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专利摘要:
Summary The problem we focused on was large amounts of snow on the roofs around the country and how to remove it in as fast, risk-free, environmentally friendly and cheap way as possible. The solution to the problem is the machine that does all this for us, the machine that is stations on the roof will often drive back and forth on a small rails and use a spiral-shaped spinner that spins on the side and is removed if necessary. The machine will not often be so large that it will not grow when it is idle on the roof, but the size may depend on the customer's own choice. The machine will again be activated at the touch of a button when the level of the snow is a few high or with automatic activation with sensors located on the roof of the machine. 公开号:SE1200190A1 申请号:SE1200190 申请日:2012-03-23 公开日:2013-09-24 发明作者:Edvards Scukins;Martin Hashemi;Jegor Souchko 申请人: IPC主号:
专利说明:
Description General part: It has the invention It is a machine that cleans snow from roofs automatically or manually at the touch of a button. Technical point of view: The solutions that are widely used today are large and clumsy machines on large vehicles that are telescopically stretched and cleared of snow, the problem is that the vehicle does not fit everywhere and does not reach the most stone buildings, the environmental factors are not hailer positive about a large and heavy vehicle said kora around everywhere. Another solution is employed people who climb up on the roofs and shovel away, but in this way it will be very expensive, because these people have a very high chin due to the risk factors and in both cases it costs a lot to transport labor forward and back. The solution is a small nicely designed machine that slides up and down on the roof all by itself, quietly, cheaply and environmentally friendly and removes all snow from the roof compared to previous solutions where you risk your neck when standing on the roof and large and clumsy vehicles that should run around and draw a lot of fuel. Specie11 del: 1. This is the mechanics of the left part which is responsible for moving the machine back and forth along the rudder and is connected to the right side. In this part it is shown how all parts from (1.1 - 1.6) are connected and interact. 1.1 Data is the left side of the frame that holds the parts together in the construction. Picture one and three of the frame from the top (page 1.1), have a small hold in them to reduce weight and maintain the strength of the frame. There is another hall that is intended for coupling, the large one in the middle is intended for coupling to the large wheel (Fig. 1.6), the other large hall that is located on the front of the frame is intended for the large spiral and then there is a last hall which is quite small and is furthest back in the frame and is intended for two small wheels (Fig. 1.5) that are to stabilize the machine at the rear. On the upper side of the frame side there is a semicircular gear holder. 1.2 Della is a motor that is connected to the frame (Fig. 1.1). This engine drives both the large wheels on each side of the machine. 1.3 Data are the gears which on one side are connected to the motor (Fig. 1.2) and the other side to the large wheel (Fig. 1.4). The cogwheels are adapted to the current. The gears are connected to each other with a specie !! strap. 1.4 Della is the machine's large wheels driven by the electric motor. Data wheels are connected to the other large wheel on the other side to maintain even speed on both sides of the machine. The wheels roll on a wheel for the best possible stability. For all the slippery wheels on the rals sd, there is a disc that stabilizes the wheels from the inside. The shaft from the wheels has a gear which is connected with a belt to the gear system which is further connected to the electric motor and is driven by the drive. 1. These are the small wheels that stabilize the machine from the back so that the machine does not tilt forward or backward. They are located on both sides of the machine behind the large wheels. Depending on how these small wheels sit, you can choose how much the spiral should spin above the roof. They are inside the rdlsen for bast functionality and grip. 1.6 This is a synthetic non-stretchable and powerful rope that sits inside the wheel. Its function is to give 100% friction so that it does not slip anywhere. When the wheel rolls down, the rope rolls out and the machine is stable, and when the wheels roll backwards, the rope is rolled in and pulls up the machine. 2. This is the mechanical part of the middle part which is responsible for stability, width, connection between the sides and cord removal in front of the machine. This part sA shows how all parts from (2.1 - 2.6) are connected and interact. 2.1 This is a beam that connects the left side (picture 1.1) with the right side (bid 3.1). It can be different ant. beams or different lengths on the beams to adapt the brad to the baskin to different roofs. 2.2 This is a stabilizer that holds the beams together with the spiral located on the front. The middle large tail on this part al- to the front axle of the wheels should go through and stability. The front large tail is for stabilizing the spiral. The rear Met is for stabilizing the beams that cover the rear cord remover and in the middle you connect the beams. The small Wen along this part is for aft reduce the weight but maintain the stability force. 2.3 This is a helical blade. It is driven by the right-hand electric motor through a gear system. The spiral for all silos On the side of drainage, it can consist of different parts just like the beams depending on the width of the roof and what stability is needed for specific cases. 2.4 This is after a bevel gear that is connected from the spiral (Fig. 2.3) to another bevel gear which in turn is connected to the wheel cleaner (Fig. 2.6). 2. This is a bevel gear on the right-hand side which is connected from the motor (Fig. 1.2) to an armored bevel gear which in turn is connected to the wheel cleaner (Fig. 2.6). The motor is connected to this gear thanks to its thickness with the help of a belt. 2.6 This is a wheel cleaner. It spins with the help of the spiral driven by the right motor. The rals will often go through the two blades and be removed from ice etc. both on the top and inside of the rals. 3. This is the mechanical part of the right-hand part that is responsible for moving the machine back and forth along the rdls and is connected to the left-hand side. In this part, it is shown how all parts from (3.1 - 3.6) are connected and interact. 