Durga
Durga is known as the Aadi Shakti (the original power). An embodiment of creative feminine force (Shakti), Durga exists in a state of svātantrya (independence from the universe and anything/anybody else, i.e., self-sufficiency) and fierce compassion.Durga manifests fearlessness and patience.
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Iconography
In Hinduism, Durga meaning ("the inaccessible"or "the invincible") or Maa Durga one who can redeem in situations of utmost distress" is a form of Devi, the supremely radiant goddess, depicted as having eighteen arms, riding a lion or a tiger, carrying weapons and a lotus flower, maintaining a meditative smile, and practicing mudras, or symbolic hand gestures.[citation needed] The name is made of Sanskrit dur "with difficulty" and gā ("come", "go").
History
Durga was created as a warrior goddess to fight an asura (an inhuman force/demon) named Mahishasura. He had unleashed a reign of terror on earth, heaven and the nether worlds, and he could not be defeated by any man or god, anywhere. The gods went to Brahma, who had given Mahishasura the power not to be defeated by a man. Brahma could do nothing. They made Brahma their leader and went to Vaikuntha, the place where Vishnu lay on Ananta Naag. They found both Vishnu and Shiva, and Brahma eloquently related the reign of terror Mahishasur had unleashed on the three worlds. Hearing this Vishnu, Shiva and all of the gods became very angry and beams of fierce light emerged from their bodies. The blinding sea of light met at the Ashram of a priest named Katyayan and Durga emerged from this pool of light. The goddess Durga took the name Katyaayani from the priest and emerged from the sea of light. She introduced herself in the language of the Rig-Veda, saying she was the form of the supreme Brahman who had created all the gods. Now she had come to fight the demon to save the gods. They did not create her; it was her lila that she emerged from their combined energy. The gods were blessed with her compassion.
It is said that upon initially encountering Durga, Mahishasura underestimated her, thinking: "How can a woman kill me, Mahishasur-the one who has defeated the trinity of gods?". However, Durga roared with laughter, which caused an earthquake which made Mahishasur aware of her powers.
And the terrible Mahishasura rampaged against her, changing forms many times. First he was a buffalo demon, and she defeated him with her sword. Then he changed forms and became an elephant that tied up the goddess's lion and began to pull it towards him. The goddess cut off his trunk with her sword. The demon Mahishasur continued his terrorizing, taking the form of a lion, and then the form of a man, but both of them were gracefully slain by Durga.
Then Mahishasur began attacking once more, starting to take the form of a buffalo again. The patient goddess became very angry, and proclaimed to Mahishasur in a colorful tone-"Roar with delight while you still can, illiterate demon, because when I will kill you, the gods themselves will roar with delight". When Mahishasur had half emerged into his buffalo form, he was paralyzed by the extreme light emitting from the goddess's body. The goddess then resounded with laughter before cutting Mahishasur's head down with her sword.
Thus Durga sley Mahishasur, thus is the power of the fierce compassion of Durga. Hence, Mata Durga is also known as Mahishasurmardhini-the slayer of Mahishasur. According to one legend, the goddess Durga created an army to fight against the forces of the demonm king Mahishasur, who was terrorizing Heaven and Earth. After ten days of fighting, Durga and her army defeated Mahishasur and killed him. As a reward for their service, Durga bestowed upon her army the knowledge of jewelry-making. Ever since, the Sonara community has been involved in the jewelry profession.
Process: Sand Casting
This Durga has been created using the sand casting system, also known as sand molding casting. This widely employed manufacturing process utilizes a sand mold to produce metal products and components in various sizes and shapes. Sand casting holds significant popularity in the industry, accounting for approximately 60% of all metal castings. The sand casting process involves six primary steps. First, a pattern or replica of the desired sculpture, in this case, Durga, is created using a material like wood or metal. The pattern is then placed in a flask, which is a box-like structure divided into two halves. The next step involves packing the flask tightly with specially formulated molding sand, creating a mold cavity that matches the shape of the pattern. The pattern is subsequently removed, leaving behind a negative impression of the sculpture within the sand mold.
