools.
Query 1: What sort of engine oil is really useful for the Toro Energy Max 1028 OHXE?
SAE 5W-30 is the widely really useful engine oil for the “toro energy max 1028 ohxe”. Nevertheless, particular environmental temperatures could necessitate various viscosity grades. Seek the advice of the operator’s handbook for exact steering on choosing the suitable oil for the prevailing situations.
Query 2: How typically ought to the Toro Energy Max 1028 OHXE obtain routine upkeep?
Routine upkeep needs to be carried out at intervals specified within the operator’s handbook. Sometimes, this consists of oil modifications, spark plug inspection, and lubrication of shifting elements. The frequency of upkeep will rely upon the depth and length of use.
Query 3: What’s the optimum methodology for stopping snow from clogging the discharge chute?
The “toro energy max 1028 ohxe” is provided with an Anti-Clogging System (ACS). Sustaining a constant ahead pace and avoiding extreme snow consumption can additional reduce the danger of chute blockage. Make sure the discharge chute is freed from obstructions earlier than operation.
Query 4: What’s the process for adjusting the skid sneakers on the Toro Energy Max 1028 OHXE?
The skid sneakers needs to be adjusted to accommodate the floor being cleared. Increase the skid sneakers for gravel or uneven surfaces to stop the auger housing from contacting the bottom. Decrease the skid sneakers for paved surfaces to realize a better clearing. Confer with the operator’s handbook for detailed adjustment directions.
Query 5: How is the electrical begin system of the Toro Energy Max 1028 OHXE engaged?
The electrical begin system requires connection to a normal 120V AC energy outlet. As soon as related, urgent the beginning button will provoke the engine. Guarantee the facility wire is disconnected earlier than working the snow thrower in self-propelled mode.
Query 6: What security precautions needs to be noticed whereas working the Toro Energy Max 1028 OHXE?
Previous to operation, completely examine the world for obstacles. Keep away from working the snow thrower within the neighborhood of kids or pets. All the time put on applicable security gear, together with eye safety and durable footwear. By no means place palms or toes contained in the auger or impeller housing whereas the engine is operating.
Correct upkeep and adherence to security tips are paramount for making certain the dependable operation and longevity of the desired snow thrower. Consulting the operator’s handbook is crucial for addressing particular considerations and resolving operational points.
The next part will deal with potential troubleshooting situations and customary mechanical points encountered with the “toro energy max 1028 ohxe.”
Toro Energy Max 1028 OHXE
The next tips are supposed to optimize the efficiency and lifespan of the desired snow thrower mannequin. Adherence to those suggestions is essential for making certain secure and environment friendly operation.
Tip 1: Constant Auger Housing Cleansing: Snow and ice accumulation inside the auger housing can diminish efficiency and enhance the danger of clogging. Recurrently clear the housing utilizing the supplied clean-out device after every use.
Tip 2: Correct Gas Stabilization: Gasoline left within the gasoline tank for prolonged durations can degrade and trigger engine beginning points. Make use of a gasoline stabilizer throughout low season storage and for durations exceeding one month of inactivity.
Tip 3: Common Cable and Linkage Inspection: The management cables and linkages answerable for chute rotation and deflector changes needs to be inspected periodically for put on and harm. Lubricate these parts to make sure {smooth} and responsive operation.
Tip 4: Skid Shoe Adjustment for Floor Situations: The peak of the skid sneakers needs to be adjusted based mostly on the kind of floor being cleared. Decrease the skid sneakers for paved surfaces to realize a better clearing. Increase them on gravel or uneven terrain to stop the auger housing from contacting the bottom.
Tip 5: Periodic Spark Plug Examination: The spark plug needs to be inspected and cleaned or changed as wanted. A fouled or broken spark plug may cause beginning difficulties or diminished engine efficiency. Seek the advice of the operator’s handbook for the right spark plug sort and hole specs.
Tip 6: Cautious Storage of Energy Twine: The ability wire used for the electrical begin needs to be rigorously saved to stop harm. Keep away from kinking or pinching the wire, and retailer it in a dry location.
Tip 7: Snow Removing Sample Optimization: When clearing massive areas, overlap every go barely to stop snow from being left behind. Work with the wind every time potential to attenuate snow blowback.
These suggestions underscore the significance of proactive upkeep and diligent operational practices in maximizing the utility of the “toro energy max 1028 ohxe”. Implementing the following tips will assist guarantee constant and dependable efficiency all through its service life.
The next part will delve into frequent troubleshooting procedures and options for addressing operational challenges that will come up throughout snow elimination actions.
In Conclusion
This exploration has supplied an in depth overview of the “toro energy max 1028 ohxe,” outlining its key parts, operational options, and upkeep issues. The importance of the 28-inch clearing width, electrical begin system, Energy Max Anti-Clogging System, overhead valve engine, two-stage operation, self-propelled drive, auger system design, and chute management mechanism have been examined, highlighting their contribution to the machine’s total effectiveness in snow elimination.
Understanding these parts is essential for maximizing the utility and lifespan of the “toro energy max 1028 ohxe.” Accountable operation, adherence to upkeep schedules, and cautious consideration to security tips are important for making certain constant efficiency and stopping potential points. Continued diligence in these areas will permit customers to successfully handle winter situations and preserve the reliability of this snow elimination tools.