3.1 This is the right side frame. This frame has exactly the same function as the left side (Fig. 1.1). The side of the frame picture one and three from the top (page 1.1), has small slides in it to reduce the weight and maintain the strength of the frame. There is an additional hall that is intended for coupling, the large one in the middle is intended for coupling to the large wheel (picture 1.6), the other large hall that is on the front of the frame is intended for the large spiral and then there is a last hall which is quite small and is located furthest back in the frame and is intended for two small wheels (Fig. 1.5) which are to stabilize the machine from the rear. On the upper side of the frame side there is a semicircular gear holder. 3.2 (Fig. 1.2) This is the same type of engine as on the left side. 3.3 This is a gear system just like on the left side but them a different custom strength (bid 1.3). These gears are on one side connected to the motor (bid 3.2) and the other side to the large spiral (bid 2.3). The gears are adapted to the required force. The gears are connected to each other with a special belt. 3.4 These are the machine's large wheels driven by the electric motor. This wheel is coupled to the other large wheel on the other side to maintain even speed on both sides of the machine. The wheels roll ph a rdls for the best possible stability. To keep all the wheels on the wheel, there is a disc that stabilizes the wheels from the inside. The shaft from the wheels has a gear on the other side which is connected with a belt to the gear system which is further connected to the electric motor and driven by the drive. 3. These are the small wheels that stabilize the machine from the back so that the machine does not tilt forward or forward. They are mounted on both sides of the machine behind the large wheels. Depending on how these small wheels sit, you can choose how high the spiral should spin above the roof. They are located inside the rals for basic functionality and grip. 3.6 This pulls a synthetic non-stretchable and powerful rope that sits inside the wheel. Its function is to give 100% friction so that it does not slip anywhere. When the wheel rolls down, the rope rolls out and the machine hails stably, and when the wheels roll back, the rope is rolled in and pulls up the machine. 4. This is the "body" that has been lifted away from the machine itself. This part sA shows how all parts from (4.1 —4.8) are interconnected and interact. 4.1 This is the "body" that is connected to the frame. This part protects the machine from external influences. This image consists of different parts (Figure 4.2, Figure 4.3, Figure 4.4, Figure 4.5, Figure 4.6). 4.2 This is the left-hand part of the "body" which protects the engine part from external influences and is connected to the frame. This part also contains a wheel guard that prevents the cord from collecting at the wheel. This part is made of hard plastic and shaped after the inner parts of the machine. 4.3 This is the left side guard of the engine part that is connected to the frame. The part is located between the wheel and the engine and is shaped after (Fig. 4.2). 4.4 This is the left under protection for the engine part that is connected to the frame. This part 5r is shaped after the lower part of the frame (Fig. 1.1). The semicircular shape of the four-part part is adapted to the raw cleaner (Fig. 2.6). 4. This part of the "body" protects the parts located in the middle of the machine e.g. the beams (Fig. 2.1) and the stabilization coupling (Fig. 2.2). The front part is curved due to the snow not being driven inwards or backwards in the machine. The balance gets this part from the frames on both sides and the stabilizer in the middle. 4.6 This is the right-hand part of the "body" which protects the engine part from external influences and is connected to the frame. This part also contains a wheel guard that prevents the cord from accumulating at the wheel. This part is made of hard plastic and shaped after the inner parts of the machine. 4.7 This is the right side protection of the motor part which is connected to the frame. The part is located between the wheel and the engine and is shaped after (Fig. 4.2). 4.8 This is the right under protection for the motor part which is connected to the frame. This part is shaped after the lower part of the frame (Fig. 1.1). The semicircular shape on the front part is adapted to the rals cleaner (Fig. 2.6). 5. This pulls the machine rear protection to avoid snow accumulations behind the machine. In this part, it is shown how all parts from (5.1 - 5.3) are connected and interact. 5.1 This is the rear cord cleaner of the machine. The part works so that when the machine moves down / forward, this part is lifted up by any snow that passes, but when the machine moves up, it blocks the cord from aft into the machine and presses back or up the cord instead. 5.2 This is the shaft on which the rear cord cleaner is mounted (Fig. 5.1). It is attached to the side frames and stabilized in the middle. 5.3 This is the protection above the rear cord cleaner (Fig. 5.1) whose function is aft Ulla silo outside the machine.
权利要求:
Claims (1) [1] A patent for a machine for shoveling a set of roofs. The main part of the machine is a relatively large rotating helical blade that pushes the cord to the side at the same time as the machine Aker up and down or back and forth on a fixed rail. The machine uses relatively large wheels to move on the rails and in the wheels there is a special kind of rope (eg a synthetic rope) mounted as in a spool that rolls out the needle moves forward / down while the rope is pushed down on the side and to stabilize the movement both down and up said that the wheels do not slip. The actual function of the machine with on and off can be operated with either a button function or a sensor that marks when it is at maximum height on the cord and sends a signal to the motor that causes the machine to start working. At the same time as the machine moves, it will clear away ice and turn in front of the wheels so that the machine moves as well as possible. 4l
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公开号 | 公开日 SE538006C2|2016-02-09|
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申请号 | 申请日 | 专利标题 SE1200190A|SE538006C2|2012-03-23|2012-03-23|Takskottningsmaskin|SE1200190A| SE538006C2|2012-03-23|2012-03-23|Takskottningsmaskin| 相关专利
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