The third step is known as gating and risering, where additional channels and reservoirs are added to the mold to facilitate the flow of molten metal and compensate for any shrinkage during solidification. Once the gating system is prepared, the mold is carefully closed and secured. The fourth step involves pouring the molten metal, such as bronze or iron, into the mold through the gating system. After the metal has cooled and solidified, the mold is broken open, revealing the solid metal sculpture. The final steps involve removing any excess material, surface finishing, and polishing to achieve the desired appearance.
Sand casting offers several advantages, including its versatility in producing complex shapes, cost-effectiveness for both small and large-scale productions, and the ability to use a wide range of metals. However, it does require skilled craftsmanship and careful attention to ensure the quality and accuracy of the final sculpture. By utilizing the sand casting system, the Durga embodies the craftsmanship and artistry of the process, resulting in a captivating and unique metal artwork.
The process cycle for sand casting consists of six main stages, which are explained below
Mold-making -The first step in the sand casting process is to create the mold for the casting. In an expendable mold process, this step must be performed for each casting. A sand mold is formed by packing sand into each half of the mold. The sand is packed around the pattern, which is a replica of the external shape of the casting. When the pattern is removed, the cavity that will form the casting remains. Any internal features of the casting that cannot be formed by the pattern are formed by separate cores which are made of sand prior to the formation of the mold. Further details on mold-making will be described in the next section. The mold-making time includes positioning the pattern, packing the sand, and removing the pattern. The mold-making time is affected by the size of the part, the number of cores, and the type of sand mold. If the mold type requires heating or baking time, the mold-making time is substantially increased. Also, lubrication is often applied to the surfaces of the mold cavity in order to facilitate removal of the casting. The use of a lubricant also improves the flow the metal and can improve the surface finish of the casting. The lubricant that is used is chosen based upon the sand and molten metal temperature.
Clamping - Once the mold has been made, it must be prepared for the molten metal to be poured. The surface of the mold cavity is first lubricated to facilitate the removal of the casting. Then, the cores are positioned and the mold halves are closed and securely clamped together. It is essential that the mold halves remain securely closed to prevent the loss of any material.
Pouring - The molten metal is maintained at a set temperature in a furnace. After the mold has been clamped, the molten metal can be ladled from its holding container in the furnace and poured into the mold. The pouring can be performed manually or by an automated machine. Enough molten metal must be poured to fill the entire cavity and all channels in the mold. The filling time is very short in order to prevent early solidification of any one part of the metal.
Cooling - The molten metal that is poured into the mold will begin to cool and solidify once it enters the cavity. When the entire cavity is filled and the molten metal solidifies, the final shape of the casting is formed. The mold can not be opened until the cooling time has elapsed. The desired cooling time can be estimated based upon the wall thickness of the casting and the temperature of the metal. Most of the possible defects that can occur are a result of the solidification process. If some of the molten metal cools too quickly, the part may exhibit shrinkage, cracks, or incomplete sections. Preventative measures can be taken in designing both the part and the mold and will be explored in later sections.
Removal - After the predetermined solidification time has passed, the sand mold can simply be broken, and the casting removed. This step, sometimes called shakeout, is typically performed by a vibrating machine that shakes the sand and casting out of the flask. Once removed, the casting will likely have some sand and oxide layers adhered to the surface. Shot blasting is sometimes used to remove any remaining sand, especially from internal surfaces, and reduce the surface roughness.
Trimming - During cooling, the material from the channels in the mold solidifies attached to the part. This excess material must be trimmed from the casting either manually via cutting or sawing, or using a trimming press. The time required to trim the excess material can be estimated from the size of the casting's envelope. A larger casting will require a longer trimming time. The scrap material that results from this trimming is either discarded or reused in the sand casting process. However, the scrap material may need to be reconditioned to the proper chemical composition before it can be combined with non-recycled metal and reused.
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