Kitchen Wardrobe Design

Kitchen Wardrobe Design in Baroda

S K Modular Kitchen are experts in kitchen wardrobe design, kitchen wardrobe design in Baroda, kitchen wardrobe designs in Gujarat, kitchen wardrobe in India, kitchen design in Vadodara

Kitchen cabinets the built-in furniture installed so many kitchens also storage, cooking equipment, and often silverware dishes so table service. In the design of a modern kitchen, the design of the kitchen is a principal part because the volume of the cabinets will determine the spare space for other electric appliances like refrigerators and the capacitance of the cabinets will determine the storage location of cooking equipment such as bowls.

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Kitchen Wardrobe Designs in Gujarat

S K Modular Kitchen have the quality of kitchen wardrobe design in Vadodara  Baroda Gujarat India, sterilized cupboard, and so on. Besides, the design of the functionality of the kitchen cabinets is very important because the utilization percentage of the cabinets and the access for the user to the storage space should be balanced, which is the combination of science and art. However, there is also a conspicuous problem that how we can conveniently use the space around the corners of kitchen cabinets in a design which is also the main purpose of this project.

To avoid these advantages, we decided to figure out a new solution. We started with the design specification. First, the kitchen cabinet should be convenient to use and it will be most convenient if the entire shelf can be completely taken out of the cabinet. Second, the area of the shelf should be as large as possible. Since we are designing a kitchen cabinet with mobility, it will be a great challenge to make use of the entire area.

After the brainstorming, we got our initial design. We use slides and shafts to satisfy the requirement of motion we discussed previously. There are slides installed on the left bottom of the outer shelves and the front bottom of the inner ones. A shaft is installed on the right end of the inner slide to hook it to the outer slide. Another shaft is installed on the middle front of the cabinet. It makes the inner slide rotate and slide. First, we pull out the outer shelves. With the help of the slide installed on the left bottom of the outer shelves, the inner shelves will keep static.

After the outer shelves are totally pulled out, the shaft on the slide of the inner shelves reaches the end of the slide of the outer shelves. Keep pulling the outer ones, the inner ones will rotate about degrees and move out since the inner slide is pulled by the outer one. Keep pulling until the shaft installed on the cabinet reach the end of the inner slide. To push the shelves in, just push the outer ones. The outer shelves will push the inner ones into the cabinet and then move into the cabinet. It is just the reversion of the pulling out motion.

To maximize space utilization, we designed the bottom of the shelves like a sandwich. The inner pair of the slides is connected to the bottom of the cabinet and the middle board. The outer pair is connected to the middle board and the bottom of the outer shelves. There is a trough on the bottom board of the outer shelves. When the shelves are pushed in, all the structures can be held in it.

The connection between the inner shelves and outer shelves is one of the key points of our design. It consists of a slide, a carriage, a self-made connector. With its help, we can pull out all the shelves by pulling the outer ones. The inner shelves cannot move until the outer ones move out. Hence we installed a slide on the side of the outer ones. At first, the carriage moves freely on the slide and the inner shelves keep static. Then the carriage moves to the end of the slide and the bolt stop it.

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The motion of the inner shelves is the combination of linear motion and angular motion. Hence we used to slide and shaft there to meet the requirement. The only problem of the structure is that it is a single shear structure. Since the motion of the inner shelves is quite complex, this is the only structure we can use. We have to decrease the load of the capacity of the inner shelves.

The minimum distance between the inner shelves and any other part is about 5mm through the moving process. It can decrease to about. We decrease the length of the outer shelves since there is not enough room for the inner ones when they are taken out. Another way to solve this problem is to decrease the width of the inner shelves. This needs further calculation. Also, the position of the shaft will affect the dimensions since it will change the rotating axis. Hence it is better to use a computer to optimize the length and the width of the shelves, the position of the shafts, and the dimensions of the connector

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