The present invention is related to a shelter comprising modules that are transported in a compact state to a desired location and then expanded to an extended state and attached together to form an airtight chamber in which users are protected from an external environment. (As used herein, references to the “present invention” or “invention” relate to exemplary embodiments and not necessarily to every embodiment encompassed by the appended claims.) More specifically, the present invention is related to a shelter comprising modules that are transported in a compact state to a desired location and then expanded to an extended state and attached together to form an airtight chamber in which users are protected from an external environment where the modules include an inner front module having an airlock, an outer front module which is slidingly attached to the inner front module and which slides over the inner front module between a compact state, and an extended state; and an inner rear module and an outer rear module sliding attached to the inner rear module and which slides over the inner rear module between a compact state and an extended state.
This section is intended to introduce the reader to various aspects of the art that may be related to various aspects of the present invention. The following discussion is intended to provide information to facilitate a better understanding of the present invention. Accordingly, it should be understood that statements in the following discussion are to be read in this light, and not as admissions of prior art.
In many mines, entry and exit from the main workings is via a shaft. These shafts are fitted with steel cages that allow people and equipment to be transported in and out. The cage is connected by a steel cable, and controlled by a large winder (a big wheel to roll the cable up and down).
In portal type mining, vehicles can be driven down an inclination to the working areas however. Shaft mines have heavy restrictions to sizes and weights. Most shaft mine cages are less than 2 meters×2 meters×2 meters in size; therefore, the ability to place large objects underground becomes very difficult.
The present invention addresses the issue of large part assembly and use in these confined space mines.
The present invention pertains to a shelter to protect users from an external environment. The shelter comprises an inner front module having an airlock. The shelter comprises an outer front module which is slidingly attached to the inner front module. The outer front module slides over the inner front module between a compact state, where the outer from module essentially envelops the inner front module, and an extended state, where the inner front module extends from the outer front module and there is an airtight seal between the inner front module and the outer front module. The outer front module having a front attachment portion. The shelter comprises an inner rear module. The shelter comprises an outer rear module sliding attached to the inner rear module. The outer rear module slides over the inner rear module between a compact state where the outer rear module essentially envelops the inner rear module, and an extended state where the inner rear module extends from the outer rear module and there is an airtight seal between the inner rear module and the outer rear module. The outer rear module having a rear attachment portion through which the outer rear module is attached to the front attachment portion of the outer front module. When the outer front module and the inner front module are in the extended state and the outer rear module and the inner rear module are in the extended state and the outer front module and outer rear module are attached, they form an airtight chamber in which users are protected from the external environment.
The present invention pertains to a method for constructing a shelter to protect users from an external environment. The method comprises the steps of extending an inner front module having an airlock from an outer front module which is slidingly attached to the inner front module from a compact state, where the outer front module essentially envelops the inner front module, to an extended state, where the inner front module extends from the outer front module and there is an airtight seal between the inner front module and the outer front module. The outer front module slides over the inner front module between a compact state and an extended state. Outer front module having a front attachment portion. There is the step of extending an inner rear module from an outer rear module which is slidingly attached to the inner rear module from a compact state, where the outer rear module essentially envelops the inner front module, to an extended state, where the inner rear module extends from the outer rear module and there is an airtight seal between the inner rear module and the outer rear module. The outer rear module slides over the inner rear module between a compact state and an extended state. The outer front module having a rear attachment portion. There is the step of attaching the outer front module to the outer rear module through the attachment portion of the outer front module and the attachment portion of the outer rear module to form an airtight chamber in which users are protected from the external environment.
In the accompanying drawings, the preferred embodiment of the invention and preferred methods of practicing the invention are illustrated in which:
a is a front perspective view of the outer and inner front modules in an extended state.
b is a detailed view of the attachment of the inner front flange with the front attachment portion by a bracket.
