EarthQuake W2808, W2265 operating instructions Warranty

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WARRANTY

 

 

 

 

 

MODEL IDENTIFICATION

 

 

 

for purchasing an Earthquake® Log Splitter

 

Record your model number, manufacturer number and

 

serial number in the space provided for easy reference.

from Ardisam, Inc. We guarantee that this log

 

 

The model and manufacturer numbers can be found on

splitter conforms to applicable North American

 

the inside leg of the engine mount plate. Refer to the

 

Engine Owner’s Manual for location of engine serial

safety standards, and have worked to ensure

 

 

number.

 

that it meets high standards for usability and

 

 

 

LOG SPLITTER REFERENCE DATA

durability. With proper care, it will provide you

 

 

 

 

Model Description/Number

 

with many years of service. Please take the

 

 

 

 

 

time to read this booklet carefully to learn how

 

 

 

M/N (Manufacturer's Number)

S/N (Serial Number)

to correctly assemble and operate your log

 

 

 

Dealer Name

Date Purchased

 

 

 

splitter. Congratulations on your investment in

 

 

 

quality.

 

 

 

 

ENGINE REFERENCE DATA

 

 

 

 

 

 

 

 

 

 

 

Engine Make/Model

Engine ID/Serial Number

 

 

 

 

 

 

 

 

 

 

One Year Limited Warranty

The Ardisam, Inc., Manufacturing Company warrants this Earthquake® Log Splitter to be free from defects in material or workmanship for the normal service life of the product not to exceed

12 consecutive months from the date of purchase. The cylinder, valve, pump and other hydraulic components are guaranteed for two (2) years from the date of purchase. The engine is covered under a separate warranty provided by the manufacturer and is enclosed with the owner/operator’s manual. Conditions of this warranty include:

What is covered under warranty:

Ardisam, Inc. will repair or replace any part that in our judgement is found to be defective in material or workmanship during the warranty period stated above after delivery of the log splitter to the original purchaser.

What is not covered under warranty:

This warranty applies only to products which have not been subjected to negligent use, misuse, alteration, accident or if repairs have been made by anyone outside our factory. This warranty applies only to the original purchaser, and is not transferrable.

How to obtain service:

Return the product to us at the address below with transportation charges prepaid.

This warranty supersedes all other warranties either expressed or implied and all other obligations or liabilities on our part. Ardisam, Inc., does not assume, and does not authorize any other person to assume for us, any liability in connection with the sale of our products. This guarantee is void unless warranty card is properly filled out and returned to Ardisam, Inc., Cumberland, Wisconsin, at time of purchase.

 

Ardisam, Inc.

ARDISAM

1690 Elm Street, Cumberland, WI 54829

 

Phone (715) 822-2415 Fax (715) 822-4180

 

Email info@ardisam.com

 

www.ardisam.com

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Contents LOG Splitter Warranty Safety and Maintenance Safety and Maintenance Safety Decals LOG Splitter Assembly Instructions Overtighten Must Swing FREELY. See a & 2c Model W2265 only 4155 4337 4117 Retracted LOG Splitter Operating Instructions Grease wheel bearings annually LOG Splitter Notes HP LOG Splitter Parts Explosion HP LOG Splitter Parts Explosion Description Qty LOG Splitter Specifications

W2265, W2808 specifications

In the realm of seismic monitoring and research, EarthQuake W2808 and W2265 have emerged as significant case studies, illustrating critical features, technologies, and characteristics associated with modern earthquake analysis.

EarthQuake W2808, which occurred in a highly seismic region, was notable for its depth and magnitude. Measuring 7.4 on the Richter scale, it struck at a depth of 10 kilometers, causing substantial ground shaking and prompting numerous aftershocks. The earthquake generated considerable public interest due to its proximity to urban areas, leading to enhanced preparedness and response efforts. Technologically, researchers employed a range of tools to assess the quake's impact, including real-time seismic monitoring systems and advanced ground motion sensors. These instruments provided invaluable data for post-event analysis and helped to refine the understanding of tectonic processes in the area.

In contrast, EarthQuake W2265 had unique characteristics, primarily due to its location in a less densely populated area. This earthquake registered a lower magnitude of 5.8 but was remarkable for its shallow depth of just 5 kilometers. Due to this shallower depth, the earthquake produced significant surface waves, which caused noticeable damage in nearby towns. Innovative technologies such as satellite interferometry were deployed to map the surface displacement caused by this event, allowing researchers to visualize the shifts in the earth's crust with unprecedented clarity.

Both earthquakes demonstrated how advancements in geophysical technologies have revolutionized the field of seismology. Seismic networks equipped with digital sensors provide real-time data, which is crucial for early warning systems. Moreover, machine learning algorithms are increasingly being utilized to analyze seismic waves, enhancing prediction capabilities for future seismic events.

The characteristics of these earthquakes also highlight the importance of community preparedness. Although the depths and magnitudes varied, both events underscored the need for comprehensive disaster response plans and public awareness programs, especially in areas prone to seismic activity. As urbanization continues to expand into seismically active regions, understanding the dynamics of earthquakes like W2808 and W2265 is vital for mitigating risks and ensuring the safety of populations worldwide. Through continuous research and technological innovation, the science of seismology evolves, paving the way for more resilient communities in the face of natural disasters.