Referring now to the drawings wherein like reference numerals refer to similar or identical parts throughout the several views, and more specifically to
The shelter 10 may include a center module 20 having a center front attachment portion 28, through which the center module 20 is removably attached to the front attachment portion 52 of the outer front module 14, and a center rear attachment portion 32, through which the center module 20 is removably attached to the rear attachment portion 50 of the outer rear module 18, as shown in
The inner rear module 16 may have breathable gas cylinders 48 for supplying breathable gas to the chamber 24, as shown in
The inner front module 12 may have an inner front flange 56 and the outer front module 14 has an outer front flange 55 with a front seal 38 between the inner front flange 56 and the outer front flange 55 when they are attached together, as shown in
The present invention pertains to a method for constructing a shelter 10 to protect users from an external environment. The method comprises the steps of extending an inner front module 12 having an airlock 22 from an outer front module 14 which is slidingly attached to the inner front module 12 from a compact state, where the outer front module 14 essentially envelops the inner front module 12, to an extended state, where the inner front module 12 extends from the outer front module 14 and there is an airtight seal between the inner front module 12 and the outer front module 14. The outer front module 14 slides over the inner front module 12 between a compact state and an extended state. Outer front module 14 having a front attachment portion 52. There is the step of extending an inner rear module 16 from an outer rear module 18 which is slidingly attached to the inner rear module 16 from a compact state, where the outer rear module 18 essentially envelops the inner front module 12, to an extended state, where the inner rear module 16 extends from the outer rear module 18 and there is an airtight seal between the inner rear module 16 and the outer rear module 18. The outer rear module 18 slides over the inner rear module 16 between a compact state and an extended state. The outer front module 14 having a rear attachment portion 50. There is the step of attaching the outer front module 14 to the outer rear module 18 through the attachment portion of the outer front module 14 and the attachment portion of the outer rear module 18 to form an airtight chamber 24 in which users are protected from the external environment.
There may be the steps of attaching a center module 20 to the outer front attachment portion through a center front attachment portion 28 of the center module 20 and the front attachment portion 52 of the outer front module 14, and attaching the center portion to the outer rear portion through a center rear attachment portion 32 and to the rear attachment portion 50 of the outer rear module 18 to form the airtight chamber 24. There may be the steps of moving the inner and outer front module 14 in the compact state to a desired location, moving the inner and outer rear module 18 in a compact state to a desired location adjacent the inner and outer front module 14 and moving the center module 20 to a desired location adjacent the inner and outer front module 14. There may be the steps of an outer flange on the outer front module 14 resting on the roof or outer walls of the inner front module 12 as they slide apart, and an inner flange on the inner front module 12 has the roof and inner walls of the outer front module 14 resting on the inner flange until the inner front module 12 and the outer front module 14 are fully extended where the inner and outer flanges contact each other with a seal between them; and bolting together the inner and outer flanges in the extended position.
In the operation of the invention, the shelter 10 can be placed into a transfer cage, lowered down into position, in two or more parts. The inner and outer front modules and the inner and outer rear modules are bolted together with steel brackets 65, as shown in
After expanding the inner and outer front modules then expanding the inner and outer rear modules, they are bolted together to form one large assembly with the chamber 24. If needed, one or more additional center modules can be fitted which further increases the internal seating capacity of the chamber 24. As an example, each module may be about 1.4 m wide×1.8 m high×1.8 m long.
As opposed to standard bolt together modular shelters, the shelter 10 allows two parts to be lowered into position at one time. The shelter 10 also provides varying cross sectioning of assemblies, which provides additional strength to the shelter 10.
Shelter 10 design and application:
The Shelter 10 Comprises:
1. The Inner Front Module 12.
2. The Outer Front Module 14
3. An Inner Rear Module 16
4. An Outer Rear Module 18
5. A Center Module 20
The center module 20 is used as an infill option that can be fitted to make the shelter 10 larger at any time to seat a greater number of miners. The center module 20 will connect with the front outer and read outer flanges using bolts and nuts, and these joints will also be fitted with seals to stop gas entering the chamber 24.
Major Features of the Sliding Modular Shelter 10 are.
In alternative embodiments, rather than a curved shape, as shown in
The shelter 10 is designed for tight entry ways and addresses the difficulty of placing large safety shelter 10 into these tight situations, The shelter may be used in the following industries:
1. COAL MINES (Mines that require explosion proof structures)
2. NON COAL MINES (also known as Hard rock, these mines include all mining types; metal, non-metal, precious metals, salt and limestone.
3. Other applications including but not limited to, tunnel building, chemical plants, toxic environments.
Although the invention has been described in detail in the foregoing embodiments for the purpose of illustration, it is to be understood that such detail is solely for that purpose and that variations can be made therein by those skilled in the art without departing from the spirit and scope of the invention except as it may be described by the following claims.